Decorative sheet, emboss processing method and emboss processing mold
11046041 · 2021-06-29
Assignee
Inventors
Cpc classification
B29C59/046
PERFORMING OPERATIONS; TRANSPORTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B32B27/304
PERFORMING OPERATIONS; TRANSPORTING
B32B5/26
PERFORMING OPERATIONS; TRANSPORTING
B29C59/026
PERFORMING OPERATIONS; TRANSPORTING
B32B2262/0238
PERFORMING OPERATIONS; TRANSPORTING
B32B2262/14
PERFORMING OPERATIONS; TRANSPORTING
B32B5/18
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/718
PERFORMING OPERATIONS; TRANSPORTING
B32B3/06
PERFORMING OPERATIONS; TRANSPORTING
B29K2067/003
PERFORMING OPERATIONS; TRANSPORTING
B32B5/245
PERFORMING OPERATIONS; TRANSPORTING
B32B2260/021
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/546
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/4026
PERFORMING OPERATIONS; TRANSPORTING
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
B29C59/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
In a decorative sheet, a concavo-convex pattern is provided on a surface of a base material. The concavo-convex pattern includes a first concave, a convex and a second concave. The first concave is a bottomed concave. The convex is adjacent to the first concave. The second concave opens at the bottom surface of the first concave. The second concave is a bottomed concave. The second concave is provided in a first region of the bottom surface of the first concave which is a region spaced apart from a boundary between the first concave and the convex not less than a maximum dimension which is a dimension in an opening direction orthogonal to a thickness direction of an opening end of the second concave which is a side of the bottom surface of the first concave in the thickness direction of the base material.
Claims
1. A decorative sheet comprising: a base material including a first sheet which forms a front surface of the base material and a second sheet which has a cushioning property and which laminates with the first sheet; and a concavo-convex pattern provided on the front surface of the base material, wherein the concavo-convex pattern includes: a first concave portion having a first region and a second region, the first concave portion including a first bottom surface that extends throughout the second region and is planar throughout the second region, the first bottom surface having depth direction that coincides with a thickness direction of the base material; a convex portion which abuts the second region of the first concave portion such that the second region separates the convex portion from the first region, the convex portion having a height direction that coincides with the thickness direction; a second concave portion having a second bottom surface, the second concave portion abutting with a first edge of the first bottom surface of the first concave portion and whose depth direction coincides with the thickness direction, the first edge entirely enclosing the second concave portion therein, wherein the second concave portion is provided on the first sheet in a state in which the second bottom surface of the second concave portion is included in the first sheet; and a third concave portion having a third bottom surface, the third concave portion abutting with a second edge of the first bottom surface of the first concave portion and whose depth direction coincides with the thickness direction, the second edge entirely enclosing the third concave portion therein, wherein the second concave portion and the third concave portion are provided in the first region within the first bottom surface of the first concave portion, the first region being spaced apart from a boundary between the first concave portion and the convex portion not less than a first maximum dimension of the second concave portion measured in a direction orthogonal to the thickness direction at an open end of the second concave portion, wherein the second concave portion is spaced apart from the third concave portion along an axis aligned with the boundary between the first concave portion and the convex portion, and wherein the first sheet has a first thickness in at least part of the first region that is less than a second thickness of the first sheet in the second region adjacent to the first region.
2. The decorative sheet of claim 1, wherein the first maximum dimension of the second concave portion is in a range of 0.5 mm or more to 2 mm or less.
3. The decorative sheet of claim 1, wherein the second concave portion is provided in the first region such that a ratio of a second area to a third area is in a range of 5% or more to 35% or less, wherein a first area is an area of the first bottom surface of the first concave portion excluding open regions enclosed by the first edge and the second edge, wherein the second area includes an area enclosed by the first edge and an area enclosed by the second edge, and wherein the third area is a sum of the first area and the second area.
4. The decorative sheet of claim 2, wherein the second concave portion is provided in the first region such that a ratio of a second area to a third area is in a range of 5% or more to 35% or less, wherein a first area is an area of the first bottom surface of the first concave portion excluding open regions enclosed by the first edge and the second edge, wherein the second area includes an area enclosed by the first edge and an area enclosed by the second edge, and wherein the third area is a sum of the first area and the second area.
5. The decorative sheet of claim 1, wherein the second concave portion is a concave portion in which an angle formed by a wall surface of the second concave portion and the second bottom surface of the second concave portion is in a range of 90° or more to 120° or less.
6. The decorative sheet of claim 2, wherein the second concave portion is a concave portion in which an angle formed by a wall surface of the second concave portion and the second bottom surface of the second concave portion is in a range of 90° or more to 120° or less.
7. The decorative sheet of claim 3, wherein the second concave portion is a concave portion in which an angle formed by a wall surface of the second concave portion and the second bottom surface of the second concave portion is in a range of 90° or more to 120° or less.
8. The decorative sheet of claim 1, wherein the second concave portion has a second maximum dimension along the second bottom surface of the second concave portion that is 30% or more to 80% or less of the first maximum dimension of the second concave portion.
9. The decorative sheet of claim 2, wherein the second concave portion has a second maximum dimension along the second bottom surface of the second concave portion that is 30% or more to 80% or less of the first maximum dimension of the second concave portion.
10. The decorative sheet of claim 3, wherein the second concave portion has a second maximum dimension along the second bottom surface of the second concave portion that is 30% or more to 80% or less of the first maximum dimension of the second concave portion.
11. An emboss processing method comprising: an embossing process which forms a concavo-convex pattern to a front surface of a base material, the base material including a first sheet which forms the front surface of the base material and a second sheet which has a cushioning property and which laminates with the first sheet, wherein the embossing process includes: a first concave portion process which forms a first concave portion included in the concavo-convex pattern, the first concave portion having a first region and a second region and the first concave portion including a first bottom surface that extends throughout the second region and is planar throughout the second region; a convex portion process which forms a convex portion included in the concavo-convex pattern, the convex portion abutting the second region of the first concave portion such that the second region separates the convex portion from the first region; a second concave portion process which forms a second concave portion included in the concavo-convex pattern, the second concave portion having a second bottom surface and the second concave portion abutting with a first edge of the first bottom surface of the first concave portion, the first edge entirely enclosing the second concave portion therein, wherein the second concave portion is provided on the first sheet in a state in which the second bottom surface of the second concave portion is included in the first sheet; and a third concave portion process which forms a third concave portion included in the concavo-convex pattern, the third concave portion having a third bottom surface and the third concave portion abutting with a second edge of the first bottom surface of the first concave portion, the second edge entirely enclosing the third concave portion therein, wherein the first concave portion, the second concave portion and the third concave portion each have a depth direction that coincides with a thickness direction of the base material and the convex portion has a height direction that coincides with the thickness direction, wherein the first, second and third concave portions are formed such that the first sheet has a first thickness in at least part of the first region that is less than a second thickness of the first sheet in the second region adjacent to the first region, wherein the second and third concave portion processes are processes to form the second concave portion and the third concave portion in the first region within the first bottom surface of the first concave portion, the first region being spaced apart from a boundary between the first concave portion and the convex portion not less than a first maximum dimension of the second concave portion measured in a direction orthogonal to the thickness direction at an open end of the second concave portion, wherein the second concave portion is spaced apart from the third concave portion along an axis aligned with the boundary between the first concave portion and the convex portion, and wherein the second concave portion process is carried out together with the first concave portion process.
12. An emboss processing mold comprising: a molding portion which contacts a front surface of a base material and has a concavo-convex shape which corresponds to a concavo-convex pattern which is formed on the front surface of the base material, the base material including a first sheet which forms the front surface of the base material and a second sheet which has a cushioning property and which laminates with the first sheet, wherein the molding portion includes: a first mold portion having a first convex shape which corresponds to a first concave portion included in the concavo-convex pattern, the first concave portion having a first region and a second region and the first concave portion having a first bottom surface that extends throughout the second region and is planar throughout the second region; a second mold portion having a concave shape which corresponds to a convex portion included in the concavo-convex pattern, the convex portion abutting the second region of the first concave portion such that the second region separates the convex portion from the first region; and a third mold portion having a second convex shape which corresponds to a second concave portion and a third convex shape which corresponds to a third concave portion, the second and third concave portions included in the concavo-convex pattern, wherein the second concave portion has a second bottom surface and the second concave portion abuts a first edge of the first bottom surface, the first edge entirely enclosing the second concave portion therein, and the second concave portion being provided on the first sheet in a state in which the second bottom surface of the second concave portion is included in the first sheet, and wherein the third concave portion has a third bottom surface and the third concave portion abuts a second edge of the first bottom surface, the second edge entirely enclosing the third concave portion therein, wherein the first concave portion, the second concave portion and the third concave portion each have a depth direction that coincides with a thickness direction of the base material and the convex portion has a height direction that coincides with the thickness direction, wherein the third mold portion is provided in a third region of a top surface of the first mold portion, the third region being spaced apart from an outer edge of the top surface of the first mold portion corresponding to a boundary between the first concave portion and the convex portion not less than a first maximum dimension of the third mold portion measured along the top surface such that the third region corresponds to the first region, wherein the second convex shape is spaced apart from the third convex shape along an axis aligned with the outer edge of the top surface, and wherein the first mold portion and the third mold portion contact the base material such that the first sheet has a first thickness in at least part of the first region and a second thickness in the second region adjacent to the first region, the first thickness being less than the second thickness.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) Embodiments for carrying out the present disclosure will be described with reference to the drawings. The present disclosure is not limited to the configurations described below, and various configurations can be employed based on the same technical idea. For example, a part of the configurations shown below may be omitted or may be replaced by another configuration or the like. Another configuration may be included.
(9) Each drawing of the embodiment schematically shows predetermined configurations. Therefore, in each drawing of the embodiment, correspondence with another drawing or correspondence with a numerical value to be described later specifying the configuration in the drawing may not be accurate in some cases. In each drawing of the embodiment, hatching indicates a cross section.
(10) <Decorative Sheet>
(11) A decorative sheet 10 will be described with reference to
(12) As the base material 20, various sheet materials are adopted. For example, various sheet materials having different thicknesses are adopted as the base material 20. The base material 20 is a laminate body having two or more layers. In this case, the decorative sheet 10 is also a laminated body which has the same number of laminations as the base material 20. In the embodiment, the base material 20 is a three-layer laminate body having a first sheet 22, a second sheet 24 and a third sheet 26 (see the upper row of
(13) In the embodiment, in a thickness direction, the side on which the first sheet 22 is provided is referred to as “front side”. In the thickness direction, the side on which the third sheet 26 is provided is referred to as “back side”. The thickness direction coincides with the direction in which the first sheet 22, the second sheet 24 and the third sheet 26 are laminated on the base material 20. For each sheet material of the base material 20, the first sheet 22, the second sheet 24 and the third sheet 26, front surfaces are the surfaces which are on the front side in the thickness direction and back surfaces are the surfaces which are on the back side in the thickness direction. By the emboss process, the front surface of the base material 20 becomes the front surface of the decorative sheet 10 and the back surface of the base material 20 becomes the back surface of the decorative sheet 10. That is, in the state of the decorative sheet 10, the front surface of the decorative sheet 10 and the front surface of the base material 20 means the same surface. Similarly, in the state of the decorative sheet 10, the back surface of the decorative sheet 10 and the back surface of the base material 20 means the same surface. For example, when the decorative sheet 10 serves as an outer material of an interior article for a vehicle, the front surface of the decorative sheet 10 will become the front surface of the aforementioned interior article. A user of the vehicle visually recognizes the front surface of the decorative sheet 10 forming the front surface of the interior article.
(14) A thickness T (see the upper row of
(15) As the first sheet 22, various sheet materials are adopted. For example, as the first sheet 22, a fibrous sheet material is adopted. As the fibrous sheet material, a woven fabric, a knitted fabric, a nonwoven fabric or a natural leather is exemplified. Natural leather includes split leather. In addition, for example, the following sheet material is adopted as the first sheet 22. The aforementioned sheet material is a sheet material impregnated or laminated with a synthetic resin in a fibrous sheet material. As the sheet materials, artificial leather, synthetic leather or polyvinyl chloride leather is exemplified. A thickness T1 (see the upper row of
(16) In the first sheet 22, the fibrous sheet material is preferably a sheet material made of a thermoplastic resin fiber as a material from the viewpoint of processability in emboss processing. As the thermoplastic resin, polyolefin resin, polyester resin, polyamide resin, vinyl chloride resin or polyvinylidene chloride is exemplified. As the polyolefin resin, polyethylene or polypropylene is exemplified. As the polyester resin, polyethylene terephthalate is exemplified. As the polyamide resin, nylon 6 or nylon 66 is exemplified. The fibrous sheet material can be formed from one or more thermoplastic resin fibers selected from the group including the aforementioned plurality of resins.
(17) It is assumed that the first sheet 22 is a sheet material impregnated or laminated with a synthetic resin on a fibrous sheet material. In this case, as the resin to be impregnated or laminated, a known synthetic resin is adopted. As the aforementioned synthetic resin, polyurethane resin or vinyl chloride resin is exemplified. Further, the fibrous sheet material may be colored with known dyes or pigments. Dyes or pigments are appropriately determined in consideration of various conditions.
(18) The second sheet 24 has cushioning properties. Therefore, the base material 20 has cushioning properties as described above. As the second sheet 24, various sheet materials having cushioning properties are adopted. As the sheet material, synthetic resin foam, nonwoven fabric, multilayer woven fabric or multilayer knitted fabric is exemplified. The inventor believes that synthetic resin foams are preferable among the aforementioned sheet materials having cushioning properties from the viewpoint of processability in emboss processing. In particular, the inventor believes polyurethane foam is preferable from the viewpoint of versatility. A thickness T2 (see the upper row of
(19) As the third sheet 26, various sheet materials are adopted. For example, as the third sheet 26, a woven fabric, a knitted fabric or a nonwoven fabric is adopted. In the third sheet 26, basis weight of the sheet material is appropriately determined in consideration of various conditions. For example, when the third sheet 26 is a woven or knitted fabric, the basis weight of the woven or knitted fabric is preferably set to a predetermined value in the range of 10 to 80 g/m2. When the third sheet 26 is a nonwoven fabric, the basis weight of the nonwoven fabric is preferably set to a predetermined value in the range of 10 to 40 g/m2. As like the first sheet 22, the third sheet 26 is preferably a sheet material made of a thermoplastic resin fiber as a material from the viewpoint of processability in emboss processing. As the thermoplastic resin serving as a material, the above-described resin related to the first sheet 22 is exemplified.
(20) The concavo-convex pattern 30 includes a first concave portion 32, a convex portion 34 and a second concave portion 36 (see the lower row of
(21) In the embodiment, the concavo-convex pattern 30 is a concavo-convex pattern in which a plurality of first concave portions 32 and a plurality of convex portions 34 are alternately repeated in the longitudinal direction (see
(22) However, such concavo-convex pattern 30 is an example. In the decorative sheet 10, various concavo-convex patterns are adopted as the concavo-convex pattern 30. The first concave portion 32 and the convex portion 34 and the second concave portion 36 may have shapes different from the above-described shapes. The first concave portion 32 may be a concave portion whose bottom surface is any one of, for example, a circular shape, an elliptical shape, a polygonal shape, a star shape and a flower shape. The convex portion 34 has a shape corresponding to the shape of the first concave portion 32, and forms a space between the plurality of first concave portions 32. The second concave portion 36 may be a concave portion in which the opening end and the bottom surface are any one of, for example, an elliptical shape, a polygonal shape, a star shape and a flower shape.
(23) The first concave portion 32 is preferably a concave portion having a third area of 25 mm2 or more in view of design properties of the concavo-convex pattern 30. By setting the third area to 25 mm2 or more, formation of the second concave portion 36 becomes easy. It is possible to enhance the design properties of the concavo-convex pattern 30. The third area is a sum of a first area and a second area. The first area is an area of the bottom surface of the first concave portion 32 excluding an opening region. The opening region is a region where the second concave portion 36 opens at the bottom surface of the first concave portion 32 (the opening end of the second concave portion 36). The second area is an area of the opening region. It is assumed that a number of N second concave portions 36 are provided on the bottom surface of one first concave portion 32. For one second concave portion 36, the area of the region where the second concave portion 36 opens at the bottom surface of the first concave portion 32 is assumed to be M. In this case, the second area is a product of N and M. Each of the first area, the second area and the third area considers the bottom surface of one first concave portion 32.
(24) The first concave portion 32 is preferably an area ratio of 5 to 60% with respect to a first reference region RA. The aforementioned area ratio is based on the area of each range of the first concave portion 32 and the first reference region RA which can be visually recognized in the following state. The aforementioned state is a state in which the decorative sheet 10 is viewed from above in the thickness direction from the front side (see
(25) Depth D1 (see
(26) Depth D2 (see
(27) The second concave portion 36 is preferably a concave portion whose maximum dimension W1 is set to a predetermined value in the range of 0.5 to 2 mm. By setting the maximum dimension W1 to 0.5 mm or more, the visibility of the second concave portion 36 can be improved. The viewer of the decorative sheet 10 can visually recognize the second concave portion 36. By setting the maximum dimension W1 to 2 mm or less, the degree of freedom of the following point can be increased. As a result, it is possible to obtain the concavo-convex pattern 30 having preferable design properties. The aforementioned point is the point of arrangement of the second concave portion 36 with respect to the bottom surface of the first concave portion 32. The second concave portion 36 may be a concave portion in which the opening area of the opening end is set to a predetermined value in the range of 0.19 to 3.2 mm2.
(28) The second concave 36 is preferably provided in the first region R1 in a state in which the ratio of the second area to the third area is 5% or more and 35% or less. By setting the aforementioned ratio to 5% or more, it is possible to obtain the concavo-convex pattern 30 having preferable design properties. By setting the aforementioned ratio to 35% or less, the second concave portion 36 having a sharp shape can be formed.
(29) The second concave portion 36 is preferably a concave portion in which an angle θ1 is set to a predetermined value in the range of 90 to 120°. The angle θ1 is an angle between a wall surface of the second concave portion 36 and the bottom surface of the second concave portion 36 (see
(30) The second concave portion 36 is preferably a concave portion in which the ratio of a maximum dimension W2 to the maximum dimension W1 is set to a predetermined value in the range of 30 to 80%. The maximum dimension W2 is a maximum dimension of the bottom surface of the second concave portion 36 in the opening direction (see
(31) <Emboss Processing Apparatus>
(32) The emboss processing apparatus 50 will be described with reference to
(33) In
(34) The emboss processing apparatus 50 includes an emboss processing mold 60, an emboss receiving mold 80, and heating portions 90, 92. The emboss processing mold 60 has a roll shape. In this case, the emboss processing mold 60 may be referred to as an emboss roll. The emboss receiving mold 80 has a roll shape. In this case, the emboss receiving mold 80 may be referred to as a receiving roll or a backup roll. The emboss processing mold 60 and the emboss receiving mold 80 are provided side by side in an arrangement direction. The emboss processing mold 60 is provided on a first side in the arrangement direction. The emboss receiving mold 80 is provided on a second side in the arrangement direction. In the embodiment, the arrangement direction is the vertical direction and the conveying direction is the horizontal direction. Further, the first side in the arrangement direction is the upper side in the vertical direction and the second side in the arrangement direction is the lower side in the vertical direction. In this case, the thickness direction (lamination direction) of the base material 20 coincides with the vertical direction. However, the arrangement direction may be a direction different from the vertical direction. The conveying direction may be a direction different from the horizontal direction. The conveying direction is preferably a direction orthogonal to the arrangement direction.
(35) The emboss processing mold 60 rotates in a direction corresponding to the conveying direction with a shaft 62 as a rotation axis. The emboss processing mold 60 is imparted with a driving force from a driving portion. The driving portion is attached to the shaft 62. Accordingly, as aforementioned, the emboss processing mold 60 rotates. In
(36) The emboss processing mold 60 includes a molding portion 70. The molding portion 70 has a concavo-convex shape corresponding to the concavo-convex pattern 30. The molding portion 70 is in contact with the front surface of the base material 20 and presses the front surface of the base material 20. The molding portion 70 includes a first mold portion 72, a second mold portion 74 and a third mold portion 76 (see
(37) In the embodiment, the molding portion 70 includes a plurality of first mold portions 72 and a plurality of second mold portions 74 corresponding to the concavo-convex pattern 30 (see
(38) When the bottom surface of the first concave portion 32 is a rectangular shape (see
(39) The first mold portion 72 is preferably a convex shape having an area of the top surface is 25 mm2 or more. Thus, the first concave portion 32 can be a concave portion having the third area of 25 mm2 or more. In the case of manufacturing the emboss processing mold 60, the formation of the third mold portion 76 becomes easy.
(40) The first mold portion 72 is preferably 5 to 60% in area ratio with respect to a second reference region RB. The aforementioned area ratio corresponds to the area ratio of the first concave portion 32 with respect to the first reference region RA described above. The second reference region RB is a region formed by a pair of adjacent first mold portions 72 and second mold portions 74 (see
(41) Height H1 (see
(42) When the opening end and the bottom surface of the second concave portion 36 are circular shapes (see
(43) Height H2 (see
(44) It is preferable that the third mold portion 76 has a convex shape in which the maximum dimension W3 is set to a predetermined value in the range of 0.5 to 2 mm (see
(45) The third mold portion 76 is preferably provided in the second region R2 in a state in which a ratio of a fifth area to a sixth area is 5% or more and 35% or less. The sixth area is a sum of a fourth area and the fifth area. The fourth area is an area of the top surface of the first mold portion 72 excluding a non-exposed region. The non-exposed region is a region which is not exposed by the third mold portion 76 on the top surface of the first mold portion 72. The fifth area is an area of the non-exposed area. It is assumed that a number of N third mold portions 76 are provided on the top surface of one first mold portion 72. For one third mold portion 76, the area of the rear end of the third mold portion 76 is assumed to be M. In this case, the fifth area is a product of N and M. Each of the fourth area, the fifth area and the sixth area considers the top surface of one first mold portion 72. Thus, the second concave portion 36 can be provided in the first region R1 in a state in which the ratio of the second area to the third area is 5% or more and 35% or less. By setting the aforementioned ratio to 5% or more, it is possible to form the concavo-convex pattern 30 having preferable design properties on the front surface of the base material 20. By setting the aforementioned ratio to 35% or less, it is possible to form the second concave portion 36 having a sharp shape on the front surface of the base material 20.
(46) The third mold portion 76 is preferably formed in a convex shape in which an angle θ2 is set to a predetermined value in the range of 90 to 120°. The angle θ2 is an angle between a side surface of the third mold portion 76 and the top surface of the third mold portion 76 (see
(47) The third mold portion 76 is preferably formed in a convex shape in which a ratio of a maximum dimension W4 to the maximum dimension W3 is set to a predetermined value in the range of 30 to 80%. The maximum dimension W4 is a maximum dimension of the top surface of the third mold portion 76 in the following direction (see
(48) The emboss receiving mold 80 rotates in a direction corresponding to the conveying direction with a shaft 82 as a rotation axis. The rotation direction of the emboss receiving mold 80 is opposite to the rotation direction of the emboss processing mold 60. The emboss receiving mold 80 is in contact with the back surface of the base material 20. In the emboss processing apparatus 50, the emboss processing mold 60 and the emboss receiving mold 80 sandwich the base material 20. The emboss receiving mold 80 rotates following the rotation of the emboss processing mold 60 in a state of being in contact with the back surface of the base material 20. The following arrow shown in
(49) The heating portion 90 is embedded in the emboss processing mold 60. The heating portion 90 heats the emboss processing mold 60 to a predetermined temperature. The heating portion 92 is embedded in the emboss receiving mold 80. The heating portion 92 heats the emboss receiving mold 80 to a predetermined temperature. The heating portions 90, 92 are electric heaters. In the embodiment, with respect to the emboss processing mold 60, four heating portions 90 formed by electric heaters are embedded therein at equiangular intervals and with respect to the emboss receiving mold 80, four heating portions 92 formed by electric heaters are embedded therein at equiangular intervals. However, the heating portions 90, 92 may be heating portions of a different type from that of the electric heater. The number of the heating portions 90 with respect to the emboss processing mold 60 may be three or less, or five or more. The number of the heating portions 92 with respect to the emboss receiving mold 80 may be three or less, or five or more. The type and number of the heating portions 90, 92 are appropriately determined in consideration of various conditions. The arrangement of the heating portions 90 in the emboss processing mold 60 is appropriately determined in consideration of various conditions. The arrangement of the heating portions 92 in the emboss receiving mold 80 is appropriately determined in consideration of various conditions.
(50) The temperature of the emboss processing mold 60 heated by the heating portions 90 is appropriately set according to the type of the base material 20. For example, the aforementioned temperature is appropriately set in consideration of the material of either or both of the first sheet 22 and the second sheet 24. It is assumed that the first sheet 22 is polyethylene terephthalate. The melting point of polyethylene terephthalate is 260° C. In this case, the heating portions 90 heat the emboss processing mold 60 to a predetermined value in the range of 60 to 210° C. Preferably, the heating portions 90 heat the emboss processing mold 60 to a predetermined value in the range of 80 to 180° C. By setting the temperature of the emboss processing mold 60 to 60° C. or higher, a clear concavo-convex pattern 30 can be formed on the front surface of the base material 20. By setting the temperature of the emboss processing mold 60 to 210° C. or lower, the front surface quality of the first sheet 22 can be made preferable. As a result, the decorative sheet 10 with good texture can be obtained.
(51) <Emboss Processing Method>
(52) The emboss processing method will be described with reference to
(53) In the emboss processing method, by pressing the base material 20, the concavo-convex pattern 30 is formed on the front surface of the base material 20 (see
(54) The supplying process is a process of supplying the base material 20 to the emboss processing apparatus 50 (see
(55) The embossing process is a process of forming the concavo-convex pattern 30 on the front surface of the base material 20 (see
(56) The recovering process is a process of recovering the base material 20 that has passed through the emboss processing apparatus 50 (see
(57) In the emboss processing method, a conveying speed of the base material 20 is preferably set to a predetermined value in the range of 0.1 to 10 m/min. Preferably, the conveying speed of the base material 20 is set to a predetermined value in the range of 0.3 to 5 m/min.
(58) In the embossing process, a pressing time of the base material 20 is preferably set to a predetermined value in the range of 0.01 to 5 seconds. Preferably, the pressing time of the base material 20 is set to a predetermined value in the range of 0.1 to 2 seconds. By setting the pressing time of the base material 20 to 0.01 second or more, it is possible to appropriately apply a pressing force to the base material 20 when the base material 20 passes between the emboss processing mold 60 and the emboss receiving mold 80. It is possible to form a sufficient concavo-convex pattern 30 on the front surface of the base material 20. By setting the pressing time of the base material 20 to 5 seconds or less, the decorative sheet 10 with good texture can be manufactured. Productivity can be improved.
(59) In the embossing process, the pressing force to the base material 20 is preferably set to a predetermined value in the range of 0.7 to 7 kgf/cm2. Preferably, the pressing force to the base material 20 is set to a predetermined value in the range of 1.4 to 3.5 kgf/cm2. By setting the pressing force to the base material 20 to 0.7 kgf/cm2 or more, it is possible to appropriately apply the pressing force to the base material 20 when the base material 20 passes between the emboss processing mold 60 and the emboss receiving mold 80. It is possible to form a sufficient concavo-convex pattern 30 on the surface of the base material 20. By setting the pressing force to the base material 20 to 7 kgf/cm2 or less, the decorative sheet 10 with a good texture can be manufactured. Productivity can be improved.
Example
(60) The inventor conducted experiments to confirm the effectiveness of the emboss process method and the emboss processing mold 60 of the emboss processing apparatus 50 of the embodiment. The experimental results obtained by the experiments will be described below. At that time, in order to clarify the correspondence with the above, the reference numerals for each part are the same as above. However, the emboss processing apparatus 50 is referred to as “emboss processing apparatuses 51, 52, 53”.
(61) (1) Experimental Method
(62) In the experiments, Samples 1, 2, and 3 were evaluated. Sample 1 was produced by the emboss processing apparatus 51. Sample 2 was produced by the emboss processing apparatus 52. Sample 3 was produced by the emboss processing apparatus 53. Samples 1, 2, and 3 correspond to the decorative sheet 10. The concavo-convex pattern 30 was a concavo-convex pattern (stripe pattern) in which a plurality of first concave portions 32 and a plurality of convex portions 34 were alternately repeated in the longitudinal direction (see the lower row of
(63) For producing Samples 1, 2 and 3, the same base material 20 was used. In Samples 1, 2, and 3, as described above, the base material 20 was a three-layer laminate body (see the upper row of
(64) (Base Material 20)
(65) First sheet 22 (material, thickness T1): Synthetic leather (laminate polyurethane resin layer on tricot knitted fabric), 1 mm
(66) Second sheet 24 (material, thickness T2): Flexible polyurethane foam sheet (INOAC CORPORATION, trade name of product: EL67), 5 mm
(67) Third sheet 26 (material, basis weight): Nonwoven fabric (polyester nonwoven fabric), 40 g/m2
(68) The emboss processing apparatuses 51, 52, 53 are emboss processing apparatuses corresponding to the emboss processing apparatus 50. The difference between the emboss processing apparatuses 51, 52, 53 is the emboss processing mold 60. In the emboss processing apparatuses 51, 52, 53, the emboss processing mold 60 and the emboss receiving mold 80 both have roll shapes (see
(69) (Emboss Processing Mold 60 of Emboss Processing Apparatus 51)
(70) Specification of First Mold Portion 72
(71) Shape: Rectangular Dimensions (top surface, height H1): 9 mm×1500 mm (circumferential direction×width direction), 10 mm Area of the top surface (sixth area): 13500 mm.sup.2 Ratio of the first mold portion 72 to the second reference region RB: 25%
Specification of Third Mold Portion 76 Shape: Circular Dimensions (maximum dimensions W3, W4, height H2): 1 mm, 0.5 mm, 0.7 mm Angle θ2: 104° Ratio of the maximum dimension W4 to the maximum dimension W3: 50% Ratio of the fifth area to the sixth area: 32%
(72) (Emboss Processing Mold 60 of Emboss Processing Apparatus 52)
(73) Specification of Third Mold Portion 76
(74) Shape: Circular Dimensions (maximum dimensions W3, W4, height H2): 1 mm, 0.1 mm, 0.7 mm Angle θ2: 114° Ratio of the maximum dimension W4 to the maximum dimension W3: 10% Ratio of the fifth area to the sixth area: 32%
(75) (Emboss Processing Mold 60 of Emboss Processing Apparatus 53)
(76) Specification of Third Mold Portion 76
(77) Shape: Circular Dimensions (maximum dimensions W3, W4, height H2): 1 mm, 1 mm, 0.7 mm Angle θ2: 90° Ratio of the maximum dimension W4 to the maximum dimension W3: 100% Ratio of the fifth area to the sixth area: 32%
(78) (Processing Condition of Emboss Processing Method (common)) Surface temperature of the emboss processing mold 60: 180° C. Surface temperature of the emboss receiving mold 80: 230° C. Conveying speed: 2 m/min Pressing force: 1.4 kgf/cm.sup.2
(79) (2) Evaluation
(80) Regarding the Samples 1, 2, and 3, the concavo-convex pattern 30 formed on the front surface of the base material 20 was as follows. Each shape of the first concave portion 32 and the second concave portion 36 correspond to the shapes when the first concave portion 32 and the second concave portion 36 to be evaluated are respectively viewed from directly in front in a state in which the viewing direction is “Z1 direction” shown in the lower row of
(81) (Sample 1)
(82) Configuration of First Concave Portion 32 Shape: Rectangular Dimensions (bottom surface, depth D1): 9 mm×1500 mm (longitudinal direction×transverse direction), 10 mm Area of the bottom surface (third area): 13500 mm.sup.2 Ratio of the first concave portion 32 to the first reference region RA: 25%
(83) Configuration of Second Concave Portion 36 Shape: Circular Dimensions (maximum dimension W1, W2, depth D2): 1 mm, 0.5 mm, 0.7 mm Angle θ1: 104° Ratio of the maximum dimension W2 to the maximum dimension W1: 50% Ratio of the second area to the third area: 32%
(84) (Sample 2)
(85) Configuration of First Concave Portion 32 Shape: Rectangular Dimensions (bottom surface, depth D1): 9 mm×1500 mm (longitudinal direction×transverse direction), 10 mm Area of the bottom surface (third area): 13500 mm.sup.2 Ratio of the first concave portion 32 to the first reference region RA: 25%
(86) Configuration of Second Concave Portion 36 Shape: Circular Dimensions (maximum dimension W1, W2, depth D2): 1 mm, 0.1 mm, 0.7 mm Angle θ1: 114° Ratio of the maximum dimension W2 to the maximum dimension W1: 10% Ratio of the second area to the third area: 32%
(87) (Sample 3)
(88) Configuration of First Concave Portion 32 Shape: Rectangular Dimensions (bottom surface, depth D1): 9 mm×1500 mm (longitudinal direction×transverse direction), 10 mm Area of the bottom surface (third area): 13500 mm.sup.2 Ratio of the first concave portion 32 to the first reference region RA: 25%
(89) Configuration of Second Concave Portion 36 Shape: Circular Dimensions (maximum dimension W1, W2, depth D2): 1 mm, 1 mm, 0.7 mm Angle θ1: 90° Ratio of the maximum dimension W2 to the maximum dimension W1: 100% Ratio of the second area to the third area: 32%
(90) In the present experiments, sensory evaluation was performed on the aspect of the second concave portion 36 according to the following evaluation criteria. As a result, in Sample 1, the evaluation was “A”. In Samples 2 and 3, the evaluation was “B”. That is, in the present experiments, good results were obtained for any of Samples 1 to 3. This confirmed the effectiveness of the emboss processing method and the emboss processing mold 60 of the embodiment.
(91) [Evaluation Criteria]
(92) A: It satisfies the following conditions 1 to 3
(93) Condition 1: the corner portions E of the second concave portions 36 are good and sharp
(94) Condition 2: the second concave portions 36 have a shape along the thickness direction
(95) Condition 3: The second concave portions 36 look like through holes, and it can be visually recognized that a pattern in which a plurality of through holes are arranged on the bottom surfaces of the first concave portions 32 is provided
(96) B: It satisfies the above condition 1
(97) C: Neither of the above conditions 1 to 3 are satisfied and the second concave portions 36 are somewhat obscure
(98) D: Neither of the above conditions 1 to 3 are satisfied and the second concave portions 36 are unclear
(99) <Effect of Embodiment>
(100) According to the embodiment, the following effects can be obtained.
(101) (1) The decorative sheet 10 includes the base material 20 and the concavo-convex pattern 30 (see the lower row of
(102) (2) In the decorative sheet 10, the second concave portions 36 are provided on the first sheet 22 in a state that the bottom surface is included in the first sheet 22 (see
(103) <Modifications>
(104) The embodiment can also be configured as follows. Some configurations of modifications illustrated below may also be employed in combination as appropriate. In the following description, points different from the above description are described, and the description of similar points is omitted as appropriate.
(105) (1) The concavo-convex pattern 30 includes a plurality of second concave portions 36 on the bottom surface of the first concave portion 32 (see the lower row of
(106) (2) In the emboss processing apparatus 50, the emboss processing mold 60 and the emboss receiving mold 80 have roll shapes and are rotatably supported in a direction corresponding to the conveying direction (see
(107) In an emboss processing method performed by an emboss processing apparatus 50 shown in
(108) The emboss processing mold 60 is provided with heating portions 90. The emboss receiving mold 80 is provided with heating portions 92. When the emboss processing method is carried out, the heating portions 90 heat the emboss processing mold 60 and the heating portions 92 heat the emboss receiving mold 80. However, for example, in the emboss receiving mold 80, the heating portions 92 may be omitted. In a state in which the emboss processing mold 60 has moved to the second side in the arrangement direction, the base material 20 is sandwiched between the emboss processing mold 60 and the emboss receiving mold 80. The base material 20 is in contact with an outer surface of the emboss receiving mold 80 on a back surface and is supported by the emboss receiving mold 80 from a back side. The base material 20 is brought into contact with the molding portion 70 on a front surface and is pressed by the molding portion 70. The first mold portions 72 and third mold portions 76 of the molding portion 70 bite into the base material 20. Along with this, a concavo-convex pattern 30 is formed on the front surface of the base material 20 in the same manner as described above. A pressing time of the base material 20 is preferably set to a predetermined value in the range of 30 to 120 seconds. Preferably, the pressing time of the base material 20 is set to a predetermined value in the range of 50 to 90 seconds. The same effect as described above can be obtained.
(109) The relative movement between the emboss processing mold 60 and the emboss receiving mold 80 preferably carried out such that the emboss processing mold 60 is reciprocated in the arrangement direction with the position of the emboss receiving mold 80 being fixed (see
(110) (3) As a processing target of the emboss processing method by the emboss processing apparatus 50, the base material 20 which is a three-layer laminate body was exemplified (see the upper row of