BLISTER PACKAGE AND METHOD OF MANUFACTURE
20180118437 ยท 2018-05-03
Inventors
Cpc classification
B65B61/182
PERFORMING OPERATIONS; TRANSPORTING
B65B3/022
PERFORMING OPERATIONS; TRANSPORTING
B65B51/10
PERFORMING OPERATIONS; TRANSPORTING
B65D75/5816
PERFORMING OPERATIONS; TRANSPORTING
B65D75/327
PERFORMING OPERATIONS; TRANSPORTING
B65D65/38
PERFORMING OPERATIONS; TRANSPORTING
B65D75/527
PERFORMING OPERATIONS; TRANSPORTING
B65D75/58
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D75/58
PERFORMING OPERATIONS; TRANSPORTING
B65B7/16
PERFORMING OPERATIONS; TRANSPORTING
B65B3/02
PERFORMING OPERATIONS; TRANSPORTING
B65D75/32
PERFORMING OPERATIONS; TRANSPORTING
B65D65/38
PERFORMING OPERATIONS; TRANSPORTING
B65B61/18
PERFORMING OPERATIONS; TRANSPORTING
B65B51/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A blister package and method of manufacture are provided, the package including a novel pull tab configuration for opening an individual product compartment of the package. According to one embodiment the blister package includes: a thermoformed plastic base substrate having a thickness, the base substrate having at least one thermoformed recessed product cavity to retain product therein and an associated sealing surface area surrounding the product cavity, a peelable cover layer removably attached to the base substrate comprising a first portion covering the product cavity and a second portion overlapping and sealed to the surrounding sealing surface area, the base substrate having a notched line extending across the sealing surface area between two points on a perimeter of the sealing surface area and spaced from the product cavity, the notched line including alternating severed and unsevered line portions, the severed line portions extending completely through the thickness of the base substrate while the unsevered line portions comprise connected portions; wherein a portion of the base substrate is configured to be bent and broken off by a user at the notched line to form a pull tab that includes the broken off portion of the base substrate and the cover layer sealed thereto, enabling a user grasping the pull tab to peel back and separate the cover layer from the sealing surface area surrounding the product cavity to enable release of a product from the product cavity.
Claims
1. A blister package comprising: a thermoformed plastic base substrate having a thickness, the base substrate having at least one thermoformed recessed product cavity to retain product therein and an associated sealing surface area surrounding the product cavity, a peelable cover layer removably attached to the base substrate comprising a first portion covering the product cavity and a second portion overlapping and sealed to the surrounding sealing surface area, the base substrate having a notched line extending across the sealing surface area between two points on a perimeter of the sealing surface area and spaced from the product cavity, the notched line including alternating severed and unsevered line portions, the severed line portions extending completely through the thickness of the base substrate while the unsevered line portions comprise connected portions; wherein a portion of the base substrate is configured to be bent and broken off by a user at the notched line to form a pull tab that includes the broken off portion of the base substrate and the cover layer sealed thereto, enabling a user grasping the pull tab to peel back and separate the cover layer from the sealing surface area surrounding the product cavity to enable release of a product from the product cavity.
2. The blister package of claim 1, comprising a plurality of separable sections, each section comprising a recessed product cavity with its associated sealing surface area, notched line and cover layer.
3. The blister package of claim 2, wherein the blister package includes a plurality of section lines, the section lines extending between each section and defining at least a portion of a perimeter of each section, the section lines enabling each section to be separated from the other sections and wherein the notched line of each section extends between two points on the perimeter of the section.
4. The blister package of claim 1, wherein the at least one recessed cavity is configured to receive a medical, health, food, cosmetic, or industrial product.
5. The blister package of claim 1, wherein the at least one recessed product cavity is shaped in the form of a tablet or capsule.
6. The blister package of claim 1, wherein the notched line is a straight line or a curved line, or includes a combination of straight and curved line portions.
7. The blister package of claim 1, wherein the notched line extends between two edges of the sealing area perimeter to form a corner broken off portion.
8. The blister package of claim 1, wherein the notched line extends between two points on one edge of the sealing area perimeter to form a broken off portion.
9. The blister package of claim 1, wherein one or more of the thermoformed base substrate, and the cover layer, are of multilayer construction.
10. The blister package of claim 1, wherein the thermoformed plastic base substrate comprises one or more of polyester, polyacrylate, polycarbonate, polyolefin, polystyrene, and polyvinyl chloride (PVC), including copolymers and blends thereof.
11. The blister package of claim 10, wherein the thermoformed plastic base substrate comprises one or more of polyethylene terephthalate (PET), high density polyethylene (HDPE), polymethyl methacrylate (PMMA), polyethylene methacrylate, and glycol modified PET (PET G), including copolymers and blends thereof.
12. The blister package of claim 1, wherein the cover layer includes a sealant for removable attachment to the sealing surface area of the base substrate.
13. The blister package of claim 12, wherein the sealant comprises a heat sealable material.
14. The blister package of claim 1, wherein the thickness of the base substrate is in a range of 6 to 25 mils (thousandths of an inch).
15. The blister package of claim 1, wherein the notched line comprises in a range of 40 to 90% severed portions as a ratio of total length of the severed portions to total length of the notched line.
16. The blister package of claim 15, wherein the notched line comprises in a range of 60 to 90% severed portions as a ratio of total length of the severed portions to total length of the notched line.
17. The blister package of claim 16, wherein the notched line comprises in a range of 70 to 85% severed portions as a ratio of total length of the severed portions to total length of the notched line.
18. A method of forming a blister package, the blister package including a thermoformed plastic base substrate and a peelable cover layer removably attachable to the base substrate, the method comprising: thermoforming in a mold a base substrate of the blister package from a sheet of thermoformable material, the mold including a recessed molding surface to from a recessed product cavity and a molding surface surrounding the recessed molding surface to form an associated surrounding sealing surface area of the base substrate, forming in the mold, either sequentially or simultaneously with the forming of the recessed product cavity, a notched line in the base substrate extending across the sealing surface area and spaced from the recessed product cavity, the notched line including alternating severed and unsevered line portions, the severed line portions extending completely through a thickness of the base substrate while the unsevered line portions comprise connected portions, filling the recessed product cavity with a product, and attaching a peelable cover layer to the base substrate, the cover layer extending over the filled product cavity and being removably attachable to the surrounding sealing surface area.
19. The method of claim 18, wherein the thermoforming step includes forming a plurality of sections of the base substrate in the mold, each section comprising a recessed product cavity and associated surrounding sealing surface area and notched line, and wherein the filling and sealing steps include filling each recessed product cavity with a product and attaching the cover layer to the plurality of sections of the base substrate.
20. The method of claim 19, wherein the method includes: forming a plurality of section lines defining at least a portion of a perimeter of each section, wherein the notched line extends between two points on the perimeter of the section.
21. The method of claim 18, wherein the method includes: cutting through a thickness direction of the cover layer and base substrate to form a perimeter of the sealing surface area, wherein the notched line extends between two points on the perimeter of the sealing surface area.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0043] The following figures illustrate various embodiments of the invention in more detail.
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DETAILED DESCRIPTION OF THE INVENTION
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[0059] As shown in
[0060] In accordance with the invention, each section 22 also includes a notched line 17 which extends across a portion of the sealing area 23, is spaced apart from the cavity 16, and extends between two points on the perimeter 27 of the section 22. The perimeter of the section is defined by: one or more of the outer edges of the base substrate 12 and the section lines 21; or by the surrounding section lines 21 (if the section does not border an outer edge of the base substrate 12). The notched line 17 separates a corner portion 18 (
[0061] The notched line includes alternating severed portions 17S and unsevered portions 17U, the severed line portions 17S extending completely through the thickness of the base substrate 12 while the unsevered line 17U portions comprise connected line portions (of the base substrate 12). This is shown more clearly in
[0062] In use (see
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[0065] The cover layer 14 includes an outer layer 24 and an inner sealant layer 26, wherein the latter is removably adhered to the upper surface 13U of the sealing areas 23 of the base substrate 12. In this embodiment, the sealant layer is provided in the cavity area 16, although a sealant function is not required in this area; thus in other embodiments the sealant may not be present in this area. The cover layer 14 can be removed by peeling the cover layer off of the sealing area 23 surrounding the cavity 16, as described further below.
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[0069] In the embodiment of
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[0075] The described embodiments provide a number of benefits. By forming the notched lines 17 effectively in-line (at molding station 42), as opposed to starting with a base film that includes notched lines 17, there is no need to closely register (align) the base film 12F with the mold cavities 32. Similarly by forming the perforated section lines 21 at the cutting station 45, as opposed to providing a base film that includes perforated section lines, again the need to closely register (align) the base film with the molding cavities and with the cutting stations is avoided.
[0076] In another embodiment, shown in
[0077] The materials, dimension and configurations of the various components can be varied according to the intended use. The following are examples of suitable materials and constructions.
[0078] The base film 12F that forms the base substrate 12 may of monolayer or multi-layer construction, formed by extrusion, co-extrusion, lamination or coating processes. Various polymer materials suitable for use in a base substrate of a blister package are known to those skilled in the art, such materials providing for example structural integrity, or moisture and gas barrier properties; at least the product facing layer should be substantially inert to the product. Suitable polymers include polyester, polyacrylate, polycarbonate, polyolefin, polystyrene, polyvinyl chloride (PVC), including copolymers and blends thereof; preferred polymers include polyester, polyacrylate, polypropylene and polyethylene, including copolymers and blends thereof; and more preferably, polyethylene terephthalate (PET), high density polyethylene (HDPE), polymethyl methacrylate (PMMA), polyethylene methacrylate, and copolymers of PET (e.g., glycol modified PET (PET G)), including copolymers and blends thereof. Suitable barrier materials for a laminate or coating include polychlorotrifluroethylene (PCTFE) and polyvinylidene chloride (PVDC) materials.
[0079] Similarly, the lidding film 14 F (that forms the cover layer 14) may be formed (e.g., laminated, coextruded, or coated) from one or more layers of polymer materials that provide for example, structural integrity, and/or moisture and/or gas barrier protection; again at least the product facing layer is substantially inert to the product. The sealant layer 26 may be any polymeric material, for example, a heat seal material chosen from ethylene vinyl acetate (EVA) copolymer, ethyl methyl acrylate (EMA) copolymer, styrene block copolymers (SBC), polyurethane, styrene ethylene butadiene styrene (SEBS) copolymers, and ethylene acrylic acid (EAA) copolymers, and more preferably EVA or SEBS, including copolymers and blends thereof. The lidding film may include for example layers of paper, metal foil, and heat seal adhesive; preferably it may include layers of paper, polyester, metal foil and heat seal adhesive; and more preferably layers of paper, PET, metal foil and heat seal adhesive.
[0080] The thicknesses of the various layers will depend on the manufacturing conditions and on the intended product and use environment. For example, the thickness of the base substrate 12 may be in a range of 5 to 50 mils (thousandths of an inch), preferably 7 to 40 mils, and more preferably 6 to 25 mils. The thickness of the cover layer may be in a range of 2 to 10 mils, preferably 3 to 9 mils, and more preferably 4 to 7 mils.
[0081] The product may be any product for which packaging of product units in individual cavities, in a sealed environment, is desired. For example, the product may be a food product (such as cooked foods, salads, desserts), a cosmetic product (such as artificial nails) or industrial product (such as nuts or bolts), or a medical product (e.g., drug, such as a capsule-shaped or tablet-shaped product. An individual cavity may be designed to hold one or more product units.
[0082] The dimensions of the section 22, product cavity 16 and sealing area 23 will also vary with the size and volume of the product, the manufacturing conditions, product size and composition, and use environment. For example, a rectangular section 22 for holding a capsule (elongated) or tablet (round) may be in a range of 2 inches in length and 2 inches in width, with a cavity size 16 ranging from 1 inch in length and 1 inch in width, wherein the corner (triangular) tab 18 may comprise an area defined by three side edges, each edge being in a range of 8-15 mm (millimeters) in length.
[0083] The dimensions of the notched line 17, and the severed and unsevered portions thereof, will vary based on materials, areas and thicknesses of the various components. For example, for a base substrate of polyester of 1-11 mils thickness, the length of each of the severed portions 17S may be in a range from 1.5 to 4 mm in length, preferably 1.75 to 3.75 mm in length, and more preferably 2.5 to 3.5 mm in length. The unsevered portions 17U are preferably shorter in length (e.g., 0.8 to 2 mm in length). The notched line 17 preferably comprises 40 to 90% severed portions (as a ratio of total length of the severed portions to total length of the notched line), preferably 60 to 90%, and more preferably in a range of 70 to 85% severed portions.
[0084] These and other embodiments of the present invention will be apparent to the skilled person and are intended to be included within the scope of the claimed invention.