MOLDING DIE AND PLATE-SHAPED OPTICAL COMPONENT FABRICATED USING SAME, AND METHOD FOR MANUFACTURING SAME
20180194038 ยท 2018-07-12
Assignee
Inventors
Cpc classification
G02B2027/013
PHYSICS
B60K2360/66
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0025
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/30
PERFORMING OPERATIONS; TRANSPORTING
B60K35/60
PERFORMING OPERATIONS; TRANSPORTING
B29L2011/00
PERFORMING OPERATIONS; TRANSPORTING
B29C45/37
PERFORMING OPERATIONS; TRANSPORTING
B29C33/3842
PERFORMING OPERATIONS; TRANSPORTING
B29C33/005
PERFORMING OPERATIONS; TRANSPORTING
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
B29C33/42
PERFORMING OPERATIONS; TRANSPORTING
B60K2360/92
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C33/42
PERFORMING OPERATIONS; TRANSPORTING
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An aspect of a mold is for forming therein a cavity for producing a plate-like optical component. The mold includes a stationary mold half, and a movable mold half which forms the cavity in cooperation with the stationary mold half. The stationary mold half includes a first surface mold member for forming a first surface which is one of obverse and reverse surfaces of the plate-like optical component, and a first peripheral mold member for connecting a cavity-side surface of the movable mold half and a cavity-side surface of the first surface mold member. The first peripheral mold member inclines or curves to cause a dimension of the cavity in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the first surface.
Claims
1. A mold for forming therein a cavity for producing a plate-like optical component, comprising: a stationary mold half; and a movable mold half clamped with respect to the stationary mold half through respective parting surfaces thereof to form the cavity in cooperation with the stationary mold half, wherein the stationary mold half includes: a first surface mold member that forms a first surface that is one of obverse and reverse surfaces of the plate-like optical component; and a first peripheral mold member that connects a surface of the movable mold half on a side of the cavity and a surface of the first surface mold member on a side of the cavity, wherein the first peripheral mold member is inclined or curved to cause a dimension of the cavity in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the first surface.
2. The mold according to claim 1, wherein the movable mold half includes: a second surface mold member that forms a second surface lying in spaced-apart relation to the first surface; and a second peripheral mold member that connects a surface of the stationary mold half on a side of the cavity and a surface of the second surface mold member on a side of the cavity, wherein the second peripheral mold member is inclined or curved to cause a dimension of the cavity in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface.
3. The mold according to claim 1, wherein a ratio (W/L) of a width dimension W of the first peripheral mold member to a maximum length dimension L of the stationary mold half in a rightward-leftward direction thereof is 0.04 or less, in a plan view of the stationary mold half as viewed from a side of the cavity.
4. The mold according to claim 2, wherein the parting surfaces are located on a side of the first surface mold member with respect to an intermediate position between the surface of the first surface mold member on a side of the cavity and the surface of the second surface mold member on a side of the cavity.
5. The mold according to claim 1, wherein the surface of the first surface mold member on a side of the cavity protrudes toward the cavity with respect to a surface of the first peripheral mold member on a side of the cavity.
6. The mold according to claim 1, wherein a width dimension W of the first peripheral mold member on a side of the cavity, in a plan view of the stationary mold half as viewed from the side of the cavity, is 0.2 mm or more.
7. A plate-like optical component produced by filling molten resin in a cavity formed by clamping a stationary mold half and a movable mold half together, and curing the molten resin, the plate-like optical component comprising: a first surface that is one of obverse and reverse surfaces of the plate-like optical component; a second surface that lies in spaced-apart and is opposed relation to the first surface; a lateral face that connects the first surface and the second surface together; and a parting line that is formed on the lateral face by respective contact surfaces of the stationary mold half and the movable mold half, wherein a part of the lateral face that connects between the parting line and an outer periphery of the first surface is a first peripheral portion that is inclined or curved to cause a dimension of the plate-like optical component in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the first surface.
8. The plate-like optical component according to claim 7, wherein a remaining part of the lateral face that connects between the parting line and an outer periphery of the second surface is a second peripheral portion that is inclined or curved to cause a dimension of the plate-like optical component in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface.
9. The plate-like optical component according to claim 7, wherein a ratio (W/L) of a width dimension W of the first peripheral portion to a maximum length dimension L of the plate-like optical component in a rightward-leftward direction thereof is 0.04 or less, in a plan view as viewed from the side of the first surface.
10. The plate-like optical component according to claim 7, wherein the parting line is located on the lateral face at a position on the side of the first surface with respect to an intermediate position between the first surface and the second surface.
11. The plate-like optical component according to claim 7, wherein the first peripheral portion protrudes with respect to the first surface.
12. The plate-like optical component according to claim 7, wherein a width dimension of the first peripheral portion in a plan view as viewed from the side of the first surface is 0.2 mm or more.
13. A plate-like optical component production method comprising: clamping a stationary mold half and a movable mold half together to form a cavity between the stationary mold half and the movable mold half; filling molten resin in the cavity and curing the molten resin to form a plate-like optical component; separating the movable mold half from the stationary mold half together with the plate-like optical component; and detaching the plate-like optical component from the movable mold half, wherein the movable mold half includes: a second surface mold member that forms a second surface of the plate-like optical component; and a second peripheral mold member that connects a surface of the stationary mold half on a side of the cavity and a surface of the second surface mold member on a side of the cavity, wherein the second peripheral mold member is inclined or curved to cause a dimension of the cavity in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface, and wherein the detaching of the plate-like optical component includes causing the second surface mold member of the movable mold half to relatively protrude with respect to the second peripheral mold member of the movable mold half.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
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DETAILED DESCRIPTION OF EMBODIMENTS
[0029] Based on the drawings, an embodiment of the present invention will now be described. It should be noted that elements or components assigned with the same reference sign in the figures mean that they are identical, and therefore duplicated description thereof will be omitted. Further, each figure is schematically shown only for illustrative purposes, and the size and dimensional ratio of a plate-like optical component in each figure can be different from an actual size and dimensional ratio thereof.
Embodiment 1
[0030]
[0031] As regards an installation position of an HUD combiner within an automotive vehicle, the plate-like optical component 3 is mounted on an instrument panel (not depicted) on the side of a driver seat of the vehicle, in such a manner that an image display portion thereof is exposed outside of the instrument panel. By setting the mounting position in this manner, a driver can visually check information displayed on the combiner while driving.
[0032] (Plate-Like Optical Component)
[0033] As depicted in
[0034] The plate-like optical component 3 according to this embodiment is produced by filling molten resin in a cavity formed by clamping a stationary mold half and a movable mold half together, and curing the molten resin. As depicted in
[0035] As depicted in
[0036] In
[0037] The plate-like optical component 3 according to this embodiment has an attaching portion 8 at a lower portion located below the first and second surfaces 4, 5, as depicted in
[0038] The parting line 11 on the first surface is formed by respective contact surfaces (parting surfaces 1e) of a first surface mold member 1b and a first peripheral mold member 1a composing a stationary mold half 1. The parting line 11 on the second surface is formed by respective contact surfaces (parting surfaces 2e) of a second surface mold member 2b and a second peripheral mold member 2a composing a movable mold half 2. The first peripheral mold member 1a, the first surface mold member 1b, the second peripheral mold member 2a and the second surface mold member 2b will be described in detail later.
[0039] As depicted in
[0040] As depicted in
[0041] As depicted in
[0042] As depicted in
[0043] The connection area between the first peripheral portion 6a and the first surface 4 is not limited to the configuration having a step as depicted in
[0044] (Mold)
[0045] As a mold for producing the above plate-like optical component, it is preferable to use a mold depicted in
[0046] As depicted in
[0047] As depicted in
[0048] As depicted in
[0049] As depicted in
[0050] The second peripheral mold member 2a is configured to connect a surface of the stationary mold half 1 on the side of the cavity 7 and a surface of the second surface mold member 2b on the side of the cavity 7. The second peripheral mold member 2a inclines or curves to cause a dimension of the cavity 7 in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface. The use of the movable mold half 2 having such a shape enables the end portion of the plate-like optical component to have a smooth surface when the plate-like optical component is extracted from the mold 10. This makes it possible to obtain a plate-like optical component having a suitable shape for use in a combiner, without subjecting the plate-like optical component to processing.
[0051] As depicted in
[0052] The second surface mold member 2b is movably fixed with respect to the second peripheral mold member 2a. Based on this fixing configuration, the plate-like optical component can be extracted from the movable mold half 2.
[0053] As depicted in
[0054] As depicted in
[0055] The surface of the first surface mold member 1b on the side of the cavity 7 protrudes toward the cavity 7 with respect to the surface of the first peripheral mold member 1a on the side of the cavity 7, as depicted in
[0056] The surface of the second peripheral mold member 2a on the side of the cavity 7 protrudes toward the cavity 7 with respect to the surface of the second surface mold member 2b on the side of the cavity 7, as depicted in
[0057] As depicted in
[0058] In the plan view of the stationary mold half 1 as viewed from the side of the cavity, the width dimension W of the first peripheral mold member 1a on the side of the cavity is preferably 0.2 mm or more, more preferably 0.3 mm or more, even more preferably 0.5 mm or more. By forming the first peripheral mold member 1a to have such a shape, it becomes possible to increase the rigidity of the end portion (first peripheral portion) of the plate-like optical component. This can make it less likely that chip or deformation occurs in the end portion of the plate-like optical component.
[0059] (Production Method for Plate-Like Optical Component)
[0060] A plate-like optical component production method using the above mold will be described.
[0061] In a production method for the plate-like optical component 3 according to this embodiment, first of all, as depicted in
[0062] By producing the plate-like optical component 3 using the above production method, the plate-like optical component 3 can be easily separated and detached, respectively, from the stationary mold half 1 and the movable mold half 2, so that it becomes possible to obtain the plate-like optical component 3 with good external appearance. In addition, the plate-like optical component 3 produced by this method is capable of suppressing light reflection at the end portion thereof and suppressing injury of a user due to the end portion of the plate-like optical component 3.
Modification of Embodiment 1
[0063]
Outline of Embodiment
[0064] According to an aspect, there is provided a mold for forming therein a cavity for producing a plate-like optical component. The mold includes: a stationary mold half; and a movable mold half which is clamped with respect to the stationary mold half through respective parting surfaces thereof to thereby form the cavity in cooperation with the stationary mold half, wherein the stationary mold half includes: a first surface mold member for forming a first surface which is one of obverse and reverse surfaces of the plate-like optical component; and a first peripheral mold member for connecting a cavity-side surface of the movable mold half and a cavity-side surface of the first surface mold member, wherein the first peripheral mold member inclines or curves to cause a dimension of the cavity in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the first surface.
[0065] According to the above configuration, when the plate-like optical component is extracted from the mold, a surface of the plate-like optical component connecting between the parting surface and the first surface thereof inclines or curves. The above configuration makes it possible to obtain a plate-like optical component whose end portion has a smooth shape, without subjecting the end portion of the plate-like optical component to processing. The end portion having a smooth shape makes it possible to suppress light reflection at the end portion and suppress injury of a user due to the end portion of the plate-like optical component.
[0066] In the above configuration, the movable mold half includes: a second surface mold member for forming a second surface lying in spaced-apart relation to the first surface; and a second peripheral mold member for connecting a surface of the stationary mold half on a side of the cavity and a surface of the second surface mold member on a side of the cavity, wherein the second peripheral mold member inclines or curves to cause a dimension of the cavity in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface.
[0067] According to the above configuration, when the plate-like optical component is extracted from the mold, a surface of the plate-like optical component connecting between the parting surface and the second surface thereof inclines or curves. The above configuration makes it possible to facilitate release of the plate-like optical component from the movable mold half, and obtain the plate-like optical component with good quality of external appearance.
[0068] In a plan view of the stationary mold half as viewed from a side of the cavity, a ratio (W/L) of a width dimension W of the first peripheral mold member to a maximum length dimension L of the stationary mold half in a rightward-leftward direction thereof is 0.04 or less. In a plate-like optical component produced using the stationary mold half having the above shape, the first peripheral portion formed by the first peripheral mold member has a relatively small width, so that it becomes possible to form the first peripheral portion such that it is less likely to be recognized from outside, and to obtain the plate-like optical component with excellent external appearance.
[0069] In the above configuration, the parting surfaces are located on a side of the first surface mold member with respect to an intermediate position between the surface of the first surface mold member on a side of the cavity and the surface of the second surface mold member on a side of the cavity. According to this configuration, it becomes possible to facilitate release of a plate-like optical component from the stationary mold half, and easily produce a plate-like optical component with good external appearance.
[0070] In the above configuration, the surface of the first surface mold member on a side of the cavity protrudes toward the cavity with respect to a surface of the first peripheral mold member on a side of the cavity. According to this configuration, the first peripheral portion formed by the first peripheral mold member protrudes with respect to the first surface formed by the first surface mold member, so that a thickness of the first peripheral portion of the plate-like optical component is partially increased. This makes it possible to increase the rigidity of the end portion (first peripheral portion) of the plate-like optical component.
[0071] In the above configuration, a width dimension W of the first peripheral mold member on a side of the cavity, in a plan view of the stationary mold half as viewed from the side of the cavity, is 0.2 mm or more.
[0072] According to this configuration, the width of the first peripheral portion to be formed by the first peripheral mold member can be sufficiently ensured, so that it becomes possible to increase the rigidity of the end portion (first peripheral portion) of the plate-like optical component, thereby providing an advantage that chip or deformation is less likely to occur in the end portion of the plate-like optical component.
[0073] According to an aspect, there is provided a plate-like optical component produced by filling molten resin in a cavity formed by clamping a stationary mold half and a movable mold half together, and curing the molten resin. The plate-like optical component has: a first surface which is one of obverse and reverse surfaces of the plate-like optical component; a second surface which lies in spaced-apart relation to the first surface; a lateral face which connects the first surface and the second surface together; and a parting line which is formed on the lateral face by respective contact surfaces of the stationary mold half and the movable mold half, wherein a part of the lateral face which connects between the parting line and an outer periphery of the first surface is a first peripheral portion inclining or curving to cause a dimension of the plate-like optical component in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the first surface. In addition, a remaining part of the lateral face which connects between the parting line and an outer periphery of the second surface is a second peripheral portion inclining or curving to cause a dimension of the plate-like optical component in a direction of a plane approximately parallel to the second surface to become gradually smaller as being closer to the second surface.
[0074] The first peripheral portion and the second peripheral portion of the plate-like optical component incline or curve in the above manner, so that the end portion of the plate-like optical component has a smooth surface. This makes it possible to suppress light reflection at the end portion and suppress injury of a user due to the end portion of the plate-like optical component.
[0075] In the above configuration, in a plan view as viewed from the side of the first surface, a ratio (W/L) of a width dimension W of the first peripheral portion to a maximum length dimension L of the plate-like optical component in a rightward-leftward direction thereof is 0.04 or less.
[0076] By using the above plate-like optical component, the first peripheral portion becomes less likely to be recognized from outside, thereby providing excellent external appearance of the plate-like optical component.
[0077] In the above configuration, the parting line is located on the lateral face at a position on the side of the first surface with respect to an intermediate position between the first surface and the second surface. According to this configuration, it becomes possible to facilitate release of the plate-like optical component from the stationary mold half and thus obtain the plate-like optical component with good external appearance.
[0078] In the above configuration, the first peripheral portion protrudes with respect to the first surface. Preferably, a width dimension of the first peripheral portion in a plan view as viewed from the side of the first surface is 0.2 mm or more.
[0079] According to the above configuration, the thickness of the first peripheral portion of the plate-like optical component can be increased, and the rigidity of the end portion (first peripheral portion) of the plate-like optical component can be increased, which provides an advantage that chip or deformation is less likely to occur in the plate-like optical component.
[0080] According to an aspect, there is provided a plate-like optical component production method which includes the steps of: clamping a stationary mold half and a movable mold half together to form a cavity between the stationary mold half and the movable mold half; filling molten resin in the cavity and curing the molten resin to form a plate-like optical component; separating the movable mold half from the stationary mold half together with the plate-like optical component; and detaching the plate-like optical component from the movable mold half, wherein the movable mold half includes: a second surface mold member for forming a second surface of the plate-like optical component; and a second peripheral mold member for connecting a surface of the stationary mold half on a side of the cavity and a surface of the second surface mold member on a side of the cavity, wherein the second peripheral mold member inclines or curves to cause a dimension of the cavity in a direction of a plane approximately parallel to the first surface to become gradually smaller as being closer to the second surface, and wherein the step of detaching the plate-like optical component includes a step of causing the second surface mold member of the movable mold half to relatively protrude with respect to the second peripheral mold member of the movable mold half.
[0081] Producing the plate-like optical component by the above production method makes it possible to easily detach the plate-like optical component from the stationary mold half and the movable mold half, so that it becomes possible to obtain a plate-like optical component with good external appearance. In addition, the plate-like optical component produced in this way is capable of suppressing light reflection at the end portion thereof and suppressing injury of a user due to the end portion of the plate-like optical component.
EXAMPLES
Example 1
[0082] A stationary mold half 1 having a rightward-leftward directional maximum length L of 50 mm and an upward-downward directional length of 25 mm, and a corresponding movable mold half 2 were clamped through respective parting surfaces thereof to form a cavity 7 between the stationary mold half 1 and the movable mold half 2, as depicted in
[0083] Subsequently, the movable mold half 2 was moved with respect to the stationary mold half 1 to separate the plate-like optical component 3 from the stationary mold half 1, as depicted in
Examples 2 to 7
[0084] Except that a shape of the mold was changed with respect to Example 1 to enable the width dimension W of the first peripheral portion to become 0.2 mm, 0.5 mm, 1 mm, 2 mm, 5 mm and 10 mm, respective plate-like optical components in Examples 2 to 7 were produced in the same manner as that in Example 1.
[0085] (Production Evaluation)
[0086] As a result of producing plate-like optical components using the molds in Examples 1 to 7, it was verified that a plate-like optical component whose end portion has a smooth shape can be produced in a simple manner, i.e., the advantageous effect of the present invention was demonstrated. Each of the plate-like optical components produced in the above manner had a smooth end portion. Thus, it is considered that light reflection due to the end portion is less likely to occur, and a risk of injury of a user due to the end portion is also small.
[0087] (Visual Evaluation)
[0088] Each of the plate-like optical components produced in Examples 1 to 7 was observed from a position opposed to the first surface thereof and spaced apart therefrom by 50 cm to evaluate whether or not the presence of the first peripheral portion can be visually identified. A result of the evaluation is presented in the field Visual Evaluation in the following Table 1. In the visual evaluation, as the presence of the first peripheral portion becomes harder to be recognized, external appearance of the plate-like optical component is evaluated to be better.
[0089] (Rigidity Evaluation)
[0090] A finger pressure was applied to the first peripheral portion of each of the plate-like optical components produced in Examples 1 to 7, and a change in shape of the first peripheral portion after the finger pressure was microscopically observed. A result of the observation is presented in the field Rigidity Evaluation in the following Table 1. In the rigidity evaluation, as deformation of the first peripheral portion observed is smaller, the rigidity of the plate-like optical component is evaluated to be better.
TABLE-US-00001 TABLE 1 Width of First Peripheral Portion Rigidity W (mm) W/L Visual Evaluation Evaluation Example 1 0.1 0.002 Unrecognizable Almost no change Example 2 0.2 0.004 Unrecognizable No change Example 3 0.5 0.01 Unrecognizable No change Example 4 1 0.02 Almost No change unrecognizable Example 5 2 0.04 Almost No change unrecognizable Example 6 5 0.1 Slightly recognizable No change Example 7 10 0.2 Slightly recognizable No change
[0091] From the result of Visual Evaluation in Table 1, it was proven that, when the ratio (W/L) of the width dimension W of the first peripheral portion to the rightward-leftward directional maximum length dimension L of the plate-like optical component is 0.04 or less, it is possible to enable the first peripheral portion to become almost unable to be visually recognized, thereby providing good external appearance of the plate-like optical component. Further, from the result of Rigidity Evaluation in Table 1, it was proven that, when the width dimension W of the first peripheral portion is 0.2 mm or more, deformation of the first peripheral portion is less likely to occur even after pressing the first peripheral portion.
[0092] This application is based on Japanese Patent Application Serial No. 2015-143920 filed in Japan Patent Office on Jul. 21, 2015, the contents of which are incorporated herein by reference.
[0093] While the present invention has been described appropriately and fully by way of the embodiment as above with reference to the drawings in order to express the present invention, it should be appreciated that anyone skilled in the art can readily change and/or modify the embodiment described above. It is therefore understood that a changed embodiment or a modified embodiment implemented by anyone skilled in the art is enclosed within the scope of the appended claims unless the changed embodiment or the modified embodiment is of a level that deviates from the scope of the appended claims.
INDUSTRIAL APPLICABILITY
[0094] The present invention provides a mold capable of simply producing a plate-like optical component having an end portion with a smooth shape, a plate-like optical component produced using the mold, and a production method for the plate-like optical component.