Switch device and method for manufacturing the same
The integration of a rubber-elastic soft portion between the skin and switch actuation member in push-type switch devices addresses wear and appearance issues by dispersing stretch and reducing seams, enhancing durability and manufacturing efficiency.
Patent Information
- Application Number
- JP2024013252
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-31
- Publication Date
- 2025-08-13
- Estimated Expiration
- 2044-01-31
AI Technical Summary
Push-type switch devices experience wear and wrinkles at the pushed-in portion of the cover material due to tension and local stretching when the switch actuation member is repeatedly pressed.
A switch device with a soft portion having rubber elasticity is provided between the skin material and the switch actuation member, allowing the switch actuation member to be pushed in by bending the soft portion, which reduces localized stretching of the skin material.
The soft portion's elasticity disperses the stretch generated in the skin material, preventing wear and improving the appearance of the switch device by eliminating seams and unevenness, while also reducing the number of parts and assembly steps through two-color molding.
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Figure 2025118121000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a switch device and a method for manufacturing the same. [Background technology]
[0002] 2. Description of the Related Art Conventionally, push-type switch devices have been known as switch devices for controlling the operations of various devices.
[0003] A push-type switch device includes a hard base material, a switch actuation member fitted into an opening formed in the base material, and a skin material stretched over the surface of the base material so as to cover the surface of the switch actuation member. This switch device is configured so that the switch actuation member is pressed through the skin material to the back side of the base material, thereby performing a switch operation (see, for example, Patent Document 1). [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Publication No. 2014-212053 Summary of the Invention [Problem to be solved by the invention]
[0005] In the above-described push-type switch device, when the switch actuation member is pushed through the cover material, the cover material is pressed against the periphery of the opening in the base material, causing tension and local stretching of the cover material starting from the periphery of the opening in the base material. Therefore, if the switch device is pushed in repeatedly, the pushed-in portion of the cover material will wear out and wrinkles will occur.
[0006] An object of the present disclosure is to prevent the pushed-in portion of the cover material from becoming worn in a push-type switch device. [Means for solving the problem]
[0007] In order to achieve the above object, in the present disclosure, a soft portion having rubber elasticity is provided between the skin material and the switch actuation member, so that the switch actuation member can be pushed in by bending the soft portion.
[0008] Specifically, a first aspect of the present disclosure is directed to a switch device. The switch device of the first aspect includes a substrate having a hard portion with an opening formed therein, a skin provided on the front side of the substrate so as to cover the opening, and a switch actuation member disposed on the back side of the substrate at a position corresponding to the opening. The switch device is configured so that the switch actuation member can be pushed in by applying a pressing force to the switch actuation member when the skin is pushed in. The switch actuation member and the periphery of the opening are spaced apart from each other in a direction perpendicular to the pushing direction of the switch actuation member. A soft portion, which is more flexible than the hard portion and has rubber elasticity, is provided between the skin and the switch actuation member. The soft portion is supported by the hard portion and located within or on the front side of the opening, and has an expansion margin that forms a portion corresponding to the portion between the switch actuation member and the periphery of the opening.
[0009] A second aspect of the present disclosure is the switch device of the first aspect, wherein the skin material and the soft portion are bonded to each other at a portion corresponding to the opening.
[0010] A third aspect of the present disclosure is the switch device according to the first or second aspect, wherein the soft portion is provided so as to cover the opening on an outer side of the hard portion.
[0011] A fourth aspect of the present disclosure is the switch device of the first or second aspect, wherein the soft portion is provided so as to close the opening of the hard portion, and a surface of the soft portion and a surface of the hard portion are flush with each other.
[0012] A fifth aspect of the present disclosure is the switch device according to the first or second aspect, wherein the soft portion is integrally molded with the hard portion to form the base material.
[0013] A sixth aspect of the present disclosure is directed to a method for manufacturing the switch device of the first aspect. In the method for manufacturing the switch device of the sixth aspect, a base material having a flat surface formed by integrally molding the hard portion and the soft portion is prepared, and the skin material is laminated on the surface of the base material using vacuum pressure forming or pressure forming. [Effects of the Invention]
[0014] According to the first aspect, the switch actuation member and the periphery of the opening in the substrate are spaced apart from each other in a direction perpendicular to the pushing direction of the switch actuation member. A soft portion having rubber elasticity is provided between the skin material and the switch actuation member. The soft portion is supported by the substrate and located within the opening or on the front side of the opening, and has an expansion margin that forms a portion corresponding to the portion between the switch actuation member and the periphery of the opening in the substrate. When the switch actuation member is pushed through the skin material, the soft portion is bent as the expansion margin stretches. At this time, the bending of the soft portion is relatively gradual, so localized stretching of the skin material is reduced. This prevents the pressed portion of the skin material from becoming worn.
[0015] According to the second aspect, the skin and the soft portion are bonded to each other at a portion corresponding to the opening in the base material. When the soft portion is bent by pressing the switch actuation member, the skin bends in the same manner in accordance with the deformation of the soft portion. This allows the stretch generated in the skin to be dispersed around the pressed portion. This is advantageous in preventing the pressed portion of the skin from becoming worn.
[0016] According to the third aspect, the opening in the substrate is covered by a soft portion provided on the front side of the hard portion. For example, if a configuration is adopted in which the soft portion is provided only within the opening in the substrate and the periphery of the opening in the substrate is applied to the skin material, a seam formed at the boundary between the periphery of the opening in the substrate and the soft portion will appear on the front side, and this seam will be reflected as a part line in the skin material, which may detract from the appearance of the switch device. In contrast, if the opening in the substrate is covered by the soft portion, the seam between the hard portion and the soft portion will not appear on the front side, and no part line will appear in the skin material, improving the appearance of the switch device.
[0017] According to the fourth aspect, the opening of the hard portion is closed by the soft portion. The surfaces of the soft portion and the hard portion are flush with each other. This prevents a step from being formed at the boundary between the periphery of the opening of the base material and the soft portion. This makes it difficult for a part line corresponding to the seam between the hard portion and the soft portion to be reflected in the skin material. This is advantageous for improving the appearance of the switch device.
[0018] According to the fifth aspect, the base material includes a hard portion and a soft portion. This base material can be molded by two-color molding. By using such a two-color molded product as the base material, the number of parts and assembly steps required to manufacture the switch device can be reduced.
[0019] According to a sixth aspect, a base material having a flat surface is prepared by integrally molding a hard portion and a soft portion, and a skin material is laminated on the surface of the base material. Vacuum pressure forming or pressure forming is used in the step of laminating the skin material. Vacuum pressure forming or pressure forming allows the skin material to be laminated on the surface of the base material with good conformability. This makes it possible to suppress unevenness on the surface of the skin material. This is advantageous for manufacturing a switch device with a good appearance. [Brief explanation of the drawings]
[0020] [Figure 1] FIG. 1 is a perspective view of a center console incorporating a switch device according to a first embodiment, as viewed obliquely from the left side of a vehicle body. [Figure 2]FIG. 2 is a cross-sectional view taken along line II-II in FIG. 1, illustrating the structure of the switch device of the first embodiment. [Figure 3] FIG. 3 is a cross-sectional view illustrating a state when a pushing operation is performed on the switch device of the first embodiment. [Figure 4] FIG. 4 is a cross-sectional view of a vacuum and pressure forming apparatus used to manufacture the switch device. [Figure 5] FIG. 5 is a cross-sectional view of the vacuum and pressure forming apparatus in the heating and vacuum processes. [Figure 6] FIG. 6 is a cross-sectional view of the vacuum and pressure forming apparatus in the skin pressing step. [Figure 7] FIG. 7 is a cross-sectional view of the vacuum and pressure forming apparatus in the pressurizing step. [Figure 8] FIG. 8 is a cross-sectional view showing an assembly process in the manufacture of the switch device of the first embodiment. [Figure 9] FIG. 9 is a cross-sectional view corresponding to FIG. 2 illustrating the structure of the switch device of the second embodiment. [Figure 10] FIG. 10 is a cross-sectional view illustrating a state when a pushing operation is performed on the switch device of the second embodiment. [Figure 11] FIG. 11 is a cross-sectional view equivalent to FIG. 2 illustrating the structure of the switch device of the third embodiment. [Figure 12] FIG. 12 is a cross-sectional view equivalent to FIG. 2 illustrating the structure of the switch device according to the fourth embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0021] Exemplary embodiments will be described in detail below with reference to the drawings. In the following embodiments, a switch device according to the present disclosure will be described by taking as an example a case where the switch device is applied to a center console. Note that the drawings are intended to conceptually explain the technology of the present disclosure. Therefore, in the drawings, dimensions, ratios, or numbers may be exaggerated or simplified to facilitate understanding of the technology of the present disclosure.
[0022] First Embodiment The switch device 10 of this embodiment 1 is incorporated into a center console 1 shown in FIG. 1. The center console 1 is installed in the center of the front part of the vehicle floor located between the driver's seat and the passenger seat of the automobile. The center console 1 includes a shift operation unit 3, a box unit 5, and a console panel 7. The console panel 7 is an example of an interior part of the vehicle.
[0023] The shift operation unit 3 is used to operate the transmission installed in the automobile. The shift operation unit 3 is provided near the front end of the center console 1. The shift operation unit 3 includes a shift lever and an indicator that displays the operating position of the shift lever.
[0024] The box portion 5 is a storage compartment with a storage space inside. The box portion 5 is provided at the rear of the center console 1. The top of the box portion 5 is configured to be opened and closed by a lid 6. The lid 6 can be used as an armrest when the box portion 5 is closed.
[0025] The console panel 7 constitutes the exterior portion of the center console 1. The console panel 7 has a U-shaped cross section that is open downward. The shift operation unit 3 is assembled to the console panel 7. The console panel 7 includes a console panel main body 8 and a cover panel 9.
[0026] The console panel main body 8 is the main component of the console panel 7. An insertion opening 8a is provided on the top surface of the console panel main body 8. The cover panel 9 is inserted into the insertion opening 8a of the console panel main body 8 and forms the top surface of the console panel 7.
[0027] -Switch device configuration- The switch device 10 is configured to include a part of the cover panel 9. The switch device 10 is provided between the shift operation unit 3 and the box unit 5 in the center console 1. A light-transmitting display unit 11 is provided in the portion of the cover panel 9 that constitutes the switch device 10. The light-transmitting display unit 11 is a part that lights up and displays an icon 13 (shown as a circle in FIG. 1 for convenience), and constitutes an operation unit 15 of the switch device 10. The operation unit 15 accepts a pressing operation on the switch device 10 by the user.
[0028] The operation unit 15 is configured as part of the cover panel 9, and its position can be confirmed by the display of the icon 13. That is, the switch device 10 is operated by pressing the part of the translucent display unit 11 where the icon 13 is displayed. The function of the switch device 10 is, for example, to switch the operating state of the in-vehicle system indicated by the icon 13. When the translucent display unit 11 does not light up the icon 13, its appearance is the same as the rest of the console panel 7 and it is not visible.
[0029] 2, the switch device 10 includes a base material 20, a cover material 40, and a functional module 50 including a switch component 55 and a switch actuation member 63. The base material 20 and the cover material 40 form a cover panel 9. The switch device 10 is configured so that the switch actuation member 63 can be pressed by applying a pressing force to the switch actuation member 63 when the cover material 40 is pressed, and the switch component 55 can be pressed via the switch actuation member 63.
[0030] <Base material> The base material 20 is a member that forms the base of the cover panel 9, and has a hard portion 21 and a soft portion 30. In this example, the base material 20 is formed by integrally molding the hard portion 21 and the soft portion 30 using two-color molding. The hard portion 21 is a portion made of hard resin. The hard portion 21 is a component that forms the base of the base material 20, and has light-blocking properties. In this specification, "light-blocking properties" refers to an opaque property that blocks visible light. The hard portion 21 is composed of a front panel portion 23 and a side panel portion 25.
[0031] The front panel portion 23 is a plate-like portion located on the front side of the base material 20, and constitutes the upper plate portion of the cover panel 9. The side panel portions 25 are plate-like portions that extend from at least both end edges in the vehicle width direction of the periphery of the front panel portion 23 to the back side of the base material 20, and are inserted into the fitting opening 8a of the console panel main body 8. A first opening 27 is formed in the front panel portion 23 so as to include a portion corresponding to the operating unit 15 on the inside.
[0032] A plurality of bosses 29 (only two are shown in FIG. 2 ) are integrally formed on the back surface of the front panel portion 23. Each boss 29 is provided around the first opening 27 and protrudes to the back surface of the base material 20. The plurality of bosses 29 are used as fixing portions for the support panel 51 to the base material 20. The base material 20 is further provided with tabs and the like (not shown) that are used for assembling to the console panel main body 8.
[0033] The hard portion 21 is made of synthetic resin, such as polypropylene (PP), acrylonitrile butadiene styrene (ABS) resin, polycarbonate (PC), or a composite of polycarbonate (PC) and acrylonitrile butadiene styrene (ABS) resin (PA-ABS).
[0034] The soft portion 30 is a plate-like portion provided on the surface of the front plate portion 23 of the hard portion 21, and is molded integrally with the hard portion 21 to form the base material 20. The soft portion 30 is supported by the hard portion 21 and is located on the front side of the first opening 27, and is provided so as to cover the first opening 27 with the front side of the hard portion 21. The soft portion 30 in this example is not provided inside the first opening 27. The soft portion 30 is located between the skin material 40 and the switch actuation member 63. The surface of the base material 20 is formed into a flat plane by the soft portion 30.
[0035] The soft portion 30 is softer than the hard portion 21 and has rubber elasticity. The soft portion 30 has a relatively low hardness. The Type A hardness of the soft portion 30 is, for example, about 1 to 90, and more preferably about 10 to 15. The "Type A hardness" here refers to the hardness value measured using a Type A durometer specified in JIS K 6253 for general medium-hardness rubber materials. The thickness of the soft portion 30 is, for example, about 1 mm to 10 mm.
[0036] The soft portion 30 is bonded to the cover material 40 at least in a portion corresponding to the first opening 27 of the hard portion 21. An adhesive or a pressure-sensitive adhesive is used to bond the cover material 40 to the soft portion 30. In this example, the soft portion 30 is bonded to the cover material 40 over the entire surface. The soft portion 30 has an expansion / contraction allowance 31 to allow expansion / contraction. The expansion / contraction allowance 31 constitutes a portion corresponding to the portion between the switch actuation member 63 and the periphery of the first opening 27 of the base material 20. The expansion / contraction allowance 31 is a portion of the soft portion 30 that forms the bottom surface of a groove-shaped portion 33, which will be described later. The expansion / contraction allowance 31 contributes to ensuring the amount (stroke amount) that the operating unit 15 can be pressed.
[0037] The soft portion 30 of this example further has translucency. In this specification, "translucency" refers to the property of transmitting visible light. The light transmittance in the thickness direction of the soft portion 30 is 3% or more (for example, 3% to 60%). The "light transmittance" in this specification is measured in accordance with JIS K 7361 using a commercially available transmittance meter. For example, a spectroradiometer SR-LEDW manufactured by Topcon Corporation is used as the transmittance meter.
[0038] The soft portion 30 is made of an elastomer. Thermoplastic elastomers such as styrene-based (SBC), olefin-based (TPO), polyvinyl chloride-based (TPVC), urethane-based (PU), ester-based (TPEE), and amide-based (TPAE) are used as materials for the soft portion 30. Thermosetting elastomers such as silicone rubber, fluororubber, and urethane rubber may also be used as materials for the soft portion 30.
[0039] <Skin material> The skin material 40 is a sheet-like material that forms the surface of the cover panel 9. The skin material 40 is provided on the front side of the base material 20 so as to cover the first opening 27 together with the soft portion 30. The skin material 40 covers the surface of the base material 20 (the surface of the soft portion 30 in this example) and forms the design surface of the cover panel 9. The outer peripheral portion of the skin material 40 covers the side plate portion 25 of the base material 20 and is wrapped around the back side of the base material 20, and is fixed to the base material 20 using a bonding material such as double-sided tape or adhesive.
[0040] The skin material 40 has both stretchability and flexibility. The thickness of the skin material 40 is, for example, about 0.2 mm to 3 mm. The skin material 40 has a light-transmitting layer 41 and a light-shielding layer 43. The light-transmitting layer 41 is a layer that forms the base of the skin material 40. The skin material 40 is formed by, for example, calendar molding, extrusion molding, slush molding, injection molding, mold skin molding, or spray skin molding.
[0041] The light-transmitting layer 41 is made of a synthetic resin containing a pigment. Examples of the material for the light-transmitting layer 41 include polyvinyl chloride (PVC), thermoplastic olefin (TPO), and thermoplastic urethane (TPU). The material for the light-transmitting layer 41 is selected from materials suitable for the molding method to be used.
[0042] The thickness of the light-transmitting layer 41 is approximately 0.1 mm to 2.5 mm. The light-transmitting layer 41 contains a pigment such as black, but the content is relatively small, so it is light-transmitting. The light-shielding layer 43 of this example contains only black pigment as a pigment and exhibits a gray-tone smoke color. The light transmittance of the light-transmitting layer 41 in the thickness direction is, for example, approximately 3% to 60%.
[0043] The light-shielding layer 43 is provided over the entire back surface of the light-transmitting layer 41. The light-shielding layer 43 has light-shielding properties and is a layer that blocks light L that attempts to pass through from the back side to the front side of the cover panel 9. The light-shielding layer 43 is made of a coating film containing a black pigment. The thickness of the light-shielding layer 43 is, for example, about 5 μm to 50 μm, and more preferably 8 μm to 10 μm. The light transmittance of the light-shielding layer 43 in the thickness direction is, for example, 0%.
[0044] Light-transmitting holes 45 that transmit light L are formed in the portions of the light-shielding layer 43 that form the light-transmitting display sections 11. The light-transmitting holes 45 are formed in a predetermined pattern shape that provides lighting display, in the same shape as the icons 13 in this example. The light-transmitting holes 45 are formed by irradiating with laser light. When the light-shielding layer 43 is formed by screen printing, the light-transmitting holes 45 may be provided by using masking or may be included in the printing pattern.
[0045] <Function module> The functional module 50 is a mechanism that realizes the functions of lighting and switching for displaying an illumination. In addition to a switch component 55 and a switch actuation member 63, the functional module 50 includes a support panel 51, an LED (Light Emitting Diode) 57, and a compression coil spring 59. The LED 57 is an example of a light source.
[0046] The support panel 51 is disposed at a position corresponding to the first opening 27 on the back side of the hard portion 21 of the base material 20. The support panel 51 is fixed to a plurality of bosses 29 provided on the base material 20 using tapping screws 54. The support panel 51 is positioned at a distance from the front panel portion 23 of the hard portion 21. A light-shielding wall 53 is provided on the support panel 51.
[0047] The light-shielding wall 53 protrudes from the front side of the support panel 51 and is formed in a frame shape so as to correspond to the outer periphery of the operating unit 15. A plurality of claw pieces 53a (only one is shown in FIG. 2 ) are provided at the tip of the light-shielding wall 53. The plurality of claw pieces 53a are positioned at intervals in the circumferential direction of the light-shielding wall 53 and each protrudes toward the inner periphery of the light-shielding wall 53. Each claw piece 53a functions as a retaining portion that prevents the switch operating member 63 from coming out from inside the light-shielding wall 53.
[0048] The switch component 55 and the LED 57 are mounted on the same substrate 61, and the substrate 61 is fixed to the inner side of the light-shielding wall 53 of the support panel 51. The switch component 55 is disposed near the light-shielding wall 53 in the space enclosed by the light-shielding wall 53. The switch component 55 is, for example, a tactile switch, and has a pressing surface that is pressed. The LED 57 is disposed at a position corresponding to the center of the space enclosed by the light-shielding wall 53. The LED 57 emits light L (strictly speaking, visible light) toward the translucent display unit 11.
[0049] The switch actuation member 63 is provided inside the light-shielding wall 53 of the support panel 51 so as to be able to advance and retreat, and is disposed at a position corresponding to the first opening 27 on the back side of the base material 20. The switch actuation member 63 is formed in a cylindrical shape with a bottom that corresponds to the inner peripheral shape of the light-shielding wall 53. The switch actuation member 63 is configured to include a receiving plate portion 65 and a peripheral wall portion 67. The receiving plate portion 65 forms a flat surface that receives external force when the switch device 10 is pressed in. The peripheral wall portion 67 is a portion that extends in a cylindrical shape from the periphery of the receiving plate portion 65 to the back side. The outer peripheral surface of the peripheral wall portion 67 faces the inner peripheral surface of the light-shielding wall 53 and is in slidable contact with the inner peripheral surface of the light-shielding wall 53.
[0050] A switch contact portion 69 is provided integrally with the rear end surface of the peripheral wall portion 67 of the switch actuating member 63. The switch contact portion 69 protrudes from the rear side of the switch actuating member 63 and faces the pressing surface of the switch component 55. The rear end surface of the switch contact portion 69 contacts the pressing surface of the switch component 55 or is close to the pressing surface with a small gap between it and the pressing surface. A spring insertion portion 71 is also provided integrally with the rear end surface of the peripheral wall portion of the switch actuating member 63. The spring insertion portion 71 protrudes from the rear side of the switch actuating member 63 and faces the support panel 51.
[0051] A compression coil spring 59 is inserted into the spring insertion portion 71. The compression coil spring 59 is interposed between the peripheral wall portion 67 of the switch actuating member 63 and the support panel 51, and constantly applies a biasing force that presses the switch actuating member 63 toward the front side. As a result, the switch actuating member 63 is maintained in a state in which the receiving plate portion 65 is placed within the first opening 27 of the base material 20 and abuts against the rear surface of the soft portion 30, and a gap greater than the depression depth (stroke) of the switch actuating member 63 is formed between the switch actuating member 63 and the support panel 51 when the switch device 10 is not being pressed.
[0052] The switch actuation member 63 is a hard member made of synthetic resin and has light-transmitting properties. Examples of materials for the switch actuation member 63 include polycarbonate (PC), polymethyl methacrylate (PMMA), polypropylene (PP), and acrylonitrile butadiene styrene (ABS). The switch actuation member 63 is formed by injection molding.
[0053] The switch actuating member 63 and the periphery of the first opening 27 of the base material 20 are spaced apart from each other in a direction perpendicular to the pushing direction of the switch actuating member 63, i.e., in a direction along the surface of the cover panel 9. A groove-like portion 33 is provided on the outer periphery of the receiving plate portion 65 of the switch actuating member 63, with the outer periphery of the receiving plate portion 65 and the inner periphery of the first opening 27 of the base material 20 as its side surfaces and the back surface of the soft portion 30 as its bottom surface. The distance D (width of the groove-like portion 33) between the outer periphery of the receiving plate portion 65 of the switch actuating member 63 and the inner periphery of the first opening 27 of the base material 20, i.e., the width of the expansion margin 31, is, for example, 1 mm to 20 mm, and more preferably about 5 mm.
[0054] -Switch device operation- In the switch device 10 of this embodiment 1, light L emitted by the LED 57 is irradiated onto the cover panel 9 from the back side of the base material 20. This light L passes through the switch actuation member 63 and the soft portion 30 of the base material 20, and illuminates the corresponding light-transmitting display portion 11 from the back side. The illuminating light L passes through the cover material 40 via the light-transmitting hole 45, thereby projecting the icon 13. As a result, the light-transmitting display portion 11 lights up and displays the icon 13. When the light-transmitting display portion 11 is lit up, the operating portion 15 of the switch device 10 is revealed.
[0055] 3, in the switch device 10, when a user presses the operating portion 15 with a finger UF, the soft portion 30 deforms so as to bend toward the rear side of the base material 20 depending on the degree of pressing, and a pressing force is exerted on the switch actuation member 63 via the soft portion 30. As a result, the switch actuation member 63 retracts toward the support panel 51 against the biasing force of the compression coil spring 59, and the pressing surface of the switch component 55 is pressed by the switch contact portion 69. As a result, the switch component 55 is pressed.
[0056] Furthermore, in the switch device 10, when the user releases the pressure on the operating unit 15, the soft portion 30 recovers from its deformation by elastic recovery, and the switch actuating member 63 is pushed up to the front side and advanced by the biasing force of the compression coil spring 59 as the soft portion 30 recovers from its deformation. This returns the operating unit 15 to the state it was in before being pushed. As a result, the switch contact portion 69 is no longer pressed against the pressing surface of the switch part 55, and the pushing operation of the switch part 55 is released.
[0057] -Method of manufacturing a switch device- To manufacture the switch device 10, first, a substrate 20 is prepared, in which the hard portion 21 and the soft portion 30 are integrally molded to have a flat surface. Such a substrate 20 can be molded using two-color molding. Next, a skin material 40 is laminated onto the surface of the substrate 20 using vacuum pressure molding. A vacuum pressure molding apparatus 100 such as that shown in FIG. 4 is used to laminate the skin material 40 onto the surface of the substrate 20.
[0058] The vacuum pressure forming apparatus 100 comprises a forming box 110, a heater 130, a substrate support table 140, a vacuum pressurizing device 150, and a vacuum device 160. In the description of this embodiment 1, the upper and lower sides of the vacuum pressure forming apparatus 100 are defined as shown in each drawing, but this is defined only for the convenience of explanation, and the orientation of the vacuum pressure forming apparatus 100 can also be changed so that the up-down direction becomes the left-right direction (horizontal direction), for example.
[0059] The molding box 110 comprises a lower box component member 111 and an upper box component member 119. The lower box component member 111 and the upper box component member 119 are each divided parts of the molding box 110, and are arranged so that their openings correspond to each other in the vertical direction. The lower box component member 111 is located on the lower side with its opening facing upward. The upper box component member 119 is located on the upper side with its opening facing downward.
[0060] The lower box component 111 has a bottom wall 113 and a lower peripheral wall 115. The lower peripheral wall 115 extends upward from the peripheral edge of the bottom wall 113. A lower flange 117 is provided at the upper end portion of the lower peripheral wall 115. The lower flange 117 has a portion that protrudes horizontally toward the outer periphery of the lower peripheral wall 115 and a portion that protrudes horizontally toward the inner periphery of the lower peripheral wall 115. The upper surface of the lower flange 117 is the portion on which the skin material 40 is placed.
[0061] The upper box component 119 has an upper wall portion 121 and an upper peripheral wall portion 123. The upper peripheral wall portion 123 extends downward from the peripheral edge of the upper wall portion 121. An upper flange 125 is provided at the lower end portion of the upper peripheral wall portion 123. The upper flange 125 protrudes horizontally toward the outer periphery of the upper peripheral wall portion 123. The lower surface of the upper flange 125 is the portion that sandwiches and holds the skin material 40 between itself and the lower flange 117 when the molding box 110 is in the closed state.
[0062] A box moving device (not shown) is connected to the upper box component member 119. The box moving device moves the upper box component member 119 in a direction (in the up and down direction in this example) toward and away from the lower box component member 111. The box moving device is formed, for example, by a fluid pressure cylinder that operates by fluid pressure. The box moving device is controlled by a molding control device (not shown).
[0063] The box moving device moves the upper box constituent member 119 upward in the closed molding box 110, separating it from the lower box constituent member 111, thereby bringing the molding box 110 into an open state. In addition, the box moving device moves the upper box constituent member 119 downward in the open molding box 110, bringing it closer to the lower box constituent member 111, thereby bringing the upper flange 125 and the lower flange 117 together with the skin material 40 in between, bringing the molding box 110 into a closed state.
[0064] The heater 130 is disposed inside the upper box component 119. Specifically, the heater 130 is positioned in the upper part of the upper box component 119 so as to be aligned along the inner surface of the upper wall portion 121. The heater 130 is a heater for heating and softening the skin material 40. The heater 130 is controlled by a molding control device. The heating temperature of the heater 130 is set so as not to cause thermal damage to the skin material 40.
[0065] The substrate support stage 140 has a base 141 and a pedestal 143. The base 141 extends in the vertical direction and is inserted into a through-hole 114 formed in the lower box component member 111. The base 141 protrudes downward beyond the bottom wall 113 of the lower box component member 111. The pedestal 143 is provided on the upper part of the base 141 and is disposed inside the lower box component member 111.
[0066] The base material 20 is placed on the base portion 143 so as to cover it. The base portion 143 holds the base material 20 in an orientation in which the surface of the soft portion 30 faces upward. A sealing wall portion 145 is provided on the lower peripheral edge portion of the base portion 143. The sealing wall portion 145 protrudes toward the outer periphery of the base portion 143, and comes into contact with the lower surface of the inner periphery portion of the lower flange 117 when the base material support base 140 moves in a direction approaching the internal space of the upper box component member 119.
[0067] A substrate moving device (not shown) is connected to the base 141. The substrate moving device moves the substrate support table 140 in a direction approaching or moving away from the internal space of the upper box component member 119 (in the vertical direction in this example). The substrate moving device is configured, for example, by a fluid pressure cylinder that operates using fluid pressure. The substrate moving device is controlled by a molding control device (not shown).
[0068] The vacuum pressurizing device 150 is connected to the interior of the upper box component 119 via an upper piping 151. The vacuum pressurizing device 150 has a vacuum pump and an air release valve (not shown). The vacuum pressurizing device 150 is configured to be able to evacuate the surface-side space R2 formed in the molding box 110 and set the pressure in the surface-side space R2 to vacuum pressure. Note that the "vacuum" in this specification does not have to be a strict vacuum, and may be any vacuum level that is industrially achievable.
[0069] Furthermore, the vacuum pressurizing device 150 can set the pressure in the front-side space R2 to vacuum pressure and then open the atmosphere release valve to set the pressure in the front-side space R2 to atmospheric pressure. The vacuum pressurizing device 150 may also be equipped with a pressure pump. By providing the vacuum pressurizing device 150 with a pressure pump, the pressure in the front-side space R2 can be set to vacuum pressure by the vacuum pump, and then the pressure can be increased to a pressure higher than atmospheric pressure by the pressure pump. The vacuum pressurizing device 150 is controlled by a molding control device.
[0070] The vacuum device 160 is connected to the interior of the lower box component 111 via a lower pipe 161. The vacuum device 160 has a vacuum pump and an air release valve (not shown). The vacuum device 160 is configured to be able to evacuate the back side space R1 formed in the molding box 110 and set the pressure in the back side space R1 to vacuum pressure. After setting the pressure in the back side space R1 to vacuum pressure, the vacuum device 160 can set the pressure in the back side space R1 to atmospheric pressure by opening the air release valve. The vacuum device 160 is controlled by a molding control device.
[0071] To laminate the skin material 40 onto the surface of the substrate 20 using the vacuum pressure air molding apparatus 100, each part of the vacuum pressure air molding apparatus 100 may be controlled by a molding control device to perform the operations related to each process as shown below, or an operator may operate each part of the vacuum pressure air molding apparatus 100 to perform the operations related to each process as shown below.
[0072] First, a preparation step is performed. In the preparation step, the upper box constituent member 119 is moved upward by the box moving device. This places the molding box 110 in an open state. In addition, the substrate support stand 140 is moved downward by the substrate moving device. Then, with the molding box 110 in the open state, the substrate 20 is placed on and held by the base portion 143 of the substrate support stand 140.
[0073] At this time, a bonding material such as an adhesive or a sticky material is provided on the surface of the soft portion 30 of the base material 20, or the base material 20 is used on which the bonding material has been provided in advance. Furthermore, a pre-fabricated skin material 40 is held on the upper surface of the lower flange 117 of the lower box component member 111 so as to cover the opening of the lower box component member 111. Note that the bonding material may be provided on the back surface of the skin material 40 in a portion corresponding to the soft portion 30 of the base material 20, instead of on the surface of the soft portion 30 of the base material 20.
[0074] Next, as shown in Figure 5, the upper box component 119 is moved downward by a box moving device, aligning the upper box component 119 and the lower box component 111 with the skin material 40 sandwiched between the upper flange 125 and the lower flange 117, thereby forming a sealed vacuum chamber R0 inside the molding box 110. The vacuum chamber R0 includes a front-side space R2 and a back-side space R1. The front-side space R2 is the space on the side facing the front surface of the skin material 40. The back-side space R1 is the space on the side facing the back surface of the skin material 40.
[0075] After the preparation step, a heating step and a vacuum step are performed. In the heating step, the skin material 40 is heated and softened by the heat of the heater 130. In the vacuum step, the vacuum pump of the vacuum pressurizing device 150 is operated to evacuate the front side space R2, and the vacuum pump of the vacuum device 160 is operated to evacuate the back side space R1. The heating step and the vacuum step may be performed simultaneously, or the heating step may be performed earlier than the vacuum step, or the vacuum step may be performed earlier than the heating step.
[0076] When it is estimated that the temperature of the skin material 40 has reached the softening temperature and the front-side space R2 and the back-side space R1 have been evacuated, the skin pressing step is performed. In the skin pressing step, as shown in Fig. 6, the substrate support table 140 is moved upward by the substrate moving device. This presses the front surface of the substrate 20 against the back surface of the skin material 40, and the softened skin material 40 is molded to fit the front surface of the substrate 20.
[0077] At this time, the rear surface side space R1 and the front surface side space R2 are evacuated, which prevents air from entering between the substrate 20 and the skin material 40. When the substrate support stand 140 moves to the upper position, the upper surface of the sealing wall 145 abuts against the lower surface of the inner peripheral portion of the lower flange 117. This ensures airtightness between the rear surface side space R1 and the front surface side space R2.
[0078] Next, a pressurizing step is performed. In the pressurizing step, the pressure in the front-side space R2 is made higher than the pressure in the back-side space R1. Specifically, as shown in FIG. 7, the atmosphere release valve of the vacuum pressurizing device 150 is opened to make the front-side space R2 at atmospheric pressure, thereby making the pressure in the front-side space R2 higher than the pressure in the back-side space R1. At this time, the front-side space R2 may be pressurized to a pressure higher than atmospheric pressure. This allows the skin material 40 to be closely attached to the surface of the substrate 20 and laminated with good conformability.
[0079] Next, the skin material 40 is cooled. When the skin material 40 has solidified through this cooling, the removal process is carried out. In the removal process, the atmosphere release valve of the vacuum device 160 is opened to set the back surface side space R1 to atmospheric pressure. Furthermore, the upper box component 119 is moved upward by the box moving device, thereby opening the molding box 110. Then, the base material 20 with the skin material 40 attached thereto is removed from the molding box 110 in the open state.
[0080] Then, a post-processing step is performed. In the post-processing step, first, the excess portion of the skin material 40 is cut off. Then, the outer peripheral portion of the skin material 40 is wrapped around the back side of the base material 20 and fixed to the hard portion 21 of the base material 20 using a bonding material such as double-sided tape or adhesive, or staples. In this way, the skin material 40 can be laminated on the surface of the base material 20. The base material 20 with the skin material 40 thus produced constitutes the cover panel 9.
[0081] 8, other components constituting the functional module 50 are assembled to the base material 20 with the skin material 40. At this time, the support panel 51 on which the substrate 61 on which the switch component 55 and the LED 57 are mounted is previously installed, the switch actuation member 63, and the compression coil spring 59 are prepared in advance.
[0082] First, the compression coil spring 59 is inserted into the spring insertion portion 71 of the switch actuation member 63. Next, the switch actuation member 63 with the compression coil spring 59 attached is fitted inside the light-shielding wall 53 and supported by the support panel 51. Then, the support panel 51 carrying the board 61 on which the switch component 55 and the LED 57 are mounted, the switch actuation member 63, and the compression coil spring 59 is attached to the base material 20 by fastening them to the bosses 29 of the base material 20 with tapping screws 54.
[0083] In this manner, the switch device 10 can be manufactured.
[0084] -Features of the first embodiment- In the switch device 10 of this first embodiment, the switch actuation member 63 and the periphery of the first opening 27 of the substrate 20 are spaced apart from each other in a direction perpendicular to the pushing direction of the switch actuation member 63. A soft portion 30 having rubber elasticity is provided between the cover material 40 and the switch actuation member 63. The soft portion 30 is supported by the substrate 20 and located on the front side of the first opening 27. The soft portion 30 has an expansion margin 31 that forms a portion corresponding to the portion between the switch actuation member 63 and the periphery of the first opening 27 of the substrate 20. When the switch actuation member 63 is pushed through the cover material 40, the soft portion 30 is bent as the expansion margin 31 stretches. At this time, the bending of the soft portion 30 is relatively gradual, so local elongation of the cover material 40 is small. This prevents the pushed portion of the cover material 40 from becoming worn.
[0085] In the switch device 10 of this embodiment 1, the cover material 40 and the soft portion 30 are bonded to each other at a portion corresponding to the first opening 27 of the base material 20. When the soft portion 30 is bent by the pressing operation of the switch actuation member 63, the cover material 40 bends in the same manner in accordance with the deformation of the soft portion 30. This allows the stretch occurring in the cover material 40 to be dispersed around the pressed portion. This is advantageous in preventing the pressed portion of the cover material 40 from becoming worn.
[0086] In the switch device 10 of this embodiment 1, the first opening 27 of the base material 20 is covered by the soft portion 30 provided on the front side of the hard portion 21. When the first opening 27 of the base material 20 is covered by the soft portion 30, the seam between the hard portion 21 and the soft portion 30 does not appear on the front side and no part line occurs in the skin material 40, thereby improving the appearance of the switch device 10.
[0087] In the switch device 10 of this embodiment 1, the base material 20 is configured to include a hard portion 21 and a soft portion 30. This base material 20 can be molded by two-color molding. By using such a two-color molded product as the base material 20, the number of parts and assembly man-hours required to manufacture the switch device 10 can be reduced.
[0088] In the manufacturing method of the switch device 10 of this embodiment 1, the hard portion 21 and the soft portion 30 are integrally molded to prepare a base material 20 having a flat surface, and the skin material 40 is laminated on the surface of the base material 20. Vacuum pressure forming is used in the step of laminating the skin material 40. Vacuum pressure forming allows the skin material 40 to be laminated on the surface of the base material 20 with good conformability. This makes it possible to suppress unevenness on the surface of the skin material 40. This is advantageous for manufacturing a switch device 10 with a good appearance.
[0089] Second Embodiment The switch device 10 of this embodiment 2 differs from that of the above-described embodiment 1 in the configuration of the base material 20. In this embodiment 2, the switch device 10 is configured similarly to the above-described embodiment 1, except for the configuration of the base material 20 which differs from that of the above-described embodiment 1. Therefore, the configuration of the switch device 1 that differs from that of the above-described embodiment 1 will be described, and the matters relating to the same configuration will be referred to in the description of the above-described embodiment 1, and detailed description thereof will be omitted.
[0090] As shown in Fig. 9, in the switch device 10 of this second embodiment, the soft portion 30 of the base material 20 is provided only within the first opening 27 of the hard portion 21. The base material 20 of this example is also formed by integrally molding the hard portion 21 and the soft portion 30 by two-color molding. The soft portion 30 is provided so as to close the first opening 27 of the hard portion 21. The outer peripheral surface of the soft portion 30 is joined to the inner peripheral surface of the first opening 27 of the hard portion 21.
[0091] The surface of the soft portion 30 and the surface of the hard portion 21 are flush with each other. As a result, the surface of the base material 20 is configured as a flat surface. In this specification, "flush" means being parallel without any steps, but it does not have to be strictly flush; it may be approximately flush with steps within the range of manufacturing tolerances. The skin material 40 covers the surface of the base material 20 (in this example, the surfaces of the hard portion 21 and the soft portion 30) and the side plate portion 25, and is wrapped around and fixed to the back side of the base material 20, as in the first embodiment. The soft portion 30 is bonded to the skin material 40 using a bonding material such as an adhesive or a pressure-sensitive adhesive. The skin material 40 may also be bonded to the surface of the hard portion 21.
[0092] 10 , in the switch device 10 of this second embodiment, when a user presses the operation unit 15 with a finger UF, the soft portion 30 deforms so as to bend toward the rear side of the base material 20 depending on the degree of pressing, and a pressing force is exerted on the switch actuation member 63 via the soft portion 30. As a result, the switch actuation member 63 retreats toward the support panel 51 against the biasing force of the compression coil spring 59, and the pressing surface of the switch component 55 is pressed by the switch contact portion 69. As a result, the switch component 55 is pressed.
[0093] Furthermore, in the switch device 10, when the user releases the pressure on the operating unit 15, the soft portion 30 recovers from its deformation by elastic recovery, and the switch actuating member 63 is pushed up to the front side and advanced by the biasing force of the compression coil spring 59 as the soft portion 30 recovers from its deformation. This returns the operating unit 15 to the state it was in before being pushed. As a result, the switch contact portion 69 is no longer pressed against the pressing surface of the switch part 55, and the pushing operation of the switch part 55 is released.
[0094] -Features of the second embodiment- In the switch device 10 of this second embodiment, the first opening 27 of the hard portion 21 is closed by the soft portion 30. The surfaces of the soft portion 30 and the hard portion 21 are flush with each other. This prevents a step from being formed at the boundary between the periphery of the first opening 27 of the base material 20 and the soft portion 30. This makes it difficult for a part line corresponding to the seam between the hard portion 21 and the soft portion 30 to be reflected in the skin material 40. This is advantageous for improving the appearance of the switch device 10.
[0095] Third Embodiment The switch device 10 of this embodiment 3 differs from that of the above-described embodiment 1 in the configuration of the base material 20. In this embodiment 3, the switch device 10 is configured similarly to the above-described embodiment 1, except for the configuration of the base material 20 which differs from that of the above-described embodiment 1. Therefore, the configuration of the switch device 10 that differs from that of the above-described embodiment 1 will be described, and matters relating to the same configuration will be referred to in the description of the above-described embodiment 1, and detailed description thereof will be omitted.
[0096] 11 , in the switch device 10 of the third embodiment, the soft portion 30 of the base material 20 is provided so as to be located within the first opening 27 of the hard portion 21 and on the front side of the first opening 27. The base material 20 of this example is also formed by integrally molding the hard portion 21 and the soft portion 30 by two-color molding. The soft portion 30 is laminated on the surface of the front plate portion 23 of the hard portion 21, and is provided so as to cover the first opening 27 on the front side of the hard portion 21, and is also provided inside the first opening 27.
[0097] -Features of the third embodiment- In the switch device 10 of this third embodiment, the soft portion 30 of the substrate 20 is provided so as to be located within the first opening 27 of the hard portion 21 and on the front side of the first opening 27. This allows the soft portion 30 constituting the operating unit 15 to be relatively thick. The flexibility of the soft portion 30 when the switch device 10 is pressed varies depending on the thickness of the soft portion 30. Therefore, the pressing force on the operating unit 15 required for pressing the switch device 10 can be adjusted.
[0098] Fourth Embodiment The switch device 10 of this embodiment 4 differs from the above-described embodiment 1 in the configuration of the base material 20 and in the inclusion of a cushion material 80. In this embodiment 4, the switch device 10 is configured similarly to the above-described embodiment 1, except for the differences from the above-described embodiment 1 in the configuration of the base material 20 and the inclusion of a cushion material 80. Therefore, the configuration of the switch device 1 that differs from the above-described embodiment 1 will be described, and the matters relating to the same configuration will be referred to in the description of the above-described embodiment 1, and detailed description thereof will be omitted.
[0099] As shown in Fig. 12, in the switch device 10 of this fourth embodiment, the soft portion 30 of the base material 20 is provided only in a portion corresponding to the front side of the first opening 27 of the hard portion 21 and in the outer periphery of the first opening 27 on the surface of the hard portion 21. The base material 20 of this example is also formed by integrally molding the hard portion 21 and the soft portion 30 by two-color molding. The soft portion 30 is supported by the outer periphery of the first opening 27 of the hard portion 21 and is located on the front side of the first opening 27, and is provided so that the front side of the hard portion 21 covers the first opening 27. The soft portion 30 of this example is not provided inside the first opening 27.
[0100] A cushioning material 80 is provided on the surface of the hard portion 21 in a portion where the soft portion 30 is not provided. The cushioning material 80 is made of foamed resin such as foamed polyurethane (PU), and has both flexibility and elasticity. A second opening 81 is formed in the cushioning material 80. The second opening 81 is formed in a position and shape corresponding to the soft portion 30 of the base material 20. The soft portion 30 of the base material 20 is fitted into the second opening 81. The thickness of the cushioning material 80 and the thickness of the soft portion 30 are approximately the same.
[0101] The surface of the cushion material 80 and the surface of the soft portion 30 are flush with each other. This makes the surface of the base material 20 flat. The skin material 40 covers the surface of the base material 20 (in this example, the surfaces of the soft portion 30 and the cushion material 80) and the side plate portion 25, and is wrapped around and fixed to the back side of the base material 20, as in the first embodiment. The soft portion 30 is bonded to the skin material 40 using a bonding material such as an adhesive or a pressure-sensitive adhesive. The skin material 40 may also be bonded to the surface of the cushion material 80.
[0102] -Features of the fourth embodiment- In the switch device 10 of this fourth embodiment, the soft portion 30 of the base material 20 is provided only in a portion corresponding to the first opening 27 of the hard portion 21 and its periphery, and a cushioning material 80 is provided in the portion of the surface of the hard portion 21 where the soft portion 30 is not provided. The cushioning material 80 provides cushioning properties to the surface of the cover panel 9, thereby improving the feel of the surface of the cover panel 9. Furthermore, the tactile feel of the portion of the surface of the cover panel 9 corresponding to the soft portion 30 can be made different from that of the portion corresponding to the cushioning material 80. This is useful for checking the position of the operating unit 15 by the feel of the surface of the cover panel 9.
[0103] Other Embodiments In the above-described first to fourth embodiments, the compression coil spring 59 is used to constantly apply a biasing force to the switch actuating member 63 to press it toward the front side, but this is not limited to this. A spring member other than the compression coil spring 59 may be used to constantly apply the biasing force to the switch actuating member 63, and the function of constantly applying a biasing force to the switch actuating member 63 may be imparted to the switch part 55 without using a spring member.
[0104] In the above-described first to fourth embodiments, the light-shielding wall 53 is provided integrally with the support panel 51, but this is not limiting. The light-shielding wall 53 may be provided integrally with the hard portion 21 of the base material 20. The light-shielding wall 53 may also be a member separate from the support panel 51. In other words, the switch device 10 may include a member forming the light-shielding wall 53 separate from the support panel 51.
[0105] In the above-described first to fourth embodiments, the cover panel 9 has the light-transmitting display portion 11, and the icon 13 displayed on the light-transmitting display portion 11 indicates the position of the operation portion 15 of the switch device 10. However, the present invention is not limited to this. For example, the icon 13 may be printed on the cover panel 9 at a location that constitutes the operation portion 15 of the switch device 10. In this case, the switch device 10 does not include a light source such as an LED 57, and the light-transmitting hole 45 is not formed in the light-shielding layer 43 of the skin material 40.
[0106] In the above-described first to fourth embodiments, the skin material 40 is laminated on the surface of the base material 20 using vacuum pressure forming in the manufacture of the switch device 10, but this is not limiting. For example, the step of laminating the skin material 40 on the surface of the base material 20 may be performed using pressure forming, in which the skin material 40 is pressed against the surface of the base material 20 by pressurizing it with compressed air.
[0107] In the above-described first to fourth embodiments, the base material 20 is formed by integrally molding the hard portion 21 and the soft portion 30 by two-color molding, but this is not limiting. The base material 20 may be formed only by the hard portion 21, and the soft portion 30 may be formed by a soft member that is separate from the base material 20. In this case, the soft member is fixed to the base material using an adhesive or the like. Furthermore, in the above-described fourth embodiment, the soft portion 30 and the cushioning material 80 may be integrally molded by two-color molding.
[0108] In the above-described first to fourth embodiments, the light-shielding layer 43 is provided on the skin material 40, but this is not limiting. The light-shielding layer 43 may be provided on the front or back surface of the soft portion 21, or on the front or back surface of the switch actuation member 63, for example.
[0109] In the above-described first to fourth embodiments, the switch device 10 is described as being incorporated into the center console 1, but the present disclosure is not limited thereto. The switch device 10 according to the present disclosure can also be incorporated into other vehicle interior parts, such as an instrument panel, a door trim, a pillar trim, or a sun visor. Furthermore, the switch device 10 according to the present disclosure can be widely applied to various products other than vehicle applications, such as home appliances and game consoles.
[0110] As described above, preferred embodiments have been described as examples of the technology of the present disclosure. However, the technology of the present disclosure is not limited to these, and can be applied to embodiments in which appropriate modifications, substitutions, additions, omissions, etc. are made. It will be understood by those skilled in the art that various modifications are possible to the above-described embodiments without departing from the spirit of the technology of the present disclosure, and that such modifications also fall within the scope of the technology of the present disclosure.
[0111] Note that the above descriptions such as "first," "second," etc. are merely used to distinguish the terms to which they are attached, and do not limit the number or order of the terms. Furthermore, the use of "to" in the above-described ranges of values means a range that includes the values before and after it. In other words, if X and Y are used as substitutes for numerical values, then "X~Y" indicates a range of "greater than or equal to X and less than or equal to Y." [Industrial Applicability]
[0112] INDUSTRIAL APPLICABILITY As described above, the present disclosure is useful for a switch device and a manufacturing method thereof. [Explanation of symbols]
[0113] 10 Switching device 20 Base material 21 Hard part 27 First Opening (Opening) 30 Soft part 31 Expansion allowance 40 Skin material 63 Switch operating member
Claims
1. a substrate (20) having a hard portion (21) in which an opening (27) is formed; a surface material (40) provided on the front side of the base material (20) so as to cover the opening (27); a switch actuating member (63) disposed at a position corresponding to the opening (27) on the rear side of the base material (20); a switch device configured to apply a pressing force to the switch actuation member (63) when the cover material (40) is pressed, thereby allowing the switch actuation member (63) to be pressed in, the switch actuating member (63) and the periphery of the opening (27) are spaced apart from each other in a direction perpendicular to the pushing direction of the switch actuating member (63); a soft portion (30) that is softer than the hard portion (21) and has rubber elasticity is provided between the skin material (40) and the switch actuation member (63); The soft portion (30) is supported by the hard portion (21) and is located inside the opening (27) or on the front side of the opening (27), and has an expansion margin (31) that forms a corresponding portion between the switch actuation member (63) and the periphery of the opening (27). A switch device characterized by:
2. 2. The switch device according to claim 1, The skin material (40) and the soft portion (30) are bonded to each other at a portion corresponding to the opening (27). A switch device characterized by:
3. 3. The switch device according to claim 1, The soft portion (30) is provided on the front side of the hard portion (21) so as to cover the opening (27). A switch device characterized by:
4. 3. The switch device according to claim 1, the soft portion (30) is provided so as to close the opening (27) of the hard portion (21); The surface of the soft portion (30) and the surface of the hard portion (21) are flush with each other. A switch device characterized by:
5. 3. The switch device according to claim 1, The soft portion (30) is integrally molded with the hard portion (21) to form the base material (20). A switch device characterized by:
6. 10. A method for manufacturing the switch device of claim 1, comprising the steps of: a substrate (20) having a flat surface formed by integrally molding the hard portion (21) and the soft portion (30); The skin material (40) is laminated on the surface of the base material (20) by vacuum pressure forming or pressure forming. A method for manufacturing a switch device comprising the steps of:
Citation Information
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