Surface material attachment structure and surface material attachment method
The panel mounting structure addresses the challenge of panel edge damage during assembly by using moldings with edge housing and secure fitting mechanisms, improving assembly efficiency and reliability.
Patent Information
- Application Number
- JP2024104161
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2026-01-16
AI Technical Summary
Conventional panel mounting structures require careful handling to avoid damage to the peripheral edge of the panel during assembly, leading to complex and cumbersome work processes.
A panel mounting structure where the peripheral edge of the panel is housed in a peripheral edge accommodating portion of a first molding attached to one side and a second molding attached to the other side, with the first molding having a protrusion fitting into a recess of the second molding, secured by adhesive or double-sided tape, and fastened with needles or screws.
This approach enhances assembly workability by protecting the panel edge from damage, simplifying the handling and alignment of components, and ensuring secure attachment.
Smart Images

Figure 2026005665000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a surface material mounting structure and a surface material mounting method for mounting a surface material using moldings that are attached to openings provided in a plate-like member from both sides of the plate-like member. [Background technology]
[0002] A panel mounting structure has been known in the past in which a panel (panel) is clamped and fixed between a pair of frame materials (moldings) and attached to an opening surrounded by the frame members of a frame door (see, for example, Patent Document 1). The frame materials of this panel mounting structure have clamping surfaces that are bonded together facing each other, a panel mounting step provided on the inner periphery of the clamping surfaces where the panel is mounted, and a frame member mounting step provided on the outer periphery of the clamping surfaces where the frame member is mounted. To assemble this frame door, first combine four frame pieces into a rectangular frame, place them on the installation surface at the assembly site, and apply adhesive. Next, the end panels are placed on the end panel mounting steps of the frame pieces assembled into a rectangular frame, and the frame members are placed on the frame member mounting steps. After that, another set of frame pieces assembled into a rectangular frame is placed so that the clamping surfaces face each other, and they are fixed in place by applying a load with a press. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] JP 2021-55186 A Summary of the Invention [Problem to be solved by the invention]
[0004] In the conventional panel mounting structure, when assembling a frame door, the panel is placed on the mounting step of one of the frame materials placed on the installation surface. Therefore, the peripheral edge of the panel is exposed from the time it is moved onto the frame material placed on the installation surface until it is placed on the mounting step and the other frame material is placed. Therefore, the peripheral edge is particularly susceptible to damage when the panel is moved and placed on the mounting step, so care must be taken to avoid damage during assembly, which creates the problem of complicated work.
[0005] The present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a surface material mounting structure and a surface material mounting method that are excellent in assembly workability. [Means for solving the problem]
[0006] The main invention for achieving this objective is a panel mounting structure in which a panel is mounted by surrounding the peripheral edge of the panel with a first molding attached to one side of the panel and a second molding attached to the other side of an opening provided in the panel, wherein one of the first molding and the second molding has a peripheral edge accommodating portion that accommodates the peripheral edge of the panel. Other features of the present invention will become apparent from the description of this specification and the accompanying drawings. [Effects of the Invention]
[0007] According to the present invention, it is possible to provide a surface material mounting structure and a surface material mounting method that are excellent in assembly workability. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a view showing a door to which a glass plate is attached using the surface material attachment structure according to this embodiment. FIG. [Figure 2] FIG. 2 is a cross-sectional view showing a mounting portion for a glass plate according to the present embodiment. [Figure 3] 1A and 1B are diagrams illustrating the configuration of a surface material mounting structure according to an embodiment of the present invention. [Figure 4] 10A to 10C are diagrams illustrating a method for attaching a surface material according to the present embodiment. [Figure 5] 10A and 10B are diagrams showing modified examples of recesses. [Figure 6] 10A and 10B are diagrams illustrating the configuration of a surface material mounting structure according to a modified example of the present embodiment. [Figure 7] 10A and 10B are diagrams illustrating a method for attaching a surface material according to a modified example of the present embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0009] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A surface material mounting structure according to one embodiment of the present invention will be described below with reference to the drawings. As an example of a surface material mounting structure according to this embodiment, a door 3 having a glass plate 2 as a surface material mounted in an opening 1a provided in a door body 1 as a plate-like member as shown in Fig. 1 will be taken as an example, and the surface material mounting structure and a surface material mounting method for mounting the glass plate 2 to the opening 1a (Fig. 3) will be described. Here, the plate-like member is a plate-like member having a substantially flat front and back surfaces, and includes door bodies such as shoji screens and doors, and interior wall materials such as plywood panels.
[0010] 1 and 2, in the surface material mounting structure of this embodiment, a rectangular glass plate 2 is mounted in a rectangular opening 1a provided in a door body 1 by a first molding 4 attached from one side of the door body 1 and a second molding 5 attached from the other side. In the following explanation, for convenience of explanation, the side to which the first molding 4 is attached will be referred to as the front side, and the side to which the second molding 5 is attached will be referred to as the back side, but the first molding 4 and the second molding 5 may be attached to either side of the door body 1. Also, while FIG. 2 shows a cross-sectional view of the portion of the door 3 where the glass plate 2 is attached to the door body 1, the vertical cross-section is similar.
[0011] The first molding 4 and the second molding 5 are formed by first molding members 40 or second molding members 50, each made of an extruded material, cut to an appropriate length and joined together into a rectangular frame. For example, both longitudinal ends of four first molding members 40 or four second molding members 50 are cut at a 45-degree angle, and the cut ends are butted together. A U-shaped pin (not shown) is inserted between the two butted first molding members 40 or second molding members 50 to join them. The mounting structure for the glass plate 2 in the door 3 is line-symmetrical on the left and right sides, so the following explanation will focus on the left side as an example and omit the right side.
[0012] 3, the first molding member 40 in the surface material mounting structure of this embodiment has a first molding main body portion 40a and a protruding portion 40b protruding from the first molding main body portion 40a to the back surface side. The first molding main body portion 40a has a first inner peripheral surface facing portion 40c facing the inner peripheral surface 1b forming the opening 1a of the door main body 1, a front surface facing portion 40d connected to the first inner peripheral surface facing portion 40c and facing the front surface 1c of the door main body 1, an inclined surface portion 40e connected to the front surface facing portion 40d and inclined so that the distance between it and the inner peripheral surface 1b increases toward the back surface side, and a first glass plate facing portion 40f provided on the opposite side of the door main body 1 from the protruding portion 40b and facing the front surface of the glass plate 2.
[0013] The protruding portion 40b protrudes toward the rear surface side from between the inclined surface portion 40e and the first glass-plate-facing portion 40f. The protruding portion 40b has a base-end protruding portion 40g connected to the first molding main body portion 40a, a tip-side protruding portion 40h connected to the base-end protruding portion 40g and protruding toward the rear surface side, a substantially circular fitting portion 40i provided at the tip of the tip-side protruding portion 40h, and a facing piece 40k that protrudes from the protruding portion 40b toward the opposite side from the inner circumferential surface 1b and faces the first glass-plate-facing portion 40f with a gap in the out-of-plane direction, and the portion between the first glass-plate-facing portion 40f and the facing piece 40k forms a peripheral-end housing portion 40l that houses the peripheral end of the glass plate 2.
[0014] The tip-side protrusion 40h has a narrower width in the in-plane direction of the glass plate 2 (hereinafter referred to as the in-plane direction) than the base-end protrusion 40g, and protrudes toward the back surface at a position farther from the inner circumferential surface 1b than the base-end protrusion 40g. The diameter of the substantially circular fitting portion 40i is larger than the width of the tip-side protrusion 40h in the in-plane direction. Furthermore, the fitting portion 40i has a slit 40j, which is open on the back surface side and extends in the out-of-plane direction of the glass plate 2 (hereinafter referred to as the out-of-plane direction), approximately at the center in the in-plane direction.
[0015] The second molding material 50 has a second inner peripheral surface facing portion 50a facing the inner peripheral surface 1b that forms the opening 1a of the door body 1, a back surface facing portion 50b that is connected to the second inner peripheral surface facing portion 50a and faces the back surface 1d of the door body 1, a second glass plate facing portion 50c facing the back surface of the glass plate 2, and a recess 50d that is provided between the second inner peripheral surface facing portion 50a and the second glass plate facing portion 50c and is recessed toward the back surface side. The second glass plate facing portion 50c has a facing piece accommodating portion 50e that is formed on the inner peripheral surface 1b side and has a facing piece accommodating portion 50e that is recessed toward the back surface side and in which the facing piece 40k is disposed between the second glass plate facing portion 50c and the recessed glass plate 2.
[0016] The recess 50d has an arc shape that is open on the front surface side, and its diameter is approximately the same as or slightly larger than the diameter of the fitting portion 40i of the first molding material 40, and the width of the open portion of the recess 50d facing the front surface side is formed narrower than the diameter of the arc. In addition, the recess 50d is located on the rear surface side of the second glass plate facing portion 50c, and a first molding facing portion 50e that faces the tip side protrusion 40h of the first molding material 40 is provided between the recess 50d and the second glass plate facing portion 50c.
[0017] In the surface material mounting structure of this embodiment, the peripheral edge of the glass plate 2 is housed in the peripheral edge housing portion 40l of the first molding 4, and they are combined to form a single unit. The first molding 4 is attached together with the glass plate 2 from the front side of the door body 1, and the second molding 5 is attached from the back side, with the fitting portion 40i fitted into the recess 50d and bonded with the adhesive 6.
[0018] When the first molding 4 and the second molding 5 are attached to the door body 1, the first inner surface facing portion 40c and the second inner surface facing portion 50a are adhered opposite the inner surface 1b, the front surface facing portion 40d faces the front surface 1c of the door body 1, and the back surface facing portion 50b faces the back surface 1d of the door body 1.
[0019] Furthermore, the first molding 4 and the second molding 5 are fixed by driving in a needle 7 as a fastener that enters the door main body 1 from the first molding 4 and second molding 5 side. At this time, the needle 7 driven in from the second molding 5 side penetrates the protruding portion 40b that connects to the fitting portion 40i that is fitted in the recess 50d and enters the door main body 1. The fastener is not limited to a needle, and any fastener such as a nail or a screw may be used as long as it enters the door main body 1 from the first molding 4 and second molding 5 side and connects the first molding 4, second molding 5 and door main body 1.
[0020] The method for attaching the surface material in this embodiment involves first attaching the first molding material 40 to the peripheral edge of the glass plate 2 from each of the four sides, accommodating the peripheral edge of the glass plate 2 in the peripheral edge accommodating portion 40l of each first molding material 40, and joining adjacent first molding materials 40 together with U-shaped pins (not shown).
[0021] 4(a), the first molding 4 is placed on an assembly workbench T or the like with the protruding portion 40b facing upward, and the door body 1 is placed on the first molding 4 so that the first molding 4 is positioned at the opening 1a (face material placement step). At this time, the first inner peripheral surface facing portion 40c faces the inner peripheral surface 1b, and the surface facing portion 40d abuts against the surface 1c of the door body 1.
[0022] Next, as shown in Fig. 4(b), the second molding 5 with adhesive 6 applied to the recess 50d is attached from above, and as shown in Fig. 4(c), the fitting portion 40i is fitted into the recess 50d. At this time, the facing piece 40k is accommodated in the facing piece accommodating portion 50e, and the adhesive 6 bonds the fitting portion 40i to the recess 50d and the first molding 4, the second molding 5 and the inner circumferential surface 1b (bonding step).
[0023] Next, as shown in Fig. 10(d), needles 7 are driven obliquely with respect to the in-plane direction from the first molding 4 and the second molding 5 side toward the door body 1 using a stapler or the like. At this time, the needles 7 driven from the second molding 5 side penetrate the protruding portions 40b with the fitting portions 40i fitted in the recesses 50d, and are driven into the door body 1 from the inner peripheral surface 1b. By driving the needles 7, the movement of the first molding 4 and the second molding 5 in the in-plane direction and the out-of-plane direction is restricted.
[0024] According to the surface material mounting structure and surface material mounting method of the first embodiment, the first molding 4 has a peripheral edge housing portion 40l that houses the peripheral edge of the glass plate 2. By housing the peripheral edge of the glass plate 2 in the peripheral edge housing portion 40l and combining it with the first molding 4 to form an integrated unit, there is no need to position the first molding 4 and the glass plate 2. The glass plate 2 can be mounted to the door body 1 simply by fitting the first molding 4 with the glass plate 2 and the second molding 5 together. This results in excellent manufacturability.
[0025] Furthermore, when attaching the glass plate 2, the glass plate 2 can be moved with its peripheral edge housed in the peripheral edge housing portion 40l, making it less likely to damage the peripheral edge of the glass plate 2. This makes it easy to handle the face material 2 during manufacturing. Furthermore, manufacturing can be easily achieved by simply placing the first molding 4, which houses the peripheral edge of the glass plate 2, in the opening 1a of the door body 1, and then adhering the second molding 5 from the opposite side of the door body 1.
[0026] Furthermore, the first molding 4 and second molding 5 attached to the opening 1a of the door body 1 are attached such that the first molding 4 is attached from the front side of the door body 1 and the second molding 5 is attached from the back side, and the fitting portion 40i of the first molding 4 and the recessed portion 50d of the second molding 5 are fitted and locked together for attachment. This allows the first molding 4 and the second molding 5 to be attached with their respective positions aligned to a predetermined position. Therefore, simply by fitting and locking the fitting portion 40i of the first molding 4 and the recessed portion 50d of the second molding 5, it is possible to align the first molding 4 and the second molding 5 and easily attach a glass plate. This further improves manufacturability.
[0027] At this time, the fitting portion 40i of the first molding 4 and the recess 50d of the second molding 5 fit together, allowing the worker to recognize that the first molding 4 and the second molding 5 are aligned and securely joined, and that the glass plate 2 is held in place.
[0028] Furthermore, since the first molding 4 and the second molding 5 are attached by bonding with the adhesive 6, the glass plate 2 can be more reliably joined while being held by the first molding 4 and the second molding 5.
[0029] Furthermore, because the adhesive 6 is applied to the recess 50d of the second molding 5 into which the mating portion 40i of the first molding 4 is mated, it is possible to more reliably join the first molding 4 and the second molding 5. Furthermore, because the adhesive 6 is applied to the recess 50d, the application position of the adhesive 6 is clear, and the adhesive 6 can be reliably retained in the recess 50d before mating. This results in greater manufacturability.
[0030] Furthermore, since the first molding 4 and the second molding 5 are joined by the needles 7 that enter the door body 1, it is possible to more reliably join the first molding 4 and the second molding 5 to the door body 1. It is also possible to restrict the movement of the first molding 4 and the second molding 5 that hold the glass plate 2 relative to the door body 1 in both the in-plane direction and the out-of-plane direction.
[0031] Furthermore, the needle 7 that enters the door body 1 enters through the second molding 5 and penetrates the protruding portion 40b of the first molding 4, so that the first molding 4 and the second molding 5 are reliably joined together and the first molding 4 and the second molding 5 can be more reliably attached to the door body 1.
[0032] In the above embodiment, an example was described in which the inner peripheral surface of the recess 50d into which the fitting portion 40i enters is simply arc-shaped. However, for example, as shown in FIG. 5, a protrusion 50f that enters the slit 40j may be provided at a portion of the recess 50d facing the slit 40j of the fitting portion 40i into which it enters. In this case, when the fitting portion 40i engages with the recess 50d, the protrusion 50f enters the slit 40j. Therefore, in the engaged state, the fitting portion 40i does not elastically deform so as to narrow the slit 40j. This more reliably maintains the engaged state. This makes it possible to hold the glass plate 2 more reliably.
[0033] In the above embodiment, an example has been described in which the first molding 4 and the second molding 5 are bonded with adhesive 6, but this is not limiting and they may also be bonded with, for example, double-sided tape 8. In the following description, first moldings or second moldings that are different from those in the above embodiment will be assigned numbers different from those in the above embodiment, and parts that are equivalent to those in the above embodiment will be assigned the same alphabet and will not be described again.
[0034] Even in the modified example in which the first molding 4 is bonded with double-sided tape 8, the first molding material 41 constituting the first molding 4 has, like the first molding material 40, a first molding main body portion 41a and a protrusion portion 41b protruding from the first molding main body portion 41a to the back side.
[0035] The first molding main body 41a has a first inner peripheral surface facing portion 41c, a surface facing portion 41d, an inclined surface portion 41e, and a first glass plate facing portion 41f, similar to the first molding member 40. The protruding portion 41b also has a base end protruding portion 41g, a tip end protruding portion 41h, and a fitting portion 41i, similar to the first molding member 40. The first molding member 41 has a facing piece 41k that protrudes from the protruding portion 41b opposite the inner peripheral surface 1b and faces the first glass plate facing portion 41f with a gap in the out-of-plane direction, and a peripheral end housing portion 41l is formed between the first glass plate facing portion 41f and the facing piece 41k to house the peripheral end of the glass plate 2.
[0036] Similar to the second molding material 50, the second molding material 51 has a second inner peripheral surface facing portion 51a, a back surface facing portion 51b, a second glass plate facing portion 51c facing the back surface side of the glass plate 2, and a recess 51d.
[0037] The second glass plate facing portion 51c has a recessed portion 51e formed on the inner circumferential surface 1b side and recessed toward the back surface side, and the recessed portion 51e faces the facing piece 41k, and the double-sided tape 8 is attached to the recessed portion 51e. The recessed amount of the recessed portion 51e is smaller than the combined thickness of the attached double-sided tape 8 and the facing piece 41k. Therefore, when the fitting portion 41i and the recess 51d fit together and the recessed portion 51e faces the facing piece 41k, the double-sided tape 8 comes into contact with and adheres to the facing piece 41k. The end of the recessed portion 51e on the inner circumferential surface 1b side is connected to the recess 51d in a plane, and the width of the open portion of the recess 51d facing the front surface side is narrower than the depth of the recess 51d.
[0038] In the surface material mounting structure in a modified example of the second embodiment, as shown in Figure 7(d), the peripheral edge of the glass plate 2 is accommodated in the peripheral edge accommodating portion 41l of the first molding 4 and combined to form a single unit, the first molding 4 and the second molding 5 are attached to the door body 1 from the front and back sides, respectively, the fitting portion 41i is fitted into the recess 51d, and the second molding 5 is adhered to the opposing piece portion 41k of the first molding 4 with double-sided tape 8.
[0039] When the first molding 4 and the second molding 5 are attached to the door body 1, the first inner surface facing portion 41c and the second inner surface facing portion 51a face the inner surface 1b, the front surface facing portion 41d faces the front surface 1c of the door body 1, and the back surface facing portion 51b faces the back surface 1d of the door body 1.
[0040] Furthermore, the needle 7 is driven into and fixed in the door body 1 from the first molding 4 and second molding 5 side. At this time, the needle 7 driven from the second molding 5 side penetrates the front end side protrusion 41h connected to the fitting portion 41i fitted into the recess 51d and enters the door body 1.
[0041] The method of attaching the surface material in a modified example of this embodiment is to first attach the first molding material 41 to each of the four sides of the peripheral edge of the glass plate 2, accommodate the peripheral edge of the glass plate 2 in the peripheral edge accommodation portion 41l of each first molding material 41, and then join adjacent first molding materials 41 together with a U-shaped pin (not shown).
[0042] 7(a), the first molding 4 is placed on an assembly workbench T or the like with the protruding portion 41b facing upward, and the door body 1 is placed on the first molding 4 so that the first molding 4 is positioned at the opening 1a (face material placement step). At this time, the first inner peripheral surface facing portion 41c faces the inner peripheral surface 1b, and the surface facing portion 41d abuts against the surface 1c of the door body 1.
[0043] Next, as shown in Fig. 7(b), the second molding 5 with the double-sided tape 8 attached to the recessed portion 51e is attached from above, and as shown in Fig. 7(c), the fitting portion 41i is fitted into the recessed portion 51d (adhesion step). At this time, the double-sided tape 8 comes into contact with the facing piece portion 41k of the first molding 4, and the first molding 4 and the second molding 5 are adhered to each other.
[0044] 7(d), needles 7 are driven obliquely with a tacker or the like from the first molding 4 and second molding 5 sides toward the door body 1. At this time, the needles 7 driven from the second molding 5 side penetrate the protruding parts 41b and are driven into the door body 1 from the inner peripheral surface 1b with the fitting parts 41i fitted into the recesses 51d.
[0045] According to the surface material mounting structure and surface material mounting method of the modified embodiment, the second molding 5 has a recess 51e for attaching the double-sided tape 8 at a position facing the facing piece 41k, so the position for attaching the double-sided tape 8 is clear and the double-sided tape 8 can be easily attached. Furthermore, unlike adhesives that harden over time after application, the double-sided tape 8 can be applied in advance, making the installation process easier. Furthermore, during the installation process of the glass plate 2, the peripheral edge of the glass plate 2 is housed in the first molding 4 when the glass plate 2 is moved, so it is possible to prevent damage to the peripheral edge of the glass plate 2.
[0046] In the above embodiment, an example has been described in which the peripheral edge accommodating portions 40l, 41l for accommodating the peripheral edge of the glass plate 2 are provided in the first molding members 40, 41, but they may also be provided in the second molding member.
[0047] In the above embodiment, the configuration has been described in which the pins 7 that enter the door body 1 from the first molding 4 and second molding 5 side are driven and fixed, but the pins 7 do not necessarily have to be driven in. Also, a configuration in which only the pins 7 that enter the door body 1 from the second molding 5 side are driven and fixed may be used.
[0048] In the above embodiment, a glass plate 2 was used as an example of a surface material, but this is not limited to this. For example, any surface material that can be attached with a molding to an opening provided in a plate-shaped member, such as a synthetic resin plate, a wooden plate, or a decorative plate, can be used.
[0049] The above-described embodiments are provided to facilitate understanding of the present invention and are not intended to limit the present invention. The present invention may be modified or improved without departing from the spirit thereof, and the present invention includes equivalents thereof. The present embodiment includes at least the following inventions.
[0050] Aspect 1: A panel mounting structure in which the peripheral edge of a panel is surrounded and mounted using a first molding attached to one side of the plate-shaped member and a second molding attached to the other side of the plate-shaped member, wherein one of the first molding and the second molding has a peripheral edge accommodating portion that accommodates the peripheral edge of the panel.
[0051] According to the face material mounting structure of aspect 1, one of the first and second moldings, which surround the peripheral edge of the face material and are attached to the opening of the plate-shaped member, has a peripheral edge housing portion that houses the peripheral edge of the face material. This makes it possible to previously house the peripheral edge of the face material in the peripheral edge housing portion of the first or second molding. By housing the peripheral edge of the face material in the peripheral edge housing portion, the face material is positioned relative to the first or second molding. This makes it easy to position the face material relative to the first and second moldings. Furthermore, when mounting the face material, the face material can be moved with its peripheral edge housed in the peripheral edge housing portion, making it less likely to damage the peripheral edge of the face material. This makes it easy to handle the face material during manufacturing.
[0052] Aspect 2: A surface material mounting structure as described in Aspect 1, characterized in that the first molding has a protrusion, the second molding has a recess into which the protrusion is fitted, the surface material is engaged by the protrusion and the recess fitting together, and one of the first molding and the second molding is attached by adhesive to the other of the first molding and the second molding.
[0053] According to the surface material mounting structure of aspect 2, the first and second moldings can be aligned and easily mounted by simply engaging and locking the protrusion of the first molding into the recess of the second molding. At this time, the engagement of the protrusion of the first molding with the recess of the second molding allows the worker to recognize that the first and second moldings have been aligned and mounted. This results in superior manufacturability.
[0054] Aspect 3: The surface material mounting structure according to Aspect 2, characterized in that an adhesive is applied to the recess.
[0055] According to the surface material mounting structure of aspect 3, adhesive is applied to the recessed portion of the second molding into which the protruding portion of the first molding fits, which allows the first molding and the second molding to be joined more reliably. Also, because the portion to which adhesive is applied is the recessed portion, the application position of the adhesive is clear and the adhesive can be positioned reliably. This results in superior manufacturability.
[0056] Aspect 4: A surface material mounting structure as described in Aspect 1, characterized in that the one molding is adhered to the other molding with double-sided tape and has a recessed portion where the double-sided tape is attached at a position opposite the other molding.
[0057] According to the surface material mounting structure of the fourth aspect, one molding has a recess for attaching double-sided tape at a position facing the other molding, so the position for attaching the double-sided tape is clear and the double-sided tape can be easily attached, which makes it easier to manufacture.
[0058] Aspect 5: A surface material mounting structure as described in any one of Aspects 1 to 4, characterized in that at least one of the first molding and the second molding is joined by a fastener that penetrates into the plate-like member.
[0059] According to the surface material mounting structure of aspect 5, at least one of the first molding and the second molding is joined by a fastener that penetrates into the plate-like member, making it possible to reliably join the first molding and the second molding to the plate-like member.
[0060] Aspect 6: The surface material mounting structure according to Aspect 5, wherein the fastener enters from the second molding and penetrates the protrusion.
[0061] According to the surface material mounting structure of aspect 6, the fastener that enters the plate-like member enters through the second molding and penetrates the protruding portion of the first molding, making it possible to more reliably join the first molding and the second molding.
[0062] Aspect 7: A surface material mounting method for the surface material mounting structure described in Aspect 1, characterized in that it includes the steps of accommodating the peripheral end of the surface material in the peripheral end accommodating portion and placing it in the opening of the plate-like member, and placing the other of the first molding and the second molding in the opening from the opposite side of the one molding on the plate-like member and adhering it.
[0063] According to the face material mounting method of aspect 7, the peripheral edge of the face material is accommodated in the peripheral edge accommodating section and placed in the opening of the plate-shaped member. Therefore, when mounting the face material, the face material can be moved with its peripheral edge accommodated in the peripheral edge accommodating section. This makes it less likely to damage the peripheral edge of the face material, making it easy to handle the face material during manufacturing. In addition, manufacturing can be easily achieved by simply placing one molding that accommodates the peripheral edge of the face material in the opening of the plate-shaped member and adhering the other molding from the opposite side of the plate-shaped member. [Explanation of symbols]
[0064] 1 Door body, 1a Opening, 2 Glass plate, 4 First molding, 5 Second molding, 6 adhesive, 7 needle, 8 double-sided tape, 40b protrusion, 40l peripheral end accommodating portion, 41b protruding portion, 41l peripheral end accommodating portion, 50d recess, 51d recess, 51e recess,
Claims
1. A surface material mounting structure in which a surface material is mounted by surrounding a peripheral edge of the surface material with a first molding attached to one side of the plate-like member and a second molding attached to the other side of the plate-like member in an opening provided in the plate-like member, A surface material mounting structure, characterized in that one of the first molding and the second molding has a peripheral end accommodating portion that accommodates the peripheral end of the surface material.
2. The surface material mounting structure according to claim 1, the first molding has a protrusion, and the second molding has a recess into which the protrusion is fitted; A surface material mounting structure characterized in that the surface material is engaged by fitting the protrusion and the recess, and one of the first molding and the second molding is attached to the other of the first molding and the second molding by adhesive.
3. The surface material mounting structure according to claim 2, A surface material mounting structure characterized in that an adhesive is applied to the recess.
4. The surface material mounting structure according to claim 1, A surface material mounting structure characterized in that one molding is adhered to the other molding with double-sided tape and has a recessed portion where the double-sided tape is attached at a position opposite the other molding.
5. The surface material mounting structure according to any one of claims 1 to 4, A surface material mounting structure, characterized in that at least one of the first molding and the second molding is joined by a fastener that penetrates into the plate-like member.
6. The surface material mounting structure according to claim 5, A surface material mounting structure characterized in that the fastener enters from the second molding and penetrates the protrusion.
7. A method for attaching a surface material to the surface material attachment structure according to claim 1, a face material placement step of accommodating the peripheral end of the face material in the peripheral end accommodating portion and placing the face material in the opening of the plate-shaped member; a bonding step of placing the other of the first molding and the second molding in the opening from a side of the plate-like member opposite to the one molding and bonding the other molding to the opening; A surface material mounting method comprising the steps of:
Citation Information
Patent Citations
Dental hand piece controller
JP1980000186A