Laminating device and laminating equipment
By designing an automated fitting device, the problems of low efficiency and poor quality of hole stickers on headphone stands were solved, and efficient and stable sticker alignment and fitting were achieved, avoiding errors in manual operation.
Patent Information
- Application Number
- CN202210445623.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-24
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2042-04-24
AI Technical Summary
In the prior art, the hole stickers for headphone holders have low operation efficiency and poor quality, mainly because the stickers are thin, soft, and the internal space of the headphone holder is small, which makes manual bonding difficult and inconvenient.
A fitting device including a positioning component, a fixing component, a position adjustment mechanism and a fitting mechanism is designed. The head-mounted bracket is fixed in the placement slot through the fixing component, and the position adjustment mechanism and the fitting mechanism are used to automatically align and fit the sticker, avoiding manual intervention.
The efficiency and quality of sticker fitting are improved, the manual alignment and fitting errors are reduced, and the position stability and fitting accuracy of the stickers on the head-mounted bracket are ensured.
Smart Images

Figure CN114827812B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mechanical equipment, and in particular to a laminating device and laminating equipment. Background Art
[0002] For a headphone frame with four holes, two stickers are attached to each side of the frame to cover the holes. This prevents the ear shells from entering the holes and colliding with the frame during insertion, thus improving the smoothness of the ear shells. The existing technology uses manual application of stickers. However, due to the thinness and softness of the stickers, alignment between the stickers and the frame is difficult, resulting in low efficiency. Furthermore, due to the small internal space within the frame, manual application is less convenient, further reducing the efficiency of sticker application. Summary of the Invention
[0003] The purpose of the present invention is to overcome the deficiencies in the prior art and to provide a laminating device and a laminating apparatus with higher efficiency and higher laminating quality.
[0004] The object of the present invention is achieved through the following technical solutions:
[0005] A laminating device, comprising:
[0006] A positioning component is provided with a placement slot for accommodating the head-mounted bracket;
[0007] A fixing component, movably connected to the positioning component and arranged corresponding to the placement slot, so that the fixing component is used to fix the head-mounted bracket in the placement slot;
[0008] a position adjustment mechanism; and
[0009] A laminating mechanism connected to the power output end of the position adjustment mechanism, wherein the position adjustment mechanism is used to drive the laminating mechanism to move;
[0010] The adsorption mechanism is used to adsorb stickers. The adsorption mechanism is connected to the power output end of the fitting mechanism so that the position adjustment mechanism is used to move the adsorption mechanism into the head-mounted bracket; the fitting mechanism is used to drive the adsorption mechanism to move so that the adsorption mechanism adheres the sticker to the fitting area of the head-mounted bracket.
[0011] In one embodiment, the position adjustment mechanism includes a first drive mechanism and a second drive mechanism, the second drive mechanism is installed at the power output end of the first drive mechanism, the fitting mechanism is connected to the power output end of the second drive mechanism, and there is an angle between the driving direction of the first drive mechanism and the driving direction of the second drive mechanism.
[0012] In one embodiment, the adsorption mechanism includes two contoured adsorption parts, which are relatively connected to the power output end of the fitting mechanism, and the fitting mechanism is used to drive the two contoured adsorption parts to separate or close.
[0013] In one embodiment, the laminating mechanism comprises:
[0014] A mounting member connected to the power output end of the position adjustment mechanism;
[0015] Two sliding members are connected to the mounting member in a relatively slidable manner, and each sliding member is provided with an abutting inclined surface on a side adjacent to the other sliding member; the two contoured adsorption members are respectively connected to the two sliding members;
[0016] Two elastic return members are connected to the mounting member relative to each other, and each elastic return member is further connected to a corresponding sliding member, so that the two elastic return members are used to push the two sliding members to close; and
[0017] The wedge-shaped pushing member has a pushing inclined surface on two opposite sides, and each pushing inclined surface is correspondingly slidably abutted against one abutting inclined surface.
[0018] In one embodiment, the laminating mechanism further includes a laminating driving member, the laminating driving member is mounted on the mounting member, and the wedge-shaped pushing member is connected to a power output end of the laminating driving member.
[0019] In one embodiment, the fitting mechanism further includes a guide member, which is connected to the mounting member, and the two sliding members are connected to the guide member in a relatively sliding manner, so that the two sliding members are connected to the mounting member in a relatively sliding manner through the guide member.
[0020] In one embodiment, the fixing assembly includes a first connecting member, a second connecting member and a movable covering member. The first connecting member and the second connecting member are relatively connected to the positioning assembly. The movable covering member is rotatably connected to the first connecting member. The movable covering member can also be detachably connected to the second connecting member so that the movable covering member is used to fix the head-mounted bracket in the placement slot.
[0021] In one embodiment, the positioning assembly includes a positioning member and a limiting member, the placement slot is opened on the positioning member, the limiting member is connected to the positioning member and is arranged corresponding to the opening of the placement slot, so that the limiting member is used to abut against one end of the head-mounted bracket.
[0022] In one embodiment, the bonding device further includes a rotation drive mechanism, which is installed at the power output end of the position adjustment mechanism, and the bonding mechanism is installed at the power output end of the rotation drive mechanism, so that the rotation drive mechanism is used to drive the adsorption mechanism to rotate.
[0023] A laminating device comprises the laminating apparatus described in any one of the above embodiments.
[0024] Compared with the prior art, the present invention has at least the following advantages:
[0025] 1. Since the fixing component fixes the head-mounted bracket in the placement slot, the position stability of the head-mounted bracket is high, which helps to improve the quality of the sticker fitting on the head-mounted bracket.
[0026] 2. Since the position adjustment mechanism is used to move the fitting mechanism into the head-mounted bracket and align it with the fitting area, the efficiency of aligning the sticker with the fitting area is improved. Since the fitting mechanism is used to fit the sticker to the fitting area of the head-mounted bracket, manual fitting operations of the sticker are avoided. In this way, the positioning and fitting operations of the sticker do not require manual intervention, thus avoiding manual positioning errors and manual fitting errors, and improving the fitting efficiency and quality of the sticker. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0028] Figure 1 Schematic diagram of the structure of a laminating device according to one embodiment;
[0029] Figure 2 for Figure 1 Another structural schematic diagram of the laminating device shown;
[0030] Figure 3 for Figure 1 A schematic diagram of a partial structure of the bonding device shown;
[0031] Figure 4 for Figure 1 The head-mounted support to which the fitting device is fitted;
[0032] Figure 5 for Figure 1 An enlarged schematic diagram of point A of the bonding device is shown;
[0033] Figure 6is a schematic structural diagram of a laminating device according to another embodiment;
[0034] Figure 7 for Figure 6 An enlarged schematic diagram of point B of the bonding device shown;
[0035] Figure 8 for Figure 6 A schematic structural diagram of the adsorption mechanism of the laminating device shown;
[0036] Figure 9 for Figure 8 An enlarged schematic diagram of point C of the bonding device is shown. DETAILED DESCRIPTION
[0037] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present disclosure.
[0038] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.
[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0040] The present application provides a laminating device, comprising a machine platform, a positioning component, a fixing component, a position adjustment mechanism, a laminating mechanism, and a suction mechanism, wherein the positioning component is mounted on the machine platform, the positioning component is provided with a placement slot, the placement slot is adapted to a head-mounted bracket, the placement slot is used to accommodate the head-mounted bracket, and the laminating area of the head-mounted bracket is arranged opposite to the opening of the placement slot, so as to perform a laminating operation on the laminating area of the head-mounted bracket; the fixing component is movably connected to the positioning component and is arranged corresponding to the placement slot, so that the fixing component abuts against the head-mounted bracket, thereby enabling the fixing component to fix the head-mounted bracket in the placement slot; the position adjustment mechanism is mounted on the machine platform, the laminating mechanism is connected to the power output end of the position adjustment mechanism, the position adjustment mechanism is used to adjust the position of the laminating mechanism, so that the position adjustment mechanism is used to drive the laminating mechanism to move; the suction mechanism is used to absorb a sticker, and the suction mechanism is connected to the power output end of the laminating mechanism, so that the position adjustment mechanism is used to move the suction mechanism into the head-mounted bracket. The laminating mechanism is used to drive the suction mechanism to move, so that the suction mechanism attaches the sticker to the laminating area of the head-mounted bracket.
[0041] In the aforementioned laminating device, since the fixing assembly secures the head mount within the placement slot, the positional stability of the head mount is enhanced, thereby improving the quality of the sticker laminating on the head mount. Since the position adjustment mechanism is used to move the laminating mechanism into the head mount and align it with the laminating area, the efficiency of aligning the sticker with the laminating area is improved. Furthermore, since the laminating mechanism is used to affix the sticker to the laminating area of the head mount, manual laminating of the sticker is avoided. Thus, manual intervention is not required for the alignment and laminating of the sticker, thus avoiding manual alignment errors and manual laminating errors, thereby improving the efficiency and quality of the sticker laminating.
[0042] To better understand the technical solutions and beneficial effects of the present application, the present application is further described in detail below with reference to specific embodiments:
[0043] like Figures 1 to 4As shown, a laminating device 10 of an embodiment includes a machine 100, a positioning component 200, a fixing component 300, a position adjustment mechanism 400, a laminating mechanism 500 and an adsorption mechanism 600, wherein the positioning component 200 is installed on the machine 100, and the positioning component 200 is provided with a placement groove 201, which is adapted to the head-mounted bracket 20, and the placement groove 201 is used to accommodate the head-mounted bracket 20, and the laminating area 201 of the head-mounted bracket 20 is arranged opposite to the opening of the placement groove 201, so as to perform a laminating operation on the laminating area 201 of the head-mounted bracket 20; the fixing component 300 is movably connected to the positioning component 200 and is aligned with the placement groove 201. The fixing assembly 300 should be arranged so as to abut against the head-mounted support 20, thereby enabling the fixing assembly 300 to fix the head-mounted support 20 in the placement slot 201; the position adjustment mechanism 400 is mounted on the machine 100, and the bonding mechanism 500 is connected to the power output end of the position adjustment mechanism 400. The position adjustment mechanism 400 is used to adjust the position of the bonding mechanism 500, so that the position adjustment mechanism 400 is used to drive the bonding mechanism 500 to move; the adsorption mechanism 600 is used to adsorb the sticker, and the adsorption mechanism 600 is connected to the power output end of the bonding mechanism 500, so that the position adjustment mechanism 400 is used to move the adsorption mechanism 600 into the head-mounted support 20. The bonding mechanism 500 is used to drive the adsorption mechanism 600 to move, so that the adsorption mechanism 600 bonds the sticker to the bonding area 201 of the head-mounted support 20.
[0044] like Figures 2 to 4 As shown, in this embodiment, when applying a sticker to the hole 202 at one end of the head-mounted bracket 20, the head-mounted bracket 20 is first placed in the placement groove 201 so that one end of the head-mounted bracket 20 is arranged opposite to the adsorption mechanism 600, and then the fixing component 300 is moved so that the fixing component 300 fixes the head-mounted bracket 20 in the placement groove 201, and then the sticker is adsorbed on the adsorption mechanism 600, and then the position adjustment mechanism 400 drives the fitting mechanism 500 and the adsorption mechanism 600 to a predetermined position so that the adsorption mechanism 600 enters the head-mounted bracket 20, thereby aligning the sticker with the fitting area 201 of the head-mounted bracket 20, and then the fitting mechanism 500 drives the adsorption mechanism 600 to move so that the adsorption mechanism 600 adheres the sticker to the fitting area 201 at one end of the head-mounted bracket 20. After completing the sticker operation at one end of the head-mounted bracket 20, the adsorption mechanism 600 first releases the sticker, and then the fitting mechanism 500 is reset, that is, the fitting mechanism 500 drives the adsorption mechanism 600 away from the fitting area 201 of the head-mounted bracket 20, and then the position adjustment mechanism 400 drives the fitting mechanism 500 and the adsorption mechanism 600 to reset, so that the adsorption mechanism 600 moves out of the head-mounted bracket 20.
[0045] like Figures 2 to 4As shown, further, when the sticker is applied to the hole 202 at the other end of the head-mounted bracket 20, the fixing component 300 is moved so that the fixing component 300 releases the head-mounted bracket 20, and then the position of the head-mounted bracket 20 is reversed and the head-mounted bracket 20 is placed in the placement groove 201, so that the other end of the head-mounted bracket 20 is arranged opposite to the adsorption mechanism 600, and then the fixing component 300 is moved so that the fixing component 300 fixes the head-mounted bracket 20 in the placement groove 201, and then a new sticker is adsorbed on the adsorption mechanism 600, and then the position adjustment mechanism 400 drives the fitting mechanism 500 and the adsorption mechanism 600 to a predetermined position so that the adsorption mechanism 600 enters the head-mounted bracket 20, and then the fitting mechanism 500 drives the adsorption mechanism 600 to move so that the adsorption mechanism 600 adheres the new sticker to the fitting area 201 at the other end of the head-mounted bracket 20. After the sticker application operation on the other end of the head-mounted support 20 is completed, the suction mechanism 600 first releases the sticker, and then the fitting mechanism 500 is reset. That is, the fitting mechanism 500 drives the suction mechanism 600 away from the fitting area 201 of the head-mounted support 20. The position adjustment mechanism 400 then drives the fitting mechanism 500 and the suction mechanism 600 to reset, so that the suction mechanism 600 moves away from the head-mounted support 20. The fixing assembly 300 is then moved to release the head-mounted support 20, and finally, the head-mounted support 20 is removed from the placement slot 201. It will be understood that the sticker can be a Teflon sticker, a non-woven fabric sticker, or other existing stickers.
[0046] In the aforementioned laminating device 10, since the fixing assembly 300 fixes the head mount 20 within the placement slot 201, the positional stability of the head mount 20 is high, which helps improve the quality of the sticker laminating on the head mount 20. Since the position adjustment mechanism 400 is used to move the laminating mechanism 500 into the head mount 20 and align it with the laminating area 201, the efficiency of aligning the sticker with the laminating area 201 is improved. Since the laminating mechanism 500 is used to affix the sticker to the laminating area 201 of the head mount 20, manual laminating of the sticker is avoided. In this way, the alignment and laminating operations of the sticker do not require manual intervention, thus avoiding manual alignment errors and manual laminating errors, and improving the efficiency and quality of the sticker laminating.
[0047] like Figure 1 and Figure 2As shown, in one embodiment, the laminating device 10 further includes a rotary drive mechanism 700, which is mounted on the power output end of the position adjustment mechanism 400, and the laminating mechanism 500 is mounted on the power output end of the rotary drive mechanism 700, so that the rotary drive mechanism 700 is used to drive the adsorption mechanism 600 to rotate. In this embodiment, the rotary drive mechanism 700 is a rotary cylinder, which is used to drive the laminating mechanism 500 and the adsorption mechanism 600 to rotate so that the adsorption surface of the adsorption mechanism 600 faces upward, thereby facilitating the alignment of the sticker with the adsorption surface of the adsorption mechanism 600, thereby improving the convenience of the adsorption mechanism 600 in adsorbing the sticker. Of course, in other embodiments, the rotary drive member can also be a rotary motor or other existing rotary drive members.
[0048] like Figure 2 As shown, in one embodiment, the position adjustment mechanism 400 includes a first drive mechanism 410 and a second drive mechanism 420. The second drive mechanism 420 is installed at the power output end of the first drive mechanism 410. The fitting mechanism 500 is connected to the power output end of the second drive mechanism 420, and an angle is formed between the driving directions of the first drive mechanism 410 and the second drive mechanism 420. In this embodiment, the driving direction of the first drive mechanism 410 and the driving direction of the second drive mechanism 420 are perpendicular. Specifically, the driving direction of the first drive mechanism 410 is vertical, and the driving direction of the second drive mechanism 420 is horizontal. The first drive mechanism 410 and the second drive mechanism 420 are used to move the fitting mechanism 500 and the adsorption mechanism 600, so that the adsorption mechanism 600 moves into or out of the head-mounted support 20. Because the driving direction of the first driving mechanism 410 is perpendicular to the driving direction of the second driving mechanism 420, the flexibility of the fitting mechanism 500 and the adsorption mechanism 600 is improved, thereby making it easier for the adsorption mechanism 600 to be moved into or out of the head-mounted support 20. It is understood that the first driving mechanism 410 can be an electric cylinder, a pneumatic cylinder, an oil cylinder, or other existing linear driving mechanism, and the second driving mechanism 420 can also be an electric cylinder, a pneumatic cylinder, an oil cylinder, or other existing linear driving mechanism.
[0049] Of course, in other embodiments, the position adjustment mechanism 400 may also be a robotic arm or an existing driving mechanism with multiple driving directions.
[0050] like Figure 3As shown, in one embodiment, the fixing assembly 300 includes a first connecting member 310, a second connecting member 320, and a movable cover member 330. The first connecting member 310 and the second connecting member 320 are relatively connected to the positioning assembly 200. The movable cover member 330 is rotatably connected to the first connecting member 310 and is also detachably connected to the second connecting member 320, so that the movable cover member 330 is used to fix the head mount 20 in the placement slot 201. In this embodiment, the first end of the movable cover member 330 is rotatably connected to the first connecting member 310, and the second end of the movable cover member 330 is detachably connected to the second connecting member 320. When fixing the head mount 20, the movable cover member 330 is rotated so that the second end of the movable cover member 330 is connected to the second connecting member 320, so that the movable cover member 330 abuts the head mount 20, thereby fixing the head mount 20 in the placement slot 201. When removing the headband support 20, the movable cover 330 is rotated to separate the second end of the movable cover 330 from the second connecting member 320, thereby releasing the movable cover 330 from the headband support 20. Since the headband support 20 can be fixed or released by simply rotating the movable cover 330, fixing and releasing the headband support 20 is more convenient.
[0051] like Figure 3 As shown, in one embodiment, the positioning assembly 200 includes a positioning member 210 and a limiting member 220. A placement slot 201 is defined in the positioning member 210. The limiting member 220 is connected to the positioning member 210 and is positioned corresponding to the opening of the placement slot 201, so that the limiting member 220 is configured to abut against one end of the head mount 20. In this embodiment, because the limiting member 220 restricts the movement of the head mount 20, the limiting member 220 and the fixing assembly 300 are used to jointly limit the positional stability of the head mount 20, thereby improving the positional stability of the head mount 20 and, in turn, improving the fit quality of the adsorption mechanism 600.
[0052] like Figures 1 to 3As shown, in one embodiment, the adsorption mechanism 600 includes two contoured adsorption members 610, which are oppositely connected to the power output end of the fitting mechanism 500. Since the head mount 20 has two holes 202 at both ends, the adsorption mechanism 600 includes two contoured adsorption members 610 in this embodiment. Both contoured adsorption members 610 are adapted to fit the fitting area 201 of the head mount 20. The two contoured adsorption members 610 are oppositely connected to the power output end of the fitting mechanism 500. The fitting mechanism 500 is used to drive the two contoured adsorption members 610 to separate so that the two contoured adsorption members 610 respectively attach the sticker to the positions corresponding to the two holes 202, that is, the two contoured adsorption members 610 respectively attach the sticker to the two fitting areas 201 at one end of the head mount 20. The fitting mechanism 500 is also used to drive the two contoured adsorption members 610 to close together so that the two contoured adsorption members 610 leave the fitting area 201 of the head mount 20.
[0053] like Figure 5 As shown, in one embodiment, the fitting mechanism 500 includes a mounting member 510, a sliding member 520, an elastic reset member 530 and a wedge-shaped pusher 540, wherein the mounting member 510 is connected to the power output end of the position adjustment mechanism 400; the number of the sliding members 520 is two, and the two sliding members 520 are relatively slidably connected to the mounting member 510, and the extension direction of each sliding member 520 is parallel to the horizontal direction, and each sliding member 520 is provided with an abutting inclined surface 521 on one side adjacent to the other sliding member 520, and the abutting inclined surface 521 of each sliding member 520 is away from the machine 100, and the two contoured adsorption members 610 are respectively connected to Two sliding members 520; there are two elastic return members 530, and the two elastic return members 530 are relatively connected to the mounting member 510. The two elastic return members 530 are arranged in a one-to-one correspondence with the two sliding members 520, and each elastic return member 530 is located on the side of the corresponding sliding member 520 away from the other sliding member 520. Each elastic return member 530 is also correspondingly connected to a sliding member 520, so that the two elastic return members 530 are used to push the two sliding members 520 to close; a pushing inclined surface 541 is respectively provided on the opposite sides of the wedge-shaped pushing member 540, and each pushing inclined surface 541 slides in contact with an abutting inclined surface 521.
[0054] like Figure 5As shown, in this embodiment, the two pushing inclined surfaces 541 of the wedge-shaped pushing member 540 respectively push the abutting inclined surfaces 521 of the two sliding members 520, so that the two sliding members 520 slide relatively on the mounting member 510, thereby separating the two sliding members 520 and compressing the two elastic reset members 530. Since the two contoured adsorption members 610 are respectively connected to the two sliding members 520, the two sliding members 520 drive the two contoured adsorption members 610 to separate, thereby causing the two contoured adsorption members 610 to respectively attach the sticker to the two opposite inner sides of the head-mounted bracket 20, that is, the two contoured adsorption members 610 respectively attach the sticker to the fitting area 201 at one end of the head-mounted bracket 20. After the two contoured suction members 610 have respectively attached the sticker to the opposing inner sides of the head mount 20, the position adjustment mechanism 400 drives the two contoured suction members 610 downward. Specifically, the first drive mechanism 410 drives the two contoured suction members 610 downward so that each contoured suction member 610 pushes the edge of the corresponding sticker near the center of the head mount 20 to prevent the sticker from warping at the center of the head mount 20. The wedge-shaped pusher 540 then releases its pushing force, and each elastic return member 530 elastically returns and pushes the corresponding slider 520 toward the other slider 520, causing the two sliders 520 to close. Since the two contoured suction members 610 are respectively connected to the two sliders 520, the two contoured suction members 610 are moved away from the attachment area 201 of the head mount 20. In this way, the combined action of the wedge-shaped pusher 540, the elastic return member 530, and the position adjustment mechanism 400 achieves the attachment operation of the two contoured suction members 610.
[0055] like Figure 5 As shown, the laminating mechanism 500 further includes a laminating driving member 550, which is mounted on the mounting member 510. The wedge-shaped pushing member 540 is connected to the power output end of the laminating driving member 550, so that the laminating driving member 550 is used to drive the wedge-shaped pushing member 540 to move. In this embodiment, the laminating driving member 550 drives the wedge-shaped pushing member 540 to move in the direction of the two sliding members 520, so that the wedge-shaped pushing member 540 pushes the two sliding members 520 apart. The laminating driving member 550 drives the wedge-shaped pushing member 540 to move in a direction away from the two sliding members 520 to remove the pushing force of the wedge-shaped pushing member 540 on the two sliding members 520, so that each elastic reset member 530 is reset and pushes the corresponding sliding member 520 closer to the other sliding member 520, thereby closing the two sliding members 520.
[0056] like Figure 5As shown, the laminating mechanism 500 further includes a guide member 560 connected to the mounting member 510. The two sliding members 520 are relatively slidably connected to the guide member 560, so that the two sliding members 520 are relatively slidably connected to the mounting member 510 via the guide member 560. In this embodiment, since each guide member 560 guides the movement of the corresponding sliding member 520, the movement accuracy of each sliding member 520 is high, thereby achieving a high laminating accuracy of each contoured adsorption member 610.
[0057] It is understood that before the laminating device 10 performs a laminating operation, a commissioning operation is required. During this commissioning operation, the position adjustment mechanism 400 is more likely to collide with the head mount 20, thereby damaging the head mount 20. Furthermore, after the laminating device 10 performs a large number of laminating operations, the position adjustment mechanism 400 will experience some wear, resulting in poor movement accuracy of the position adjustment mechanism 400, which in turn reduces the laminating quality of the suction mechanism 600, and may even cause the head mount 20 to be damaged by the suction mechanism 600, thereby reducing the laminating quality of the suction mechanism 600.
[0058] In order to improve the fitting quality of the adsorption mechanism 600 and avoid the adsorption mechanism 600 from damaging the head-mounted bracket 20, as shown in FIG. Figure 6 and Figure 7 As shown, in one embodiment, the fitting device 10 also includes a buffer mechanism 800, which includes a telescopic assembly 810 and an elastic element 820. The two ends of the telescopic assembly 810 are respectively connected to the power output end of the position adjustment mechanism 400 and the fitting mechanism 500. The elastic element 820 is sleeved on the telescopic assembly 810, and the two ends of the elastic element 820 are respectively connected to the position adjustment mechanism 400 and the fitting mechanism 500. Furthermore, the fitting device 10 also includes a blocking assembly 900, which is connected to the fixing assembly 300 and is used to be arranged in the head-mounted bracket 20 and contact one end surface of the two contoured adsorption members 610. In this embodiment, one end of the telescopic assembly 810 is connected to the position adjustment mechanism 400 via the rotation drive mechanism 700, and the other end of the telescopic assembly 810 is connected to the fitting mechanism 500. When the adsorption mechanism 600 collides with the blocking component 900, the telescopic component 810 shortens and the elastic element 820 compresses, preventing the adsorption mechanism 600 from continuing to move, that is, preventing the adsorption mechanism 600 from excessive movement, thereby keeping the adsorption mechanism 600 in the correct position, helping to improve the fitting accuracy of the adsorption mechanism 600, and at the same time preventing the adsorption mechanism 600 from colliding with the head-mounted bracket 20, thereby improving the quality of the head-mounted bracket 20.
[0059] However, since the fitting mechanism 500 drives the two contoured adsorption parts 610 to separate or close, and the blocking component 900 contacts the end faces of the two contoured adsorption parts 610, each contoured adsorption part 610 and the blocking component 900 rub against each other, thereby causing each contoured adsorption part 610 and the blocking component 900 to be worn. After large-scale fitting, the wear of each contoured adsorption part 610 and the blocking component 900 will be relatively large. When each contoured adsorption part 610 contacts the blocking component 900, there will be a large deviation in the position of each contoured adsorption part 610, thereby causing the fitting quality of the adsorption mechanism 600 to be poor.
[0060] In order to suppress the wear of each contoured adsorption member 610 and the blocking assembly 900, and thus improve the fitting accuracy of the adsorption mechanism 600, as shown in FIG. Figure 7 As shown, in one embodiment, the blocking component 900 includes a fixing member 910 and a plurality of rolling members 920, the fixing member 910 is connected to the fixing member 300, and the plurality of rolling members 920 are connected to a side of the fixing member 910 adjacent to the adsorption mechanism 600 and rotated in a horizontal direction, and the plurality of rolling members 920 are arranged at intervals, each rolling member 920 is located in the head-mounted bracket 20, and one end face of each contoured adsorption member 610 is in contact with at least one rolling member 920. In this embodiment, when the bonding mechanism 500 drives the two contoured adsorption parts 610 to separate or close, each contoured adsorption part 610 is connected to the fixing part 910 by rolling through at least one rolling part 920, thereby reducing the wear of each contoured adsorption part 610 and the blocking component 900. After large-scale bonding, the wear of each contoured adsorption part 610 and the blocking component 900 is relatively small. When each contoured adsorption part 610 contacts the blocking component 900, the position accuracy of each contoured adsorption part 610 is relatively high, which helps to improve the bonding quality of the adsorption mechanism 600.
[0061] It can be understood that since multiple rolling members 920 are arranged at intervals and multiple rolling members 920 are connected to one side of the fixing member 910 by rotating in the horizontal direction, as each contoured adsorption member 610 moves, each contoured adsorption member 610 contacts a different number of rolling members 920 at different positions, that is, each contoured adsorption member 610 has a different contact area with the blocking assembly 900 at different positions, which makes the force on each contoured adsorption member 610 uneven, and thus makes the wear of each contoured adsorption member 610 inconsistent. After a large number of bonding operations are performed, the wear inconsistency of each contoured adsorption member 610 will be magnified, that is, the unevenness of each contoured adsorption member 610 will be magnified. When each contoured adsorption member 610 rolls along the blocking assembly 900, each contoured adsorption member 610 will shake, causing each contoured adsorption member 610 to slip when attaching the sticker. At the same time, the edge of the sticker will first contact the attaching area 201, which makes it easier for the adhesive layer thickness at the edge of the sticker to decrease due to slippage, making it easier for the sticker to warp due to insufficient adhesion. Since the left and right ear shells pass through the sticker when being pulled, the left and right ear shells will get stuck when passing through the warped edge, and the left and right ear shells are more likely to lift the sticker through the warped edge, resulting in poor sticker attachment quality, and even causing the sticker to fail to cover the hole 202, thereby reducing the smoothness of pulling the left and right ear shells.
[0062] like Figure 8 As shown, in one embodiment, the adsorption mechanism 600 further includes two heating elements 620, and the two heating elements 620 are arranged in a one-to-one correspondence with the two contoured adsorption elements 610, each contoured adsorption element 610 is formed with a receiving cavity 6101, and each heating element 620 is located in the receiving cavity 6101 of the corresponding contoured adsorption element 610, and each heating element 620 is connected to the corresponding contoured adsorption element 610 so that the heat of each heating element 620 is transferred to the corresponding contoured adsorption element 610. In this embodiment, when each contoured adsorption component 610 adheres the corresponding sticker to the head-mounted bracket 20, the bonding mechanism 500 stops for a period of time so that each contoured adsorption component 610 continues to abut against the corresponding sticker, so that the heat of each heating component 620 is transferred to the corresponding sticker through the corresponding contoured adsorption component 610, thereby enhancing the fluidity of the adhesive layer of the sticker, and thus making the adhesive layer thickness at various parts of the sticker tend to be consistent, that is, the adhesive layer thickness at the edge of the sticker is increased, thereby improving the adhesion force of the sticker edge after cooling, suppressing the problem of sticker warping, and thus improving the bonding quality of the sticker to ensure the smoothness of pulling and pulling the left and right ear shells.
[0063] It can be understood that since each contoured adsorption part 610 is provided with a plurality of adsorption holes 6102, when the sticker is heated, the portion of the sticker corresponding to each adsorption hole 6102 will expand into the corresponding adsorption hole 6102, and then a plurality of raised structures will appear on the surface of the sticker. Since the left and right ear shells will slide along the sticker when pulling, the raised structures reduce the smoothness of pulling the left and right ear shells, and even cause the left and right ear shells to push the sticker to shift through the raised structures, thereby reducing the fitting quality of the sticker.
[0064] like Figure 8 and Figure 9 As shown, in one embodiment, each contoured adsorption member 610 includes a contoured portion 611 and a plurality of valves 612, the contoured portion 611 of each contoured adsorption member 610 is provided with a plurality of adsorption holes 6102, the contoured portion 611 of each contoured adsorption member 610 is further provided with an air flow channel 6103, the air flow channel 6103 of the contoured portion 611 of each contoured adsorption member 610 is connected to the corresponding plurality of adsorption holes 6102, the plurality of adsorption holes 6102 of the contoured portion 611 of each contoured adsorption member 610 and the corresponding plurality of valves 612 are arranged in a one-to-one correspondence, and the valve 612 of each contoured adsorption member 610 is slidably arranged in the corresponding adsorption hole 6102. Furthermore, each adsorption hole 6103 is formed with a slope 6104 on the inner wall adjacent to the corresponding air flow channel 6103, and each slope 6104 is arranged toward the corresponding air flow channel 6104, so that when each valve 612 is aligned with the corresponding slope 6104, there is a flow gap between each valve 612 and the corresponding slope 6104, thereby allowing air flow to flow in the adsorption hole 6102.
[0065] In this embodiment, when the contoured portion 611 of each contoured adsorbent 610 attracts the sticker, negative pressure forms within the corresponding airflow channel 6103, causing negative pressure to form within the corresponding adsorption hole 6102. This in turn causes the airflow to push the corresponding valve 612 into alignment with the corresponding inclined surface 6104, creating a flow gap between the corresponding valve 612 and the corresponding inclined surface. Simultaneously, the contoured portion 611 of each contoured adsorbent 610 attracts the corresponding sticker through the negative pressure. When the laminating mechanism 500 remains stopped and the contoured portion 611 of each contoured adsorbent 610 abuts the corresponding sticker, positive pressure forms within the airflow channel 6103, causing positive pressure to form within the corresponding adsorption hole 6102. This in turn causes the airflow to push the corresponding valve 612 into contact with the corresponding sticker, preventing the sticker from expanding and bulging at the area corresponding to the adsorption hole 6102. This improves the smoothness of the sticker after lamination, contributing to improved sticker lamination quality.
[0066] In order to prevent each valve 612 from accidentally detaching from the corresponding adsorption hole 6102, as shown in FIG. Figure 9As shown, further, the inner wall of each adsorption hole 6102 of the contoured portion 611 of each contoured adsorption member 610 is formed with a limiting groove 6105. The corresponding valve 612 includes a valve body 6121 and a limiting portion 6122 connected thereto. The valve body 6121 of the corresponding valve 612 is slidably disposed within the corresponding adsorption hole 6102, and the limiting portion 6122 of the corresponding valve 612 slides and is limited within the corresponding limiting groove 6105. In this embodiment, when each valve 612 of each contoured adsorption member 610 is flush with the opening edge of the corresponding adsorption hole 6102, the limiting portion 6122 of the corresponding valve 612 abuts against the groove wall of the corresponding limiting groove 6105, thereby preventing the limiting portion 6122 of the corresponding valve 612 from sliding out of the corresponding adsorption hole 6102.
[0067] The present application also provides a laminating device, including the laminating device 10 described in any of the above embodiments. Compared with the prior art, the present invention has at least the following advantages:
[0068] 1. Since the fixing component 300 fixes the head-mounted bracket 20 in the placement groove 201, the position stability of the head-mounted bracket 20 is higher, which helps to improve the quality of the sticker being attached to the head-mounted bracket 20.
[0069] 2. Since the position adjustment mechanism 400 is used to move the fitting mechanism 500 into the head-mounted bracket 20 and align it with the fitting area 201, the efficiency of aligning the sticker with the fitting area 201 is improved. Since the fitting mechanism 500 is used to attach the sticker to the fitting area 201 of the head-mounted bracket 20, manual fitting operations of the sticker are avoided. In this way, the positioning and fitting operations of the sticker do not require manual intervention, thus avoiding manual positioning errors and manual fitting errors, and improving the fitting efficiency and quality of the sticker.
[0070] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.
Claims
1. A laminating device, characterized in that: include: A positioning component is provided with a placement slot for accommodating the head-mounted bracket; A fixing component, movably connected to the positioning component and arranged corresponding to the placement slot, so that the fixing component is used to fix the head-mounted bracket in the placement slot; Position adjustment mechanism; A laminating mechanism connected to the power output end of the position adjustment mechanism, wherein the position adjustment mechanism is used to drive the laminating mechanism to move; as well as An adsorption mechanism is used to adsorb the sticker, and the adsorption mechanism is connected to the power output end of the bonding mechanism, so that the position adjustment mechanism is used to move the adsorption mechanism into the head-mounted bracket; the bonding mechanism is used to drive the adsorption mechanism to move so that the adsorption mechanism bonds the sticker to the bonding area of the head-mounted bracket; The fixing assembly includes a first connecting member, a second connecting member and a movable covering member. The first connecting member and the second connecting member are relatively connected to the positioning assembly. The movable covering member is rotatably connected to the first connecting member. The movable covering member can also be detachably connected to the second connecting member so that the movable covering member is used to fix the head-mounted bracket in the placement slot.
2. The laminating device according to claim 1, characterized in that: The position adjustment mechanism includes a first drive mechanism and a second drive mechanism. The second drive mechanism is installed at the power output end of the first drive mechanism. The fitting mechanism is connected to the power output end of the second drive mechanism, and there is an angle between the driving direction of the first drive mechanism and the driving direction of the second drive mechanism.
3. The laminating device according to claim 1, wherein: The adsorption mechanism includes two contoured adsorption parts, which are relatively connected to the power output end of the fitting mechanism. The fitting mechanism is used to drive the two contoured adsorption parts to separate or close.
4. The laminating device according to claim 3, characterized in that: The laminating mechanism comprises: A mounting member connected to the power output end of the position adjustment mechanism; Two sliding members are connected to the mounting member in a relatively slidable manner, and each sliding member is provided with an abutting inclined surface on a side adjacent to the other sliding member; the two contoured adsorption members are respectively connected to the two sliding members; Two elastic return members are connected to the mounting member relative to each other, and each elastic return member is further connected to a corresponding sliding member, so that the two elastic return members are used to push the two sliding members to close; and The wedge-shaped pushing member has a pushing inclined surface on two opposite sides, and each pushing inclined surface is correspondingly slidably abutted against one abutting inclined surface.
5. The laminating device according to claim 4, characterized in that: The laminating mechanism further includes a laminating driving member, which is mounted on the mounting member, and the wedge-shaped pushing member is connected to a power output end of the laminating driving member.
6. The laminating device according to claim 4, characterized in that: The fitting mechanism further includes a guide member connected to the mounting member, and the two sliding members are connected to the guide member in a relatively sliding manner, so that the two sliding members are connected to the mounting member in a relatively sliding manner through the guide member.
7. The laminating device according to claim 1, characterized in that: The laminating device further comprises a rotation drive mechanism, which is mounted on the power output end of the position adjustment mechanism. The laminating mechanism is mounted on the power output end of the rotation drive mechanism, so that the rotation drive mechanism is used to drive the adsorption mechanism to rotate.
8. The laminating device according to any one of claims 1 to 7, characterized in that: The positioning assembly includes a positioning member and a limiting member. The placement groove is opened on the positioning member. The limiting member is connected to the positioning member and is arranged corresponding to the opening of the placement groove, so that the limiting member is used to abut against one end of the head-mounted bracket.
9. A laminating device, characterized in that: The method comprises the laminating device according to any one of claims 1 to 8.
Citation Information
Patent Citations
Film laminating device
CN208673041U