A hot melt structure
The design of the hot-melt structure allows the product to be placed at an angle for hot-melt operation, which solves the hot-melt difficulties caused by the special structure of the product, maintains production efficiency, and has a simple structure and high reliability.
Patent Information
- Application Number
- CN202111400496.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-24
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2041-11-24
AI Technical Summary
In the prior art, products with special structures (such as side hot-melt) cannot be placed at an angle, resulting in the inability to perform hot-melt operations, which affects production efficiency.
The hot melt structure is adopted, including hot melt copper plate, bottom plate, slide rail and tilting structure, which allows the product to be tilted and hot melt action to be performed. The position of the hot melt copper plate and the bottom plate is fixed by positioning columns and limit holes. The hot melt head is perpendicular to the hot melt shape of the product. The slide rail and base design ensure the stable placement of the product.
The product can be hot-melted without being laid flat, which solves the hot-melting difficulties of products with special structures and keeps the production cycle unchanged. It has a simple structure and high reliability.
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Figure CN116160691B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to product assembly hot melt technical field, and particularly relates to a hot melt structure. BACKGROUND
[0002] In the product assembly process, common hot melt procedures are required for products such as notebook computers, keyboards, game consoles and the like; hot melting is to melt a fixing part to a body, the fixing part and the body can be referred to as a melting part, and one of the melting parts is usually provided with a plurality of through holes, and the other melting part is provided with a plurality of hot melt columns; for example, the body is provided with a plurality of through holes, and the fixing part is provided with a plurality of hot melt columns; the hot melt columns on the fixing part are melted into hot melt glue by a hot melt machine, the hot melt glue after melting covers the through holes of the body and the periphery of the through holes, and when the hot melt glue solidifies, a covering layer is formed, at this time, the body is clamped between the covering layer and the fixing part, so that the fixing part is melted on the body; however, in order to make the covering layer uniform, the hot melt columns need to be uniformly heated, and in order to avoid damage to the product by the hot melt machine, the product needs to be placed flat to perform the hot melt operation.
[0003] In the past, the product is directly placed in the hot melt fixture to perform the hot melt operation, and the disadvantage is that the product structure is ordinary, and the hot melting position is perpendicular to the product; the present inventor produces a notebook computer shell, and the user is more comfortable to use, so that the product function requires a foot pad to be provided on the side of the product to be fixed by hot melting; the hot melt operation cannot be performed for such special structure products or side hot melting products.
[0004] Therefore, it is necessary to invent a hot melt structure to enable the product to be placed obliquely and perform the hot melt operation, that is, the product can also perform the hot melt operation without being placed flat, so as to solve the difficulty that the hot melt operation cannot be performed due to the special structure of the product, such as side hot melting. SUMMARY
[0005] Therefore, the purpose of the present application is to provide a hot melt structure, which is compared with the previous operation mode, the product is placed obliquely and performs the hot melt operation, that is, the product can also perform the hot melt operation without being placed flat, and the difficulty that the hot melt operation cannot be performed due to the special structure of the product, such as side hot melting, is solved; the hot melt operation using the present application does not affect the production cycle, the structure is simple, and the reliability is high.
[0006] In order to achieve the above purpose, the present application adopts the following technical scheme:
[0007] A hot melt structure, which comprises:
[0008] A hot melt copper plate is fixed on a hot melt machine, and a hot melt head is arranged on the hot melt copper plate;
[0009] The bottom plate is clamped on the workbench corresponding to the hot melt machine. Two bosses are provided on the edge of the bottom plate. The two bosses are provided with process holes. When fixing the hot melt copper plate to the hot melt machine, positioning columns are installed on the process holes to fix the relative position between the hot melt copper plate and the bottom plate through the positioning columns;
[0010] A slide rail is fixed to the bottom plate, and stops are respectively provided at both ends of the slide rail, and both stops are fixed to the bottom plate;
[0011] The inclined structure is provided with a product placement area. During hot melting, the product is placed in the product placement area so that the hot melting head is perpendicular to the hot melting shape of the product. The inclined structure is embedded in the slide rail through a base and can move back and forth along the slide rail.
[0012] Furthermore, the hot-melt copper plate is provided with positioning holes, limiting holes and several clamping holes; wherein, when the hot-melt copper plate and the base plate are clamped, the positioning column passes through the positioning holes and the process holes to fix the relative position between the hot-melt copper plate and the base plate, and the limiting holes serve to limit the vertical movement of the hot-melt copper plate, and the several clamping holes enable the hot-melt copper plate to be installed and fixed in a plurality of matching ways corresponding to the hot-melt machine.
[0013] Furthermore, the hot melt head is fixed on the hot melt copper plate through a mounting block, and the number and type of the hot melt head can be designed according to product requirements.
[0014] Furthermore, the product placement area is tilted according to the shape of the product and the hot melt position of the product, so that the hot melt head is perpendicular to the hot melt shape of the product.
[0015] Furthermore, the base is arranged horizontally, and the inclined structure is suspended above the base by two rib supports. The rib is provided with an inclined groove, and the inclined groove is designed according to the shape of the product and the hot melt position of the product so that the product placement area meets the product placement requirements; two sliding grooves are provided under the base, and the sliding grooves enable the base to be embedded in the slide rail.
[0016] Compared with the existing technology, the present invention enables the product to be placed at an angle and hot-melt action to be performed, that is, the product does not need to be placed flat to perform hot-melt action, which solves the difficulty of not being able to perform hot-melt action due to the special structure of the product, such as side hot-melt action. The use of the present invention for hot-melt action does not affect the production cycle, has a simple structure and high reliability.
Brief Description of the Drawings
[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0018] Figure 2 It is a partial structural schematic diagram of the present invention.
[0019] Figure 3 It is a schematic cross-sectional view of the local structure of the present invention.
[0020] Figure 4 It is a schematic diagram of the local structure of the present invention from another perspective. [Specific implementation method]
[0021] In order to have a further understanding of the purpose, technical effects and technical means of the present invention, the following detailed description is given in conjunction with the accompanying drawings. Figure 1 , Figure 2 , Figure 3 , Figure 4 As shown, the hot melt structure of the present invention is applied to the hot melt process of product assembly, which includes: a hot melt copper plate 100, a bottom plate 200, a slide rail 300, a tilting mechanism 400, etc., wherein,
[0022] The hot-melt copper plate 100 is a rectangular plate having positioning holes 101, position-limiting holes 103, and a plurality of clamping holes 102. The hot-melt copper plate 100 is fixed to a hot-melt machine (not shown). A hot-melt head 110 is provided on the hot-melt copper plate 100.
[0023] The bottom plate 200 is a square plate that is clamped on the workbench corresponding to the hot melt machine. Two rectangular bosses 201 are provided on the edge of the bottom plate 200. The two rectangular bosses 201 are symmetrically arranged and have process holes 202 on them. When fixing the hot melt copper plate 100 to the hot melt machine, positioning columns (not shown in the figure) are installed on the process holes 202. The positioning columns are passed through the positioning holes 101 to fix the relative position between the hot melt copper plate 100 and the bottom plate 200.
[0024] The slide rail 300 is in the shape of a rectangular parallelepiped and is fixed to the base plate 200 . A stopper 310 is provided at one end and a stopper 311 is provided at the other end. Both stoppers 310 and 311 are fixed to the base plate 200 .
[0025] The inclined structure 400 is tilted and has a product placement area 420. During hot melting, the product 10 is placed in the product placement area 420 so that the hot melt head 110 is perpendicular to the hot melt shape of the product 10. The inclined structure 400 is embedded in the slide rail 300 through a base (410). The inclined structure 400 can move back and forth along the slide rail 300.
[0026] In this embodiment, the limiting through holes 103 of the hot melt copper plate 100 serve to limit the vertical movement of the hot melt copper plate 100, and the multiple clamping through holes 102 of the hot melt copper plate 100 enable the hot melt copper plate 100 to be installed and fixed in multiple matching ways corresponding to the hot melt machine.
[0027] In this embodiment, the hot melt head 110 is fixed on the hot melt copper plate 100 through a mounting block 111 . The hot melt head 110 is a cylinder and there are two of them.
[0028] In this embodiment, the product placement area 420 is tilted according to the shape of the product 10 and the hot melt position of the product 10 , so that the hot melt head 110 is perpendicular to the hot melt shape of the product 10 .
[0029] In this embodiment, the base 410 is a rectangular plate, which is arranged horizontally. The inclined structure 400 is supported on the base 410 by two ribs 411. The rib 411 is provided with an inclined groove 412. The inclined groove 412 is designed according to the shape of the product 10 and the hot melt position of the product 10, so that the product placement area 420 meets the placement requirements of the product 10; two rectangular blocks are fixed side by side under the base 410, and a space is left in the middle to form a slide groove 413. There are two slide grooves 413, so that the base (410) is embedded in the slide rail 300.
[0030] In summary, the workflow is:
[0031] The hot melt head 110 is fixed on the hot melt copper plate 100, and a positioning column (not shown in the figure) is passed through the positioning through hole 101 and the process hole 202 to fix the relative position between the hot melt copper plate 100 and the bottom plate 200. At this time, the inclined structure 400 is at the outer end of the slide rail 300, that is, the slide groove 413 is aligned with the stopper 311, and the product 10 is placed on the product placement area 420, so that the product 10 is tilted and placed, so that the hot melt head 110 is perpendicular to the position on the product 10 that needs to be hot-melted; the inclined structure 400 slides to the inner limit, that is, the slide groove 413 is aligned with the stopper 311. 10, align the hot melt head 110 with the position on the product 10 that needs to be hot-melted, and keep the hot melt head 110 aligned with the position on the product 10 that needs to be hot-melted by the positioning column until the hot melt copper plate 100 is fixed on the hot melt machine (not shown in the figure) and the base plate 200 is clamped on the workbench corresponding to the hot melt machine. Then, remove the positioning column to perform the hot melting operation. After the hot melting is completed, the inclined structure 400 slides to the outer end of the slide rail 300, the slide groove 413 is aligned with the stop block 311, and the product 10 is taken out to avoid scalding the product 10 and the operator. When the next piece is hot-melted, repeat the above operation.
[0032] The above implementation method is relatively reasonable. In actual work, the product placement area 420 and the two ribs 411 can be adjusted as needed, or the inclined structure 400 and the two ribs 411 can be replaced, so that the product 10 can be placed at an angle and hot-melt can be performed, that is, the product 10 can be hot-melt without being placed flat, which solves the difficulty of being unable to perform hot-melt due to the special structure of the product 10, such as side hot-melt. The use of the present invention for hot-melt does not affect the production cycle, has a simple structure, and is highly reliable.
[0033] The technical principles of the present invention have been described above in conjunction with specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and are not to be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific embodiments of the present invention without inventive effort, and such embodiments will fall within the scope of protection of the present invention.
Claims
1. A hot melt structure, characterized in that: include: A hot-melt copper plate, the hot-melt copper plate being fixed on a hot-melt machine and provided with a hot-melt head; The bottom plate is clamped on the workbench corresponding to the hot melt machine. The edge of the bottom plate is provided with two bosses, and the two bosses are provided with process holes. When fixing the hot melt copper plate to the hot melt machine, positioning columns are installed on the process holes to fix the relative position between the hot melt copper plate and the bottom plate through the positioning columns; A slide rail is fixed to the bottom plate, and stops are respectively provided at both ends of the slide rail, and both stops are fixed to the bottom plate; An inclined structure, wherein a product placement area is provided on the inclined structure, and the product is placed in the product placement area during hot melting, so that the hot melting head is perpendicular to the hot melting shape of the product, and the inclined structure is embedded in the slide rail through a base, and the inclined structure can move back and forth along the slide rail; The hot-melt copper plate is provided with a positioning through hole, a limiting through hole and a plurality of clamping through holes; wherein, when the hot-melt copper plate and the base plate are clamped, a positioning column is passed through the positioning through hole and the process hole position to fix the relative position between the hot-melt copper plate and the base plate, and the limiting through hole serves to limit the vertical movement of the hot-melt copper plate. The plurality of clamping through holes enable the hot-melt copper plate to be installed and fixed in a plurality of matching ways corresponding to the hot-melt machine.
2. A hot melt structure according to claim 1, characterized in that: The hot melt head is fixed on the hot melt copper plate through a mounting block, and the number and type of the hot melt head can be designed according to product requirements.
3. A hot melt structure according to claim 1, characterized in that: The product placement area is tilted according to the shape of the product and the hot melt position of the product, so that the hot melt head is perpendicular to the hot melt shape of the product.
4. A hot melt structure according to claim 1, characterized in that: The base is arranged horizontally, and the inclined structure is suspended above the base by two rib supports. The rib is provided with an inclined groove. The inclined groove is designed according to the shape of the product and the hot melt position of the product so that the product placement area meets the product placement requirements; two sliding grooves are provided under the base, which enable the base to be embedded in the slide rail.
Citation Information
Patent Citations
Hot melt pressing fixture
CN207156478U
Double-head precise hot melting device
CN210617337U