Flat belt stacking structure with silver plating material
By providing positioning support structures on both sides and in the center of the silver-plated flat belt, the wear problem during stacking is solved, a flawless stacking effect is achieved, and the integrity of the functional product is ensured.
Patent Information
- Application Number
- CN202422890041.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-26
AI Technical Summary
When existing silver-plated flat belts are stacked, the surface of the functional product is easily worn, resulting in production defects or defective products.
A flat belt stacking structure with silver-plated material is designed, and a positioning support structure is set on both sides and the center area of the flat belt, including a concave part and a convex part around it, to ensure that the flat belts of adjacent layers are tightly attached to avoid direct contact, forming an isosceles triangle support to prevent wear.
The design of the positioning support structure ensures that the surface of the functional products after stacking is flawless, thereby improving product quality.
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Figure CN223457419U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of sheet stacking, in particular to a flat ribbon stacking structure with silver-plated material. BACKGROUND
[0002] The existing flat ribbon plated with silver is processed to form an array of functional products in the center area excluding the frame. In order to facilitate the transfer operation, the flat ribbon is placed by stacking in the waiting area between different stations. However, in the prior art, the lower surface of the upper flat ribbon directly adheres to the lower surface of the lower flat ribbon, which causes the upper surface of the functional product to directly contact the lower surface of the flat ribbon, or the double surface of the functional product directly contacts the surface of the corresponding functional product located in the upper and lower layers. This inevitably causes the surface of some functional products to be worn, which leads to defects or substandard products in the production of functional products. Therefore, there is an urgent need to develop a stacking structure suitable for silver-plated material flat ribbon to ensure the integrity of the surface of the functional product. SUMMARY
[0003] To solve the above problems, the utility model provides a flat ribbon stacking structure with silver-plated material, which makes the surface of the stacked functional product flawless and ensures the quality of the functional product.
[0004] A flat ribbon stacking structure with silver-plated material, characterized in that it comprises a flat ribbon, the two sides of the flat ribbon are non-processed functional product edge strip areas, the middle area of the flat ribbon in the width direction is a functional area for processing functional products, the functional area is arrayed with several groups of functional products, and there is a gap around adjacent functional products, the edge strip area on each side is sequentially and intermittently provided with a first positioning support structure along one surface in the length direction, the first positioning support structure comprises an inner recessed part and a peripheral protruding part, the peripheral protruding part is arranged outwardly protruding from the corresponding surface of the flat ribbon, and when stacking, the peripheral protruding part of the first positioning support structure tightly abuts the corresponding surface of the flat ribbon of the adjacent layer.
[0005] Further characterized in that:
[0006] The center area of the flat ribbon in the width direction is provided with a second positioning support structure corresponding to the gap position between the functional products, and adjacent second positioning support structures are intermittently arranged, the second positioning support structure and the first positioning support structure are arranged on the same surface of the flat ribbon, and the second positioning support structure comprises an inner recessed part and a peripheral protruding part;
[0007] The second positioning support structure and the first positioning support structure are the same positioning support structure;
[0008] The functional products form a matrix arrangement of N rows and M columns, the first positioning support structure is arranged at the front end of two vertex positions of every two rows of functional products, the second positioning support structure is arranged at the interval position of the center position of every two rows of functional products, and the two first positioning support structures and the second positioning support structure corresponding to every two rows of functional products form three vertexes of an isosceles triangle, thereby ensuring that the stacking of the adjacent flat belts is stable and reliable, and the functional products are not pressed and attached.
[0009] Preferably, the first positioning support structure and the second positioning support structure are arranged on the lower surface of the flat belt, so that the flat belt is carried to a plane, and the lower surface of the functional product of the flat belt is not abraded.
[0010] The first positioning support structure and the second positioning support structure are formed by concave punching, the thickness of the concave punching is small, and the overall shape of the flat belt is not affected, when the concave punching is performed, the inner concave part is formed in the center part, and the material is extruded to form the peripheral protruding part at the same time, and the manufacturing and processing are simple and fast.
[0011] After the utility model is adopted, the functional products are separated from the stacking between the stacked flat belts through the peripheral protruding parts at the corresponding positions, so that the surface of the functional products is not abraded or pressed and attached, the surface of the stacked functional products is flawless, and the quality of the functional products is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0012] Fig. 1 It is a front view structural schematic diagram of the utility model;
[0013] Fig. 2 It is a bottom view structural schematic diagram of the flat belt of the utility model;
[0014] Fig. 3 It is a partial sectional view schematic diagram of the flat belt of the utility model;
[0015] The names corresponding to the serial numbers in the drawing are as follows:
[0016] Flat belt 10, edge strip area 20, functional area 30, functional product 40, first positioning support structure 50, second positioning support structure 60;
[0017] Inner concave part 1, peripheral protruding part 2. PREFERRED EMBODIMENT
[0018] A flat belt stacking structure with a silver-plated material, as shown in Figs. 1-3: it includes flat belt 10, both sides of flat belt 10 are non-processing functional product edge strip area 20, the width direction middle area of flat belt 10 is functional area 30 of processing functional product, functional area 30 is arranged with several groups of functional products 40, the four around adjacent functional products 40 are left with interval, and the edge strip area 20 of each side is sequentially arranged with first positioning support structure 50 along one surface of length direction, and the first positioning support structure 50 includes recessed portion 1 and four around convex portion 2, and the four around convex portion 2 is arranged outside the corresponding surface of flat belt 10, when stacking, the four around convex portion 2 of first positioning support structure 50 is tightly arranged with the corresponding surface of flat belt 10 of adjacent layer.
[0019] The center area of the width direction of flat belt 10 is provided with second positioning support structure 60 corresponding to the interval position between functional products 40, and adjacent second positioning support structures 60 are arranged at intervals, and the second positioning support structure 60 and the first positioning support structure 50 are arranged on the same surface of the flat belt 10, and the second positioning support structure 60 includes recessed portion 1 and four around convex portion 2.
[0020] In specific embodiments, the second positioning support structure 60 and the first positioning support structure 50 are the same positioning support structure;
[0021] The functional products 40 form an N-row M-column matrix arrangement, the first positioning support structure 50 is arranged corresponding to the front two vertex positions of every two rows of functional products 40, the second positioning support structure 60 is arranged at the interval position of the center position of every two rows of functional products 40, and the two first positioning support structures 50 and the second positioning support structure 60 corresponding to every two rows of functional products 40 form three vertices of an isosceles triangle, which ensures that the stacking support of adjacent flat belts 10 is stable and reliable, and ensures that the functional products will not be pressed.
[0022] In specific embodiments, the first positioning support structure 50 and the second positioning support structure 60 are arranged on the lower surface of the flat belt 10, which makes the flat belt 10 carried to a plane, and the lower surface of the functional products 40 of the flat belt 10 will not be worn.
[0023] In specific embodiments, the first positioning support structure 50 and the second positioning support structure 60 are formed by concave punching, the thickness of the concave punching is small and will not affect the overall shape of the flat belt, wherein the thickness of the flat belt is 0.1 mm, the lower convex height of the four around convex portion 2 is 0.005 mm, when concave punching, the center portion is recessed to form the recessed portion 1, and the material is extruded to form the four around convex portion 2 at the same time, which is simple and fast in manufacturing and processing.
[0024] The principle is as follows: the laminated flat belts are separated from the stacked functional products through the four surrounding protruding parts at the corresponding positions, so that the surface of the functional products is not abraded or pressed, the surface of the stacked functional products is flawless, and the quality of the functional products is ensured.
[0025] It is apparent for a person skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being defined by the appended claims rather than that of the above description, and it is intended to embrace all changes and modifications that fall within the meaning and scope of the equivalent elements of the claims. Any reference signs in the claims should not be considered as limiting the claims involved.
[0026] Furthermore, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by a person skilled in the art.
Claims
1. A flat ribbon stack structure having a silver-plated material, characterized by: It includes flat belts, both sides of the flat belts are non-processing functional product edge strip area, the middle area of the width direction of the flat belts is functional area of processing functional product, the functional area is arranged with several groups of functional products, the four around of adjacent functional products is left with interval, the first positioning support structure is arranged in sequence and interval along one surface of the length direction of the edge strip area of each side, the first positioning support structure includes concave part and four around convex part, the four around convex part is arranged outwardly convex to the corresponding surface of the flat belt, when stacking, the four around convex part of the first positioning support structure is close to the corresponding surface of the flat belt of adjacent layer.
2. The flat ribbon assembly having a silver plated material of claim 1, wherein: The center area of the width direction of the flat belt is provided with the second positioning support structure corresponding to the interval position between the functional products, the adjacent second positioning support structures are arranged in interval, the second positioning support structure and the first positioning support structure are arranged on the same surface of the flat belt, the second positioning support structure includes concave part and four around convex part.
3. The stacked structure of flat belts with silver-plated material according to claim 2, characterized in that: The second positioning support structure and the first positioning support structure are the same positioning support structure.
4. The flat belt stacking structure with silver-plated material according to claim 2, characterized in that: The functional products form N rows and M columns of matrix arrangement, the first positioning support structure is arranged corresponding to the front two vertex positions of every two rows of functional products, the second positioning support structure is arranged at the interval position of the center position of every two rows of functional products, and the two first positioning support structures and the second positioning support structure corresponding to every two rows of functional products form three vertices of isosceles triangle.
5. A flat ribbon stack structure with silver plated material according to any one of claims 2-4, characterized in that: The first positioning support structure and the second positioning support structure are arranged on the lower surface of the flat belt.
6. The flat belt stacking structure with silver-plated material according to claim 2, characterized in that: The first positioning support structure and the second positioning support structure are formed by punching, when punching, the center part is concave to form the concave part, and the material is extruded to form the four around convex part.