Stainless steel band feeding frame
Through the combination of multi-layer structural design and the combination of slide, pushing device, telescopic device and ventilation holes, the collision problem caused by mismatch in stainless steel belt sizes is solved, and the effects of strong adaptability, convenient operation, stable structure and moisture resistance are achieved, and production efficiency is improved.
Patent Information
- Application Number
- CN202421765199.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-24
AI Technical Summary
When the existing stainless steel belt loading rack faces different sizes of stainless steel belts, the size mismatch causes the stainless steel belt to collide with the rack, causing damage.
A multi-layer structure loading rack is designed, including a slide, a multi-stage pushing device and a telescopic device. Combined with a rotating connecting rod and a rotating device, it is adapted to different sizes of stainless steel belts, and protects the stainless steel belt from moisture through ventilation holes.
It improves the adaptability and operation convenience of the material discharge rack, reduces collision damage, maintains structural stability and moisture resistance, and improves space utilization and production efficiency.
Smart Images

Figure CN223087197U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stainless steel strip storage devices, and particularly relates to a stainless steel strip unwinding rack. Background Art
[0002] The stainless steel strip unwinding rack is mainly made of stainless steel material, so it has many advantages of stainless steel. First of all, it is corrosion-resistant, can well resist the erosion of various chemical substances, and has a certain rust-proof function. Secondly, it is heat-resistant and can be used normally even in a high-temperature environment without deformation. In addition, the stainless steel material is stable and not easy to rust, so it is relatively simple and easy to clean.
[0003] The stainless steel strip unwinding rack has a wide range of applications in industrial production, especially in workshops, warehouses and other places where stainless steel strips need to be frequently taken. It can not only improve work efficiency, but also ensure the cleanliness and order of stainless steel strips. By reasonably using the unwinding rack, the stainless steel strips can be conveniently managed, the time for searching and taking is reduced, and thus the production efficiency is improved.
[0004] With the continuous increase in the types of stainless steel strips, the existing stainless steel strip unwinding racks mostly adopt a fixed rack body design. When facing new types of stainless steel strips, due to the mismatch between the size of the stainless steel strip and the rack, the stainless steel strip collides with the rack when it is wound on the rack, and the collision causes damage to the rack. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a stainless steel strip unwinding rack to solve the problem that due to the mismatch between the size of the stainless steel strip and the rack, the stainless steel strip collides with the rack when it is wound on the rack, and the collision causes damage to the rack.
[0006] The utility model provides a stainless steel strip unwinding rack, which includes a rack body. The rack body includes a first layer body, a second layer body and a bottom plate layer. A connecting hanging plate is connected between the first layer body and the second layer body. The second layer body is installed on the bottom plate layer. A platform lifting device pad is installed at the middle position of the bottom plate layer. A platform lifting device is installed on the top of the platform lifting device pad. A platform connecting plate is installed on the top of the platform lifting device;
[0007] The first layer body is provided with a rectangular groove through hole, and the second layer body is provided with a rectangular groove. The rectangular groove through hole of the first layer body is communicated with the rectangular groove of the second layer body. Slideways are arranged on the inner sides of the rectangular groove through hole of the first layer body and the rectangular groove of the second layer body. A first-stage pushing device is installed in the rectangular groove of the second layer body. A first bearing plate is installed on the top of the first-stage pushing device. A second-stage pushing device is installed on the top of the first bearing plate. A second bearing plate is installed on the top of the second-stage pushing device;
[0008] A first bracket is installed on the top of the second bearing plate on one side of the top of the first layer body, and a second bracket is installed on the top of the second bearing plate on the other side of the top of the first layer body;
[0009] A rotating connecting rod is installed on the first bracket, and a rotating device is installed on the second bracket.
[0010] After the rotating connecting rod is connected to the rotating device, it is used to place the stainless steel strip. A telescopic device is installed at the connection position between the rotating connecting rod and the first bracket, and the telescopic device is used to drive the rotating connecting rod to move horizontally.
[0011] Furthermore, a stainless steel strip feeding rack provided by the present invention, the second-stage pushing device, the second bearing plate, the first-stage pushing device, and the first bearing plate are located inside the rectangular groove through hole of the first layer body and the rectangular groove of the second layer body.
[0012] Furthermore, a stainless steel strip feeding rack provided by the present invention, sliders are provided on the side walls of the first bearing plate and the second bearing plate, and the sliders are matched with the sliding grooves provided on the inner sides of the rectangular groove through hole of the first layer body and the rectangular groove of the second layer body.
[0013] Furthermore, a stainless steel strip feeding rack provided by the present invention, an installation bin is provided on the middle part of the feeding rack body and biased towards the outside. The inside of the installation bin is set as a cavity. A top ventilation hole is provided on the top of the installation bin, and a lateral ventilation hole is provided on the side wall of the installation bin.
[0014] Advantages of the present utility model:
[0015] Strong adaptability: The design of the present utility model enables it to adapt to stainless steel strips of different sizes and specifications, improves the versatility and adaptability of the feeding rack, and effectively solves the problem of size mismatch.
[0016] Convenient operation: By setting the telescopic device and the rotating device, the installation and unloading process of the stainless steel strip becomes simple and fast, thereby improving work efficiency.
[0017] Stable structure: The feeding rack body made of stainless steel material ensures the stability and corrosion resistance of the structure, and can maintain normal use in a harsh working environment.
[0018] Ventilation and moisture-proof: The designed installation bin and ventilation holes help with ventilation and air exchange, protect the stainless steel strip from the influence of humid air, and maintain its appearance quality and storage environment.
[0019] High space utilization rate: The multi-layer structure design enables a larger space for the lifting and adjustment of the structure for fixing the stainless steel coil in a limited space, meeting the actual needs of industrial production.
[0020] In summary, the utility model significantly improves the adaptability, operation convenience, structural stability, ventilation and moisture-proof ability, and space utilization rate of the stainless steel strip unwinding rack, which is of great significance for improving production efficiency and reducing costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0022] Figure 1 It is a schematic diagram of the external structure of the front view provided by the present utility model.
[0023] Figure 2 It is a schematic cross-sectional view of the front view provided by the present utility model.
[0024] Figure 3 It is a schematic diagram of the structure of the top view of the present utility model without installing the first bracket and the second bracket.
[0025] Illustration: 1. Rack body, 101. First layer body, 102. Second layer body, 103. Bottom plate layer, 104. Platform lifting device cushion plate, 105. Platform lifting device, 106. Platform connecting plate, 107. First-stage pushing device, 108. First bearing plate, 109. Second-stage pushing device, 110. Second bearing plate, 111. Side wall groove, 2. Stainless steel strip, 3. Bracket fixing plate, 4. Rotating device, 5. First bracket, 6. Installation bin, 7. Lateral ventilation hole, 8. Connecting hanging plate, 9. Second bracket, 10. Top ventilation hole, 11. Rotating connecting rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] As Figures 1 to 3 shown, an embodiment of the present utility model provides a stainless steel strip unwinding rack, which includes a rack body 1. The rack body 1 includes a first layer body 101, a second layer body 102, and a bottom plate layer 103. A connecting hanging plate 8 is connected between the first layer body 101 and the second layer body 102. The second layer body 102 is installed on the bottom plate layer 103. A platform lifting device cushion plate 104 is installed at the middle position of the bottom plate layer 103. A platform lifting device 105 is installed on the top of the platform lifting device cushion plate 104. A platform connecting plate 106 is installed on the top of the platform lifting device 105;
[0027] The first - layer body 101 is provided with a rectangular - groove through - hole, and the second - layer body 102 is provided with a rectangular groove. The rectangular - groove through - hole of the first - layer body 101 communicates with the rectangular groove of the second - layer body 102. Slideways are provided on the inner sides of the rectangular - groove through - hole of the first - layer body 101 and the rectangular groove of the second - layer body 102. A first - stage pushing device 107 is installed in the rectangular groove of the second - layer body 102. A first bearing plate 108 is installed on the top of the first - stage pushing device 107. A second - stage pushing device 109 is installed on the top of the first bearing plate 108. A second bearing plate 110 is installed on the top of the second - stage pushing device 109;
[0028] On the top of the second bearing plate 110 on one side of the top of the first - layer body 101, a first bracket 5 is installed. On the top of the second bearing plate 110 on the other side of the top of the first - layer body 101, a second bracket 9 is installed;
[0029] A rotating connecting rod 11 is installed on the first bracket 5, and a rotating device 4 is installed on the second bracket 9.
[0030] After the rotating connecting rod 11 is connected to the rotating device 4, it is used to place a stainless - steel strip. A telescopic device is installed at the connection position between the rotating connecting rod 11 and the first bracket 5. The telescopic device is used to drive the rotating connecting rod 11 to move horizontally. When the telescopic device is in a tightened state, the stainless - steel coil can be lifted to this position. Then the telescopic device extends through the middle position of the stainless - steel coil and is screwed to the rotating device 4. The rotating device 4 rotates to drive the rotating connecting rod 11 to rotate. A rotating shaft is installed between the rotating connecting rod 11 and the telescopic device.
[0031] Specifically, the present invention provides a stainless - steel strip unwinding rack. The second - stage pushing device 109, the second bearing plate 110, the first - stage pushing device 107, and the first bearing plate 108 are located inside the rectangular - groove through - hole of the first - layer body 101 and the rectangular groove of the second - layer body 102. During the actual use process, it is necessary to adjust the heights of the rotating connecting rod 11 and the rotating device 4 so that the device is suitable for stainless - steel coils of different sizes. By raising and lowering the first - stage pushing device 107 and the second - stage pushing device 109, the heights of the rotating device 4 and the rotating connecting rod 11 are changed. With the design of the rotating connecting rod 107 and the second - stage pushing device 109, the space range of raising and lowering is increased, so that the specifications of the stainless - steel coils applicable to the device are increased.
[0032] Specifically, the present invention provides a stainless - steel strip unwinding rack. The side walls of the first bearing plate 108 and the second bearing plate 110 are provided with sliders, and the sliders match the slideways provided on the inner sides of the rectangular - groove through - hole of the first - layer body 101 and the rectangular groove of the second - layer body 102. During the ascending and descending processes of the first bearing plate 108 and the second bearing plate 110, they move through the slideways provided on the inner sides of the rectangular - groove through - hole of the first - layer body 101 and the rectangular groove of the second - layer body 102.
[0033] Specifically, the present invention provides a stainless steel strip unwinding rack. In the middle of the rack body 1 and towards the outside, there is an installation bin 6. The inside of the installation bin 6 is a cavity. There are top ventilation holes 10 at the top of the installation bin 6 and lateral ventilation holes 7 on the side walls of the installation bin 6. To avoid the influence of humid air on the appearance quality of the stainless steel coil, a fan is installed in the installation bin 6. During the rotation of the fan, the air flow is driven to flow through the top ventilation holes 10 and the lateral ventilation holes 7 to dry the outer wall of the stainless steel coil.
[0034] The stainless steel strip unwinding rack of the present utility model ingeniously solves the problems of collision and damage caused by the mismatch between the size of the stainless steel strip and the rack through the following designs:
[0035] Multi-layer design: The unwinding rack adopts a multi-layer structure design, including a first layer body 101, a second layer body 102, and a bottom plate layer 103. This design enables it to adapt to stainless steel strips of different sizes and specifications.
[0036] Sliding track and slider cooperation: Sliding tracks are provided on the inner sides of the rectangular grooves of the first layer body 101 and the second layer body 102. At the same time, the side walls of the first bearing plate 108 and the second bearing plate 110 are equipped with sliders that match the sliding tracks, enabling the bearing plates to be flexibly adjusted in the vertical direction to adapt to stainless steel strips of different sizes.
[0037] Multi-stage pushing device: A first-stage pushing device 107 is installed in the rectangular groove of the second layer body 102, and a first bearing plate 108 is installed on its top. And a second-stage pushing device 109 is installed on the top of the first bearing plate 108, and a second bearing plate 110 is installed on its top. This design increases the adjustment range of the bearing plate in the vertical direction.
[0038] Telescopic device and rotating connecting rod: On the first bracket 5, a telescopic device is installed at the connection of the rotating connecting rod 11 and the bracket, enabling the rotating connecting rod 11 to move horizontally and be adjusted according to the width of the stainless steel strip to avoid collision.
[0039] Ventilation design: An installation bin 6 is provided in the middle of the rack body 1, and there are top ventilation holes 10 and lateral ventilation holes 7 on its top and side walls respectively, which helps protect the stainless steel strip from moisture and corrosion, indirectly reducing the weight change or deformation caused by moisture, and thus reducing the collision with the rack.
[0040] Adjustability of the overall structure: The overall structure design of the unwinding rack, especially the bearing plate and the pushing device, endows the entire unwinding rack with high adjustability in the vertical and horizontal directions, which helps to adapt to stainless steel strips of various sizes and reduces the collision caused by size mismatch.
[0041] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A stainless steel strip feeding rack, characterized in that, It includes a rack main body (1), and the rack main body (1) includes a first layer body (101), a second layer body (102) and a bottom plate layer (103). A connecting hanging plate (8) is connected between the first layer body (101) and the second layer body (102). The second layer body (102) is installed on the bottom plate layer (103). A platform lifting device cushion plate (104) is installed at the middle position of the bottom plate layer (103). A platform lifting device (105) is installed on the top of the platform lifting device cushion plate (104). A platform connecting plate (106) is installed on the top of the platform lifting device (105); The first layer body (101) is provided with a rectangular groove through hole, and the second layer body (102) is provided with a rectangular groove. The rectangular groove through hole of the first layer body (101) communicates with the rectangular groove of the second layer body (102). Sliding grooves are provided on the inner sides of the rectangular groove through hole of the first layer body (101) and the rectangular groove of the second layer body (102). A first-stage pushing device (107) is installed in the rectangular groove of the second layer body (102). A first bearing plate (108) is installed on the top of the first-stage pushing device (107). A second-stage pushing device (109) is installed on the top of the first bearing plate (108). A second bearing plate (110) is installed on the top of the second-stage pushing device (109); A first bracket (5) is installed on the top of the second bearing plate (110) on one side of the top of the first layer body (101), and a second bracket (9) is installed on the top of the second bearing plate (110) on the other side of the top of the first layer body (101); A rotating connecting rod (11) is installed on the first bracket (5), and a rotating device (4) is installed on the second bracket (9). After the rotating connecting rod (11) is connected to the rotating device (4), it is used to place the stainless steel strip. A telescopic device is installed at the connection position between the rotating connecting rod (11) and the first bracket (5), and the telescopic device is used to drive the rotating connecting rod (11) to move horizontally.
2. The stainless steel strip unwinding rack according to claim 1, characterized in that, The second-stage pushing device (109), the second bearing plate (110), the first-stage pushing device (107) and the first bearing plate (108) are located inside the rectangular groove through hole of the first layer body (101) and the rectangular groove of the second layer body (102).
3. The stainless steel strip unwinding rack according to claim 1, characterized in that, Sliding blocks are provided on the side walls of the first bearing plate (108) and the second bearing plate (110), and the sliding blocks are matched with the sliding grooves provided on the inner sides of the rectangular groove through hole of the first layer body (101) and the rectangular groove of the second layer body (102).
4. A stainless steel strip feeding rack according to claim 1, characterized in that, An installation bin (6) is provided on the middle part of the rack main body (1) and biased towards the outside. The inside of the installation bin (6) is a cavity. A top ventilation hole (10) is provided on the top of the installation bin (6), and a lateral ventilation hole (7) is provided on the side wall of the installation bin (6).