Transferring system for stainless steel coiled plates
By employing an equidistantly arranged transfer base, limiting baffle, and adjusting hydraulic rod design in the stainless steel coil transfer system, the safety hazard of stainless steel coils detaching due to centrifugal force during transfer is resolved, achieving safe and stable multi-size applicable conveying.
Patent Information
- Application Number
- CN202520365551.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-03-04
AI Technical Summary
Stainless steel coils are prone to detaching from the transfer base due to centrifugal force during the transfer process, posing a safety hazard. Furthermore, existing technology cannot effectively buffer and adapt to coils of different sizes.
Design a stainless steel coil material transfer system, which adopts equidistantly arranged transfer bases, with limiting baffles and reinforcing hinges hinged between adjacent bases, and uses adjustable hydraulic rods for buffering and fixing, combined with a drive motor and moving wheels to achieve stable conveying.
It effectively buffers centrifugal force, improving the safety and applicability of stainless steel coil transfer, and can adapt to coils of various sizes, ensuring stable conveying.
Smart Images

Figure CN223721979U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to stainless steel coil plate removal technology field especially relates to a kind of removal system of stainless steel coil plate material. BACKGROUND
[0002] In the stainless steel processing process, the cut steel plate is wound into a roll shape for easy storage and retrieval. During the movement of the stainless steel coil plate, a mobile device is used to place the stainless steel on the top surface of the removal base for transportation.
[0003] When transporting stainless steel, the stainless steel coil plate is placed vertically on the upper part of the removal base to prevent the side of the stainless steel coil plate from being damaged by pressure. The vertical method can maximize the protection of the stainless steel coil plate from damage. However, the vertical removal method can cause the stainless steel coil plate to separate from the removal base during the stopping process due to the large centrifugal force, posing a personal safety risk.
[0004] Therefore, a removal system for stainless steel coil plate material is needed to solve the above problems. INVENTION CONTENTS
[0005] The utility model aims at the problems in the background art and proposes a removal system for stainless steel coil plate material to solve the problem of the removal base being unable to resist the centrifugal force during the removal process of the stainless steel coil plate.
[0006] The technical solution of the utility model is a removal system for stainless steel coil plate material, which includes a removal base. The removal bases are arranged at equal intervals. Symmetrical limiting baffles are hinged to the adjacent ends of the removal bases. Symmetrical reinforcing hinge blocks are hinged to the top of the limiting baffles on both sides. Interleaved adjustment hydraulic rods are hinged between the adjacent faces of the limiting baffles. The output end of the adjustment hydraulic rod is hinged to the top of the limiting baffles.
[0007] Optionally, mobile wheels are rotatably connected to the bottom of the removal base. The mobile wheels are drivingly connected to the internal driving mechanism of the removal base.
[0008] Optionally, driving motors corresponding to the mobile wheels are fixed to the position where the mobile wheels are connected inside the removal base. The driving motors are drivingly connected to the mobile wheels.
[0009] Optionally, the mobile wheels are toothed ratchets, and the toothed ratchets are sleeved with tracks on the outside.
[0010] Optionally, a hinge groove is formed at the position where the top of the limiting baffle is hinged to the reinforcing hinge block. A hinge rod is inserted into the middle of the hinge groove. The reinforcing hinge blocks are rotatably sleeved on the outside of the hinge rod and the inside of the hinge groove.
[0011] Optionally, a hinge hole is arranged at the position where the reinforcing hinge block connects the hinge rod, and the hinge hole is sleeved on the outside of the hinge rod.
[0012] Optionally, a hinge seat is fixed at the position where the limiting baffle connects the adjusting hydraulic rod, rotating bases are fixed at both ends of the adjusting hydraulic rod, the rotating bases are rotationally connected in the middle of the hinge seat, and drive receiving slots are arranged between the limiting baffles.
[0013] Compared with the prior art, the stainless steel coil plate conveying system has the following beneficial technical effects:
[0014] The adjacent moving bases are connected and fixed by the limiting baffles connected by the reinforcing hinge blocks, so that the adjacent moving bases have the buffer anti-collision plates, the centrifugal force generated during the conveying of the stainless steel coil plate is buffered, the safety of the stainless steel coil plate during the conveying is protected, the conveying of the stainless steel coil plates of various sizes can be adjusted by the adjusting hydraulic rods between the limiting baffles, and the applicability of the device is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 A structure schematic diagram of the stainless steel coil plate conveying system is given.
[0016] Figure 2 For Figure 1 The internal structure schematic diagram of the drive receiving slot is given.
[0017] Figure 3 For Figure 1 The position structure exploded schematic diagram of the drive receiving slot is given.
[0018] The drawings show that: 1, conveying base; 2, limiting baffle; 3, reinforcing hinge block; 4, adjusting hydraulic rod; 5, moving wheel; 6, track; 7, hinge groove; 8, hinge rod; 9, hinge hole; 10, hinge seat; 11, rotating base; 12, drive receiving slot. DETAILED DESCRIPTION
[0019] The technical scheme of the utility model is further described below in combination with the drawings and specific embodiments.
[0020] Embodiment one
[0021] For example Figures 1-3The utility model provides a kind of stainless steel coiled plate material's transfer system shown, including transfer base 1, the transfer base 1 equidistant arrangement is set, the transfer base 1 adjacent end is hinged with the symmetrical limit baffle 2, the limit baffle 2 top two sides hinged with the symmetrical reinforcing hinge block 3, the limit baffle 2 adjacent face between hinged with staggered distribution's adjusting hydraulic rod 4, the adjusting hydraulic rod 4 output end top is hinged in limit baffle 2 adjacent face top portion;
[0022] The transfer base 1 bottom two sides rotationally connected with moving wheel 5, the moving wheel 5 is driven connection with the inside driving mechanism of transfer base 1;
[0023] The limit baffle 2 top portion and reinforcing hinge block 3 hinged position are provided with hinge groove 7, hinge rod 8 is penetrated in the middle of hinge groove 7, reinforcing hinge block 3 both ends are sleeved on the outside of hinge rod 8 and rotate in hinge groove 7 inside;
[0024] The position of reinforcing hinge block 3 both ends connecting hinge rod 8 is provided with hinge hole 9, the hinge hole 9 is sleeved on the outside of hinge rod 8;
[0025] The position of limit baffle 2 connecting adjusting hydraulic rod 4 is fixed with hinge seat 10, the both ends of adjusting hydraulic rod 4 are fixed with rotating base 11, the rotating base 11 is limit rotationally connected in the middle of hinge seat 10, the limit baffle 2 is set as drive storage slot 12 between, and adjusting hydraulic rod 4 is stored in the inside of drive storage slot 12;
[0026] Work flow: the coiled stainless steel coiled plate material is placed on the upside of transfer base 1 by hoisting, if the stainless steel coiled plate material is placed vertically, then two adjacent transfer base 1 inside driving motor is needed to be started to rotate oppositely, so that the limit baffle 2 between transfer base 1 is in vertical state, the vertical stainless steel coiled plate is clamped between the limit baffle 2, the transfer stability and safety of stainless steel coiled plate material are improved;
[0027] Meanwhile, through the above control mode, the inclination of limit baffle 2 can also be adjusted according to the size of stainless steel coiled plate material, for placing various sizes of stainless steel coiled plate material;
[0028] And in the adjustment process of two adjacent transfer base 1, adjusting hydraulic rod 4 and driving motor are needed to be driven to work cooperatively, to ensure the opening and closing of limit baffle 2;
[0029] It should be noted that: the design of adjusting hydraulic rod 4 can exert stronger thrust on limit baffle 2, to ensure that the stainless steel coiled plate material between limit baffle 2 can have more secure transfer environment, to enhance the transfer safety of stainless steel coiled plate material;
[0030] The design of the drive storage slot 12 can store the adjusting hydraulic rod 4 inside to form protection when the device is fully extended or retracted, thereby improving the service life of the hydraulic rod.
[0031] Meanwhile, this device can also transport stainless steel coils that are tilted. During the placement process, the winding hole in the middle of the stainless steel coil can be fitted onto the outside of the limiting baffle 2. (Here, the two adjacent limiting baffles 2 need to be fully retracted to form a vertical plate for locking the stainless steel coil.) This completes the fixing of the stainless steel coil. The drive motor inside the transfer base 1 is then started to drive the moving wheels 5 to transfer the stainless steel coil.
[0032] In this embodiment, equidistantly arranged conveyed bases are provided, and limit baffles 2 are hinged between adjacent conveyed bases 1 and connected and fixed by reinforcing hinge blocks 3, so that there are buffer anti-collision plates between adjacent moving bases, which are used to buffer the centrifugal force generated during the transfer of stainless steel coils and protect the safety of stainless steel coils during the transfer process. At the same time, the adjusting hydraulic rods 4 between the limit baffles 2 can be used to adjust the conveying of stainless steel coils of various sizes, thereby improving the applicability of this device.
[0033] Example 2
[0034] like Figures 1-3 As shown, based on Embodiment 1, a drive motor is fixed inside the transfer base 1 at the position where the movable wheel 5 is connected, and the drive motor is driven to drive the movable wheel 5.
[0035] The movable wheel 5 is a toothed ratchet, and a track 6 is fitted onto the outer side of the toothed ratchet.
[0036] In this embodiment, the transfer base 1 is driven by a single drive motor and the moving wheel 5, which enables the movement of this device to have stronger driving performance.
[0037] The movable wheel 5 is set as a toothed ratchet, which can increase the friction of the movable wheel 5 and facilitate the connection between the movable wheel 5 and the track 6, so that this device can be used to transfer stainless steel coils in various states by moving through the track 6.
[0038] It should be noted that this device is driven by a drive motor and a single moving wheel 5. It can control the drive motor to work through the stainless steel coil material conveying system, operate the transfer base 1 to move, and quickly and accurately control the device to complete the transfer of stainless steel coil material.
[0039] The above specific embodiments are merely several optional embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. A transfer system for stainless steel coil stock, characterized by, Including the transfer base (1), the transfer base (1) is arranged equidistantly, the adjacent end of the transfer base (1) is hinged with symmetrical limiting baffle (2), the top of the limiting baffle (2) is hinged with symmetrical reinforcing hinge block (3) on both sides, the limiting baffle (2) is hinged with staggered distribution adjusting hydraulic rod (4) between the adjacent surfaces, the top of the output end of the adjusting hydraulic rod (4) is hinged to the top of the adjacent surface of the limiting baffle (2).
2. The system for transferring stainless steel coil stock of claim 1, wherein, The bottom of the transfer base (1) is rotatably connected with the moving wheel (5) on both sides, and the moving wheel (5) is drivingly connected with the driving mechanism inside the transfer base (1).
3. The system for transferring stainless steel coil stock of claim 2, wherein, The position of the moving wheel (5) connected inside the transfer base (1) is fixed with the driving motor corresponding to the distribution of the moving wheel (5), and the driving motor is drivingly connected with the moving wheel (5).
4. The system for transferring stainless steel coil stock of claim 2, wherein, The moving wheel (5) is a toothed ratchet wheel, and the toothed ratchet wheel is sleeved with a track (6) on the outside.
5. The system for transferring stainless steel coil stock of claim 1, wherein, The top of the limiting baffle (2) is hinged with the reinforcing hinge block (3), and the position is provided with a hinge groove (7), the hinge groove (7) is provided with a hinge rod (8) in the middle, and the reinforcing hinge block (3) is rotatably sleeved on the outside of the hinge rod (8) and the inside of the hinge groove (7).
6. The system for transferring stainless steel coil stock of claim 1, wherein, The position of the reinforcing hinge block (3) connected with the hinge rod (8) is provided with a hinge hole (9), and the hinge hole (9) is sleeved on the outside of the hinge rod (8).
7. The system for transferring stainless steel coil stock of claim 1, wherein, The position of the limiting baffle (2) connected with the adjusting hydraulic rod (4) is fixed with a hinge seat (10), the both ends of the adjusting hydraulic rod (4) are fixed with a rotating base (11), the rotating base (11) is limitingly rotatably connected in the middle of the hinge seat (10), the limiting baffle (2) is provided with a driving storage slot (12) between them, and the adjusting hydraulic rod (4) is stored in the inside of the driving storage slot (12).