Stainless steel rolled plate fixing mechanism
By designing a stainless steel coil fixing mechanism including a load-bearing mechanism and a fixing mechanism, the problem of low coil transportation efficiency is solved, and stable fixation and efficient transportation of coils are achieved.
Patent Information
- Application Number
- CN202421441756.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-24
AI Technical Summary
The prior art is inefficient in the transportation process of stainless steel coils, requiring multiple handling operations, resulting in unstable transportation and low efficiency.
A stainless steel coil fixing mechanism is designed, including a load-bearing mechanism and a fixing mechanism. The load-bearing mechanism can adjust the size of the opening to accommodate roll plates of different diameters through the combination of arcuate cylindrical rod and the central rod, and realize the internal rotation and fixation of the arcuate cylindrical rod through the cooperation of the rotation rod and the contact shaft. The fixing mechanism ensures that the outer ring of the roll plate is firmly locked through the design of the rod and the positioning block.
Through this fixing mechanism, rolled plates of different diameters can be effectively fixed and supported, improving transportation stability and safety, reducing the number of handling times, and improving transportation efficiency.
Smart Images

Figure CN222833272U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of plate rolling fixing and transportation, in particular to a stainless steel plate rolling fixing mechanism. Background Art
[0002] After the production of stainless steel coils is completed, the coils are long and need to be rolled up after production is completed. Since the rolled coils are heavy after rolling, they need to be unloaded and unloaded from the roll packing machine by a crane during unloading and transportation. After unloading, the rolled coils are transported by forklifts and other transportation tools. Transportation by forklifts and other tools requires repeated handling operations, which is inefficient. Therefore, it is necessary to provide a fixing mechanism to fix and transport the rolled coils, so as to transport and store the coils and improve the transportation efficiency. Utility Model Content
[0003] In view of the deficiencies in the prior art, the utility model aims to provide a stainless steel roll fixing mechanism, which receives and fixes the rolled plate after coiling by arranging a load-bearing mechanism and a fixing mechanism. The load-bearing mechanism can adjust the opening size on the load-bearing mechanism according to the diameter of the rolled plate after coiling, and can adapt to the placement of rolled plates of different diameters. The fixing mechanism fixes and locks the rolled plate placed on the load-bearing mechanism to facilitate its subsequent transportation.
[0004] In order to achieve the above-mentioned purpose, the utility model is realized through the following technical scheme: it includes a load-bearing mechanism, and fixing mechanisms are arranged on both sides of the load-bearing mechanism. The load-bearing mechanism includes an arc-shaped cylindrical rod symmetrically arranged, and a plurality of arc-shaped cylindrical rods are evenly distributed in the horizontal direction. A center rod is connected between one ends of the plurality of arc-shaped cylindrical rods, and a receiving shaft is arranged at the bottom of the inner end of the arc-shaped cylindrical rod. A rotating shaft is connected between the two ends of the receiving shaft and the arc-shaped cylindrical rod. A base is arranged at the bottom of the receiving shaft, and a plurality of supporting angles are evenly distributed between the receiving shaft and the base in the length direction. A limiting rod is vertically arranged at the bottom of the outer end of the arc-shaped cylindrical rod, and a contact shaft is horizontally arranged on the inner side of the limiting rod. Rotating rods are vertically arranged at both ends of the contact shaft, and a push rod is arranged at one end of the base. The rolled plate is received by adjusting the opening size between the arc-shaped cylindrical rods. The rotating rod rotates inward, and the contact shaft contacts the arc-shaped cylindrical rod to rotate the arc-shaped cylindrical rod inward, thereby controlling the spacing between the arc-shaped cylindrical rods, adapting to the reception and wrapping fixation of different rolled plates, improving the transportation stability of the rolled plates and improving the operation efficiency at the same time.
[0005] The preferred structure of the present scheme includes: a bearing is provided on the rotating sleeve of the contact shaft, and the bottom of the arc-shaped cylindrical rod is in contact with the bearing. The rotation of the arc-shaped cylindrical rod on the contact shaft is realized by setting the bearing. The arc-shaped cylindrical rod can be closed toward the center by the inward rotation of the rotating rod, and the spacing between the arc-shaped cylindrical rods can be adjusted to accommodate the placement of rolled plates of different sizes.
[0006] The preferred structure of the present scheme also includes that a cross beam is horizontally arranged on the base at the bottom of the rotating rod, and a second rotating shaft is connected between the two ends of the cross beam and the rotating rod. The cross beam is arranged and the rotating rod and the cross beam are rotated by the second rotating shaft to realize the rotation setting of the rotating rod, which is convenient for controlling the movement of the contact shaft.
[0007] As another preferred structure of the present scheme, the fixing mechanism includes a first clamping rod arranged on the outside of the top end of the rotating rod, a second clamping rod is slidably arranged on the outside of the first clamping rod, a third rotating shaft is rotatably connected between the first clamping rod and the rotating rod, a positioning block is arranged on the outside of the top end of the second clamping rod, a screw is threadedly connected between the positioning blocks, and the rotating rod and the first clamping rod are rotatably connected. The outer ring of the rolled plate is clamped by the first clamping rod and the second clamping rod, and the second clamping rod slides on the outer side of the first clamping rod to control the position of the second clamping rod according to the different diameters of the rolled plate. At the same time, the first clamping rod can rotate to adjust the angle to adapt to the locking operation of the outer ring of the rolled plates of different sizes.
[0008] As another preferred structure of this solution, an electric slide rail is arranged on the outer surface of the first card rod, and an electric slider is connected between the second card rod and the electric slide rail, so that the second card rod can be moved on the first card rod through the electric slider and the electric slide rail.
[0009] As another preferred structure of the present invention, a rotating grip is fixedly provided at one end of the screw rod, and a limited angle is provided at the opposite end of the screw rod. The rotating grip rod is provided to rotate the screw rod to drive the adjustment of the spacing between the two second clamping rods.
[0010] As another preferred structure of the present invention, load-bearing wheels are distributed on the bottom of the base, and the load-bearing wheels are arranged to move the base to improve the load-bearing capacity.
[0011] As another preferred structure of the present invention, a spring is connected between the top ends of adjacent rotating rods, and the spring is arranged to tension the two rotating rods and control the rotating rods, thereby controlling the opening and closing angles of the arc-shaped cylindrical rod.
[0012] The beneficial effect of the utility model is that the rolled plate is received and fixed by arranging a load-bearing mechanism with adjustable size. During the receiving process, the opening of the load-bearing mechanism can be adjusted according to the diameter of the rolled plate to meet the production needs. At the same time, a fixing mechanism is arranged to fix the rolled plate after placement, which is convenient for transportation operation, improves the transportation and storage stability of the rolled plate and improves the work efficiency. The specific implementation method is further explained in the following embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the overall preferred structure of the utility model;
[0014] Figure 2 This is the structural diagram of the other side of the whole;
[0015] In the figure: 1 base, 2 arc cylindrical rod, 3 contact shaft, 4 limit rod, 5 rotating rod, 6 receiving shaft, 7 support angle, 8 rotating shaft, 9 first clamping rod, 10 second clamping rod, 11 screw rod, 12 positioning block, 13 limit angle, 14 second rotating shaft, 15 rotating grip rod, 16 push rod, 17 cross beam, 18 load-bearing wheel, 19 center rod, 20 third rotating shaft, 21 spring. DETAILED DESCRIPTION
[0016] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific implementation methods.
[0017] See also Figure 1 and Figure 2, including a load-bearing mechanism, a fixing mechanism is arranged on both sides of the load-bearing mechanism, the load-bearing mechanism includes an arc-shaped cylindrical rod symmetrically arranged on the left and right, a plurality of arc-shaped cylindrical rods are evenly distributed in the horizontal direction, a center rod is connected between one ends of the plurality of arc-shaped cylindrical rods, a receiving shaft is arranged at the bottom of the inner end of the arc-shaped cylindrical rod, a rotating shaft is connected between the two ends of the receiving shaft and the arc-shaped cylindrical rod, a base is arranged at the bottom of the receiving shaft, and a plurality of supporting angles are evenly distributed between the receiving shaft and the base in the length direction, a limit rod is vertically arranged at the bottom of the outer end of the arc-shaped cylindrical rod, a contact shaft is horizontally arranged on the inner side of the limit rod, rotating rods are vertically arranged at both ends of the contact shaft, and a push rod is arranged at one end of the base. By adjusting the opening size between the arc-shaped cylindrical rods, The small pair of rolled plates are received by the inward rotation of the rotating rod, and the contact shaft contacts the arc cylindrical rod and rotates the arc cylindrical rod inward to control the spacing between the arc cylindrical rods, which is suitable for receiving and wrapping different rolled plates and fixing them, thereby improving the transportation stability of the rolled plates and improving the operating efficiency. A bearing is provided on the rotating sleeve of the contact shaft, and the bottom of the arc cylindrical rod is in contact with the bearing. The rotation setting of the arc cylindrical rod on the contact shaft is achieved by setting the bearing, and the arc cylindrical rod can be closed to the center by the inward rotation of the rotating rod, and the spacing between the arc cylindrical rods can be adjusted to adapt to the placement of rolled plates of different sizes. A crossbeam is horizontally arranged at the bottom of the rotating rod on the base, and a second rotating shaft is connected between the two ends of the crossbeam and the rotating rod. Axle, a crossbeam is set and the rotating rod and the crossbeam are rotated by the second rotating shaft to realize the rotation setting of the rotating rod, which is convenient for controlling the movement of the contact shaft. The fixing mechanism includes a first clamping rod arranged on the outer side of the top end of the rotating rod, a second clamping rod is slidably arranged on the outer side of the first clamping rod, a third rotating shaft is rotatably connected between the first clamping rod and the rotating rod, a positioning block is arranged on the outer side of the top end of the second clamping rod, a screw is threadedly connected between the positioning blocks, and the rotating rod and the first clamping rod are rotatably connected. The outer ring of the rolled plate is clamped by the first clamping rod and the second clamping rod. The second clamping rod slides on the outer side of the first clamping rod to control the position of the second clamping rod according to the different diameters of the rolled plate. At the same time, the first clamping rod can be rotated to adjust the angle , which is suitable for locking the outer ring of rolling plates of different sizes. An electric slide rail is arranged on the outer surface of the first clamping rod, and an electric slider is connected between the second clamping rod and the electric slide rail. The second clamping rod is moved on the first clamping rod through the electric slider and the electric slide rail. A rotating grip rod is fixedly arranged at one end of the screw rod, and a limited position angle is arranged on the opposite end of the screw rod. The screw rod is rotated by setting the rotating grip rod to drive the adjustment of the distance between the two second clamping rods. Load-bearing wheels are distributed at the bottom of the base. The load-bearing wheels are arranged to move the base to improve the load-bearing capacity. A spring is connected between the top ends of adjacent rotating rods. The spring is arranged to tighten the two rotating rods to control the rotating rods, thereby controlling the opening and closing angles of the arc cylindrical rod.
[0018] During the implementation process, the base is moved to the unloading position of the rolled plate by the load-bearing wheels, the rolled plate is rolled into a roll by the winding machine, and after rolling, the rolled plate is hoisted to the load-bearing mechanism by the crane, and multiple arc-shaped cylindrical rods receive the rolled plate. After receiving, the spring tensioning control of the rotating rod is used to slide the contact axis on the bottom of the arc-shaped cylindrical rod, control the arc-shaped cylindrical rod to approach the center, control the arc-shaped cylindrical rod to contact the outer surface of the rolled plate, control the second clamping rod to slide on the surface of the first clamping rod and contact the surface of the rolled plate, operate the rotating grip rod to rotate the screw rod, control the second clamping rod to lock the surface of the rolled plate, and after locking, push the push rod to move the base, which can be stored and transported, reduce repeated unloading operations, improve transportation stability and safety, and improve operating efficiency.
Claims
1. A stainless steel coil fixing mechanism, characterized in that: The invention comprises a load-bearing mechanism, wherein fixing mechanisms are arranged on both sides of the load-bearing mechanism, and the load-bearing mechanism comprises an arc-shaped cylindrical rod (2) symmetrically arranged on the left and right sides, wherein a plurality of the arc-shaped cylindrical rods are evenly distributed in the horizontal direction, a center rod (19) is connected between one ends of the plurality of the arc-shaped cylindrical rods, a receiving shaft (6) is arranged at the bottom of the inner end of the arc-shaped cylindrical rod, a rotating shaft (8) is connected between the two ends of the receiving shaft and the arc-shaped cylindrical rod, a base (1) is arranged at the bottom of the receiving shaft, and a plurality of supporting angles (7) are evenly distributed between the receiving shaft and the base in the length direction, a limiting rod (4) is vertically arranged at the bottom of the outer end of the arc-shaped cylindrical rod, a contact shaft is horizontally arranged on the inner side of the limiting rod, rotating rods (5) are vertically arranged at both ends of the contact shaft, and a push rod (16) is arranged at one end of the base.
2. The stainless steel coil fixing mechanism according to claim 1, characterized in that: A bearing is rotatably sleeved on the contact shaft (3), and the bottom of the arc-shaped cylindrical rod (2) is in contact with the bearing.
3. The stainless steel coil fixing mechanism according to claim 1, characterized in that: A crossbeam (17) is horizontally arranged on the base (1) at the bottom of the rotating rod, and a second rotating shaft (14) is connected between the two ends of the crossbeam and the rotating rod.
4. The stainless steel coil fixing mechanism according to claim 1, characterized in that: The fixing mechanism comprises a first clamping rod (9) arranged on the outside of the top end of the rotating rod (5), a second clamping rod (10) is slidably arranged on the outside of the first clamping rod, a third rotating shaft (20) is rotatably connected between the first clamping rod and the rotating rod, a positioning block (12) is arranged on the outside of the top end of the second clamping rod, a screw (11) is threadedly connected between the positioning blocks, and the rotating rod and the first clamping rod are rotatably connected.
5. The stainless steel coil fixing mechanism according to claim 4, characterized in that: An electric slide rail is arranged on the outer surface of the first clamping rod (9), and an electric sliding block is connected between the second clamping rod and the electric slide rail.
6. The stainless steel coil fixing mechanism according to claim 4, characterized in that: A rotating gripping rod (15) is fixedly arranged at one end of the screw rod (11), and a limited position angle (13) is arranged at the opposite end of the screw rod.
7. The stainless steel coil fixing mechanism according to claim 1, characterized in that: The bottom of the base (1) is provided with load-bearing wheels (18).
8. The stainless steel coil fixing mechanism according to claim 1, characterized in that: A spring (21) is connected between the top ends of adjacent rotating rods (5).