Stainless steel band guiding device
Through the coordinated design of the upright frame, lower guide roller, upper guide roller and limiting components, the problem of vibration and deviation of stainless steel strip during the conveying process is solved, achieving stability and accuracy, adapting to the needs of steel strips of different widths and improving conveying efficiency.
Patent Information
- Application Number
- CN202423244345.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
During long-distance conveying of stainless steel belts, their large weight can easily cause shaking, deviation, and deformation, affecting the conveying quality.
The design employs a vertical frame, lower guide roller, and upper guide roller, combined with limiting components and adjusting wheels. The steel belt is clamped by the limiting component group, and the adjusting wheel works in conjunction with the lower guide roller to ensure the stability and accuracy of the steel belt during the conveying process. The limiting components are movable and adjustable to accommodate steel belts of different widths, and the threaded groove design avoids collisions.
It improves the conveying stability and accuracy of stainless steel belts, reduces swaying and deviation, adapts to steel belts of different widths, facilitates the replacement of limit components, and improves conveying efficiency and accuracy.
Smart Images

Figure CN223737326U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of guiding devices, in particular to a stainless steel belt guiding device. BACKGROUND
[0002] Stainless steel belts are widely used in the industrial field due to their excellent corrosion resistance, strength and durability. They not only play an important role in the conveying line of food processing, glass products, metal heat treatment and other industries, but also are used to manufacture housings, shielding covers and other components of electronic equipment.
[0003] During the conveying process of the stainless steel belt, guiding devices play a crucial role. The purpose of these devices is to ensure the stability and accuracy of the stainless steel belt during the conveying process, reduce distortion and deformation, and thus improve the processing quality.
[0004] After being slit, the stainless steel belt often needs to be transmitted over a long distance. During this process, due to the large weight of the steel belt, it may vibrate, which may cause the steel belt to deviate and deform, thereby affecting the quality of the steel belt. CONTENT OF THE INVENTION
[0005] In order to facilitate the limiting of the steel belt, the application provides a stainless steel belt guiding device.
[0006] The stainless steel belt guiding device provided by the application adopts the following technical scheme:
[0007] A stainless steel belt guiding device, comprising a stand, a lower guide roller and an upper guide roller, wherein:
[0008] The stand is vertically provided with a pair;
[0009] The lower guide roller and the upper guide roller are parallelly arranged between the pair of stands and are rotationally matched with the stands;
[0010] A pair of limiting piece groups are arranged on the lower guide roller, and a pair of the limiting piece groups clamp the steel belt;
[0011] A pair of adjusting wheels are arranged on the upper guide roller, and the adjusting wheels and the lower guide roller cooperatively clamp the steel belt.
[0012] Optionally, a placement groove is formed on the roller wall of the lower guide roller along the length direction of the lower guide roller, and a plurality of placement grooves are circumferentially arranged along the axis of the lower guide roller, and the limiting piece group is located in the placement groove and partially extends out of the roller wall of the lower guide roller.
[0013] Optionally, the limiting piece group comprises a plurality of limiting pieces, the plurality of limiting pieces are circumferentially distributed along the axis of the lower guide roller, one-to-one correspond to the plurality of placement grooves, and are movably arranged in the corresponding placement grooves.
[0014] Optionally, the placement groove is provided with a mounting hole near one side of the axis of the lower guide roller, and the limiting member comprises a mounting column and a limiting column, wherein:
[0015] The mounting column and the mounting hole are inserted and fixed at the mounting hole through a fixing member;
[0016] The limiting column is arranged on the mounting column.
[0017] Optionally, the fixing member comprises a fixing block arranged on the mounting column, the inner wall of the mounting hole is provided with an insertion groove for inserting the fixing block, the groove wall of the insertion groove is provided with a ring-shaped limiting groove, the mounting column and the mounting hole are rotationally matched, and the fixing block and the limiting groove are slidingly matched.
[0018] Optionally, the limiting column is provided with a limiting plane in contact with the side edge of the steel belt, and the limiting plane is located away from the fixing block.
[0019] Optionally, the top of the mounting column is provided with a rotating hole, and the horizontal surface of the rotating hole is polygonal.
[0020] Optionally, the mounting hole is provided with a plurality of mounting holes along the length direction of the lower guide roller.
[0021] In summary, the present application includes at least one of the following beneficial technical effects:
[0022] 1. Through the cooperative work of the stand, the lower guide roller and the upper guide roller, the stable conveying of the steel belt is realized. During the conveying process, the steel belt is placed between the lower guide roller and the upper guide roller, the adjusting wheel and the lower guide roller jointly clamp the steel belt to reduce the shaking of the steel belt. The limiting member group clamps the steel belt to limit its movement along the axis direction, improves the conveying stability and reduces the deviation. The limiting members are arranged in the placement groove on the roller wall of the lower guide roller, which are distributed in the circumferential direction and can be adjusted according to the width of the steel belt to adapt to steel belts of different widths. The movable installation mode of the limiting member facilitates the replacement of damaged parts, and its design reduces the risk of the mounting column separating from the mounting hole. The setting of the adjusting wheel avoids the collision with the limiting member, and the design of the threaded groove helps to center the steel belt, which is similar to the principle of leveling the threaded rod, further improving the conveying efficiency and accuracy. The design of the whole device aims to ensure the stability and accuracy of the steel belt during the conveying process through accurate limiting and adjusting. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application.
[0024] Figure 2 is an enlarged schematic diagram of part A in Figure 1
[0025] Figure 3 is a schematic view of the structure of the limiting member in the embodiment of the present application.
[0026] Mark explanation:
[0027] 1, stand; 2, lower guide roller; 21, placement groove; 22, mounting hole; 23, plug-in groove; 24, limiting groove; 3, upper guide roller; 31, adjusting wheel; 32, threaded groove; 4, limiting member; 41, mounting column; 411, fixed block; 42, limiting column; 421, rotating hole; 422, limiting plane. DETAILED DESCRIPTION
[0028] The following will be combined with the Figures 1-3 Further detailed description of the present application.
[0029] The embodiment of the present application discloses a stainless steel belt guiding device
[0030] A stainless steel belt guiding device comprises a stand 1, a lower guide roller 2 and an upper guide roller 3. The stand 1 is vertically provided with a pair of the stand, and the guide roller and the upper guide roller 3 are parallelly arranged between the pair of the stand 1 and rotationally matched with the stand 1. A pair of limiting members 4 are arranged on the guide roller, the pair of limiting members 4 clamps the steel belt, the guide roller is provided with a pair of adjusting wheels 31, and the adjusting wheels 31 and the lower guide roller 2 cooperatively clamp the steel belt.
[0031] In the process of conveying the steel belt, the steel belt is placed between the lower guide roller 2 and the upper guide roller 3, the steel belt is limited by the adjusting wheels 31 and the lower guide roller 2 cooperatively clamping the steel belt, and the possibility of shaking of the steel belt is reduced. At the same time, the pair of limiting members 4 clamps the steel belt, and the movement of the steel belt in the axial direction on the lower guide roller 2 is limited, thereby improving the conveying stability of the steel belt and reducing the possibility of deviation of the steel belt.
[0032] The roller wall of the lower guide roller 2 is provided with a placement groove 21 along the length direction of the lower guide roller 2, and a plurality of placement grooves 21 are circumferentially arranged along the axis of the lower guide roller 2, the limiting member 4 is located in the placement groove 21 and partially extends out of the roller wall of the lower guide roller 2. When conveying the steel belt, the limiting member 4 and the side edge of the steel belt are in contact, and at the same time, the limiting member 4 is arranged in the placement groove 21, which facilitates the installation of the limiting member 4 and fully utilizes the space of the lower guide roller 2.
[0033] The limiting member 4 group comprises a plurality of limiting members 4, the plurality of limiting members 4 are circumferentially distributed along the axis of the lower guide roller 2, correspond to the plurality of placement grooves 21 one by one, and are movably arranged in the corresponding placement grooves 21. The stability of conveying the steel belt is improved by the plurality of limiting members 4, and at the same time, since the limiting member 4 is movably arranged in the placement groove 21, the position of the limiting member 4 is adjusted according to the width of the steel belt, the adaptability to different width steel belts is improved. At the same time, it is also convenient to disassemble and replace the damaged limiting member 4.
[0034] The installation hole 22 is provided on the side of the placing groove 21 close to the axis of the lower guide roller 2, the limiting piece 4 comprises an installation column 41 and a limiting column 42, and the installation column 41 and the limiting column 42 are coaxially formed integrally.
[0035] The fixing member comprises a fixing block 411, which is arranged on the installation column 41, and the inner wall of the installation hole 22 is provided with a plug-in groove 23 for inserting the fixing block 411, and the groove wall of the plug-in groove 23 is provided with a ring-shaped limiting groove 24, the installation column 41 and the installation hole 22 are rotationally matched, and the fixing block 411 and the limiting groove 24 are slidingly matched.
[0036] When the limiting piece 4 is installed, the installation column 41 is inserted into the installation hole 22, and the installation column 41 is rotated, so that the fixing block 411 is arranged in the limiting groove 24, and the fixing block 411 is limited by the inner wall of the limiting groove 24, so as to reduce the possibility that the installation column 41 is separated from the installation hole 22. The limiting column 42 is provided with a limiting plane 422 in contact with the side edge of the steel belt, and the limiting plane 422 is located away from the fixing block 411. Since the limiting plane 422 is located away from the fixing block 411, when the limiting plane 422 is in contact with the side edge of the steel belt, the fixing block 411 is located away from the plug-in groove 23 for a long time, further reducing the possibility that the installation column 41 is separated from the installation hole 22.
[0037] The top of the installation column 41 is provided with a rotating hole 421, and the cross section of the rotating hole 421 is polygonal. When the limiting piece 4 needs to be disassembled and replaced, the staff uses a tool corresponding to the rotating hole 421 to rotate the installation column 41, so as to arrange the fixing block 411 in the plug-in groove 23. At the same time, the rotating hole 421 can also be used as a reference for the position of the fixing block 411, so as to facilitate the grasping of the position of the fixing block 411.
[0038] The installation hole 22 is provided with a plurality of installation holes along the length direction of the lower guide roller 2, and the different positions of the limiting piece 4 are adjusted according to different widths, so as to adapt to steel belts with different widths. The adjusting wheel 31 can also be provided with a plurality of pairs, and the adjusting wheel 31 is used to avoid the limiting piece 4, so as to reduce the possibility of collision between the adjusting wheel 31 and the limiting piece 4. At the same time, the adjusting wheel 31 is provided with a threaded groove 32, and when the threaded groove 32 is in contact with the steel belt, the groove wall of the threaded groove 32 is in contact with the steel belt, so as to facilitate the centering of the steel belt, and the working principle is similar to that of the leveling threaded rod.
[0039] The implementation principle of the stainless steel belt guiding device is that the stable conveying of the steel belt is realized through the cooperative work of the stand 1, the lower guide roller 2 and the upper guide roller 3. In the conveying process, the steel belt is placed between the lower guide roller 2 and the upper guide roller 3, the adjusting wheel 31 and the lower guide roller 2 jointly clamp the steel belt to reduce the shaking of the steel belt. The limiting pieces 4 group clamps the steel belt to limit the movement of the steel belt along the axial direction, improve the conveying stability and reduce the deviation. The limiting pieces 4 are arranged in the placing groove 21 on the roller wall of the lower guide roller 2, and the limiting pieces 4 are distributed in the circumferential direction, the position can be adjusted according to the width of the steel belt, and the steel belt with different widths can be adapted. The movable mounting mode of the limiting piece 4 facilitates the replacement of damaged parts, and the design reduces the risk of the mounting column 41 from the mounting hole 22. The setting of the adjusting wheel 31 avoids the collision with the limiting piece 4, the design of the threaded groove 32 helps the steel belt to be centered, which is similar to the principle of leveling the threaded rod, and further improves the conveying efficiency and accuracy. The design of the whole device aims to ensure the stability and accuracy of the steel belt in the conveying process through accurate limiting and adjusting.
[0040] The above are preferred embodiments of the present application, but do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A stainless steel strip guide, characterized by: It includes a stand (1), a lower guide roller (2), and an upper guide roller (3), wherein: The stand (1) is vertically provided with a pair of; The lower guide roller (2) and the upper guide roller (3) are parallelly arranged between the pair of stands (1) and rotationally matched with the stands (1); A pair of limiting pieces (4) groups are arranged on the lower guide roller (2) and clamping the steel belt; A pair of adjusting wheels (31) are arranged on the upper guide roller (3), and the adjusting wheels (31) and the lower guide roller (2) cooperatively clamp the steel belt.
2. A stainless steel tape guide as defined in claim 1, wherein: A placing groove (21) is formed on the roller wall of the lower guide roller (2) along the length direction of the lower guide roller (2), and a plurality of placing grooves (21) are circumferentially arranged along the axis of the lower guide roller (2), the limiting piece (4) group is located in the placing groove (21) and partially extends out of the roller wall of the lower guide roller (2).
3. A stainless steel tape guide as defined in claim 2, wherein: The limiting piece (4) group includes a plurality of limiting pieces (4), and the plurality of limiting pieces (4) are circumferentially distributed along the axis of the lower guide roller (2), one-to-one corresponding to the plurality of placing grooves (21), and movably arranged in the corresponding placing grooves (21).
4. A stainless steel tape guide as defined in claim 3, wherein: The placing groove (21) is provided with a mounting hole (22) near the axis of the lower guide roller (2), and the limiting piece (4) includes a mounting column (41) and a limiting column (42), wherein: The mounting column (41) and the mounting hole (22) are insertedly matched, and are fixed at the mounting hole (22) by a fixing piece; The limiting column (42) is arranged on the mounting column (41).
5. A stainless steel strip guide as claimed in claim 4, characterised in that: The fixing piece includes a fixing block (411), the fixing block (411) is arranged on the mounting column (41), an inner wall of the mounting hole (22) is provided with an insertion groove (23) for inserting the fixing block (411), a ring-shaped limiting groove (24) is arranged on a groove wall of the insertion groove (23), the mounting column (41) and the mounting hole (22) are rotationally matched, and the fixing block (411) and the limiting groove (24) are slidingly matched.
6. A stainless steel strip guide as claimed in claim 5, characterized in that: The limiting column (42) is provided with a limiting plane (422) in contact with the side edge of the steel belt, and the limiting plane (422) is located away from the fixing block (411).
7. A stainless steel strip guide as claimed in claim 6, characterized in that: A rotating hole (421) is arranged at the top of the limiting column (42), and a transverse surface of the rotating hole (421) is polygonally arranged.
8. A stainless steel tape guide as defined in claim 4, wherein: A plurality of mounting holes (22) are arranged along the length direction of the lower guide roller (2).