Auxiliary tool for improving wear resistance and high temperature resistance of sticky pad and sectional material conveying equipment

By installing slots and water troughs on both sides of the conveyor wheel, the high-temperature resistant adhesive pads are kept moist, which solves the problem of insufficient wear resistance and high-temperature resistance of the adhesive pads during the conveying of aluminum alloy profiles, thus extending the service life of the adhesive pads and reducing costs.

CN223865571UActive Publication Date: 2026-02-03CITIC BOHAI ALUMINUM (CHUZHOU) CO LTD +1
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Patent Information

Application Number
CN202521143172.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2026-02-03
Estimated Expiration
2035-06-05

AI Technical Summary

Technical Problem

During the conveying process of aluminum alloy extruded profiles, the wear resistance and high temperature resistance of the high-temperature adhesive pads are insufficient, resulting in rapid consumption and high costs.

Method used

Design an auxiliary tooling that, by installing a structure with slots and water troughs on both sides of the conveyor wheel, allows the high-temperature resistant adhesive pad to slide up and down and remain moist, thereby reducing the coefficient of friction and improving thermal conductivity.

Benefits of technology

It significantly extends the service life of high-temperature resistant adhesive pads, reduces equipment operating costs, and enables the use of high-temperature resistant adhesive pads at lower temperatures, resulting in an overall cost reduction of over 70%.

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Abstract

An auxiliary tool for improving wear resistance and high temperature resistance of a sticky pad and profile conveying equipment are characterized in that the tool is installed on a profile conveying mechanism, the profile conveying mechanism comprises a conveying wheel and a support, the tool comprises an upper clamping plate and a lower clamping plate which are fixed to the support, and a vertical plate and a side water tank which are fixed to the side, close to and away from the conveying wheel, of the upper clamping plate respectively; the side face, close to the conveying wheels, of the vertical plate is fixedly provided with a clamping groove matched with the cross section of the adhesive pad, one end sides of the adhesive pads arranged at intervals in the profile conveying direction penetrate through a gap between every two adjacent conveying wheels to stretch into the lower water tank, and the other end sides of the adhesive pads are inserted into the side water tank. And a plurality of side water tanks and lower water tanks are correspondingly arranged at intervals along the conveying direction of the section bars. The sticky pad is changed into a wet state from a dry state by being communicated with the water tank, so that on one hand, the friction coefficient between the sectional material and the sticky pad is reduced, the sticky pad is more wear-resistant, and the service time is prolonged. On the other hand, moisture can be rapidly vaporized through the wetted sticky pad, the heat conductivity is better, and the comprehensive cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the extrusion field, concretely relates to an auxiliary tool for improving the wear resistance and high temperature resistance of a sticky pad. BACKGROUND

[0002] After the aluminum alloy extruded section is produced, the surface temperature of the section is above 500 DEG C, and the section is cooled by air cooling. The initial strength of the section is very low, and the extruded section is several tens of meters long. Generally, the section is transported by a conveying roller. In order to prevent the section from running to the two sides of the roller, the section is knocked into a conveying support, or even runs out of the section conveying mechanism. High-temperature-resistant sticky pads are usually placed on the two sides of the section conveying mechanism to restrict the section. The section and the high-temperature-resistant sticky pad are in sliding friction. The higher the temperature that the high-temperature-resistant sticky pad can withstand, the higher the cost. In addition, the high-temperature-resistant sticky pad is consumed quickly. Therefore, a technology or equipment for improving the wear resistance and high temperature resistance of the sticky pad needs to be developed. SUMMARY

[0003] To solve the above problems, the purpose of the utility model is to provide an auxiliary tool for improving the wear resistance and high temperature resistance of a sticky pad.

[0004] According to one aspect of the utility model, an auxiliary tool for improving the wear resistance and high temperature resistance of a sticky pad is provided. The auxiliary tool can be installed on a section conveying mechanism. The section conveying mechanism includes a plurality of conveying wheels arranged side by side along the conveying direction of the section, and a support for supporting the conveying wheels. The auxiliary tool includes an upper clamping plate fixedly installed on the support along at least one end side of the conveying wheels in the axial direction, a lower clamping plate, a vertical plate fixedly installed on the upper clamping plate on the side close to the conveying wheels, a side water tank fixedly installed on the upper clamping plate on the side away from the conveying wheels, and a lower water tank fixedly installed on the lower clamping plate below the conveying wheels. A clamping groove with a hollow structure matching the cross-section of the high-temperature-resistant sticky pad is fixedly installed on the side of the vertical plate close to the conveying wheels. The high-temperature-resistant sticky pad is allowed to be inserted into the hollow structure of the clamping groove and fixed in a slidable manner. One end side of the high-temperature-resistant sticky pad arranged at intervals along the conveying direction of the section passes through the gap between two adjacent conveying wheels and extends into the lower water tank. The other end side is inserted into the side water tank. A plurality of side water tanks and lower water tanks are arranged at intervals along the conveying direction of the section, or a long slot-shaped side water tank and lower water tank are provided for the plurality of high-temperature-resistant sticky pads.

[0005] Preferably, the lower water tank is fixedly installed on the side of the lower clamping plate close to the conveying wheels.

[0006] Preferably, the auxiliary tool has a symmetrical structure and includes upper clamping plates and lower clamping plates fixedly installed on the support along both end sides of the conveying wheels in the axial direction, and side water tanks and lower water tanks arranged correspondingly.

[0007] Preferably, the upper clamping plates are located above the support, the lower clamping plates are located below the support, one side of the upper clamping plates and the lower clamping plates is fastened and fixed by the bolt I and the nut I, and the other side is fastened and fixed by the bolt II and the nut II.

[0008] Preferably, the vertical plate is vertically welded on one side of the upper clamping plate close to the conveying wheel.

[0009] Preferably, the clamping groove is welded on the vertical plate in a shape of "[", two clamping grooves are arranged on the vertical plate in up and down directions, the inside of the clamping groove is in a rectangular shape, and the cross section of the high-temperature-resistant adhesive pad is also in a rectangular shape.

[0010] Preferably, the conveying wheel is in a cylindrical shape, and the material is also the high-temperature-resistant adhesive pad with water absorption.

[0011] Preferably, one end of the high-temperature-resistant adhesive pad is inserted into the lower water groove, the other end is inserted into the side water groove, and the insertion depth can reach the bottom or at least more than half of the depth of the lower water groove or the side water groove.

[0012] According to another aspect of the utility model, a profile conveying equipment is provided, which comprises the auxiliary tool for improving the wear resistance and high-temperature resistance of the adhesive pad, and the auxiliary tool is additionally installed on the profile conveying mechanism.

[0013] The utility model discloses the beneficial effects: the high-temperature-resistant adhesive pad passes through the communication water groove, and the adhesive pad changes from dry state to wet state, on one hand, the friction coefficient between the profile and the adhesive pad is reduced, the adhesive pad is more wear -resisting, and the use time is prolonged. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the utility model will be described in further detail below in conjunction with the drawings.

[0015] Figure 1 It is a schematic view of an auxiliary tool for improving the wear resistance and high-temperature resistance of the adhesive pad.

[0016] Figure 2 It is a top view sectional schematic view of the stand, the clamping groove and the high-temperature-resistant adhesive pad in the auxiliary tool. DETAILED DESCRIPTION

[0017] Exemplary embodiments of the present application are described in detail below with reference to the accompanying drawings. The exemplary embodiments described below and illustrated in the drawings are intended to teach the principles of the present application, with the understanding that the present application can be practiced in a number of different environments and with several different applications. As such, the accompanying drawings should not be considered restrictive, as the scope of the present application is defined by the appended claims. Moreover, the steps recited in any of the flow charts or diagrams or described below are not necessarily meant to be executed in the order illustrated, unless explicitly claimed. Furthermore, the dimensions of the various parts shown in the drawings are not necessarily to scale, and the orientation of the various parts can be shown schematically or for ease of description, and are not meant to be limiting. Throughout the drawings, like reference numerals are used to designate like elements. Wherever possible, the same or similar reference numerals are used in the drawings and the description. Routine structures or partial configurations can be omitted when they can cause confusion or are not easy to observe. The order of components and assembly steps, and numerical values set forth in the embodiments are not limiting to the scope of the present application, unless otherwise specified.

[0018] As shown in Figure 1 , 2 The present application provides an auxiliary tool 300 (hereinafter also referred to as tool) for improving the wear resistance and high temperature resistance of the adhesive pad, which is suitable for being additionally installed on the profile conveying mechanism 100 to form an improved profile conveying device, and can be used to improve the performance of the high temperature resistant adhesive pad 200 (hereinafter also referred to as adhesive pad) and effectively reduce the operating cost of the device.

[0019] The profile conveying mechanism 100 comprises a conveying wheel 101, a conveying shaft 102, a support 103, and a bearing 104.

[0020] The tool 300 comprises an upper clamping plate 301, a lower clamping plate 302, a bolt I 303, a nut I 304, a bolt II 305, a nut II 306, a vertical plate 307, a clamping groove 308, a side water groove 309, and a lower water groove 310.

[0021] The conveying wheel 101 is sleeved outside the conveying shaft 102, and the two ends of the conveying shaft 102 are fixed on the support 103 through the bearing 104, thereby supporting the conveying wheel 101.

[0022] The tool 300 has a symmetrical structure, and the part installed on the right side of the profile conveying mechanism 100 is mainly described. Of course, the tool 300 can also be fixedly installed on one side of the support 103.

[0023] The upper clamping plate 301 is parallel to the bracket 103, and the lower clamping plate 302 is below the bracket 103. One side of the pair of upper clamping plate 301 and lower clamping plate 302 is fixed by screw bolt I 303 and nut I 304, and the other side is fixed by screw bolt II 305 and nut II 306.

[0024] The vertical plate 307 is perpendicular to the upper clamping plate 301 near the profile (also known as the conveying wheel 101).

[0025] The clamping groove 308 has two upper and lower arrangements to adapt to the recess structure of the cross section of the high-temperature-resistant adhesive pad 200 fixed to the side of the vertical plate 307 near the profile. For example, it is welded in the shape of "[", at this time, the inside of the clamping groove 308 is rectangular, and the cross section of the high-temperature-resistant adhesive pad 200 is also rectangular, and the inside of the clamping groove 308 is slightly larger.

[0026] The side water groove 309 is perpendicular to the upper clamping plate 301 away from the profile.

[0027] The lower water groove 310 is welded to the left and right lower clamping plate 302 near the profile, and is located below the conveying wheel 101 as a whole.

[0028] The middle part of the high-temperature-resistant adhesive pad 200 is inserted into the clamping groove 308 to be fixed in a way that can slide up and down, one end is inserted into the lower water groove 310, and the other end is inserted into the side water groove 309. By moving the high-temperature-resistant adhesive pad 200 up and down relative to the clamping groove 308, it can avoid rubbing the same position during profile transmission.

[0029] The high-temperature-resistant adhesive pads 200 arranged at intervals in the conveying direction each pass through the gap between two adjacent conveying wheels 101, and extend into the lower water groove 310 below. The side water groove 309 and the lower water groove 310 are also arranged at intervals or set as a long groove that can be shared by multiple adjacent high-temperature-resistant adhesive pads 200.

[0030] The lower water groove 310 and the side water groove 309 initially need to be filled with 95% or more water.

[0031] In the complete equipment thus completed, the conveying wheel 101 of the profile conveying mechanism 100 forms a passageway above for conveying aluminum alloy profiles. Taking the aluminum alloy photovoltaic profile 400 as an example, it includes A face 401, B face 402, and C face 403. One end of the A face 401 and the C face endpoint 405 are in contact with the conveying wheel 101, thereby achieving the functions of passageway support and conveying the aluminum alloy photovoltaic profile 400. The AB face angle vertex 404 and the C face endpoint 405 may come into contact with the high-temperature-resistant adhesive pad 200 during the conveying process, and the high-temperature-resistant adhesive pad 200 can limit the aluminum alloy photovoltaic profile 400 from running out of the profile conveying mechanism 100.

[0032] <EMBODIMENT>

[0033] The preferred embodiments of the present application will be described in detail below with reference to the drawings, including the size and material.

[0034] The conveying wheel 101 is cylindrical, and the material is preferably high-temperature-resistant adhesive pad, the outer diameter is 100 (±1) mm, the inner diameter is 85 (0, +0.1) mm, and it can withstand high temperature above 600°C.

[0035] The conveying shaft 102 and the bracket 103 are medium carbon steel, and the grade is 45 steel, and the diameter of the conveying shaft 102 is 85 (0, -0.1) mm.

[0036] The end surface of the bracket 103 is a rectangular tube, the inner rectangular size is 30 (±1) mm*50 (±1) mm, and the outer rectangular size is 50 (±1)*70 (±1) mm.

[0037] The bearing 104 is a roller bearing.

[0038] The cross section of the upper clamping plate 301 and the lower clamping plate 302 is rectangular, and the width*height is 80 (±1) mm*10 (±1) mm.

[0039] The bolt I 303, the nut I 304, the bolt II 305 and the nut II 306 are standard parts, M6, and the total length is 120 (±1) mm.

[0040] The vertical plate 307 is vertically welded on one side of the upper clamping plate 301 close to the profile.

[0041] The vertical plate 307 and the clamping groove 308 are medium carbon steel, and the grade is 45 steel, the vertical plate 307 has a top view cross section size of width*thickness of 40 (±1) mm*10 (±1) mm, and the vertical plate 307 has a front view cross section size of height*thickness of 40 (±1) mm*10 (±1) mm.

[0042] The clamping groove 308 has a top view of "[", and the inner rectangular size is 50 (0, +0.2) mm*10 (0, +0.1) mm, and the outer rectangular size is 60 (±0.2) mm*20 (±0.2) mm.

[0043] The high-temperature-resistant adhesive pad 200 has a cross section size of width*thickness of 50 (-0.2, 0) mm*10 (-0.1, 0), and a length of 700 mm.

[0044] The side water tank 309 and the lower water tank 310 are made of stainless steel, and the grade is 316.

[0045] The inner size of the lower water tank 310 is 30 (±1)*50 (±1) mm*50 (±1) mm, and the outer size is 30 (±1)*50 (±1) mm*60 (±1) mm.

[0046] Side water tank inner size: 60(±1)mm*30(±1)*30(±1)mm, outer size: 70(±1)mm*40(±1)*40(±1)mm.

[0047] Usage method:

[0048] The tool 300 is fixed on the bracket 103 of the profile conveying mechanism 100 via the bolt 1303, the nut 1304, the bolt 1305 and the nut 1306. The high-temperature-resistant adhesive pad 200 passes through the two upper and lower spaced clamping grooves 308 on the vertical plate 307, so that one end of the high-temperature-resistant adhesive pad 200 is inserted into the lower water tank 310 and the other end is inserted into the side water tank 309. The insertion depth is preferably able to reach the bottom, at least more than half of the depth of the lower water tank 310 or the side water tank 309. The lower water tank 310 and the side water tank 309 initially need to be filled with water to 95% and above. The high-temperature-resistant adhesive pad 200 has good water absorption, which can quickly wet the part not in the lower water tank 310 or the side water tank 309.

[0049] In this way, after the high-temperature-resistant adhesive pad 200 is arranged through the clamping groove 308 on the vertical plate 307, the other end side extends upward relative to the clamping groove 308, and by the operator easily applying an outward pushing force, the other end side of the high-temperature-resistant adhesive pad 200 can be tilted outward (for example, right side in Figure 1 ) by its own material properties, and the free end directly extends into the side water tank 309 under the action of gravity. At this time, preferably, no additional support for the high-temperature-resistant adhesive pad 200 is needed, and the part of the high-temperature-resistant adhesive pad 200 above the clamping groove 308 is finally flipped over the vertical plate 307 in a roughly inverted U shape and immersed in the side water tank 309.

[0050] When working, after the profile 400 contacts the wetted high-temperature-resistant adhesive pad 200, the water quickly vaporizes, reducing the temperature of the profile contact point, and greatly reducing the temperature that the high-temperature-resistant adhesive pad 200 bears. The part that quickly vaporizes locally will be quickly replenished by the water around it, and the cycle will continue.

[0051] Because the high-temperature-resistant adhesive pad 200 is wetted, the friction coefficient between the aluminum alloy photovoltaic profile 400 and the high-temperature-resistant adhesive pad 200 is reduced, making the high-temperature-resistant adhesive pad 200 more wear-resistant and prolonging the service life.

[0052] In addition, during use, adjust the part of the high-temperature-resistant adhesive pad 200 that contacts the aluminum alloy photovoltaic profile 400 every few hours by raising or lowering the high-temperature-resistant adhesive pad 200, so as to prevent only one point from being worn out and prolong the service life of the entire high-temperature-resistant adhesive pad 200.

[0053] In the description of the application, the meaning of "a plurality of" is two or more than three, unless otherwise expressly specifically limited. Unless otherwise expressly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above-mentioned terms in the application can be understood according to the specific circumstances. Although the utility model has been described with reference to various specific embodiments, it should be understood that modifications can be made within the spirit and scope of the described utility model concept. Therefore, it is intended that the utility model is not limited to the described embodiments, but will have the full scope defined by the language of the appended claims.

Claims

1. An auxiliary tooling for improving the wear resistance and high-temperature resistance of adhesive pads, characterized in that, It can be installed on the profile conveying mechanism (100), which includes: a plurality of conveying wheels (101) arranged in parallel along the profile conveying direction, and a bracket (103) for supporting the conveying wheels (101). The auxiliary tooling includes: an upper clamping plate (301) and a lower clamping plate (302) fixedly installed on the bracket (103) along at least one end of the conveyor wheel (101), a vertical plate (307) fixed to the upper clamping plate (301) on the side close to the conveyor wheel (101), a side water tank (309) fixed to the upper clamping plate (301) on the side away from the conveyor wheel (101), and a lower water tank (310) fixed to the lower clamping plate (302) and located below the conveyor wheel (101). Among them, on the side of the upright plate (307) near the conveyor wheel (101), a slot (308) with a concave structure having a cross-section adapted to a high-temperature resistant adhesive pad (200) is fixedly installed, allowing the high-temperature resistant adhesive pad (200) to be inserted into the concave structure of the slot (308) and fixed in a way that can slide up and down. One end of each of the high-temperature resistant adhesive pads (200) arranged at intervals along the profile conveying direction passes through the gap between two adjacent conveyor wheels (101) and extends into the drain trough (310), while the other end is inserted into the side drain trough (309). Multiple side drain troughs (309) and drain troughs (310) are arranged at intervals along the profile conveying direction, or a long strip-shaped side drain trough (309) and drain trough (310) shared by multiple high-temperature resistant adhesive pads (200) are provided.

2. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1, characterized in that, The water tank (310) is fixed to the side of the lower clamping plate (302) near the conveyor wheel (101).

3. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, The auxiliary tooling (300) has a symmetrical structure, including an upper clamping plate (301) and a lower clamping plate (302) fixedly installed on both ends of the support (103) along the axial direction of the conveyor wheel (101), as well as a side water tank (309) and a lower water tank (310) arranged accordingly.

4. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, The upper clamp (301) is located on the bracket (103), and the lower clamp (302) is located below the bracket (103). The upper clamp (301) and the lower clamp (302) are set in pairs. One side is tightened and fixed with bolt I (303) and nut I (304), and the other side is tightened and fixed with bolt II (305) and nut II (306).

5. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, The upright plate (307) is vertically welded to the side of the upper clamping plate (301) near the conveyor wheel (101).

6. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, The slot (308) is welded to the upright plate (307) in the shape of "[". Two slots are arranged vertically along the upright plate (307). The inside of the slot (308) is rectangular, and the cross section of the high-temperature resistant adhesive pad (200) is also rectangular.

7. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, The conveyor wheel (101) is cylindrical and made of a water-absorbing, high-temperature resistant adhesive pad.

8. The auxiliary tooling for improving the wear resistance and high temperature resistance of adhesive pads according to claim 1 or 2, characterized in that, One end of the high-temperature resistant adhesive pad (200) is inserted into the lower water tank (310), and the other end is inserted into the side water tank (309). The insertion depth is sufficient to touch the bottom or to exceed at least half the depth of the lower water tank (310) or the side water tank (309).

9. A profile conveying device, characterized in that, The auxiliary tooling for improving the wear resistance and high temperature resistance of the adhesive pad according to any one of claims 1 to 8 is additionally installed on the profile conveying mechanism (100).