Traction device for heat insulation strip processing
By designing a traction device for heat insulation strip processing, and utilizing a combination of pressure rollers and take-up rollers, the problem of existing equipment being unable to simultaneously traction and take-up was solved, achieving cooling, shaping, and uniform winding of the heat insulation strip, thus improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2026-03-10
AI Technical Summary
Existing thermal insulation strip processing equipment has limited functionality and cannot simultaneously pull and store multiple sets of thermal insulation strips, resulting in low production efficiency.
A traction device for processing thermal insulation strips was designed, comprising a pressure roller and a receiving roller. A drive mechanism drives a rotating rod and a slider to make the thermal insulation strips evenly wound on the receiving roller, realizing the simultaneous traction and receiving of multiple sets of thermal insulation strips.
It improves the production efficiency of thermal insulation strips, enabling the strips to be cooled, shaped, and evenly wound and stored, thus enhancing production efficiency.
Smart Images

Figure CN223982125U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of heat insulation strip processing equipment, and specifically relates to a traction device for heat insulation strip processing. BACKGROUND
[0002] The heat insulation strip is used as an auxiliary part for connecting aluminum alloy, can play a heat preservation and heat insulation role, reduces the thermal conductivity of aluminum material, is composed of not less than 65% polyamide 66 (nylon 66) and 25% glass fiber, is a polyamide profile that reduces heat conduction and has structural connection in metal heat insulation profile, and is a core component of the heat insulation profile.
[0003] In the processing and production of the heat insulation strip, the just extruded heat insulation strip is pulled by the traction machine, the existing traction equipment has single function, cannot wind and store the pulled heat insulation strip, the storage of the extruded heat insulation strip is more troublesome, and the traction device cannot pull and store multiple groups of heat insulation strips at the same time, thereby reducing the production efficiency of the heat insulation strip. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a traction device for heat insulation strip processing to solve the problems in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A traction device for heat insulation strip processing, comprising a rack, further comprising:
[0007] A compression roller is arranged on the outside of the rack, the bottom of the support plate is provided with a bottom plate, the support plate is provided with an installation groove, the installation groove is provided with a fixed block, a communication pipe is arranged between the two fixed blocks, the communication pipe is provided with a compression roller, a plurality of forming grooves are arranged on the compression roller, a groove is arranged on the fixed block, the one end of the communication pipe is inserted into the groove and is provided with a connecting block, a plurality of connecting blocks are respectively provided with an inlet pipe and an outlet pipe;
[0008] A storage roller is arranged on the outside of the rack, the inside of the square groove is provided with an installation column, the installation column is provided with a guide wheel, the outside of the rack is provided with a fixed frame, the inside of the fixed frame is provided with a rotating rod, the outside of the rotating rod is provided with a plurality of storage rollers, the two sides of the storage roller are provided with a limiting plate, the fixed frame is provided with a sliding groove, the inside of the sliding groove is provided with a plurality of sliding blocks, the sliding block is provided with a fixed column, and the two fixed columns are located on the two sides of the limiting plate;
[0009] A driving mechanism is arranged on the fixed frame and can drive the rotating rod and the sliding block to move.
[0010] Based on the above technical solutions, this utility model also provides the following optional technical solutions:
[0011] In one alternative embodiment: the driving mechanism includes a motor, a gear set, and a lead screw; a transmission rod is provided inside the sliding groove; a lead screw is provided on the transmission rod; the slider is sleeved on the lead screw through an internally threaded groove; a gear set is provided between the transmission rod and the rotating rod; a motor is provided outside the fixed frame; and the rotating end of the motor is connected to the rotating rod.
[0012] In one alternative: a drive motor is provided on the fixed block, a drive gear is provided on the rotating end of the drive motor, and a driven gear that meshes with the drive gear is provided on the connecting pipe.
[0013] In one alternative: the outer wall of the support plate is provided with a side plate, a positioning rod is provided between the two side plates, and the fixing block is sleeved on the outside of the positioning rod.
[0014] In one alternative: the connecting block is fixedly disposed inside the groove, and the water inlet pipe is connected to the inside of the connecting pipe through the connecting block.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] The traction device for heat insulation strip processing drives the rotating rod to rotate through the drive mechanism. The rotating rod drives the collecting roller to rotate. The pressure roller cools and shapes the heat insulation strip. After being formed, the heat insulation strip is wound around the collecting roller for storage. The slider slides along the sliding groove. The slider drives the collecting roller to move back and forth along the rotating rod, so that the heat insulation strip is evenly wound on the collecting roller. It can simultaneously pull and collect multiple sets of heat insulation strips, improving the production efficiency of heat insulation strips. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the traction device used for processing thermal insulation strips.
[0018] Figure 2 This is a schematic diagram of the pressure roller in the traction device used for processing thermal insulation strips.
[0019] Figure 3 This is a schematic diagram of the fixing frame in the traction device for processing thermal insulation strips.
[0020] Figure 4 This is a schematic diagram of the slider in the traction device used for processing thermal insulation strips.
[0021] Figure reference numerals: 1-Frame, 101-Square groove, 2-Insulation box, 201-Mounting groove, 3-Base plate, 4-Guide wheel, 5-Pressure roller, 501-Forming groove, 6-Side plate, 7-Filter screen, 8-Fixing block, 801-Groove, 9-Inlet pipe, 10-Outlet pipe, 11-Drive motor, 12-Connecting pipe, 13-Connecting block, 14-Fixing frame, 141-Sliding groove, 15-Transmission rod, 16-Motor, 17-Rotating rod, 18-Lead screw, 19-Slider, 20-Gear set, 21-Mounting column, 22-Fixing column, 23-Driving gear, 24-Driven gear, 25-Collection roller, 251-Limiting plate. Detailed Implementation
[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. In the drawings and description, similar or identical parts are referred to by the same reference numerals, and in practical applications, the shape, thickness, or height of each component may be enlarged or reduced. The embodiments listed in this utility model are merely illustrative and not intended to limit the scope of this utility model. Any obvious modifications or changes made to this utility model do not depart from its spirit and scope.
[0023] In one embodiment, such as Figures 1-4 As shown, a traction device for processing thermal insulation strips includes a frame 1, and further includes:
[0024] The pressure roller 5 is provided with support plates 2 vertically arranged on both sides of the frame 1. The bottom of the support plate 2 is provided with a base plate 3. The support plate 2 has an installation groove 201. The installation groove 201 is provided with a fixing block 8. A connecting pipe 12 is rotatably arranged between two fixing blocks 8. The pressure roller 5 is provided outside the connecting pipe 12. The pressure roller 5 has multiple forming grooves 501. The fixing blocks 8 have grooves 801. One end of the connecting pipe 12 passes into the groove 801 and is provided with a connecting block 13. The multiple connecting blocks 13 are respectively provided with water inlet pipes 9 and water outlet pipes 10. The water inlet pipes 9 are connected to a water pump. Cooling water flows into the pressure roller 5 along the water inlet pipes 9 and the connecting pipes 12, which can cool and lower the heat insulation strip that passes through the forming grooves 501, so that the heat insulation strip is shaped. The cooling water is discharged along the water outlet pipe 10 on the other side, forming a cooling water circulation.
[0025] The frame 1 has a square groove 101 on its front side, and a mounting post 21 is provided inside the square groove 101. A guide wheel 4 is rotatably mounted on the mounting post 21, which can guide the heat insulation strip passing through. A fixing frame 14 is provided on the back side of the frame 1. A rotating rod 17 is rotatably mounted inside the fixing frame 14. Multiple collection rollers 25 are slidably mounted outside the rotating rod 17. The rotating rod 17 drives the collection rollers 25 through a transmission key, so that the rotating rod 17 can drive the collection rollers 25 to rotate. The formed heat insulation strip is wrapped around the collection rollers 25. The rotating rod 17 drives the collection rollers 25 to rotate, which facilitates the winding and storage of the heat insulation strip. Limit plates 251 are provided on both sides of the collection rollers 25. A sliding groove 141 is provided on the fixing frame 14. Multiple sliders 19 are provided inside the sliding groove 141. A fixing post 22 is provided on the slider 19. Two fixing posts 22 are located on both sides of the limiting plate 251.
[0026] The drive mechanism, mounted on the fixed frame 14, can drive the rotating rod 17 and the slider 19 to move;
[0027] The traction device for processing the heat insulation strip drives the rotating rod 17 to rotate via the drive mechanism. The rotating rod 17 drives the collecting roller 25 to rotate. The collecting roller 25 rotates and pulls the heat insulation strip. The pressure roller 5 cools and shapes the heat insulation strip. The formed heat insulation strip is wrapped around the collecting roller 25 for storage. The slider 19 slides along the sliding groove 141. The slider 19 drives the collecting roller 25 to move back and forth along the rotating rod 17, so that the heat insulation strip is evenly wrapped around the collecting roller 25. As an embodiment, the left, right, up and down positions of the various components shown in the figure are only one arrangement. The specific positions are set according to specific needs.
[0028] In one embodiment, such as Figures 2-4 As shown, the driving mechanism includes a motor 16, a gear set 20, and a lead screw 18. A transmission rod 15 is rotatably arranged inside the sliding groove 141, and a lead screw 18 is fixedly arranged on the transmission rod 15. The lead screw 18 is a reciprocating lead screw. The slider 19 is sleeved on the lead screw 18 through an internally threaded groove. A gear set 20 is arranged between the transmission rod 15 and the rotating rod 17. A motor 16 is arranged outside the fixed frame 14. The rotating end of the motor 16 is connected to the rotating rod 17. The motor 16 drives the rotating rod 17 and the transmission rod 15 to rotate through the gear set 20. The transmission rod 15 drives the lead screw 18 to rotate, and the lead screw 18 drives the slider 19 to slide left and right.
[0029] In one embodiment, such as Figure 4As shown, a drive motor 11 is provided on the fixed block 8, and a drive gear 23 is provided on the rotating end of the drive motor 11. A driven gear 24 that meshes with the drive gear 23 is provided on the connecting pipe 12. The drive motor 11 drives the connecting pipe 12 to rotate, and the connecting pipe 12 drives the pressure roller 5 to rotate. The pressure roller 5 drives another pressure roller 5 to rotate through friction.
[0030] In one embodiment, such as Figures 1-3 As shown, the outer wall of the support plate 2 is provided with a side plate 6, and a positioning rod 7 is provided between the two side plates 6. The fixing block 8 is sleeved on the outside of the positioning rod 7. The fixing block 8 slides up and down along the positioning rod 7 to facilitate the adjustment of the position of the pressure roller 5. The fixing block 8 is fixed by bolts.
[0031] In one embodiment, such as Figures 1-2 As shown, the connecting block 13 is fixedly installed inside the groove 801, and the water inlet pipe 9 is connected to the inside of the connecting pipe 12 through the connecting block 13, so that cooling water can be injected into the inside of the pressure roller 5.
[0032] The above embodiments of this utility model provide a traction device for processing heat insulation strips. The heat insulation strips extruded from the production equipment are pulled out and passed through the guide wheel 4 and the pressure roller 5 in sequence. One end of the heat insulation strip is wrapped around the receiving roller 25. The motor 16 drives the rotating rod 17 and the transmission rod 15 to rotate through the gear set 20. The receiving roller 25 rotates and pulls the heat insulation strip. The drive motor 11 drives the connecting pipe 12 to rotate. The connecting pipe 12 drives the pressure roller 5 to rotate. The pressure roller 5 cools and shapes the heat insulation strip that has passed through. The shaped heat insulation strip is wrapped around the receiving roller 25 for storage. The transmission rod 15 drives the lead screw 18 to rotate. The lead screw 18 drives the slider 19 to slide left and right. The slider 19 drives the receiving roller 25 to move back and forth along the rotating rod 17, so that the heat insulation strip is evenly wrapped around the receiving roller 25.
[0033] The above description is merely a specific embodiment of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A pulling device for processing of thermal barrier strips, comprising a frame, characterized in that, Also include: The support plate is provided with a bottom plate at the bottom, and a mounting groove is opened in the support plate. A fixed block is arranged inside the mounting groove, and a communication pipe is arranged between the two fixed blocks. A compression roller is arranged outside the communication pipe. A plurality of forming grooves are opened in the compression roller. A groove is opened in the fixed block. The communication pipe penetrates into the groove at one end and is provided with a connecting block. A plurality of connecting blocks are respectively provided with water inlet pipes and water outlet pipes; The outer side wall of the support plate is provided with a side plate, and a positioning rod is arranged between the two side plates. The fixed block is sleeved outside the positioning rod. The driving mechanism includes a motor, a gear set and a lead screw. A transmission rod is arranged inside the sliding groove. The transmission rod is provided with a lead screw. The sliding block is sleeved on the lead screw through the internally opened thread groove. The transmission rod and the rotating rod are provided with a gear set. The outer side of the fixed frame is provided with a motor. The rotating end of the motor is connected with the rotating rod.
2. The heat shield strip processing pulling apparatus according to claim 1, characterized by The fixed block is provided with a driving motor. The rotating end of the driving motor is provided with a driving gear. The communication pipe is provided with a driven gear meshing with the driving gear.
3. The apparatus according to claim 2, wherein The outer side wall of the support plate is provided with a side plate, and a positioning rod is arranged between the two side plates. The fixed block is sleeved outside the positioning rod.
4. The apparatus according to claim 1, wherein The connecting block is fixedly arranged in the groove. The water inlet pipe is connected with the inside of the communication pipe through the connecting block.
5. The apparatus according to claim 1, wherein