Silicon core pipe processing finished product winding device
The silicon rod tube collection device addresses assembly and usability issues by using adjustable components for precise positioning and alignment, ensuring stable and efficient collection with improved adaptability and quality.
Patent Information
- Application Number
- CN202422038166.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The traditional silicon core tube winding device has the problem of difficult disassembly and assembly of the winding roller and poor use convenience, which affects the storage and transportation of the silicon core tube.
The cylinder drive mounting is used to move along the mounting base frame, combining adjustment components and guide components to achieve rapid disassembly and assembly and positioning of the winding roller, and automatic control is used to ensure the stability and efficiency of the winding process.
It improves the convenience of disassembly and assembly and application scope of the winding roller, ensures the straightness and flatness of the silicon core tube during the winding process, improves the operation convenience and winding efficiency, and ensures product quality.
Smart Images

Figure CN223102361U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of winding devices, in particular to a winding device for finished products of silicon core pipes during processing. Background Art
[0002] With the rapid development of the semiconductor industry, as one of the important raw materials for semiconductor device manufacturing, the quality of the finished products of silicon core pipes directly affects the performance of semiconductor products. During the production process of silicon core pipes, winding is one of the important processes, which directly affects the storage and transportation of silicon core pipes.
[0003] Traditional silicon core pipe winding devices have problems such as greater difficulty in disassembling and assembling the winding rollers and poorer usability. Summary of the Utility Model
[0004] To solve the above technical problems, the utility model provides a winding device for finished products of silicon core pipes during processing, which is convenient to operate and improves the winding efficiency.
[0005] The winding device for finished products of silicon core pipes of the utility model comprises:
[0006] An installation base frame and an adjustment component. A cylinder is arranged on the installation base frame. An installation part is arranged at the output end of the cylinder. The installation part is slidably arranged in the inner groove of the installation base frame. A guiding part is arranged in the cavity of the installation part. Two groups of moving parts are slidably arranged on the guiding part. Positioning parts are rotatably arranged at the shaft holes of the moving parts. The two groups of positioning parts are used for positioning and clamping the winding roller. One group of positioning parts is coaxially arranged with the output end of a driving motor. The driving motor is arranged on the moving part. The adjustment component is arranged on the installation part and is used for adjusting the distance between the two groups of moving parts;
[0007] A guiding component, which is arranged on the installation base frame and is used for guiding the winding of the silicon core pipe.
[0008] Further, the adjustment component comprises two groups of threaded rods respectively rotatably arranged in the installation holes of the installation part. Through holes and threaded holes are respectively arranged on the moving parts. The two groups of threaded rods respectively pass through the through holes of one group of moving parts and are in threaded connection with the threaded holes of the other group of moving parts. One of the threaded rods is in threaded connection with the threaded hole of one group of moving parts. The two groups of threaded rods are driven by a power component.
[0009] Preferably, the adjustment component comprises a power motor coaxially arranged on one of the threaded rods. The power motor is arranged on the installation part. A transmission gear is coaxially arranged on the threaded rod. The two groups of transmission gears are in meshing transmission connection.
[0010] Furthermore, the guiding component includes a fixing member disposed on the mounting base frame. Support members are symmetrically arranged at both ends of the fixing member. A threaded rod is rotatably arranged on the two groups of support members. The threaded rod is coaxially arranged at the output end of a reciprocating motor. The reciprocating motor is arranged on one group of support members. The reciprocating motor is driven by a control component. A connecting component is arranged on the threaded rod.
[0011] Preferably, the connecting component includes a conducting member slidably arranged on the fixing member. A clamping roller is rotatably arranged on the conducting member. An adjusting member is slidably arranged in the mounting groove of the conducting member. The other group of clamping rollers is rotatably arranged in the positioning holes of the two adjusting members. A bolt is arranged in the threaded inner hole of the adjusting member. The bolt passes through the adjusting groove of the conducting member and is connected with the conducting member in a matching manner.
[0012] Furthermore, inner arc grooves are arranged in the middle of the two groups of clamping rollers.
[0013] Preferably, the control component includes two groups of auxiliary members arranged on the fixing member. The two groups of auxiliary members are located at both ends of the conducting member. A touch switch is arranged on the auxiliary member. Both groups of touch switches are connected to the control of the reciprocating motor. The conducting member is in contact connection with the two groups of touch switches.
[0014] Furthermore, mounting feet are arranged at the bottom end of the mounting base frame.
[0015] Preferably, multiple mounting holes are arranged on the mounting feet.
[0016] Furthermore, a through groove is arranged on the mounting base frame. The power motor passes through the through groove of the mounting base frame.
[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: By adopting a cylinder to drive the mounting member to move along the mounting base frame, the height of the positioning member can be quickly adjusted, which is convenient for the disassembly and assembly of the winding roller. At the same time, the winding roller is in a suspended state during winding. The adjusting component can conveniently adjust the distance between the two moving members, enabling the device to adapt to winding rollers of different lengths, enhancing the application range and flexibility of the device. Meanwhile, it is convenient for the disassembly and assembly of the winding roller. The combined design of the positioning member and the moving member ensures the stability during the winding process, avoiding the situation that the silicon core pipe deviates or loosens during winding. The use of the driving motor realizes the automatic control of the winding process, improves the winding efficiency. The design of the guiding component ensures the straightness and flatness of the silicon core pipe during winding, thereby guaranteeing the quality of the final product, with convenient operation and improved winding efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is the front view structural schematic diagram of the present utility model;
[0019] Figure 2 is the axonometric structural schematic diagram of the present utility model;
[0020] Figure 3It is a partial structural schematic diagram of the present utility model;
[0021] Figure 4 It is a structural schematic diagram of the parts of the present utility model;
[0022] Reference numerals in the drawings: 1, mounting base; 2, cylinder; 3, mounting member; 4, guiding member; 5, moving member; 6, positioning member; 7, driving motor; 8, threaded rod; 9, power motor; 10, transmission gear; 11, fixing member; 12, supporting member; 13, threaded rod; 14, reciprocating motor; 15, conducting member; 16, clamping roller; 17, adjusting member; 18, bolt; 19, auxiliary member; 20, touch switch; 21, mounting foot. Specific embodiments
[0023] The following combines the drawings and embodiments to further describe in detail the specific embodiments of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.
[0024] As Figures 1 to 4 shown, the finished silicon core pipe winding device of the present utility model includes:
[0025] A mounting base 1 and an adjusting assembly. A cylinder 2 is arranged on the mounting base 1. The output end of the cylinder 2 is provided with a mounting member 3. The mounting member 3 is slidably arranged in the inner groove of the mounting base 1. A guiding member 4 is arranged in the cavity of the mounting member 3. Two groups of moving members 5 are slidably arranged on the guiding member 4. A positioning member 6 is rotatably arranged at the shaft hole of the moving member 5. The two groups of positioning members 6 are used for positioning and clamping the winding roller. The output end of a driving motor 7 is coaxially arranged with one group of positioning members 6. The driving motor 7 is arranged on the moving member 5. The adjusting assembly is arranged on the mounting member 3 and is used for adjusting the distance between the two groups of moving members 5;
[0026] A guiding assembly is arranged on the mounting base 1 and is used for guiding the silicon core pipe during winding; By driving the mounting member 3 to move along the mounting base 1 with the cylinder 2, the height of the positioning member 6 can be quickly adjusted, which is convenient for the disassembly and assembly of the winding roller. At the same time, the winding roller is in a suspended state during winding. The adjusting assembly can conveniently adjust the distance between the two groups of moving members 5, so that the device can adapt to winding rollers of different lengths, enhancing the application range and flexibility of the device. At the same time, it is convenient for the disassembly and assembly of the winding roller. The combined design of the positioning member 6 and the moving member 5 ensures the stability during the winding process, avoiding the situation that the silicon core pipe deviates or loosens during winding. The use of the driving motor 7 realizes the automatic control of the winding process, improving the winding efficiency. The design of the guiding assembly ensures the straightness and flatness of the silicon core pipe during winding, thus ensuring the quality of the final product. The operation is convenient and the winding efficiency is improved.
[0027] As Figures 1 to 4As shown, as a preferred solution, the adjusting assembly includes two groups of threaded rods 8 rotatably arranged in the mounting holes of the mounting member 3. Through holes and threaded holes are respectively arranged on the moving member 5. The two groups of threaded rods 8 respectively pass through the through holes of one group of moving members 5 and are in threaded connection with the threaded holes of the other group of moving members 5. The threaded rods 8 are in threaded connection with the threaded holes of one group of moving members 5. The two groups of threaded rods 8 are driven by a power assembly. The adjusting assembly includes a power motor 9 coaxially arranged on one group of threaded rods 8. The power motor 9 is arranged on the mounting member 3. A transmission gear 10 is coaxially arranged on the threaded rod 8. The two groups of transmission gears 10 are in meshing transmission connection. A through groove is arranged on the mounting base 1. The power motor 9 passes through the through groove of the mounting base 1. By the threaded connection between the threaded rod 8 and the threaded hole of the moving member 5, the precise adjustment of the position of the moving member 5 can be realized, and further the distance between the positioning members 6 can be precisely controlled to ensure the stable clamping of the winding roller. The meshing transmission connection of the two groups of transmission gears 10 ensures the synchronous reverse movement of the two groups of moving members 5, increasing the disassembly and assembly efficiency of the winding roller. The use of the power motor 9 simplifies the adjustment process. The design of the adjusting assembly enables the device to adapt to winding rollers of different sizes, enhancing the versatility and flexibility of the equipment.
[0028] As Figures 1 to 4 shown, as a preferred solution, the guiding assembly includes a fixing member 11 arranged on the mounting base 1. Support members 12 are symmetrically arranged at both ends of the fixing member 11. Threaded rods 13 are rotatably arranged on the two groups of support members 12. The threaded rods 13 are coaxially arranged at the output end of a reciprocating motor 14. The reciprocating motor 14 is arranged on one group of support members 12. The reciprocating motor 14 is driven by a control assembly. A connecting assembly is arranged on the threaded rod 13. By driving the threaded rod 13 to rotate by the reciprocating motor 14, the connecting assembly can be driven to move reciprocally along the threaded rod 13, thereby realizing the precise guiding during the winding process of the silicon core pipe, ensuring the straightness and flatness of the silicon core pipe during the winding process. The reciprocating motor 14 is driven by a control assembly and can adjust the guiding position in real time according to needs, improving the flexibility of the guiding assembly and being able to better adapt to different production process requirements. The support members 12 symmetrically arranged at both ends of the fixing member 11 provide a stable support structure, ensuring the stability of the guiding assembly during the working process, reducing shaking and deviation, and guaranteeing the winding quality.
[0029] As Figures 1 to 4As shown, as a preferred solution, the connection assembly includes a conductive member 15 slidably arranged on the fixing member 11, a clamping roller 16 is rotatably arranged on the conductive member 15, an adjusting member 17 is slidably arranged in the mounting groove of the conductive member 15, another group of clamping rollers 16 is rotatably arranged in the positioning holes of the two groups of adjusting members 17, a bolt 18 is arranged in the threaded inner hole of the adjusting member 17, the bolt 18 passes through the adjusting groove of the conductive member 15 and is connected with the conductive member 15, and an inner arc groove is arranged in the middle of the two groups of clamping rollers 16; through the slidable conductive member 15 and the rotatable clamping roller 16, it can be accurately Guide the winding path of the silicon-core tube to ensure that the silicon-core tube maintains straightness and flatness during the winding process. Through the cooperation of the adjusting piece 17 and the bolt 18, the position of the clamping roller 16 can be easily adjusted to adapt to silicon-core tubes of different diameters, thereby enhancing the versatility and flexibility of the equipment. The inner arc groove arranged in the middle of the clamping roller 16 can provide better gripping force to prevent the silicon-core tube from deflecting or slipping during the winding process, thereby ensuring the stability of the winding process. The design of the adjusting piece 17 and the bolt 18 enables the user to easily adjust the position of the clamping roller 16 as needed.
[0030] like Figures 1 to 4 As shown, as a preferred solution, the control component includes two groups of auxiliary parts 19 arranged on the fixing part 11, the two groups of auxiliary parts 19 are located at both ends of the conductive part 15, and touch switches 20 are arranged on the auxiliary parts 19. The two groups of touch switches 20 are both controlled and connected with the reciprocating motor 14, and the conductive part 15 is in contact with the two groups of touch switches 20; the design of the touch switch 20 can realize precise control of the position of the conductive part 15. When the conductive part 15 moves to a predetermined position, the touch switch 20 is triggered, which can immediately change the working state of the reciprocating motor 14 to ensure the straightness and flatness of the silicon core tube during the winding process. The two groups of touch switches 20 are both controlled and connected with the reciprocating motor 14, and the position of the conductive part 15 can be adjusted in real time according to the requirements of the production process, thereby realizing automatic adjustment and improving production efficiency.
[0031] like Figures 1 to 4 As shown, as a preferred solution, a mounting foot 21 is provided at the bottom end of the mounting base 1, and a plurality of mounting holes are provided on the mounting foot 21; the design of the mounting foot 21 provides a stable mounting foundation, ensures the stability of the entire winding device during operation, and reduces displacement or shaking caused by vibration or uneven ground. The plurality of mounting holes provided on the mounting foot 21 allow the user to select a suitable installation position according to actual needs, thereby enhancing the adaptability and flexibility of the device and enabling it to be stably installed in different environments.
[0032] like Figures 1 to 4 As shown, as a preferred solution, its working process is as follows:
[0033] Use the air cylinder 2 to adjust the height of the mounting member 3 so as to place the winding roller between the positioning members 6. At this time, the positioning members 6 are in a lower position, which is convenient for the operator to easily install or disassemble the winding roller. Adjust the distance between the two sets of moving members 5 through the adjusting assembly, so that the positioning members 6 can accurately clamp the winding roller. The adjusting assembly is driven by the power motor 9. Through the cooperation of the threaded rod 8 and the transmission gear 10, the two sets of moving members 5 move synchronously in the reverse direction, precisely controlling the distance between the positioning members 6. Then, the air cylinder 2 drives the winding roller to leave the ground. Before starting the winding, adjust the moving range of the guiding assembly through the control assembly, and guide the silicon core pipe through the guiding assembly. The reciprocating motor 14 in the guiding assembly drives the threaded rod 13 to rotate, driving the connecting assembly to move reciprocally along the threaded rod 13, ensuring the straightness and flatness of the silicon core pipe during the winding process. When the conduction member 15 moves to a predetermined position, the touch switch 20 is triggered, changing the working state of the reciprocating motor 14, and the driving motor 7 starts. The winding roller is driven to rotate through the positioning members 6, starting the winding process of the silicon core pipe. During the entire winding process, the guiding assembly and the clamping roller 16 work together to ensure the stability of the winding process and the quality of the product.
[0034] For the silicon core pipe processing and finished product winding device of the present utility model, its installation method, connection method or setting method are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented.
[0035] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. The coiling device for the processed finished silicon core pipes is characterized in that Comprising: An installation base frame and an adjustment component. A cylinder is provided on the installation base frame. An installation part is provided at the output end of the cylinder. The installation part is slidably arranged in the inner groove of the installation base frame. A guiding part is arranged in the cavity of the installation part. Two groups of moving parts are slidably arranged on the guiding part. A positioning part is rotatably arranged at the shaft hole of the moving part. The two groups of positioning parts are used for positioning and clamping the winding roller. One group of positioning parts is coaxially arranged with the output end of a driving motor. The driving motor is arranged on the moving part. The adjustment component is arranged on the installation part and is used for adjusting the distance between the two groups of moving parts; A guiding component, which is arranged on the installation base frame and is used for guiding the winding of the silicon core pipe.
2. The coiling device for the processed finished silicon core pipe as described in claim 1, characterized in that, The adjustment component includes two groups of threaded rods respectively rotatably arranged in the installation holes of the installation part. Through holes and threaded holes are respectively arranged on the moving parts. The two groups of threaded rods respectively pass through the through holes of one group of moving parts and are in threaded connection with the threaded holes of the other group of moving parts. The threaded rods are in threaded connection with the threaded holes of one group of moving parts. The two groups of threaded rods are driven by a power component.
3. The coiling device for the finished product of silicon core pipe as described in claim 2, characterized in that, The adjustment component includes a power motor coaxially arranged on one group of threaded rods. The power motor is arranged on the installation part. A transmission gear is coaxially arranged on the threaded rod. The two groups of transmission gears are in meshing transmission connection.
4. The coiling device for the processed finished product of the silicon core pipe according to claim 3, characterized in that, A through groove is arranged on the installation base frame. The power motor passes through the through groove of the installation base frame.
5. The coiling device for the finished product of silicon core pipe as described in claim 1, characterized in that, The guiding component includes a fixing part arranged on the installation base frame. Support parts are symmetrically arranged at both ends of the fixing part. Threaded rods are rotatably arranged on the two groups of support parts. The threaded rods are coaxially arranged with the output end of a reciprocating motor. The reciprocating motor is arranged on one group of support parts. The reciprocating motor is driven by a control component. A connecting component is arranged on the threaded rod.
6. The coiling device for the processed finished silicon core pipe as described in claim 5, characterized in that, The connecting component includes a conduction part slidably arranged on the fixing part. A clamping roller is rotatably arranged on the conduction part. An adjusting part is slidably arranged in the installation groove of the conduction part. The other group of clamping rollers is rotatably arranged in the positioning holes of the two groups of adjusting parts. A bolt is arranged in the threaded inner hole of the adjusting part. The bolt passes through the adjusting groove of the conduction part and is in connection with the conduction part.
7. The coiling device for the finished product of silicon core pipe according to claim 6, wherein, Inner arc grooves are arranged in the middle of the two groups of clamping rollers.
8. The coiling device for the processed finished silicon core pipe as described in claim 6, characterized in that, The control component includes two groups of auxiliary parts arranged on the fixing part. The two groups of auxiliary parts are located at both ends of the conduction part. Touch switches are arranged on the auxiliary parts. Both groups of touch switches are connected to the control of the reciprocating motor. The conduction part is in contact connection with the two groups of touch switches.
9. The coiling device for the processed finished product of silicon core pipe according to claim 1, wherein, Installation feet are arranged at the bottom end of the installation base frame.
10. The coiling device for the processed finished silicon core pipe as described in claim 9, characterized in that, Multiple installation holes are arranged on the installation feet.