Horn-shaped lifting guide structure of hosiery machine
By installing a double-headed guide anti-sway component and a multi-directional anti-deviation adjustment component in the sock machine's bell-shaped lifting connecting seat, the problem of swaying and deviation of the bell-shaped lifting rod is solved, thereby improving the stability and precision of the sock machine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG ZHUJI YIPENG MACHINERY
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-08
AI Technical Summary
The existing sock machine's bell-shaped lifting rod is prone to shaking and deviation during the lifting process, affecting the machine's operational stability and accuracy.
The system employs a double-headed guide anti-sway component and a multi-directional anti-deviation adjustment component within the horn-shaped lifting connection body. The horn-shaped lifting rod is guided and positioned vertically through a guide channel, and the angle is finely adjusted through the multi-directional anti-deviation adjustment component, thereby increasing the guide stroke and stability.
It improves the operational stability and precision of the sock machine, avoids the shaking and deviation of the bell-shaped lifting rod during the lifting process, and enhances the knitting precision.
Smart Images

Figure CN224212909U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of textile equipment technology and relates to a lifting and guiding structure for the sock machine's trumpet tube. Background Technology
[0002] Currently, most knitted socks are made automatically using sock knitting machines. The sock machine's bell-shaped needle cylinder needs to move up and down. Existing lifting structures typically use a bottom guide frame, through which the lifting rod of the bell-shaped needle cylinder is guided. However, due to the short guide stroke of the bottom guide frame, the lifting rod of the bell-shaped needle cylinder is prone to wobbling and hitting the machine's operating parts during lifting, resulting in relatively poor operational stability. Furthermore, when the top of the lifting rod shifts, it is difficult to fine-tune its angle, affecting the knitting accuracy. Therefore, it is urgently necessary to design a lifting and guiding structure for the sock machine's bell-shaped needle cylinder that can overcome these shortcomings.
[0003] To overcome the shortcomings of existing technologies, people have continuously explored and proposed various solutions. For example, Chinese patent discloses an adjustable guide seat for a sock machine [application number: 201620703887.5], which includes a guide seat body, an upper seat, a lower seat, a fixing screw, and a connecting seat. The guide seat body is provided with an upper seat and a lower seat. The upper end face of the lower seat is evenly distributed with positioning teeth one and has screw holes inside. The right side of the upper seat is provided with a connecting seat, the upper end face of which is provided with positioning teeth two and has through holes inside. The upper end of the through holes is provided with countersunk holes. The connecting seat is provided with shaft holes inside and several screw holes at the upper end. After positioning teeth one and positioning teeth two mesh, the fixing screw is inserted into the countersunk holes and through holes and screwed into the screw holes. Utility Model Content
[0004] The purpose of this invention is to address the above-mentioned problems by providing a lifting and guiding structure for the sock machine's bell-shaped cylinder.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A sock knitting machine horn tube lifting guide structure includes a horn tube lifting connecting seat, a guide channel is provided inside the horn tube lifting connecting seat, a double-headed guide anti-sway component is provided on the horn tube lifting connecting seat, and a multi-directional anti-deviation adjustment component is provided in the guide channel, the multi-directional anti-deviation adjustment component being positioned corresponding to the horn tube lifting connecting seat.
[0007] In the above-mentioned sock machine bell tube lifting guide structure, the double-headed guide anti-sway component includes an anti-sway guide positioning component disposed at the top of the bell tube lifting connecting seat and a lower guide connecting component disposed at the bottom of the bell tube lifting connecting seat. The lower guide connecting component and the anti-sway guide positioning component are arranged opposite each other, and the multi-directional anti-deviation adjustment component is located between the lower guide connecting component and the anti-sway guide positioning component.
[0008] In the above-mentioned sock machine horn tube lifting guide structure, the anti-sway guide positioning component includes a horn tube anti-sway guide tube disposed on the top of the horn tube lifting connecting seat, and the horn tube anti-sway guide tube is provided with a tube opening reinforcement part.
[0009] In the above-mentioned hosiery machine horn tube lifting guide structure, the tube opening reinforcement part includes a tube opening thickening ring body disposed on the horn tube anti-sway guide tube, and a plurality of upper reinforcing ribs are provided between the tube opening thickening ring body and the horn tube anti-sway guide tube.
[0010] In the above-mentioned sock machine horn tube lifting guide structure, the lower guide connector includes a guide connecting tube disposed at the bottom of the horn tube lifting connecting seat, and the guide connecting tube and the horn tube anti-sway guide tube are arranged opposite each other.
[0011] In the above-mentioned hosiery machine horn tube lifting guide structure, the guide connecting tube is provided with several connecting tube reinforcing ribs, and the multi-directional anti-deviation adjustment component is located between the guide connecting tube and the horn tube anti-sway guide tube.
[0012] In the above-mentioned hosiery machine bell tube lifting guide structure, the multi-directional anti-deviation adjustment component includes a lower anti-deviation adjustment part and an auxiliary alignment sleeve part disposed in the guide channel, wherein the lower anti-deviation adjustment part corresponds to the position of the guide connecting cylinder.
[0013] In the above-mentioned sock machine horn tube lifting guide structure, the lower anti-eccentricity adjustment part includes an eccentric positioning ring plate disposed in the guide channel. The eccentric positioning ring plate is provided with a through groove. The horn tube lifting connecting seat is provided with two threaded holes. The eccentric positioning ring plate is provided with an adjustment slide groove. The eccentric positioning ring plate and the horn tube lifting connecting seat are fixed together by bolts.
[0014] In the above-mentioned hosiery machine bell tube lifting guide structure, the auxiliary alignment sleeve part includes an auxiliary alignment collar disposed in the guide channel, and the auxiliary alignment collar is located above the eccentric positioning ring plate.
[0015] In the above-mentioned hosiery machine horn tube lifting guide structure, the horn tube lifting connecting seat is provided with a collar connecting shaft, which engages with the auxiliary alignment collar.
[0016] Compared with existing technologies, the advantages of this utility model are:
[0017] 1. This utility model installs the horn tube lifting connecting seat to the bottom of the knitting machine, and installs the lifting rod of the horn tube into the horn tube lifting connecting seat, so that the lifting rod of the horn tube passes through the horn tube lifting connecting seat. The double-headed guide anti-sway component provides double upper and lower guidance and positioning for the lifting rod of the horn tube. With the help of the guide channel, the guide stroke is lengthened, which prevents the lifting rod of the horn tube from shaking during the lifting process and hitting the operating parts of the knitting machine. The stability of the knitting machine is improved. At the same time, the multi-directional anti-deviation adjustment component can finely adjust the angle of the lifting rod of the horn tube to prevent the top of the lifting rod of the horn tube from deviating, further improving the accuracy of the knitting machine.
[0018] 2. The auxiliary alignment collar in this utility model mainly supports and guides the lifting rod of the sock machine horn tube located in the middle of the guide channel, preventing the middle of the lifting rod of the sock machine horn tube from being completely suspended, thus further enhancing the stability of the structure.
[0019] Other advantages, objectives and features of this invention will be partly apparent from the following description, and partly understood by those skilled in the art through study and practice of this invention. Attached Figure Description
[0020] Figure 1 This is an assembly diagram of the present invention.
[0021] Figure 2 This is a schematic diagram of the structure of this utility model.
[0022] Figure 3 This is a structural schematic diagram of another aspect of this utility model.
[0023] Figure 4 This is a partial structural schematic diagram of the present invention.
[0024] Figure 5 This is a schematic diagram of the eccentric positioning ring plate.
[0025] In the diagram: 1. Horn tube lifting connecting seat; 2. Guide channel; 3. Double-headed guide anti-sway assembly; 4. Multi-directional anti-deviation adjustment component; 5. Anti-sway guide positioning component; 6. Lower guide connecting component; 7. Horn tube anti-sway guide tube; 8. Tube mouth reinforcement part; 9. Tube mouth thickened ring body; 10. Upper reinforcing rib; 11. Guide connecting tube; 12. Connecting tube reinforcing rib; 13. Lower anti-eccentric adjustment part; 14. Auxiliary alignment sleeve part; 15. Eccentric positioning ring plate; 16. Through groove; 17. Threaded hole; 18. Adjustment slide groove; 19. Auxiliary alignment collar; 20. Collar connecting clip. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings.
[0027] like Figure 1-5 As shown, a sock machine horn tube lifting guide structure includes a horn tube lifting connecting seat 1, a guide channel 2 is provided inside the horn tube lifting connecting seat 1, a double-headed guide anti-sway component 3 is provided on the horn tube lifting connecting seat 1, and a multi-directional anti-deviation adjustment component 4 is provided inside the guide channel 2, the multi-directional anti-deviation adjustment component 4 being positioned corresponding to the horn tube lifting connecting seat 1.
[0028] In this embodiment, the horn tube lifting connecting seat 1 is installed at the bottom of the knitting machine, and the lifting rod of the sock machine horn tube is installed inside the horn tube lifting connecting seat 1, so that the lifting rod of the sock machine horn tube passes through the horn tube lifting connecting seat 1. The double-headed guide anti-sway component 3 provides double upper and lower guidance and positioning for the lifting rod of the sock machine horn tube. With the help of the guide channel 2, the guide stroke is lengthened, which prevents the lifting rod of the sock machine horn tube from shaking during the lifting process and hitting the operating parts of the sock machine. The stability of the sock machine operation is improved. At the same time, the multi-directional anti-deviation adjustment component 4 can make fine adjustments to the angle of the lifting rod of the sock machine horn tube, preventing the top of the lifting rod of the sock machine horn tube from deviating, further improving the accuracy of the sock machine.
[0029] Combination Figure 1-5 As shown, the dual-headed guide anti-sway assembly 3 includes an anti-sway guide positioning component 5 disposed on the top of the horn tube lifting connecting seat 1 and a lower guide connecting component 6 disposed on the bottom of the horn tube lifting connecting seat 1. The lower guide connecting component 6 and the anti-sway guide positioning component 5 are arranged opposite each other, and the multi-directional anti-deviation adjustment component 4 is located between the lower guide connecting component 6 and the anti-sway guide positioning component 5.
[0030] Specifically, the horn tube lifting connecting seat 1 is installed at the bottom of the knitting machine, and the lifting rod of the sock machine horn tube is installed inside the horn tube lifting connecting seat 1, so that the lifting rod of the sock machine horn tube passes through the horn tube lifting connecting seat 1. The lifting rod of the sock machine horn tube is guided and positioned vertically by the anti-sway guide positioning component 5 and the lower guide connecting component 6. With the help of the guide channel 2, the guide stroke is lengthened, which prevents the lifting rod of the sock machine horn tube from shaking during the lifting process and hitting the operating parts of the sock machine, thus improving the stability of the sock machine operation.
[0031] The anti-sway guide positioning component 5 includes an anti-sway guide cylinder 7 disposed on the top of the horn cylinder lifting connection seat 1, and the horn cylinder anti-sway guide cylinder 7 is provided with a cylinder mouth reinforcement part 8.
[0032] In this embodiment, the anti-sway guide tube 7 can guide and position the upper part of the lifting rod of the sock machine's horn tube, thus lengthening the guide stroke. The tube mouth reinforcement part 8 can increase the wall thickness of the contact surface between the anti-sway guide tube 7 and the lifting rod of the sock machine's horn tube. With a larger thickness, the guiding stability is better.
[0033] Combination Figure 2 , Figure 4 As shown, the cylinder mouth reinforcement part 8 includes a cylinder mouth thickening ring 9 disposed on the horn cylinder anti-sway guide cylinder 7, and a plurality of upper reinforcing ribs 10 are provided between the cylinder mouth thickening ring 9 and the horn cylinder anti-sway guide cylinder 7.
[0034] In this embodiment, the thickened ring 9 at the tube opening can increase the wall thickness of the contact surface between the anti-sway guide tube 7 and the lifting rod of the sock machine tube. The greater the thickness, the better the guiding stability. The upper reinforcing rib 10 strengthens the anti-sway guide tube 7.
[0035] The lower guide connector 6 includes a guide connector 11 disposed at the bottom of the horn tube lifting connector 1, and the guide connector 11 is disposed opposite to the horn tube anti-sway guide tube 7.
[0036] In this embodiment, the guide connecting cylinder 11 can guide and position the lower part of the lifting rod of the sock machine's horn cylinder, thus lengthening the guide stroke.
[0037] Combination Figure 2 As shown, the guide connecting cylinder 11 is provided with a plurality of connecting cylinder reinforcing ribs 12, and the multi-directional anti-deviation adjustment component 4 is located between the guide connecting cylinder 11 and the horn-shaped anti-sway guide cylinder 7.
[0038] In this embodiment, the connecting cylinder reinforcing rib 12 strengthens the guide connecting cylinder 11.
[0039] The multi-directional anti-deviation adjustment component 4 includes a lower anti-deviation adjustment part 13 and an auxiliary alignment sleeve part 14 disposed in the guide channel 2. The lower anti-deviation adjustment part 13 corresponds to the position of the guide connecting cylinder 11.
[0040] In this embodiment, the lower anti-eccentricity adjustment part 13 and the auxiliary alignment fitting part 14 can be used to finely adjust the angle of the lifting rod of the sock machine's trumpet cylinder, preventing the top of the lifting rod of the sock machine's trumpet cylinder from shifting, and further improving the accuracy of the sock machine.
[0041] Combination Figure 1-5 As shown, the lower anti-eccentricity adjustment part 13 includes an eccentric positioning ring plate 15 disposed in the guide channel 2. The eccentric positioning ring plate 15 is provided with a through groove 16. The horn tube lifting connecting seat 1 is provided with two threaded holes 17. The eccentric positioning ring plate 15 is provided with an adjustment slide groove 18. The eccentric positioning ring plate 15 and the horn tube lifting connecting seat 1 are fixed together by bolts.
[0042] In this embodiment, the lifting rod of the sock machine's trumpet tube passes through the through groove 16 in the eccentric positioning ring plate 15. The eccentric positioning ring plate 15 and the trumpet tube lifting connecting seat 1 are fixed by bolts. The bolts pass through the adjusting slide groove 18 and are screwed into the threaded hole 17. When it is necessary to make a fine adjustment to the angle of the lifting rod of the sock machine's trumpet tube, the eccentric positioning ring plate 15 is moved to drive the lifting rod of the sock machine's trumpet tube to move, thereby finely adjusting and correcting the angle of the lifting rod of the sock machine's trumpet tube, preventing the top of the lifting rod of the sock machine's trumpet tube from shifting, further improving the accuracy of the sock machine, and making the adjustment simple and convenient.
[0043] Combination Figure 1-4 As shown, the auxiliary alignment sleeve part 14 includes an auxiliary alignment sleeve 19 disposed in the guide channel 2, and the auxiliary alignment sleeve 19 is located above the eccentric positioning ring plate 15.
[0044] In this embodiment, the auxiliary alignment collar 19 mainly supports and guides the lifting rod of the sock machine horn tube located in the middle of the guide channel 2, preventing the middle of the lifting rod of the sock machine horn tube from being completely suspended in the air, thus further enhancing the stability of the structure.
[0045] Combination Figure 3-4 As shown, the horn tube lifting connecting seat 1 is provided with a collar connecting shaft 20, which is engaged with the auxiliary alignment collar 19.
[0046] In this embodiment, the collar connecting clip 20 is used to connect and fix the auxiliary alignment collar 19, which has a good connection effect and avoids the auxiliary alignment collar 19 being in a suspended state.
[0047] The working principle of this utility model is as follows:
[0048] Install the bell-shaped cylinder lifting connecting body 1 to the bottom of the knitting machine. Install the lifting rod of the bell-shaped cylinder into the bell-shaped cylinder lifting connecting body 1, so that the lifting rod of the bell-shaped cylinder passes through the bell-shaped cylinder lifting connecting body 1. The bell-shaped cylinder anti-sway guide cylinder 7 and guide connecting cylinder 11 provide double upper and lower guidance and positioning for the lifting rod of the bell-shaped cylinder. With the help of the guide channel 2, the guide stroke is lengthened, which prevents the lifting rod of the bell-shaped cylinder from shaking during the lifting process and from hitting the operating parts of the knitting machine, thereby improving the stability of the knitting machine operation.
[0049] The anti-sway guide tube 7 of the sock machine's horn tube serves to guide and position the upper part of the lifting rod, extending the guide stroke. The thickened ring body 9 at the tube opening increases the wall thickness of the contact surface between the anti-sway guide tube 7 and the lifting rod of the sock machine's horn tube, resulting in greater thickness and better guiding stability. The upper reinforcing rib 10 further strengthens the anti-sway guide tube 7.
[0050] The guide connecting cylinder 11 guides and positions the lower part of the lifting rod of the sock machine's bell cylinder, extending the guide stroke. The connecting cylinder reinforcing rib 12 strengthens the guide connecting cylinder 11.
[0051] The lifting rod of the sock machine's trumpet tube passes through the through groove 16 within the eccentric positioning ring plate 15. The eccentric positioning ring plate 15 is fixed to the trumpet tube lifting connecting seat 1 by bolts. The bolts pass through the adjusting slide groove 18 and are screwed into the threaded hole 17. When it is necessary to fine-tune the angle of the lifting rod of the sock machine's trumpet tube, the eccentric positioning ring plate 15 is moved, which drives the lifting rod of the sock machine's trumpet tube to move, thereby fine-tuning and correcting the offset angle of the lifting rod of the sock machine's trumpet tube. This prevents the top of the lifting rod of the sock machine's trumpet tube from shifting, further improving the accuracy of the sock machine. The adjustment is simple and convenient.
[0052] The auxiliary alignment collar 19 mainly supports and guides the lifting rod of the sock machine's trumpet cylinder, which is located in the middle of the guide channel 2, preventing the middle of the lifting rod from being completely suspended in the air and further enhancing the stability of the structure.
[0053] The collar connecting clip 20 is used to connect and fix the auxiliary alignment collar 19, which has a good connection effect and avoids the auxiliary alignment collar 19 being in a suspended state.
[0054] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model.
[0055] Although this article frequently uses terms such as 1. trumpet tube lifting connecting seat, 2. guide channel, 3. double-headed guide anti-sway assembly, 4. multi-directional anti-deviation adjustment component, 5. anti-sway guide positioning component, 6. lower guide connecting component, 7. trumpet tube anti-sway guide tube, 8. tube mouth reinforcement part, 9. tube mouth thickened ring body, 10. upper reinforcing rib, 11. guide connecting tube, 12. connecting tube reinforcing rib, 13. lower anti-eccentric adjustment part, 14. auxiliary alignment sleeve part, 15. eccentric positioning ring plate, 16. through groove, 17. threaded hole, 18. adjusting slide groove, 19. auxiliary alignment collar, 20. collar connecting clip, etc., the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.
Claims
1. A hosiery knitting machine horn tube lifting guide structure, comprising a horn tube lifting connecting seat (1), characterized in that, The horn tube lifting connecting seat (1) is provided with a guide channel (2), and the horn tube lifting connecting seat (1) is provided with a double-headed guide anti-sway component (3). The guide channel (2) is provided with a multi-directional anti-deviation adjustment component (4), and the multi-directional anti-deviation adjustment component (4) is positioned corresponding to the horn tube lifting connecting seat (1).
2. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 1, characterized in that, The dual-headed guide anti-sway assembly (3) includes an anti-sway guide positioning component (5) disposed on the top of the horn tube lifting connecting seat (1) and a lower guide connecting component (6) disposed on the bottom of the horn tube lifting connecting seat (1). The lower guide connecting component (6) and the anti-sway guide positioning component (5) are arranged opposite each other. The multi-directional anti-deviation adjustment component (4) is located between the lower guide connecting component (6) and the anti-sway guide positioning component (5).
3. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 2, characterized in that, The anti-sway guide positioning component (5) includes an anti-sway guide cylinder (7) disposed on the top of the horn cylinder lifting connection seat (1), and the horn cylinder anti-sway guide cylinder (7) is provided with a cylinder mouth reinforcement part (8).
4. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 3, characterized in that, The aforementioned mouth reinforcement part (8) includes a mouth thickening ring (9) disposed on the horn mouth anti-sway guide tube (7), and a plurality of upper reinforcing ribs (10) are provided between the mouth thickening ring (9) and the horn mouth anti-sway guide tube (7).
5. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 4, characterized in that, The lower guide connector (6) includes a guide connector (11) disposed at the bottom of the horn tube lifting connector (1), and the guide connector (11) is disposed opposite to the horn tube anti-sway guide tube (7).
6. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 5, characterized in that, The guide connecting cylinder (11) is provided with several connecting cylinder reinforcing ribs (12), and the multi-directional anti-deviation adjustment component (4) is located between the guide connecting cylinder (11) and the horn tube anti-sway guide cylinder (7).
7. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 6, characterized in that, The multi-directional anti-deviation adjustment component (4) includes a lower anti-deviation adjustment part (13) and an auxiliary alignment sleeve part (14) disposed in the guide channel (2). The lower anti-deviation adjustment part (13) corresponds to the position of the guide connecting cylinder (11).
8. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 7, characterized in that, The lower anti-eccentricity adjustment part (13) includes an eccentric positioning ring plate (15) disposed in the guide channel (2). The eccentric positioning ring plate (15) is provided with a through groove (16). The horn tube lifting connecting seat (1) is provided with two threaded holes (17). The eccentric positioning ring plate (15) is provided with an adjustment slide groove (18). The eccentric positioning ring plate (15) and the horn tube lifting connecting seat (1) are fixed together by bolts.
9. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 8, characterized in that, The auxiliary alignment sleeve part (14) includes an auxiliary alignment sleeve (19) disposed in the guide channel (2), and the auxiliary alignment sleeve (19) is located above the eccentric positioning ring plate (15).
10. The hosiery machine bell-shaped cylinder lifting guide structure according to claim 9, characterized in that, The horn tube lifting connecting seat (1) is provided with a collar connecting shaft (20), which is engaged with the auxiliary alignment collar (19).
Citation Information
Patent Citations
Adjustable guide holder of hosiery machine
CN205839294U