Dimension-adjustable pan head warping machine

By setting the scale lines and worm gear and worm structure on the shaft of the disc head warping machine, the problem of the position of the disc head plate cannot be adjusted steplessly, the stable fixation and infinite adjustment of the disc head ring are achieved, and the operation convenience and adaptability are improved.

CN223176315UActive Publication Date: 2025-08-01ZHEJIANG DINGHONG TEXTILE CO LTD
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Patent Information

Application Number
CN202422387070.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-08-01
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The position of the head plate of the existing adjustable sized disc head warping machine cannot be adjusted steplessly, resulting in reduced device adaptability.

Method used

The scale lines and adjustment components are provided on the shaft of the disc head warping machine, and the worm gear and worm structure is used to realize the infinite adjustment of the disc head ring, and the position of the disc head ring is accurately controlled through the scale lines.

Benefits of technology

The stable fixation and infinite adjustment of the disc head ring on the shaft are realized, which improves the reliability of the device and the convenience of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pan head warping machines, in particular to a size-adjustable pan head warping machine. The utility model relates to a size-adjustable pan head warping machine, which comprises a pan head warping machine, according to the utility model, the hand wheel is rotated to drive the worm to rotate, and the worm drives the first non-slip mat to move backwards through the worm gear, so that the shaft lever of the pan head warping machine is clamped and fixed between the first non-slip mat and the second non-slip mat, and further the pan head ring is fixed on the shaft lever of the pan head warping machine; the fixing stability of the pan head ring can be ensured, so that the use reliability of the device is improved; when the hand wheel is reversely rotated, the first anti-skid pad can be separated from the shaft rod of the pan head warping machine, and at the moment, the pan head ring can be controlled to move on the shaft rod of the pan head warping machine, so that the effect of infinitely adjusting the warp coiling area of the shaft rod of the pan head warping machine is achieved; through the scale marks, a worker can be assisted in accurately controlling the pan head ring to move on the shaft rod of the pan head warping machine.
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Description

Technical Field

[0001] The utility model relates to the technical field of beam warping machines, in particular to an adjustable-size beam warping machine. Background Technique

[0002] Warping machines are mainly divided into batch warping machines and sectional warping machines. Their main purpose is for warping and can be divided into two categories. One is the traditional drum friction drive warping machine, and the other is the new type of warping machine with direct drive of the warping shaft. The pressure application method of drum friction drive warping relies on the weight of the heavy hammer, the warp beam arm, and the warp beam itself. After the old machine is transformed, a horizontal pressure application method is adopted. For the new type of warping machine, the warp yarn drawn from the bobbins on the creel first passes through the gap between the yarn clip and the upright column, passes through the broken-end detector, then passes forward through the yarn guide porcelain plate, then through the yarn guide rod, passes through the expander, bypasses the length measuring roller, and is wound onto the warp beam. The warp beam can be directly driven by a variable-speed motor. When the winding diameter increases, a speed change signal is sent by the tachogenerator connected to the length measuring roller, and the speed of the motor is automatically reduced through the electrical control device to keep the winding linear speed of the warp beam constant.

[0003] Chinese Patent with publication number CN211848296U discloses an adjustable-size beam warping machine, which includes a left body, a shock pad, a beam plate, and an adjustment component. A right body is provided on the right side of the left body. A shaft rod is provided between the left body and the right body. Both ends of the shaft rod are fixedly connected with fixed seats, and the beam plate is connected to the outside of the shaft rod by sleeving. For this adjustable-size beam warping machine, by adding an adjustment component outside the beam plate and combining with the screw holes on the outside of the shaft rod, the problem that the warping machine is not convenient to adjust during use is better solved. Only need to unscrew the upper and lower two screw rods of the adjustment component, then push the beam plate to change its position, and then screw the screw rods into the screw holes again after the position is adjusted, and the size adjustment work of the beam plate can be completed. The overall structure is simple, greatly improving the convenience of the staff during operation, and very convenient for the staff to quickly install and disassemble, with strong practicability;

[0004] The above-mentioned existing technical solutions have the following defects: The position of the beam plate is adjusted and fixed by inserting the screw rod into different screw holes, but the position of the beam plate is limited by the position of the screw holes. Therefore, the position of the beam plate cannot be adjusted steplessly, which reduces the adaptability of the device. In view of the above situation, technological innovation is carried out on the basis of the existing adjustable-size beam warping machine. Content of the Utility Model

[0005] The purpose of the utility model is to provide an adjustable-size beam warping machine to solve the problems raised in the above background technique.

[0006] To achieve the above object, the present utility model provides the following technical solutions: An adjustable-size beam warping machine, comprising:

[0007] A beam warping machine, wherein two groups of scale lines are evenly opened at the top of the shaft of the beam warping machine, and the two groups of scale lines are designed to be mirror-symmetrical. Two groups of beam rings are evenly sleeved on the outer circle of the shaft of the beam warping machine, and a group of adjusting components are evenly arranged on the opposite sides of the two groups of beam rings. The adjusting components are sleeved on the outer circle of the beam warping machine.

[0008] Preferably, the adjusting component includes a support frame. A second anti-slip pad is arranged on the rear side of the inner side wall of the support frame. A first anti-slip pad is placed on the front side of the second anti-slip pad. A connecting plate is arranged on the front side of the first anti-slip pad. An internally threaded sleeve is arranged on the front side of the connecting plate. A screw rod is screwed inside the internally threaded sleeve. An installation hole is penetrated through the front side of the support frame. The screw rod is rotationally arranged in the installation hole through a bearing. The front side of the screw rod penetrates through the front side of the installation hole and is connected with a worm gear. A worm is meshed with the right side of the worm gear. A hand wheel is arranged on the top of the worm. Guide rods are evenly arranged on the front side of the internally threaded sleeve. Guide holes are evenly penetrated through the front side of the support frame. The guide rods are arranged in the guide holes.

[0009] Preferably, the two support frames are respectively arranged on the opposite sides of the two groups of beam rings, and the support frames are sleeved on the outer circle of the shaft of the beam warping machine.

[0010] Preferably, the shaft of the beam warping machine is located between the second anti-slip pad and the first anti-slip pad, and the outer side wall of the shaft of the beam warping machine is attached to the opposite sides of the second anti-slip pad and the first anti-slip pad.

[0011] Preferably, the worm gear and the worm are both located on the front side of the support frame, and the hand wheel is located above the support frame.

[0012] Preferably, two groups of rotating shaft sleeves are evenly arranged on the outer side wall of the worm, and the two groups of rotating shaft sleeves are evenly arranged on the front side of the support frame.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] In the present utility model, rotating the hand wheel drives the worm to rotate. The worm drives the first anti-slip pad to move backward through the worm gear, thereby clamping and fixing the shaft of the beam warping machine between the first anti-slip pad and the second anti-slip pad, and further fixing the beam ring on the shaft of the beam warping machine. Utilizing the self-locking property of the worm gear and worm, the stability of the fixed beam ring can be ensured, thereby improving the use reliability of the device;

[0015] When the handwheel is rotated in the reverse direction, the first anti-slip pad can be separated from the shaft of the beam warping machine. At this time, the movement of the beam ring on the shaft of the beam warping machine can be controlled, so as to achieve the effect of infinitely adjusting the warping area of the shaft of the beam warping machine. The scale line can assist the worker to more accurately control the movement of the beam ring on the shaft of the beam warping machine. Brief Description of the Drawings

[0016] Figure 1 is a schematic structural diagram of an adjustable-size beam warping machine of the present utility model;

[0017] Figure 2 For the present utility model Figure 1 is an enlarged view of part A;

[0018] Figure 3 is a partial right-side cross-sectional view of an adjustable-size beam warping machine of the present utility model.

[0019] In the figure: 1. Beam warping machine; 11. Scale line; 12. Beam ring; 13. Support frame; 14. Worm gear; 141. Internal thread sleeve; 142. Screw rod; 143. Guide rod; 144. Connecting plate; 145. First anti-slip pad; 146. Second anti-slip pad; 15. Worm; 16. Rotating shaft sleeve; 17. Handwheel. Detailed Embodiment

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0021] Please refer to Figures 1-3, An adjustable-size warping machine with a disk head, comprising a warping machine with a disk head 1. On the top of the shaft of the warping machine with a disk head 1, two groups of scale lines 11 are evenly arranged. The two groups of scale lines 11 are designed in mirror symmetry. On the outer ring of the shaft of the warping machine with a disk head 1, two groups of disk head rings 12 are evenly sleeved. On the opposite sides of the two groups of disk head rings 12, a set of adjusting components are evenly fixed. Through the scale lines 11, workers can be assisted to more accurately control the movement of the disk head rings 12 on the shaft of the warping machine with a disk head 1. The adjusting components are sleeved on the outer ring of the warping machine with a disk head 1. The adjusting component includes a support frame 13. On the rear side of the inner side wall of the support frame 13, a second anti-slip pad 146 is fixed. In front of the second anti-slip pad 146, a first anti-slip pad 145 is placed. On the front side of the first anti-slip pad 145, a connecting plate 144 is fixed. On the front side of the connecting plate 144, an internal thread sleeve 141 is fixed. Inside the internal thread sleeve 141, a screw rod 142 is screwed. On the front side of the support frame 13, an installation hole is penetrated. The screw rod 142 is rotatably arranged in the installation hole through a bearing. The front side of the screw rod 142 penetrates the front side of the installation hole and is connected to a worm gear 14. On the right side of the worm gear 14, a worm 15 is engaged. On the top of the worm 15, a handwheel 17 is fixed. On the front side of the internal thread sleeve 141, guide rods 143 are evenly fixed. On the front side of the support frame 13, guide holes are evenly penetrated. The guide rods 143 are slidably arranged in the guide holes. The two support frames 13 are respectively fixed on the opposite sides of the two groups of disk head rings 12. The support frame 13 is sleeved on the outer ring of the shaft of the warping machine with a disk head 1. The shaft of the warping machine with a disk head 1 is located between the second anti-slip pad 146 and the first anti-slip pad 145. The outer side wall of the shaft of the warping machine with a disk head 1 is in contact with the opposite sides of the second anti-slip pad 146 and the first anti-slip pad 145. Rotating the handwheel 17 drives the worm 15 to rotate. The worm 15 drives the screw rod 142 to rotate through the worm gear 14. When the screw rod 142 rotates, it will drive the internal thread sleeve 141 to move backward through the guide rods 143. Thus, the first anti-slip pad 145 is driven to move backward through the connecting plate 144. In this way, the first anti-slip pad 145 and the second anti-slip pad 146 can clamp the shaft of the warping machine with a disk head 1, and then the disk head ring 12 is fixed on the shaft of the warping machine with a disk head 1. When the handwheel 17 is rotated in the reverse direction, the first anti-slip pad 145 can be separated from the shaft of the warping machine with a disk head 1. At this time, the movement of the disk head ring 12 on the shaft of the warping machine with a disk head 1 can be controlled, so as to achieve the effect of infinitely adjusting the warping area of the shaft of the warping machine with a disk head 1. The worm gear 14 and the worm 15 are both located in front of the support frame 13. The handwheel 17 is located above the support frame 13. On the outer side wall of the worm 15, two rotating shaft sleeves 16 are evenly rotatably arranged. The worm 15 is supported to rotate through the rotating shaft sleeves 16. The two rotating shaft sleeves 16 are evenly fixed on the front side of the support frame 13.

[0022] Working principle: The working principle of the beam warping machine 1 is now relatively mature, so there is no need to elaborate here. Rotating the handwheel 17 drives the worm 15 to rotate. The worm 15 drives the screw rod 142 to rotate through the worm gear 14. When the screw rod 142 rotates, it drives the internal thread sleeve 141 to move backward through the guide rod 143. In this way, the first anti-slip pad 145 is driven to move backward through the connecting plate 144, so that the first anti-slip pad 145 and the second anti-slip pad 146 can clamp the shaft rod of the beam warping machine 1, and then the beam ring 12 is fixed on the shaft rod of the beam warping machine 1. When the handwheel 17 is rotated in the reverse direction, the first anti-slip pad 145 can be separated from the shaft rod of the beam warping machine 1. At this time, the movement of the beam ring 12 on the shaft rod of the beam warping machine 1 can be controlled, so as to achieve the effect of infinitely adjusting the warping area of the shaft rod of the beam warping machine 1. The scale line 11 can assist the worker to more accurately control the movement of the beam ring 12 on the shaft rod of the beam warping machine 1.

Claims

1. An adjustable-size beam warping machine, characterized in that, Including: A beam warping machine (1), on the top of the shaft rod of the beam warping machine (1), two groups of scale lines (11) are evenly opened, and the two groups of scale lines (11) are designed in mirror symmetry. On the outer ring of the shaft rod of the beam warping machine (1), two groups of beam rings (12) are evenly sleeved. On the opposite sides of the two groups of beam rings (12), a group of adjusting components are evenly arranged, and the adjusting components are sleeved on the outer ring of the beam warping machine (1).

2. The adjustable-size beam warping machine according to claim 1, characterized in that: The adjusting component includes a support frame (13). On the rear side of the inner side wall of the support frame (13), a second anti-slip pad (146) is arranged. On the front side of the second anti-slip pad (146), a first anti-slip pad (145) is placed. On the front side of the first anti-slip pad (145), a connecting plate (144) is arranged. On the front side of the connecting plate (144), an internal thread sleeve (141) is arranged. Inside the internal thread sleeve (141), a screw rod (142) is screwed. On the front side of the support frame (13), an installation hole is penetrated. The screw rod (142) is rotationally arranged in the installation hole through a bearing. The front side of the screw rod (142) penetrates through the front side of the installation hole and is connected with a worm gear (14). On the right side of the worm gear (14), a worm (15) is engaged. On the top of the worm (15), a hand wheel (17) is arranged. On the front side of the internal thread sleeve (141), guide rods (143) are evenly arranged. On the front side of the support frame (13), guide holes are evenly penetrated, and the guide rods (143) are arranged in the guide holes.

3. The adjustable-size beam warping machine according to claim 2, wherein: The two groups of support frames (13) are respectively arranged on the opposite sides of the two groups of beam rings (12), and the support frames (13) are sleeved on the outer ring of the shaft rod of the beam warping machine (1).

4. The adjustable-size beam warping machine according to claim 2, wherein: The shaft rod of the beam warping machine (1) is located between the second anti-slip pad (146) and the first anti-slip pad (145), and the outer side wall of the shaft rod of the beam warping machine (1) is attached to the opposite sides of the second anti-slip pad (146) and the first anti-slip pad (145).

5. The adjustable-size beam warping machine according to claim 2, wherein: The worm gear (14) and the worm (15) are both located on the front side of the support frame (13), and the hand wheel (17) is located above the support frame (13).

6. The adjustable-size beam warping machine according to claim 2, wherein: On the outer side wall of the worm (15), two groups of rotating shaft sleeves (16) are evenly arranged, and the two groups of rotating shaft sleeves (16) are evenly arranged on the front side of the support frame (13).

Citation Information

Patent Citations

  • Size-adjustable pan head warping machine

    CN211848296U