CN222893329U - Weaving shaft tube structure - Google Patents

Weaving shaft tube structure Download PDF

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Publication number
CN222893329U
CN222893329U CN202421846825.0U CN202421846825U CN222893329U CN 222893329 U CN222893329 U CN 222893329U CN 202421846825 U CN202421846825 U CN 202421846825U CN 222893329 U CN222893329 U CN 222893329U
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China
Prior art keywords
rods
block
weaving
limiting
rotating shaft
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CN202421846825.0U
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Chinese (zh)
Inventor
马汇欢
刘建东
刘永
缪正新
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Jiangsu Ouqiao Worsted Spinning Co ltd
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Jiangsu Ouqiao Worsted Spinning Co ltd
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Priority to CN202421846825.0U priority Critical patent/CN222893329U/en
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Publication of CN222893329U publication Critical patent/CN222893329U/en
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Abstract

本实用新型公开了一种织布轴筒结构,具体涉及织布设备技术领域,包括转轴,所述调节板的内部固定安装有两个限位块,两个所述限位块的内部两侧均活动安装有两个限位杆,四个所述限位杆的一端均固定安装有助推块,且四个助推块与两个限位块内壁之间均固定连接有第一弹簧。本实用新型所述的一种织布轴筒结构,在实际工作中,调节板能够沿着移动槽进行移动,以对调节板与固定板之间的距离进行调节,以对不同宽度的纱布进行限位,旋转第一螺纹杆,便可推动驱动块进行升降,驱动块便会与两个助推块进行接触,推动两个限位杆,使其插入限位孔内,以对移动后的调节板进行固定,从而便于对不同宽度的纱布进行限位,以避免纱布在缠绕过程中,产生偏移。

The utility model discloses a weaving shaft cylinder structure, specifically relates to the technical field of weaving equipment, including a rotating shaft, two limit blocks are fixedly installed inside the adjustment plate, two limit rods are movably installed on both sides of the two limit blocks, one end of the four limit rods is fixedly installed with a boost block, and a first spring is fixedly connected between the four boost blocks and the inner walls of the two limit blocks. In the utility model, a weaving shaft cylinder structure described in the utility model, in actual work, the adjustment plate can move along the moving groove to adjust the distance between the adjustment plate and the fixed plate to limit the gauze of different widths, and the first threaded rod can be rotated to push the driving block to rise and fall, and the driving block will contact the two boost blocks, pushing the two limit rods to insert them into the limit holes to fix the moved adjustment plate, thereby facilitating the limiting of gauze of different widths to avoid the gauze from offsetting during the winding process.

Description

Weaving shaft tube structure
Technical Field
The utility model relates to the technical field of weaving equipment, in particular to a weaving shaft cylinder structure.
Background
Early looms, also called, weaving machines, cotton machines, etc., were all manually driven looms. The shuttleless loom technology has been studied since the 19 th century and gradually moved to the international market since the 50 th year. Since the 70 s of the 20 th century, many new shuttleless looms have been introduced into the market. Shuttleless looms have achieved significant success in improving fabrics and improving the efficiency of the loom, are widely used throughout the world, and accelerate the progress of weaving equipment improvement, the occupancy of shuttleless looms in many developed countries has reached about 80%, the general trend of replacing shuttleless looms with shuttleless looms has emerged, and in the weaving process, gauze needs to be wound on the outer surface of a bobbin.
Through searching, for example, the invention with the application number 201010524644.2 discloses a weaving shaft barrel which comprises a rotating shaft capable of rotating around a central shaft of the weaving shaft barrel, a driven gear fixedly arranged at one end part of the rotating shaft, a driving gear arranged at one end of an output shaft of a motor and meshed with the driven gear, and shaft sleeves sleeved at two ends of the rotating shaft, and shaft walls with a plurality of air bag grooves are integrally formed on the rotating shaft.
Disclosure of utility model
The utility model mainly aims to provide a weaving shaft cylinder structure which can effectively solve the problem that gauze with different widths is convenient to limit, and further, when the gauze is wound, the wound gauze is easy to incline and deviate.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
The weaving shaft cylinder structure comprises a rotating shaft, wherein a fixed plate is fixedly arranged on one side of the outer surface of the rotating shaft, an adjusting plate is arranged on the other side of the outer surface of the rotating shaft, two telescopic sleeves are movably connected to one side of the fixed plate, telescopic rods are movably connected to the inner parts of the two telescopic sleeves, and the two telescopic rods are movably connected with the adjusting plate;
Two limiting blocks are fixedly arranged in the adjusting plate, two limiting rods are movably arranged on two sides of the inner part of each limiting block, boosting blocks are fixedly arranged at one ends of the four limiting rods, first springs are fixedly connected between the four boosting blocks and the inner walls of the two limiting blocks, first threaded rods are connected in the inner parts of the two limiting blocks in a threaded manner, and driving blocks are movably connected at one ends of the two first threaded rods;
the outer surface both sides of pivot all are equipped with the removal groove, two the inside both sides in removal groove all are equipped with a plurality of spacing holes.
Preferably, the size of the limiting rod is the same as the size of the limiting hole.
Preferably, the two ends of the first threaded rods, which are far away from the driving block, are fixedly provided with rotating handles.
Preferably, the inside of pivot is equipped with the drive chamber, inside one side movable mounting in drive chamber has the second threaded rod, and the inside opposite side fixed mounting in drive chamber has the slide bar, the surface threaded connection of second threaded rod has the movable block, and movable block and slide bar swing joint, the equal movable mounting in both sides of movable block has the connecting rod, and the connecting rod respectively with two flexible cover swing joint, inside one side fixed mounting in drive chamber has the motor, and the output and the second threaded rod fixed connection of motor.
Preferably, one side of the fixed plate is provided with two lifting grooves, the inside of each lifting groove is fixedly provided with a movable rod, the outer surfaces of the movable rods are movably connected with fastening plates, one side of the inside of each lifting groove is fixedly provided with a second spring, and the two second springs are fixedly connected with the two fastening plates respectively.
Preferably, the opposite sides of the two fastening plates are fixedly provided with flexible pads.
Compared with the prior art, the utility model has the following beneficial effects:
The utility model discloses a weaving shaft cylinder structure, which is characterized in that an adjusting plate is arranged, the adjusting plate can move along a moving groove in actual work so as to adjust the distance between the adjusting plate and a fixed plate, limit gauzes with different widths, a first threaded rod is rotated so as to push a driving block to lift, and then the driving block can be contacted with two boosting blocks so as to push two limiting rods to be inserted into limiting holes, so that the moving adjusting plate is fixed, and the gauzes with different widths are limited conveniently, so that the gauzes are prevented from being deviated in the winding process.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic cross-sectional view of a regulator plate of the present utility model;
FIG. 3 is a schematic top view of the spindle of the present utility model;
FIG. 4 is a schematic cross-sectional view of a spindle according to the present utility model;
fig. 5 is a schematic view of a fixing plate structure of the present utility model.
In the figure, 1, a rotating shaft; 2, a fixed plate, 3, an adjusting plate, 4, a telescopic sleeve, 5, a telescopic rod, 301, a limiting block, 302, a limiting rod, 303, a boosting block, 304, a first spring, 305, a first threaded rod, 306, a driving block, 101, a moving groove, 102, a limiting hole, 103, a driving cavity, 104, a second threaded rod, 105, a sliding rod, 106, a moving block, 107, a motor, 108, a connecting rod, 201, a lifting groove, 202, a second spring, 203, a fastening plate, 204 and a movable rod.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
The utility model discloses a weaving shaft cylinder structure, which comprises a rotating shaft 1, wherein one side of the outer surface of the rotating shaft 1 is fixedly provided with a fixed plate 2, the other side of the outer surface of the rotating shaft 1 is provided with an adjusting plate 3, and the adjusting plate 3 can move so as to facilitate a user to adjust the distance between the adjusting plate 3 and the fixed plate 2 and limit gauze with different widths.
One side swing joint of fixed plate 2 has two flexible cover 4, and the inside of two flexible covers 4 is equal swing joint has telescopic link 5, and two telescopic link 5 all with regulating plate 3 swing joint, when regulating plate 3 removes, alright drive telescopic link 5 and stretch out and draw back in the inside of flexible cover 4.
Two limiting blocks 301 are fixedly arranged in the adjusting plate 3, two limiting rods 302 are movably arranged on two sides of the inner portion of each limiting block 301, boosting blocks 303 are fixedly arranged at one ends of the four limiting rods 302, first springs 304 are fixedly connected between the four boosting blocks 303 and the inner walls of the two limiting blocks 301, first threaded rods 305 are fixedly connected with the inner portions of the two limiting blocks 301, driving blocks 306 are movably connected with one ends of the two first threaded rods 305, the first threaded rods 305 are rotated, the driving blocks 306 are pushed to move, the driving blocks are contacted with the two boosting blocks 303, and the two limiting rods 302 can be pushed to move towards the outer portions of the limiting blocks 301.
The outer surface both sides of pivot 1 all are equipped with the removal groove 101, and the inside both sides of two removal grooves 101 all are equipped with a plurality of spacing holes 102, and when two gag lever posts 302 moved to the outside of stopper 301, alright insert in spacing hole 102 to make the regulating plate 3 after the removal fix, in order to avoid when winding gauze, regulating plate 3 produced the removal.
The inside of pivot 1 is equipped with driving chamber 103, and driving chamber 103 inside one side movable mounting has second threaded rod 104, and driving chamber 103 inside opposite side fixed mounting has slide bar 105, and the surface threaded connection of second threaded rod 104 has movable block 106, and movable block 106 and slide bar 105 swing joint, and when second threaded rod 104 rotated, alright make movable block 106 remove.
The connecting rods 108 are movably mounted on two sides of the moving block 106, the connecting rods 108 are movably connected with the two telescopic sleeves 4 respectively, when the moving block 106 moves, the two connecting rods 108 can push the two telescopic sleeves 4 to move so as to tightly support gauze wound on the outer surface of the rotating shaft 1, a motor 107 is fixedly mounted on one side of the inside of the driving cavity 103, the output end of the motor 107 is fixedly connected with the second threaded rod 104, and the motor 107 can drive the second threaded rod 104 to rotate.
One side of fixed plate 2 is equipped with two lift grooves 201, and the inside of two lift grooves 201 is all fixed mounting has movable rod 204, and the surface of two movable rods 204 is all swing joint has fastening plate 203, and the inside of two lift grooves 201 is all fixed mounting has second spring 202, and two second springs 202 respectively with two fastening plate 203 fixed connection, under the effect of second spring 202, fastening plate 203 can fix the surface at pivot 1 with gauze.
The utility model has the working principle that a user firstly moves the adjusting plate 3 according to the width of gauze to adjust the distance between the adjusting plate 3 and the fixed plate 2 so as to limit the gauze with different widths, and rotates the first threaded rod 305, the driving block 306 can be pushed to lift, the driving block 306 can be contacted with the two boosting blocks 303 so as to push the two limiting rods 302 to be inserted into the limiting holes 102 to fix the moved adjusting plate 3, then one end of the gauze is inserted between the fastening plate 203 and the rotating shaft 1, under the action of the second spring 202, the fastening plate 203 can fix one end of the gauze on the outer surface of the rotating shaft 1, then the gauze can be wound on the outer surface of the rotating shaft 1 when the rotating shaft 1 rotates, in the process, the motor 107 can drive the second threaded rod 104 to rotate so as to drive the moving block 106 to move, and when the moving block 106 moves, the two connecting rods 108 can push the two telescopic sleeves 4 and the two telescopic rods 5 to move so as to tighten the gauze wound on the outer surface of the rotating shaft 1.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The weaving shaft cylinder structure comprises a rotating shaft (1) and is characterized in that a fixed plate (2) is fixedly arranged on one side of the outer surface of the rotating shaft (1), an adjusting plate (3) is arranged on the other side of the outer surface of the rotating shaft (1), two telescopic sleeves (4) are movably connected to one side of the fixed plate (2), telescopic rods (5) are movably connected to the inner parts of the two telescopic sleeves (4), and the two telescopic rods (5) are movably connected with the adjusting plate (3);
Two limiting blocks (301) are fixedly arranged in the adjusting plate (3), two limiting rods (302) are movably arranged on two sides of the inner part of each limiting block (301), one end of each limiting rod (302) is fixedly provided with a boosting block (303), a first spring (304) is fixedly connected between each boosting block (303) and the inner wall of each limiting block (301), a first threaded rod (305) is connected inside each limiting block (301), and a driving block (306) is movably connected with one end of each first threaded rod (305);
The two sides of the outer surface of the rotating shaft (1) are respectively provided with a moving groove (101), and a plurality of limiting holes (102) are respectively formed in the two sides of the inner part of each moving groove (101).
2. The weaving mandrel structure as claimed in claim 1, characterized in that the size of the limit rod (302) is the same as the size of the limit hole (102).
3. A weaving mandrel structure according to claim 1, characterized in that the ends of the two first threaded rods (305) which are far away from the driving block (306) are fixedly provided with handles.
4. The weaving shaft cylinder structure according to claim 1, wherein a driving cavity (103) is arranged in the rotating shaft (1), a second threaded rod (104) is movably arranged on one side of the inside of the driving cavity (103), a sliding rod (105) is fixedly arranged on the other side of the inside of the driving cavity (103), a moving block (106) is connected with the outer surface of the second threaded rod (104) in a threaded manner, the moving block (106) is movably connected with the sliding rod (105), connecting rods (108) are movably arranged on two sides of the moving block (106), the connecting rods (108) are movably connected with two telescopic sleeves (4) respectively, a motor (107) is fixedly arranged on one side of the inside of the driving cavity (103), and the output end of the motor (107) is fixedly connected with the second threaded rod (104).
5. The weaving shaft cylinder structure as set forth in claim 1, wherein two lifting grooves (201) are formed in one side of the fixed plate (2), movable rods (204) are fixedly installed in the two lifting grooves (201), fastening plates (203) are movably connected to the outer surfaces of the two movable rods (204), second springs (202) are fixedly installed in one side of the inner portions of the two lifting grooves (201), and the two second springs (202) are fixedly connected with the two fastening plates (203) respectively.
6. The weaving mandrel structure as claimed in claim 5, characterized in that the opposite sides of the two fastening plates (203) are fixedly provided with flexible pads.
CN202421846825.0U 2024-08-01 2024-08-01 Weaving shaft tube structure Active CN222893329U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421846825.0U CN222893329U (en) 2024-08-01 2024-08-01 Weaving shaft tube structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421846825.0U CN222893329U (en) 2024-08-01 2024-08-01 Weaving shaft tube structure

Publications (1)

Publication Number Publication Date
CN222893329U true CN222893329U (en) 2025-05-23

Family

ID=95723260

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421846825.0U Active CN222893329U (en) 2024-08-01 2024-08-01 Weaving shaft tube structure

Country Status (1)

Country Link
CN (1) CN222893329U (en)

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