A sword passing wheel with a scabbard motion fine adjustment assembly and method of use

By designing a transmission wheel with a fine-tuning component for the transmission belt motion, the problems of frequent replacement of the transmission wheel and wear of the transmission teeth when dealing with different specifications of belts are solved. This enables convenient installation and lubrication of the belt, and improves the service life and heat dissipation efficiency of the transmission teeth.

CN117779291BActive Publication Date: 2026-04-07NANTONG YIZHONGDA DYEING & FINISHING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-28
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing conveyor rollers need to be frequently replaced when dealing with different specifications of belts, resulting in low work efficiency, severe wear of the conveyor teeth and poor heat dissipation, which affects service life.

Method used

A sword-transfer wheel with a sword belt motion fine-tuning component was designed. The rack is driven to move by a screw rod to achieve convenient installation and fastening of the belt. The sword-transfer teeth are centrifugally lubricated by lubricating oil, and heat dissipation is accelerated by air flow.

Benefits of technology

It enables convenient installation and fastening of the tape reel, extends the service life of the tape reel and transmission teeth, improves heat dissipation efficiency, and reduces operating costs and manpower consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sword belt wheel with sword belt movement fine adjustment assembly and its using method belong to sword belt wheel technical field, in order to solve the problem that the existing different specifications of tape are met, and it is difficult to adjust according to actual situation, resulting in the need for continuous replacement in the working process, thereby greatly increasing the working cost, the utility model connects the main shaft with tape through the tape, docking mechanism and external connection mechanism, movable disc is connected with docking mechanism and external connection mechanism, the utility model realizes through the rotation of screwing rod, makes screwing rod one end with magnetic nest groove is connected, and transmission tooth rotates, and will drive the rack to move upwards, makes the adjustment boss protrude upwards, completes the installation of different specifications of tape, and the adjustment is convenient, saves the working time, when the tape is slack, also can first time to its fastening, is convenient for the use of later stage, indirectly improves the service life of tape, secondly, when the tape is damaged, also convenient for its replacement, saves manpower.
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Description

Technical Field

[0001] This invention relates to the field of sword-passing wheel technology, and in particular to a sword-passing wheel with a sword belt motion fine-tuning component and its method of use. Background Technology

[0002] The rapier wheel is a key component in rapier looms that completes weft insertion and rest. A loom has two identical rapier wheels, installed on the left and right sides respectively. It works in conjunction with the rapier belt to reciprocate the weft insertion provided by the main loom, effectively manipulating the rapier belt wrapped around the rapier wheel teeth. When the rapier belt runs from the rapier wheel teeth into the fixed guide rail, the rest of the rapier belt changes from a curved trajectory to a straight rest. At this time, the weft feed rapier heads on the left and right rapier belts immediately enter the weft exchange state, completing the weft insertion task.

[0003] In document CN208414733U, a transfer wheel for a textile weft insertion box is proposed, comprising a transfer wheel body, a shaft plate, and spokes. The shaft plate is fixedly connected to the inner side of the transfer wheel body. Spokes are evenly distributed along the outer edge of the shaft plate, with one side of the spokes tightly fitted to the shaft plate. A transmission gear is rotatably connected to the middle of the inner side of the transfer wheel body. Transfer shafts are evenly distributed along the outer edge of the transmission gear. Connecting pins are fixedly connected to one end of each transfer shaft, with both ends of the connecting pins coinciding with the ends of the transfer shafts. The connecting pins are also fixedly connected to one end of the transfer shafts. The edges of the connecting pins coincide with the two ends of the transmission shaft. This characteristic allows the yarn to pass directly into the connecting pins without having to bypass the shaft. This direct insertion reduces threading errors, improves operational stability, prevents wear caused by belt slippage, and enhances the product's reliability. However, when encountering different specifications of tape, it is difficult to adjust according to the actual situation, leading to frequent replacements during operation. This significantly increases operating costs and reduces work efficiency.

[0004] To this end, we propose a sword-transfer wheel with a sword belt motion fine-tuning component and its usage method. Summary of the Invention

[0005] The purpose of this invention is to provide a sword-transfer wheel with a sword belt motion fine-tuning component, including a movable disc, a main shaft disposed on one side of the movable disc, and a positioning disc disposed at one end of the main shaft. A winding belt is disposed on the outer surface of the main shaft, a docking mechanism and an external connection mechanism are disposed on the outer surface of the movable disc, and an inner core mechanism is disposed inside the main shaft.

[0006] The main spindle has a main groove on its outer surface, and an adjusting protrusion and adjusting component are provided inside the main groove. A screwing assembly is provided on the outer surface of the spindle. An arc groove is provided on one side of the spindle, and a braking assembly is provided inside the arc groove. A through hole is also provided on the outer surface of the spindle. A telescopic short tube is provided on the outer surface of the spindle, and a disk is provided on the outer surface of the telescopic short tube. A wetted rope is inserted through the telescopic short tube.

[0007] Furthermore, the adjusting component includes a top plate disposed inside the main slot, a common connecting rod disposed at the lower end of the top plate, and horizontal plates disposed at both ends of the common connecting rod. A rack is disposed at one end of the horizontal plate. The screwing assembly includes a screwing rod and a threaded ring disposed on the outer surface of the main shaft, and a transmission tooth disposed inside the main shaft. A magnetic groove is disposed on one side of the transmission tooth, and a support rod is disposed on the other side of the transmission tooth. The screwing rod is threadedly connected to the threaded ring. One end of the screwing rod corresponds to the transmission tooth. The transmission tooth is meshed with the rack. The adjusting protrusion is placed on the upper surface of the top plate.

[0008] Furthermore, the braking assembly includes a displacement block disposed inside the recessed groove, a magnetic suction plate disposed inside the main shaft, a side rod disposed on one side of the magnetic suction plate, and a brake rod disposed on the outer surface of the side rod. One end of the brake rod is provided with a semi-circular sleeve, and the inner wall of the semi-circular sleeve is provided with a magnetic wall. The semi-circular sleeve corresponds to the connecting rod, and the displacement block is magnetically connected to the magnetic suction plate.

[0009] Furthermore, a mounting groove is provided on the outer surface of the tape, a transmission tooth is provided inside the mounting groove, a connecting hole is provided on the inner wall of the mounting groove, and a slot grid is provided at the bottom of the mounting groove. Multiple sets of mounting grooves and transmission teeth are provided, and each set of mounting grooves is connected to each other through the connecting hole. A docking groove is provided on one side of the tape, and a telescopic short tube corresponds to the docking groove. The disk is magnetically connected to the inner wall of the docking groove.

[0010] Furthermore, the inner core mechanism includes a temporary storage bladder disposed inside the main shaft, an outflow pipe disposed on one side of the temporary storage bladder, and storage components disposed on both sides of the temporary storage bladder. The storage components include a storage disk disposed inside the main shaft, a sponge disposed inside the storage disk, and a guide pipe disposed on the outer surface of the storage disk. The storage disk is connected to the temporary storage bladder through the guide pipe. An installation rod is also disposed on the outer surface of the storage disk. The storage disk is connected to the inner wall of the main shaft through the installation rod. The outflow pipe is connected to the soaking rope.

[0011] Furthermore, a locking groove is provided on the inner wall of the through hole, and a locking element is provided inside the locking groove. The locking element includes a locking rod provided inside the locking groove, a face groove opened on the outer surface of the locking rod, a straight rod provided inside the face groove, and a compression spring provided on one side of the locking rod. A blade is sleeved on the outer surface of the straight rod.

[0012] Furthermore, the external mechanism includes an external cylinder disposed on the outer surface of the movable disc, an inner cylinder disposed inside the external cylinder, and an insertion cylinder disposed on the outer surface of the external cylinder. One end of the insertion cylinder is connected to the inside of the main shaft. The inner cylinder is provided with a beveled plate. One end of the beveled plate has a groove. A connector is provided on one side of the beveled plate. A spring rope is provided on the outer surface of the connector. One end of the spring rope is connected to the inner wall of the inner cylinder.

[0013] Furthermore, the docking mechanism includes a docking ring disposed on the outer surface of the movable disk, a raised pad disposed on the outer surface of the docking ring, and a thin tube disposed on the outer surface of the docking ring. A docking sleeve is also disposed on the outer surface of the movable disk, the docking sleeve corresponding to the screwing rod. The movable disk is connected to the through hole through the docking ring, and the raised pad is connected to the docking sleeve through the thin tube.

[0014] Furthermore, a pressure bladder is provided inside the docking sleeve, and a return spring is provided inside the pressure bladder. A side tube is provided on one side of the pressure bladder, and the side tube is connected to the thin tube.

[0015] Another technical solution proposed by this invention: A method for using a sword-transfer wheel with a sword belt motion fine-tuning component, comprising the following steps:

[0016] S1: Rotate the screw rod so that one end of the screw rod connects to the magnetic slot, the transmission teeth rotate accordingly, and drive the rack to move upward, so that the adjusting protrusion protrudes upward, completing the installation of different specifications of tape. Then, put the whole assembly on the transmission component. One side of the locking rod will contact the external drive rod, and make the transmission teeth engage with the corresponding slots on the tape.

[0017] S2: During the overall rotation, the storage disk will make a circular motion, and the temporary storage bladder and storage disk are filled with lubricating oil in advance. During the circular motion, centrifugal force will be generated, which can centrifuge the lubricating oil in the sponge and enter the temporary storage bladder. Then, it will be immersed in the wet rope through the outflow pipe, and finally dripped into the placement tank through the wet rope.

[0018] S3: During the overall rotation process, the surrounding air will quickly enter the outer cylinder, and then enter the main shaft through the insertion cylinder. During the entry process, air will enter the groove, pushing the oblique cutting plate to move.

[0019] S4: The air entering the spindle will blow the blades to rotate, increasing the airflow speed inside the locking rod. This completes all the usage steps.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. This invention proposes a transmission wheel with a fine-tuning component for the movement of the transmission belt and its usage method. In the prior art, when encountering belts of different specifications and sizes, it is necessary to constantly replace the toothed belt, resulting in low work efficiency. However, this invention, by rotating the screw rod, connects one end of the screw rod to the magnetic groove, causing the transmission teeth to rotate and drive the rack to move upward, making the adjusting protrusion protrude upward, thus completing the installation of belts of different specifications. The adjustment is convenient and saves working time. At the same time, when the belt is loose, it can be tightened immediately, which is convenient for later use and indirectly improves the service life of the belt. Furthermore, when the belt is damaged, it is easy to replace it, saving manpower.

[0022] 2. The present invention proposes a sword-transfer wheel with a sword belt motion fine-tuning component and its usage method. In the prior art, after long-term use, the sword-transfer teeth will continuously wear down, eventually leading to a mismatch between the sword-transfer teeth and the sword belt. In the present invention, during the overall rotation, the storage disc will make a circular motion, and lubricating oil is pre-filled in the storage bladder and the storage disc. During the circular motion, centrifugal force is generated, which can centrifuge the lubricating oil in the sponge and let it enter the storage bladder. Then, it is immersed in the wetted rope through the outlet pipe, and finally dripped into the placement groove through the wetted rope to lubricate the sword-transfer teeth, reduce the friction between the sword-transfer teeth and the sword belt, improve the service life of the sword-transfer teeth, and save costs.

[0023] 3. The present invention proposes a sword-transfer wheel with a sword belt motion fine-tuning component and its usage method. In the prior art, during the continuous rotation of the whole, the heat of the whole is difficult to dissipate, resulting in overheating and damage to the whole over a long period of time, with a short service life. In contrast, during the rotation of the whole, the present invention allows the surrounding air to quickly enter the outer cylinder, and then enter the main shaft through the insertion cylinder. During the entry process, air enters the groove, pushing the oblique cutting plate to move. The air entering the main shaft blows the blade to rotate, increasing the air flow speed inside the locking rod, accelerating the heat dissipation speed at the locking rod, indirectly improving the overall heat dissipation efficiency and extending the service life of the whole. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of the sword-transfer wheel with a sword belt motion fine-tuning component according to the present invention;

[0025] Figure 2 This is a schematic diagram of the connection structure between the main shaft of the sword-transfer wheel and the movable disc of the present invention, which includes a sword belt motion fine-tuning component.

[0026] Figure 3 This is a schematic diagram of the sword-transfer wheel winding structure with a sword belt motion fine-tuning component according to the present invention;

[0027] Figure 4 This is a schematic diagram of the main shaft structure of the sword-transfer wheel with a sword belt motion fine-tuning component according to the present invention;

[0028] Figure 5 This is a schematic diagram of the structure of the sword wheel adjustment component with sword belt motion fine-tuning assembly of the present invention;

[0029] Figure 6 This is a schematic diagram of the structure of the sword wheel turning assembly with sword belt motion fine-tuning component of the present invention;

[0030] Figure 7 This is a schematic diagram of the structure of the sword-transmitting wheel braking assembly with a sword belt motion fine-tuning component according to the present invention.

[0031] Figure 8 This is a schematic diagram of the sword-transfer wheel docking mechanism with a sword belt motion fine-tuning component according to the present invention.

[0032] Figure 9 This is a schematic diagram of the internal structure of the sword-transfer wheel docking sleeve with sword belt motion fine-tuning component of the present invention;

[0033] Figure 10 This is a schematic diagram of the internal structure of the main shaft of the sword-transfer wheel with a sword belt motion fine-tuning component according to the present invention.

[0034] Figure 11 This is a schematic diagram of the structure of the sword-transfer wheel storage component with a sword belt motion fine-tuning component according to the present invention;

[0035] Figure 12 This is a schematic diagram of the structure of the sword wheel locking component with sword belt motion fine adjustment assembly of the present invention;

[0036] Figure 13 This is a schematic diagram of the external mechanism of the sword-transfer wheel with a sword belt motion fine-tuning component according to the present invention.

[0037] Figure 14 This is a schematic diagram of the internal structure of the inner cylinder of the sword-transfer wheel with a sword belt motion fine-tuning component according to the present invention.

[0038] In the diagram: 1. Movable disc; 2. Positioning disc; 3. Main shaft; 31. Main slot; 32. Adjusting protrusion; 33. Adjusting component; 331. Top plate; 332. Horizontal plate; 333. Connecting rod; 334. Rack; 34. Tightening assembly; 341. Tightening rod; 342. Threaded ring; 343. Transmission gear; 344. Magnetic slot; 345. Support rod; 35. Arc slot; 36. Braking assembly; 361. Displacement block; 362. Magnetic suction plate; 363. Side rod; 364. Brake rod; 365. Semicircular sleeve; 366. Magnetic wall; 37. Through hole; 371. Locking slot; 372. Locking component; 3721. Locking rod; 3722. Surface slot; 3723. Straight rod; 3724. Paddle blade; 3725. 1. Compression spring; 38. Telescopic short tube; 381. Wet rope; 382. Disk; 4. Reel; 41. Installation slot; 42. Transmission tooth; 43. Connecting hole; 44. Leakage grid; 45. Docking groove; 5. Docking mechanism; 51. Docking ring; 52. Raised pad; 53. Thin tube; 54. Docking sleeve; 541. Pressure bladder; 542. Return spring; 543. Side tube; 6. External mechanism; 61. External tube; 62. Internal tube; 63. Insertion tube; 64. Bevel plate; 641. Groove; 65. Connector; 66. Spring rope; 7. Inner core mechanism; 71. Temporary storage bladder; 72. Outflow tube; 73. Storage assembly; 731. Storage disk; 732. Sponge; 733. Mounting rod; 734. Guide tube. Detailed Implementation

[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0040] To address the technical problem of how to improve the service life of the tape roll, such as... Figure 1 , Figure 2 and Figures 4-7 As shown, the following preferred technical solutions are provided:

[0041] A sword-transfer wheel with a sword belt motion fine-tuning component includes a movable disc 1, a main shaft 3 disposed on one side of the movable disc 1, and a positioning disc 2 disposed at one end of the main shaft 3. A winding belt 4 is disposed on the outer surface of the main shaft 3. A docking mechanism 5 and an external connection mechanism 6 are disposed on the outer surface of the movable disc 1. An inner core mechanism 7 is disposed inside the main shaft 3. A main groove 31 is disposed on the outer surface of the main shaft 3. An adjusting protrusion 32 and an adjusting component 33 are disposed inside the main groove 31. A screwing component 34 is disposed on the outer surface of the main shaft 3. An arc groove 35 is opened on one side of the main shaft 3. A braking component 36 is disposed inside the arc groove 35. A through hole 37 is also opened on the outer surface of the main shaft 3. A telescopic short tube 38 is disposed on the outer surface of the main shaft 3. A disk 382 is disposed on the outer surface of the telescopic short tube 38. A wetted rope 381 is inserted through the telescopic short tube 38.

[0042] The adjusting component 33 includes a top plate 331 disposed inside the main slot 31, a common connecting rod 333 disposed at the lower end of the top plate 331, and horizontal plates 332 disposed at both ends of the common connecting rod 333. A rack 334 is disposed at one end of the horizontal plate 332. The screwing assembly 34 includes a screwing rod 341 and a threaded ring 342 disposed on the outer surface of the main shaft 3, and a transmission gear 343 disposed inside the main shaft 3. A magnetic groove 344 is disposed on one side of the transmission gear 343, and a support rod 345 is disposed on the other side of the transmission gear 343. The screwing rod 341 is threadedly connected to the threaded ring 342. One end of the screwing rod 341 corresponds to the transmission gear 343. The transmission gear 343 is meshed with the rack 334. The adjusting protrusion 32 is placed on the upper surface of the top plate 331.

[0043] The braking assembly 36 includes a displacement block 361 disposed inside the recessed groove 35, a magnetic suction plate 362 disposed inside the main shaft 3, a side rod 363 disposed on one side of the magnetic suction plate 362, and a brake rod 364 disposed on the outer surface of the side rod 363. One end of the brake rod 364 is provided with a semi-circular sleeve 365, and a magnetic wall 366 is provided on the inner wall of the semi-circular sleeve 365. The semi-circular sleeve 365 corresponds to the connecting rod 333, and the displacement block 361 is magnetically connected to the magnetic suction plate 362.

[0044] Specifically, by rotating the screw rod 341, one end of the screw rod 341 is connected to the magnetic groove 344, and the transmission gear 343 rotates accordingly, which drives the rack 334 to move upward, causing the adjusting protrusion 32 to protrude upward, thus completing the installation of different specifications of the winding belt 4. The adjustment is convenient and saves working time. At the same time, when the winding belt 4 is loose, it can be tightened immediately, which is convenient for later use and indirectly improves the service life of the winding belt 4. Secondly, when the winding belt 4 is damaged, it is also easy to replace it, saving manpower.

[0045] To address the technical problem of how to improve the service life of the transmission blade 42, such as... Figure 3 , Figure 10 and Figure 11 As shown, the following preferred technical solutions are provided:

[0046] A mounting groove 41 is provided on the outer surface of the tape 4. A transmission tooth 42 is provided inside the mounting groove 41. A connecting hole 43 is provided on the inner wall of the mounting groove 41. A slot grid 44 is provided at the bottom of the mounting groove 41. Multiple sets of mounting grooves 41 and transmission teeth 42 are provided. Each set of mounting grooves 41 is connected to each other through the connecting hole 43. A docking groove 45 is provided on one side of the tape 4. A telescopic short tube 38 corresponds to the docking groove 45, and the disk 382 is magnetically connected to the inner wall of the docking groove 45.

[0047] The inner core mechanism 7 includes a temporary storage bladder 71 disposed inside the main spindle 3, an outflow pipe 72 disposed on one side of the temporary storage bladder 71, and storage components 73 disposed on both sides of the temporary storage bladder 71. The storage components 73 include a storage disk 731 disposed inside the main spindle 3, a sponge 732 disposed inside the storage disk 731, and a guide pipe 734 disposed on the outer surface of the storage disk 731. The storage disk 731 is connected to the temporary storage bladder 71 through the guide pipe 734. An installation rod 733 is also disposed on the outer surface of the storage disk 731. The storage disk 731 is connected to the inner wall of the main spindle 3 through the installation rod 733. The outflow pipe 72 is connected to the soaking rope 381.

[0048] Specifically, during the overall rotation process, the storage disk 731 will make a circular motion, and lubricating oil is pre-filled in the temporary storage bladder 71 and the storage disk 731. During the circular motion, centrifugal force is generated, which can centrifuge the lubricating oil in the sponge 732 and enter the temporary storage bladder 71. Then, it is immersed in the wetted rope 381 through the outflow pipe 72, and finally dripped into the placement groove 41 through the wetted rope 381 to lubricate the transmission blade 42, reduce the friction between the transmission blade 42 and the blade belt, improve the service life of the transmission blade 42, and save costs.

[0049] To address the technical challenge of improving overall heat dissipation efficiency, such as... Figure 8 , Figure 9 and Figures 12-14 As shown, the following preferred technical solutions are provided:

[0050] A locking groove 371 is provided on the inner wall of the through hole 37. A locking member 372 is provided inside the locking groove 371. The locking member 372 includes a locking rod 3721 provided inside the locking groove 371, a surface groove 3722 opened on the outer surface of the locking rod 3721, a straight rod 3723 provided inside the surface groove 3722, and a compression spring 3725 provided on one side of the locking rod 3721. A blade 3724 is sleeved on the outer surface of the straight rod 3723.

[0051] The external mechanism 6 includes an external tube 61 disposed on the outer surface of the movable disk 1, an inner tube 62 disposed inside the external tube 61, and an insertion tube 63 disposed on the outer surface of the external tube 61. One end of the insertion tube 63 is connected to the inside of the main shaft 3. The inner tube 62 is provided with a beveled plate 64. One end of the beveled plate 64 is provided with a groove 641. A connector 65 is provided on one side of the beveled plate 64. A spring rope 66 is provided on the outer surface of the connector 65. One end of the spring rope 66 is connected to the inner wall of the inner tube 62.

[0052] The docking mechanism 5 includes a docking ring 51 disposed on the outer surface of the movable disk 1, a raised pad 52 disposed on the outer surface of the docking ring 51, and a thin tube 53 disposed on the outer surface of the docking ring 51. A docking sleeve 54 is also disposed on the outer surface of the movable disk 1. The docking sleeve 54 corresponds to the screwing rod 341. The movable disk 1 is connected to the through hole 37 through the docking ring 51. The raised pad 52 is connected to the docking sleeve 54 through the thin tube 53. A pressure bladder 541 is disposed inside the docking sleeve 54. A return spring 542 is disposed inside the pressure bladder 541. A side tube 543 is disposed on one side of the pressure bladder 541. The side tube 543 is connected to the thin tube 53.

[0053] Specifically, during the overall rotation process, the surrounding air will quickly enter the outer cylinder 61, and then enter the main shaft 3 through the insertion cylinder 63. During the entry process, air will enter the groove 641, pushing the oblique cutting plate 64 to move. The air entering the main shaft 3 will blow the blade 3724 to rotate, increase the air flow speed inside the locking rod 3721, accelerate the heat dissipation speed at the locking rod 3721, indirectly improve the overall heat dissipation efficiency, and increase the overall service life.

[0054] To further explain the above embodiments, the present invention also provides an implementation method for using a sword-transfer wheel with a sword belt motion fine-tuning component, comprising the following steps:

[0055] Step 1: Rotate the screw rod 341 so that one end of the screw rod 341 is connected to the magnetic groove 344. The transmission gear 343 rotates accordingly and drives the rack 334 to move upward, so that the adjusting protrusion 32 protrudes upward, completing the installation of different specifications of the winding belt 4. Then, put the whole assembly on the transmission component. One side of the locking rod 3721 will contact the external drive rod, so that the transmission blade tooth 42 is engaged with the blade groove on the blade belt.

[0056] Step 2: During the overall rotation, the storage disk 731 will make a circular motion, and lubricating oil is pre-filled in the temporary storage bladder 71 and the storage disk 731. During the circular motion, centrifugal force will be generated, which can centrifuge the lubricating oil in the sponge 732 and enter the temporary storage bladder 71. Then, it will be immersed in the wetted rope 381 through the outflow pipe 72, and finally dripped into the placement tank 41 through the wetted rope 381.

[0057] Step 3: During the overall rotation process, the surrounding air will quickly enter the outer cylinder 61, and then enter the main shaft 3 through the insertion cylinder 63. During the entry process, air will enter the groove 641, pushing the oblique cutting plate 64 to move.

[0058] Step 4: The air entering the spindle 3 will blow the blade 3724 to rotate, increasing the airflow speed inside the locking rod 3721. This completes all the usage steps.

[0059] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A sword-transfer wheel with a sword belt motion fine-tuning component, comprising a movable disc (1), a main shaft (3) disposed on one side of the movable disc (1), and a positioning disc (2) disposed at one end of the main shaft (3), characterized in that: A winding belt (4) is provided on the outer surface of the main shaft (3), a docking mechanism (5) and an external connection mechanism (6) are provided on the outer surface of the movable disk (1), and an inner core mechanism (7) is provided inside the main shaft (3). A main slot (31) is provided on the outer surface of the spindle (3). An adjusting protrusion (32) and an adjusting component (33) are provided inside the main slot (31). A screwing assembly (34) is provided on the outer surface of the spindle (3). An arc groove (35) is provided on one side of the spindle (3). A braking assembly (36) is provided inside the arc groove (35). A through hole (37) is also provided on the outer surface of the spindle (3). A telescopic short tube (38) is provided on the outer surface of the spindle (3). A disk (382) is provided on the outer surface of the telescopic short tube (38). A wetted rope (381) is provided through the telescopic short tube (38). The adjusting component (33) includes a top plate (331) provided inside the main slot (31) and a bottom plate (331) provided at the lower end of the top plate (331). The common connecting rod (333) and the horizontal plate (332) set at both ends of the common connecting rod (333) are provided with a rack (334) at one end of the horizontal plate (332). The screwing assembly (34) includes a screwing rod (341) and a threaded ring (342) set on the outer surface of the main shaft (3), and a transmission tooth (343) set inside the main shaft (3). A magnetic groove (344) is set on one side of the transmission tooth (343), and a support rod (345) is set on the other side of the transmission tooth (343). The screwing rod (341) is threadedly connected to the threaded ring (342). One end of the screwing rod (341) corresponds to the transmission tooth (343). The transmission tooth (343) is meshed with the rack (334). The adjusting protrusion (32) is placed on the top. On the upper surface of plate (331), the inner core mechanism (7) includes a temporary storage bladder (71) disposed inside the main shaft (3), an outflow pipe (72) disposed on one side of the temporary storage bladder (71), and storage components (73) disposed on both sides of the temporary storage bladder (71). The storage components (73) include a storage disk (731) disposed inside the main shaft (3), a sponge (732) disposed inside the storage disk (731), and a guide pipe (734) disposed on the outer surface of the storage disk (731). The storage disk (731) is connected to the temporary storage bladder (71) through the guide pipe (734). An installation rod (733) is also disposed on the outer surface of the storage disk (731). The storage disk (731) is connected to the inner wall of the main shaft (3) through the installation rod (733). The outlet pipe (72) is connected to the wetted rope (381). A locking groove (371) is provided on the inner wall of the through hole (37). A locking member (372) is provided inside the locking groove (371). The locking member (372) includes a locking rod (3721) provided inside the locking groove (371), a face groove (3722) opened on the outer surface of the locking rod (3721), a straight rod (3723) provided inside the face groove (3722), and a compression spring (3725) provided on one side of the locking rod (3721). A paddle (3724) is sleeved on the outer surface of the straight rod (3723). A mounting groove (41) is provided on the outer surface of the belt (4). A transmission tooth (42) is provided inside the mounting groove (41).A connecting hole (43) is provided on the inner wall of the placement groove (41), and a slot grid (44) is provided at the bottom of the placement groove (41). Multiple sets of placement grooves (41) and transmission teeth (42) are provided. Each set of placement grooves (41) is connected to each other through the connecting hole (43). A docking groove (45) is provided on one side of the tape (4). The telescopic short tube (38) corresponds to the docking groove (45), and the disk (382) is magnetically connected to the inner wall of the docking groove (45). The external mechanism (6) includes an external cylinder (6) provided on the outer surface of the movable disk (1). 1) An inner tube (62) is disposed inside the outer tube (61), and an insertion tube (63) is disposed on the outer surface of the outer tube (61). One end of the insertion tube (63) is connected to the inside of the main shaft (3). A beveled plate (64) is disposed inside the inner tube (62). A groove (641) is provided at one end of the beveled plate (64). A connector (65) is disposed on one side of the beveled plate (64). A spring rope (66) is disposed on the outer surface of the connector (65). One end of the spring rope (66) is connected to the inner wall of the inner tube (62).

2. The sword-transfer wheel with a sword belt motion fine-tuning component as described in claim 1, characterized in that: The braking assembly (36) includes a displacement block (361) disposed inside the recessed groove (35), a magnetic suction plate (362) disposed inside the main shaft (3), a side rod (363) disposed on one side of the magnetic suction plate (362), and a brake rod (364) disposed on the outer surface of the side rod (363). One end of the brake rod (364) is provided with a semi-circular sleeve (365), and a magnetic wall (366) is provided on the inner wall of the semi-circular sleeve (365). The semi-circular sleeve (365) corresponds to the connecting rod (333), and the displacement block (361) is magnetically connected to the magnetic suction plate (362).

3. The sword-transfer wheel with a sword belt motion fine-tuning component as described in claim 1, characterized in that: The docking mechanism (5) includes a docking ring (51) on the outer surface of the movable disk (1), a raised pad (52) on the outer surface of the docking ring (51), and a thin tube (53) on the outer surface of the docking ring (51). A docking sleeve (54) is also provided on the outer surface of the movable disk (1). The docking sleeve (54) corresponds to the screw rod (341). The movable disk (1) is connected to the through hole (37) through the docking ring (51). The raised pad (52) is connected to the docking sleeve (54) through the thin tube (53).

4. A sword-transfer wheel with a sword belt motion fine-tuning component as described in claim 3, characterized in that: The inside of the docking sleeve (54) is provided with a pressure bladder (541), the inside of the pressure bladder (541) is provided with a return spring (542), and a side tube (543) is provided on one side of the pressure bladder (541), which is connected to the thin tube (53).

5. A method of using a sword-transfer wheel with a sword belt motion fine-tuning component as described in any one of claims 1-4, characterized in that: Includes the following steps: S1: Rotate the screw rod (341) so that one end of the screw rod (341) is connected to the magnetic groove (344), the transmission gear (343) rotates accordingly, and drives the rack (334) to move upward, so that the adjusting protrusion (32) protrudes upward, completing the installation of different specifications of the winding belt (4), and then the whole is sleeved on the transmission component. One side of the locking rod (3721) will contact the external driving rod, and make the transmission sword tooth (42) engage with the sword groove on the sword belt. S2: During the overall rotation, the storage disk (731) will make a circular motion, and lubricating oil is pre-filled in the temporary storage bladder (71) and the storage disk (731). During the circular motion, centrifugal force will be generated, which can centrifuge the lubricating oil in the sponge (732) and enter the temporary storage bladder (71), and then be immersed in the wetted rope (381) through the outflow pipe (72), and finally drip into the placement tank (41) through the wetted rope (381). S3: During the overall rotation process, the surrounding air will quickly enter the outer cylinder (61) and then enter the main shaft (3) through the insertion cylinder (63). During the entry process, air will enter the groove (641) and push the oblique plate (64) to move. S4: The air entering the spindle (3) will blow the blade (3724) to rotate, increasing the airflow speed inside the locking rod (3721). This completes all the usage steps.

Citation Information

Patent Citations

  • Weaving wefting insertion rapier conveying wheel for case

    CN208414733U

  • Weaving wefting insertion case is with passing sword dish

    CN208414728U

  • Rapier drive pinion for rapier loom

    DE19545841C1