A wind power fabric warp arranging machine with carding function

By setting up a rotatable comb roller and wire arrangement structure in the wind power fabric warp yarn layout machine, the entire and wires of warp are realized, which solves the problem of lengthy traditional weaving process, reduces costs and improves efficiency.

CN116356474BActive Publication Date: 2025-06-03CHANGZHOU TIANMA GROUP CO LTD (BUILDING MATERIALS NO 253 PLANT)
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Patent Information

Application Number
CN202310428399.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-20
Publication Date
2025-06-03
Estimated Expiration
2043-04-20

AI Technical Summary

Technical Problem

In traditional weaving processes, warp threads need to be individually carded before entering the loom, resulting in lengthy process and increasing fabric costs.

Method used

A wind power fabric warp yarn layout machine is designed, two sets of rotatable combing rollers are arranged, and the warp combing whole lines and wiring lines are realized through reciprocating and rotating driving structures, and the conductor arrangement structure is combined with the guide wire arrangement structure.

Benefits of technology

Combining the weaving warp thread induction process with the warp thread combing process, the weaving process flow is streamlined, the weaving production cost is reduced, and the weaving production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

A warp arranging machine for wind power fabric with carding function. The present invention relates to the technical field of loom. The steel eggplant is fixedly arranged at the right end of the frame, the bobbin holder is fixedly arranged at the left end of the frame, there are several bobbin support rods, and they are fixedly arranged on the bobbin holder in an array. The driving mechanism is arranged on the frame, the wire combing roller is arranged on the driving mechanism, and annular grooves are formed on the outer wall of the wire combing roller. The wire guiding mechanism is arranged between the wire combing roller and the steel eggplant. It is provided with two groups of wire combing rollers, and at the same time, a reciprocating movement structure and a rotary driving structure are set for the wire combing rollers, and then a wire guiding and arranging structure for the warp threads is set. Thus, it is convenient to card and arrange the yarn before the warp threads are introduced into the steel eggplant, so as to combine the warp thread feeding process and the warp thread carding process in weaving, streamline the weaving process flow, reduce the weaving production cost, and improve the weaving production efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of loom, and particularly relates to a warp arranging machine for wind power fabric with a carding function. Background Art

[0002] In order to ensure the material properties of light weight and high strength of the fan blades of wind turbines, fabrics added with special fiber filaments are selected as the surface layer. Therefore, a special loom is used for fabric weaving production when manufacturing the surface layer of the fan blades; in the traditional weaving process, the warp yarns need to be carded and straightened before entering the loom, so as to remove the burrs on the yarns and arrange the yarns in order, so as to facilitate the normal weaving process after the warp yarns enter the loom; in the prior art, when straightening the warp yarns, a separate process is designed to unwind and tighten the produced yarns, straighten the yarns through a wire straightening machine and then rewind them into a coil, and then load the coiled coil after straightening into the loom. This makes the whole process lengthy, resulting in an increase in the cost of the fabric. In view of the above problems, in combination with the structure of the loom in the existing process that introduces the warp yarn through a steel reed with a lead groove, an idea of setting a warp yarn carding and straightening structure at the front end of the steel reed leading process is proposed. For this, specific structural design is required. Summary of the Invention

[0003] The purpose of the present invention is to provide a warp arranging machine for wind power fabric with a carding function in view of the defects and deficiencies of the prior art. It is provided with two groups of carding rollers, and at the same time, a reciprocating movement structure and a rotary drive structure are provided for the carding rollers, and then a wire guiding and arranging structure for the warp yarns is provided in cooperation, so as to facilitate carding and straightening of the yarns before the warp yarns are introduced into the steel reed, thereby combining the warp yarn inlet process of the loom with the warp yarn carding process, streamlining the weaving process, reducing the weaving production cost, and improving the weaving production efficiency.

[0004] To achieve the above purpose, the present invention adopts the following technical solutions:

[0005] It includes a frame and a steel reed, wherein the steel reed is fixedly arranged at the right end of the frame, and it further includes:

[0006] A bobbin holder, which is fixedly arranged at the left end of the frame;

[0007] Bobbin support rods, there are several of them, and they are fixedly arranged on the bobbin holder in an array;

[0008] A driving mechanism, which is arranged on the frame;

[0009] Carding rollers, which are arranged on the driving mechanism, and annular grooves are provided on the outer ring wall of the carding rollers;

[0010] A wire guiding mechanism, which is arranged between the carding rollers and the steel reed;

[0011] In use, the bobbin of the warp thread is sleeved on the bobbin support rod. Then, the warp thread of the bobbin is pulled out and successively passes through the wire combing roller and the wire guiding mechanism, and then passes out from inside the steel reed. Then, the warp thread is connected to the textile machine. When the textile machine pulls the warp thread, the wire combing roller is driven to move through the driving mechanism, and then the warp thread is combed and straightened by the wire combing roller. Then, after the wire guiding mechanism arranges the warp thread that has been combed, the warp thread is passed through the steel reed.

[0012] Preferably, the driving mechanism includes:

[0013] A wire combing slide rail, which is fixedly arranged on the frame;

[0014] Two bases, which are arranged left and right and slidably arranged on the wire combing slide rail;

[0015] A reciprocating driving member, which is arranged on the frame and is in transmission connection with the base;

[0016] Two driving motors, which are respectively fixedly arranged on the two bases;

[0017] A reversing gearbox, which is arranged on the base, and the input shaft of the reversing gearbox is in transmission connection with the output shaft of the driving motor;

[0018] A driving shaft, which is rotatably arranged on the base through bearings, and the driving shaft is in transmission connection with the output shaft of the reversing gearbox;

[0019] A worm, which is rotatably arranged on the left base through bearings, and the worm is in transmission connection with the driving shaft on the left base;

[0020] A linear driving member, which is arranged on the right base, and the linear driving member is in transmission connection with the driving shaft on the right base;

[0021] The wire combing rollers are equally divided into two groups, left and right. The wire combing rollers in the left group are rotatably arranged on the left base through bearings, and the wire combing rollers in the right group are arranged on the linear driving member;

[0022] A worm gear, which is sleeved and fixed on the lower end shaft of the wire combing roller. The worm gear on the wire combing rollers in the left group is meshed with the worm;

[0023] When in use, start the driving motor, and drive the driving shaft to rotate through the reversing gear box, and then the driving shaft on the left base drives the worm to rotate, and the driving shaft on the right base is transmitted to the linear driving component, and the worm drives the worm wheel meshing therewith to rotate, that is, drives the combing roller on the left base to rotate, and the linear driving component works and drives the combing roller on the right base to rotate, and drives the bases on the left and right sides to move through the reciprocating driving component, that is, drives the two groups of combing rollers on the two bases to reciprocate respectively, and cooperates with the rotation of the combing rollers to realize combing of the warp threads, and adjusts the movement and position of a group of combing rollers on the right base through the linear driving component.

[0024] Preferably, the reciprocating drive member comprises:

[0025] A reciprocating hydraulic rod, wherein the reciprocating hydraulic rod is fixedly arranged on the frame;

[0026] A rack pair, wherein the rack pair is fixedly arranged on the base, and the rack pairs on the bases on the left and right sides are arranged in an interlaced manner front to back;

[0027] A reversing gear, wherein the reversing gear is rotatably mounted on the frame via a rotating shaft, and the reversing gear is mounted between the rack pairs on the front and rear sides, and the rack pairs are meshed with the rack pairs on the front and rear sides;

[0028] When in use, the reciprocating hydraulic rod drives the left base to slide left and right on the combing line slide rail, and then the rack pair on the left base drives the reversing gear to rotate, and then the reversing gear drives the rack pair on the right base to move, that is, the right base is driven to slide on the combing line slide rail, and the moving directions of the rack pairs on the left and right bases are opposite, that is, the moving directions of the left and right bases are opposite, that is, as the left and right bases move, the two groups of combing line rollers on the two bases are respectively driven to perform linear movements in the left and right directions.

[0029] Preferably, the linear drive element comprises:

[0030] A supporting slide rail, wherein the supporting slide rail is fixedly arranged on the base on the right side;

[0031] A support seat, wherein the support seat is slidably mounted on the support rail, and a group of combing rollers on the right side are rotatably mounted on the support seat through bearings;

[0032] A transmission rod, wherein the transmission rod is rotatably mounted on the right base through a bearing, and the transmission rod is transmission-connected to a driving shaft on the right base;

[0033] A transmission sleeve, wherein the transmission sleeve is rotatably mounted on the support seat through a bearing, and the transmission sleeve is movably mounted on the transmission rod, a spiral groove is provided on the outer wall of the transmission sleeve, and the transmission sleeve is meshed with the worm gear on the right group of combing rollers through the spiral groove;

[0034] Linear hydraulic rod, the linear hydraulic rod is fixedly arranged on the base on the right side, and the output end of the linear hydraulic rod is fixedly arranged on the support seat;

[0035] During use, the support seat is driven by the linear hydraulic rod to slide back and forth on the support slide rail, that is, the support seat drives the wire combing rollers in the right group to move back and forth to adjust the position, that is, to adjust the positions of the wire combing rollers in the left and right groups to stagger back and forth. The drive shaft on the right base drives the transmission rod to rotate, the transmission rod drives the transmission sleeve to rotate, and the transmission sleeve drives the worm on the wire combing rollers in the right group to rotate through the spiral groove thereon, that is, drives the wire combing rollers on the support seat to rotate.

[0036] Preferably, the wire guiding mechanism includes:

[0037] Support frame, the support frame is fixedly arranged on the frame, and the support frame is arranged between the base and the steel eggplant;

[0038] Connecting seats, several connecting seats are in a group and are arranged in several groups. The groups of connecting seats are arranged vertically from top to bottom, and the connecting seats in the same group are fixedly arranged in the front and back on the support frame;

[0039] Threading buckle, the threading buckle is movably penetrated through the lower side wall of the connecting seat;

[0040] Locking member, the locking member is arranged on the support frame, and the locking member is arranged in cooperation with the threading buckle;

[0041] Guide rings, several guide rings are arranged, and are fixedly arranged in the front and back on the support frame. The guide rings are arranged between the threading buckle and the steel eggplant;

[0042] During use, the threading buckle is controlled by the locking member to open. Then, after the warp thread passing through the wire combing rollers is penetrated into the threading buckle, the warp thread passes through the guide rings and the steel eggplant in sequence. After the warp thread passes through the threading buckle, the threading buckle is inserted into the connecting seat and buckled, and the threading buckle is limited and locked by the locking member.

[0043] Preferably, the locking member includes:

[0044] Guide sleeve, the guide sleeve is penetrated and fixed on the side wall of the connecting seat;

[0045] Pin rod, the pin rod is penetrated in the guide sleeve. A clamping groove is formed on the annular wall at one end of the connecting seat where the threading buckle is located. After the pin rod passes through the guide sleeve, it is clamped with the clamping groove;

[0046] Wedge block, the wedge block is fixedly arranged at one end of the pin rod located outside the connecting seat;

[0047] Tension spring, the tension spring is sleeved on the pin rod, and one end of the tension spring is fixedly arranged at the end of the guide sleeve, and the other end of the tension spring is fixedly arranged on the wedge block;

[0048] A drive shaft rotatably arranged on a support frame through bearings;

[0049] A dial wheel sleeved and fixed on the drive shaft, and the dial wheel is arranged in cooperation with a wedge block;

[0050] During use, insert the thread-passing buckle into the connecting seat. At this time, the wedge block is pulled by a tension spring, that is, the pin rod is pulled by the tension spring and inserted into the connecting seat, and the pin rod is buckled with the card slot on the thread-passing buckle, thus locking the thread-passing buckle. When opening the thread-passing buckle, rotate the drive shaft to drive the dial wheel to rotate, and then push the wedge block through the dial wheel, and then pull the pin rod away from the thread-passing buckle. At this time, the thread-passing buckle drops and opens. After the dial wheel rotates and the teeth of the dial wheel disengage from the wedge block, the pin rod is pulled back to its original position by the tension spring.

[0051] Compared with the prior art, the beneficial effects of the present invention are:

[0052] 1. The device is provided with a rotatable wire combing roller, and the wire combing roller is divided into left and right groups, and the left and right groups of wire combing rollers can perform a spreading and closing movement. Furthermore, the warp threads passing through are tensioned by the wire combing roller, and through the rotation and movement of the wire combing roller, the burrs on the warp threads are combed and removed, and at the same time, the warp threads are aligned and arranged.

[0053] 2. The device is provided with a thread-passing buckle in the shape of a lock, which facilitates opening the thread-passing buckle when the warp thread passing through the wire combing roller is inserted, and thus facilitates clamping the warp thread. The thread-passing buckle is locked by a pin rod with a wedge block, and is further provided with a dial wheel driven by a drive shaft, that is, simultaneous control of the same row of thread-passing holes is achieved, and the locking control of a single thread-passing buckle is not affected. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] Figure 1 is a schematic structural diagram of the present invention.

[0055] Figure 2 is Figure 1 the right front view of

[0056] Figure 3 is Figure 1 the left rear view of

[0057] Figure 4 is Figure 1 the lower left view of

[0058] Figure 5 is a schematic structural diagram of the support frame and the locking member in the present invention.

[0059] Figure 6 is Figure 2 the enlarged view of part A in

[0060] Figure 7 Yes Figure 5 It is an enlarged view of part B in

[0061] Explanation of reference numerals in the drawings:

[0062] Frame 1, steel eggplant 2, spool rack 3, spool support rod 4, wire combing roller 5, annular groove 5-1, drive mechanism 6, wire combing slide rail 6-1, base 6-2, drive motor 6-3, reversing gearbox 6-4, drive shaft 6-5, worm 6-6, worm gear 6-7, wire guiding mechanism 7, support frame 7-1, connecting seat 7-2, threading buckle 7-3, guiding ring 7-4, reciprocating drive member 8, reciprocating hydraulic rod 8-1, rack and pinion pair 8-2, reversing gear 8-3, linear drive member 9, support slide rail 9-1, support seat 9-2, transmission rod 9-3, transmission sleeve 9-4, spiral groove 9-5, linear hydraulic rod 9-6, locking member 10, guiding sleeve 10-1, pin rod 10-2, wedge block 10-3, tension spring 10-4, transmission shaft 10-5, dial 10-6. Detailed implementation manners

[0063] Next, the technical solutions in the present invention will be clearly and completely described in conjunction with the drawings. Only the preferred embodiments in the description are taken as examples. All other embodiments obtained by those skilled in the art without creative efforts fall within the protection scope of the present invention. Embodiment

[0064] As Figures 1-7 shown, this embodiment includes a frame 1 and a steel eggplant 2, where the steel eggplant 2 is fixedly arranged at the right end of the frame 1, and it further includes:

[0065] A spool rack 3, which is fixedly arranged at the left end of the frame 1;

[0066] Spool support rods 4, there are several of the spool support rods 4, and they are fixedly arranged on the spool rack 3 in an array;

[0067] Two groups of partitions are arranged on the spool rack 3 from left to right. The partitions are of a detachable structure, and clamping blocks are arranged on the spool rack 3 to limit the partitions. The two groups of partitions from left to right are arranged in a vertical offset manner. Thus, after the spools are sleeved on the spool support rods 4, the adjacent spools up and down are separated by the partitions;

[0068] A drive mechanism 6, which is arranged on the frame 1;

[0069] The wire combing roller 5 is arranged on the driving mechanism 6. A ring groove 5-1 is formed on the outer ring wall of the wire combing roller 5. The wire combing roller 5 is divided into two groups on the left and right with the same quantity. Six wire combing rollers 5 in the same group are arranged in a row from front to back. Eight ring grooves 5-1 on one wire combing roller 5 are arranged at equal intervals from top to bottom. Therefore, when guiding the warp threads through the wire combing roller 5, the guide wires are arranged in an array of 8 rows * 6 columns from top to bottom and from front to back;

[0070] The wire guiding mechanism 7 is arranged between the wire combing roller 5 and the steel reed 2;

[0071] The driving mechanism 6 includes:

[0072] The wire combing slide rail 6-1 is fixedly arranged on the frame 1;

[0073] There are two bases 6-2, which are arranged side by side and slidably arranged on the wire combing slide rail 6-1. The wire combing rollers 5 in the left group are rotatably arranged on the left base 6-2 through bearings;

[0074] The reciprocating driving member 8 is arranged on the frame 1, and the reciprocating driving member 8 is in transmission connection with the base 6-2;

[0075] There are two driving motors 6-3, which are respectively fixedly arranged on the two bases 6-2;

[0076] The reversing gearbox 6-4 is arranged on the base 6-2, and the input shaft of the reversing gearbox 6-4 is in transmission connection with the output shaft of the driving motor 6-3;

[0077] The driving shaft 6-5 is rotatably arranged on the base 6-2 through a bearing, and the driving shaft 6-5 is in transmission connection with the output shaft of the reversing gearbox 6-4;

[0078] The worm 6-6 is rotatably arranged on the left base 6-2 through a bearing, and the worm 6-6 is in transmission connection with the driving shaft 6-5 on the left base 6-2;

[0079] The linear driving member 9 is arranged on the right base 6-2, and the linear driving member is in transmission connection with the driving shaft 6-5 on the right base 6-2;

[0080] The worm gear 6-7 is sleeved and fixed on the lower end shaft of the wire combing roller 5. The worm gear 6-7 on the wire combing rollers 5 in the left group is meshed with the worm 6-6;

[0081] The reciprocating driving member 8 includes:

[0082] Reciprocating hydraulic rod 8-1, and the reciprocating hydraulic rod 8-1 is fixedly arranged on the frame 1;

[0083] Rack pair 8-2, and the rack pair 8-2 is fixedly arranged on the base 6-2, and the rack pairs 8-2 on the left and right bases 6-2 are arranged staggered with each other front and back;

[0084] Reversing gear 8-3, and the reversing gear 8-3 is rotatably arranged on the frame 1 through a rotating shaft, and the reversing gear 8-3 is arranged between the front and back rack pairs 8-2, and the rack pair 8-2 is meshed with the front and back rack pairs 8-2;

[0085] The linear driving member 9 includes:

[0086] Support slide rail 9-1, and the support slide rail 9-1 is fixedly arranged on the right base 6-2;

[0087] Support seat 9-2, and the support seat 9-2 is slidably arranged on the support slide rail 9-1, and a set of wire combing rollers 5 on the right side is rotatably arranged on the support seat 9-2 through a bearing;

[0088] Drive rod 9-3, and the drive rod 9-3 is rotatably arranged on the right base 6-2 through a bearing, and the drive rod 9-3 is in transmission connection with the drive shaft 6-5 on the right base 6-2, and the cross section of the drive rod 9-3 is a regular hexagon;

[0089] Drive sleeve 9-4, and the drive sleeve 9-4 is rotatably arranged on the support seat 9-2 through a bearing, and the drive sleeve 9-4 is movably sleeved on the drive rod 9-3, and the inner diameter cross section of the drive sleeve 9-4 is a regular hexagon, so that when the drive rod 9-3 rotates, it drives the drive sleeve 9-4 to rotate synchronously, and the drive sleeve 9-4 can move back and forth on the drive rod 9-3;

[0090] A spiral groove 9-5 is formed on the outer wall of the drive sleeve 9-4, and the drive sleeve 9-4 is meshed with the worm wheel 6-7 on a set of wire combing rollers 5 on the right side through the spiral groove 9-5. The spiral groove 9-5 is formed on the drive sleeve 9-4, so that the drive sleeve 9-4 has the same shape as the worm 6-6 after being matched with the spiral groove 9-5, that is, the drive sleeve 9-4 with the spiral groove 9-5 is regarded as a worm structure;

[0091] Linear hydraulic rod 9-6, and the linear hydraulic rod 9-6 is fixedly arranged on the right base 6-2, and the output end of the linear hydraulic rod 9-6 is fixedly arranged on the support seat 9-2;

[0092] The wire guiding mechanism 7 includes:

[0093] Support frame 7-1, and the support frame 7-1 is fixedly arranged on the frame 1, and the support frame 7-1 is arranged between the base 6-2 and the steel eggplant 2;

[0094] The connecting base 7-2, eight groups of the connecting bases 7-2 are arranged up and down, and six of the connecting bases 7-2 in the same group are arranged front and back. The connecting base 7-2 is fixedly arranged on the support frame 7-1;

[0095] The wire threading buckle 7-3 is movably inserted through the lower side wall of the connecting base 7-2;

[0096] The locking member 10 is arranged on the support frame 7-1, and the locking member 10 is arranged in cooperation with the wire threading buckle 7-3;

[0097] The wire threading buckle 7-3 is arranged in the same shape as the buckle in the prior art. After the wire threading buckle 7-3 is unlocked by the locking member 10, the wire threading buckle 7-3 drops and abuts against the adjacent partition on the lower side of the support frame 7-1. At this time, one end of the wire threading buckle 7-3 remains inserted in the connecting base 7-2, and the other end is separated from the connecting base 7-2;

[0098] The guide rings 7-4, several of the guide rings 7-4 are arranged in a front-back row and fixedly arranged on the support frame 7-1. The guide rings 7-4 are arranged between the wire threading buckle 7-3 and the steel eggplant 2;

[0099] The locking member 10 includes:

[0100] The guide sleeve 10-1 is inserted and fixed on the side wall of the connecting base 7-2;

[0101] The pin rod 10-2 is inserted through the guide sleeve 10-1. A clamping groove is formed on the annular wall at one end of the wire threading buckle 7-3 located in the connecting base 7-2. After the pin rod 10-2 passes through the guide sleeve 10-1, it is clamped in cooperation with the clamping groove;

[0102] The inclined wedge block 10-3 is fixedly arranged at one end of the pin rod 10-2 located outside the connecting base 7-2. The inclined wedge block 10-3 is arranged in a conical shape;

[0103] The tension spring 10-4 is sleeved on the pin rod 10-2, and one end of the tension spring 10-4 is fixedly arranged at the end of the guide sleeve 10-1, and the other end of the tension spring 10-4 is fixedly arranged on the inclined wedge block 10-3;

[0104] The transmission shaft 10-5 is rotatably arranged on the support frame 7-1 through a bearing;

[0105] The dial 10-6 is sleeved and fixed on the transmission shaft 10-5, and the dial 10-6 is arranged in cooperation with the inclined wedge block 10-3.

[0106] After adopting the technical solution disclosed by the present invention, it can achieve:

[0107] When using this device, first put the bobbin on the bobbin support rod 4. Drive the support base 9-2 to move backward through the linear hydraulic rod 9-6, that is, drive the set of combing rollers 5 on the right side to move backward. Then pull out the warp threads on the bobbin and pass them through between the combing rollers 5, and sequentially pass the warp threads through the threading buckle 7-3, the guiding ring 7-4, and the steel reed 2 and then connect them to the loom.

[0108] Push the support base 9-2 forward through the linear hydraulic rod 9-6, that is, drive the set of combing rollers 5 on the right side to move forward. When the warp threads pass through the left and right sets of combing rollers 5, the warp threads are in an "S" shape and respectively abut against the rear side wall of the set of combing rollers 5 on the left side and the front side wall of the set of combing rollers 5 on the right side, and the warp threads are stuck in the annular grooves 5-1 on the combing rollers 5.

[0109] Start the drive motor 6-3 to drive the drive shaft 6-5 to rotate through the reversing gearbox 6-4. The drive shaft 6-5 on the left base 6-2 drives the worm 6-6 to rotate, and then the worm 6-6 drives the engaged worm wheel 6-7 to rotate, that is, drives the set of combing rollers 5 on the left side to rotate. The drive shaft 6-5 on the right base 6-2 drives the transmission rod 9-3 to rotate, the transmission rod 9-3 drives the transmission sleeve 9-4 to rotate, and the transmission sleeve 9-4 drives the engaged worm wheel 6-7 to rotate through the spiral groove 9-5 on it, that is, drives the set of combing rollers 5 on the right side to rotate. Then the combing rollers 5 rotate and abut against the warp threads to deburr and comb the burrs on the warp threads.

[0110] Drive the left base 6-2 to move left and right on the combing slide rail 6-1 through the reciprocating hydraulic rod 8-1. The left base 6-2 drives the reversing gear 8-3 to rotate through the rack pair 8-2 on it, and the reversing gear 8-3 drives the rack pair 8-2 on the right base 6-2 to move, that is, drives the right base 6-2 to slide on the combing slide rail 6-1. The reversing gear 8-3 rotates and drives the rack pairs 8-2 on both sides to move, and the moving directions of the rack pairs 8-2 on the left and right sides are opposite, that is, the moving directions of the left and right bases 6-2 are opposite. Then the left and right bases 6-2 respectively drive the left and right sets of combing rollers 5 to move reciprocally, that is, the left and right sets of combing rollers 5 perform an opening and closing movement, that is, comb and arrange the warp threads through the combing rollers 5.

[0111] When threading the warp thread through the threading buckle 7-3, rotate the transmission shaft 10-5 to drive the dial 10-6 to rotate. Further, the dial 10-6 pushes the wedge block 10-3 to pull out the pin rod 10-2 from the connecting seat 7-2, so that the pin rod 10-2 is disengaged from the card slot on the threading buckle 7-3. Further, the threading buckle 7-3 drops and opens. Then, after threading the warp thread through the threading buckle 7-3, insert the threading buckle 7-3 into the connecting seat 7-2 again to lock it. At this time, the tension spring 10-4 pulls the wedge block 10-3, that is, pulls the pin rod 10-2 to be inserted into the connecting seat 7-2. Further, after inserting the threading buckle 7-3 into the connecting seat 7-2, the pin rod 10-2 can catch the threading buckle 7-3.

[0112] Adopting the above technical solution, the achievable technical advantages are as follows:

[0113] 1. The device is provided with a rotatable wire combing roller 5. At the same time, the wire combing roller 5 is divided into left and right groups, and the left and right groups of wire combing rollers 5 can perform a spreading and closing movement. Further, the warp thread passing through is tensioned by the wire combing roller 5. Through the rotation and movement of the wire combing roller 5, the burrs on the warp thread are combed and removed, and at the same time, the warp thread is aligned and arranged.

[0114] 2. The device is provided with a locking-shaped threading buckle 7-3. Further, when the warp thread passing through the wire combing roller 5 passes through the threading buckle 7-3, it is convenient to open the threading buckle 7-3, and then it is convenient to snap the warp thread in. The threading buckle 7-3 is locked by the pin rod 10-2 with a wedge block 10-3. Further, in cooperation with the dial 10-6 driven by the transmission shaft 10-5, the simultaneous control of the same row of threading holes is realized, and the locking control of a single threading buckle 7-3 is not affected.

[0115] For those skilled in the art, they can modify the technical solutions recorded in the foregoing embodiments and perform equivalent replacements of some technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A warping machine for wind power fabric with carding function, which comprises a frame (1) and a steel spindle (2), wherein the steel spindle (2) is fixedly arranged at the right end of the frame (1); It is characterized in that, It further comprises: A bobbin holder (3), which is fixedly arranged at the left end of the frame (1); Bobbin support rods (4), several of which are arranged in an array and fixedly arranged on the bobbin holder (3); A driving mechanism (6), which is arranged on the frame (1); A carding roller (5), which is arranged on the driving mechanism (6), and a ring groove (5-1) is formed on the outer ring wall of the carding roller (5); A wire guiding mechanism (7), which is arranged between the carding roller (5) and the steel spindle (2); The driving mechanism (6) comprises: A carding slide rail (6-1), which is fixedly arranged on the frame (1); Bases (6-2), two of which are arranged side by side and slidably arranged on the carding slide rail (6-1); A reciprocating driving member (8), which is arranged on the frame (1), and the reciprocating driving member (8) is in transmission connection with the bases (6-2); Driving motors (6-3), two of which are respectively fixedly arranged on the two bases (6-2); A reversing gearbox (6-4), which is arranged on the base (6-2), and the input shaft of the reversing gearbox (6-4) is in transmission connection with the output shaft of the driving motor (6-3); A driving shaft (6-5), which is rotatably arranged on the base (6-2) through a bearing, and the driving shaft (6-5) is in transmission connection with the output shaft of the reversing gearbox (6-4); A worm (6-6), which is rotatably arranged on the left base (6-2) through a bearing, and the worm (6-6) is in transmission connection with the driving shaft (6-5) on the left base (6-2); A linear driving member (9), which is arranged on the right base (6-2), and the linear driving member (9) is in transmission connection with the driving shaft (6-5) on the right base (6-2); The carding rollers (5) are equally divided into left and right groups. The carding rollers (5) in the left group are rotatably arranged on the left base (6-2) through bearings, and the carding rollers (5) in the right group are arranged on the linear driving member (9); Worms (6-7), which are sleeved and fixed on the lower shafts of the carding rollers (5). The worms (6-7) on the carding rollers (5) in the left group are meshed with the worm (6-6).

2. According to the warping machine for wind power fabric with carding function described in claim 1, It is characterized in that: The reciprocating driving member (8) comprises: A reciprocating hydraulic rod (8-1), which is fixedly arranged on the frame (1); Rack pair (8-2), the rack pair (8-2) is fixedly arranged on the base (6-2), and the rack pairs (8-2) on the left and right sides of the base (6-2) are arranged staggered front and back; Reversing gear (8-3), the reversing gear (8-3) is rotatably arranged on the frame (1) through a rotating shaft, and the reversing gear (8-3) is arranged between the rack pairs (8-2) on the front and back sides, and the rack pair (8-2) is meshed with the rack pairs (8-2) on the front and back sides.

3. A wind power fabric warp arranging machine with a carding function according to claim 2, characterized in that: The linear driving member (9) includes: Support slide rail (9-1), the support slide rail (9-1) is fixedly arranged on the right base (6-2); Support seat (9-2), the support seat (9-2) is slidably arranged on the support slide rail (9-1), and a set of combing rollers (5) on the right side is rotatably arranged on the support seat (9-2) through a bearing; Drive rod (9-3), the drive rod (9-3) is rotatably arranged on the right base (6-2) through a bearing, and the drive rod (9-3) is in transmission connection with the drive shaft (6-5) on the right base (6-2); Drive sleeve (9-4), the drive sleeve (9-4) is rotatably arranged on the support seat (9-2) through a bearing, and the drive sleeve (9-4) is movably sleeved on the drive rod (9-3). A spiral groove (9-5) is arranged on the outer wall of the drive sleeve (9-4), and the drive sleeve (9-4) is meshed with the worm wheel (6-7) on a set of combing rollers (5) on the right side through the spiral groove (9-5); Linear hydraulic rod (9-6), the linear hydraulic rod (9-6) is fixedly arranged on the right base (6-2), and the output end of the linear hydraulic rod (9-6) is fixedly arranged on the support seat (9-2).

4. A wind power fabric warp arranging machine with a carding function according to claim 3, characterized in that: The wire guiding mechanism (7) includes: Support frame (7-1), the support frame (7-1) is fixedly arranged on the frame (1), and the support frame (7-1) is arranged between the base (6-2) and the steel eggplant (2); Connecting seat (7-2), several connecting seats (7-2) are in a group and are arranged in several groups. The groups of connecting seats (7-2) are arranged vertically, and the connecting seats (7-2) in the same group are arranged front and back and fixedly arranged on the support frame (7-1); Threading buckle (7-3), the threading buckle (7-3) is movably inserted through the lower side wall of the connecting seat (7-2); Locking member (10), the locking member (10) is arranged on the support frame (7-1), and the locking member (10) is matched with the threading buckle (7-3); Guide ring (7-4), several guide rings (7-4) are arranged, and are arranged front and back and fixedly arranged on the support frame (7-1), and the guide ring (7-4) is arranged between the threading buckle (7-3) and the steel eggplant (2).

5. A wind power fabric warp arranging machine with a carding function according to claim 4, characterized in that: The locking member (10) includes: Guide sleeve (10-1), the guide sleeve (10-1) is fixedly arranged through the side wall of the connecting seat (7-2); Pin rod (10-2), the pin rod (10-2) is arranged through the guide sleeve (10-1), a clamping groove is formed on the annular wall at one end of the wire threading buckle (7-3) on the connecting seat (7-2), and the pin rod (10-2) is clamped with the clamping groove after passing through the guide sleeve (10-1); Wedge block (10-3), the wedge block (10-3) is fixedly arranged at one end of the pin rod (10-2) located outside the connecting seat (7-2); Tension spring (10-4), the tension spring (10-4) is sleeved on the pin rod (10-2), one end of the tension spring (10-4) is fixedly arranged at the end of the guide sleeve (10-1), and the other end of the tension spring (10-4) is fixedly arranged on the wedge block (10-3); Drive shaft (10-5), the drive shaft (10-5) is rotatably arranged on the support frame (7-1) through a bearing; Dial (10-6), the dial (10-6) is sleeved and fixed on the drive shaft (10-5), and the dial (10-6) is arranged in cooperation with the wedge block (10-3).

Citation Information

Patent Citations

  • Yarn fusing and pressing machine

    CN113955573A