Machine head structure of textile machine
Through the combined optimization of the small components of the yarn splitter and motor drive, the problem of high energy consumption of high power motor drive in the textile machine head structure is solved, and the synchronous work of multiple sets of winding rollers and stable yarn winding is realized, reducing energy consumption and improving efficiency.
Patent Information
- Application Number
- CN202420507153.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-15
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-03-15
AI Technical Summary
The existing textile machine head structure requires a high-power motor to drive the entire frame to move during the yarn winding process, resulting in high energy consumption.
The yarn is wound left and right through the overall movement of the small parts of the yarn splitter, and combined with a set of motors to drive the overall swing of the multi-component yarn divider to reduce the motor energy consumption. The connection components and transmission wheel system are used to optimize the yarn guidance and reduce the use of high-power motors.
It realizes that multiple sets of winding rollers work simultaneously during the yarn winding process, which reduces the overall energy consumption of the motor, reduces the cost of electricity, and improves the stability and efficiency of yarn winding.
Smart Images

Figure CN223149951U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of textile machines, and in particular relates to a head structure of a textile machine. Background Art
[0002] The machine head yarn taking-up mechanism is an important part of textile machinery. Its main function is to lead the yarn out of the spinning device and wind it onto the bobbin to form a yarn package of a certain shape and capacity. The machine head yarn taking-up mechanism mainly relies on the coordinated action of winding motion, tension control and yarn guiding mechanism. Winding motion: The winding mechanism is driven by a motor to make the winding drum or winding shaft rotate, and the yarn is gradually wound on the surface of the drum or shaft to form a yarn package. Tension control: In order to ensure the winding quality of the yarn and avoid yarn breakage, the machine head yarn taking-up mechanism is usually equipped with a tension control device, which ensures that the yarn maintains a certain stability during the winding process by adjusting the yarn tension. Yarn guiding mechanism: The yarn guiding mechanism is responsible for guiding the yarn from the spinning device to the taking-up mechanism, ensuring that the yarn can be smoothly and accurately wound onto the drum or shaft.
[0003] In the existing spinning machine head structure, in order to ensure that the yarn is wound around the take-up roller left and right during the yarn winding process, a reciprocating motor is required to drive the frame on which the take-up roller is installed to swing back and forth as a whole to achieve the left and right winding of the yarn. Since the overall frame of the take-up roller is relatively large, in order to ensure the overall winding effect of the yarn during operation, a high-power motor is required to achieve the overall movement of the frame, and the overall energy consumption is high.
[0004] Therefore need a kind of textile machine head structure to assist and solve this problem. Utility Model Content
[0005] (1) Technical issues to be solved
[0006] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a textile machine head structure, which can drive the yarn to be wound around the winding roller left and right through the overall movement of the yarn divider small component, and at the same time, a group of motors can drive multiple groups of yarn dividers to swing as a whole, so that during the yarn winding process, multiple groups of winding rollers can be wound at the same time, reducing the overall energy consumption of the motor, and avoiding the need to drive the overall frame to move a motor with higher power to work when the yarn is wound, thereby reducing electricity costs.
[0007] (2) Technical solution
[0008] In order to solve the above technical problems, the utility model provides such a textile machine head structure, which comprises a first wall panel and a second wall panel, a winding roller is equidistantly arranged between the first wall panel and the second wall panel from top to bottom, a yarn separator and a wool stick bracket mounting shaft are respectively installed on one side edge adjacent to the first wall panel and the second wall panel and corresponding to the two sides of the winding roller, and a wool stick receiving assembly for receiving the wool stick is installed on the wool stick bracket mounting shaft;
[0009] A plurality of brackets are fixed on the outer side edge of the second wall panel, a second transmission wheel is rotatably arranged on the bracket, a cam is installed at one end of the second transmission wheel, one end of the yarn separator extends out of the second wall panel, a connecting seat is installed at one end of the yarn separator extending out of the second wall panel, and an auxiliary connecting connection component is installed at one end of the connecting seat and the outer edge of the cam.
[0010] Furthermore, the connecting assembly includes a hinged ring hingedly mounted on the cam and the connecting seat, an adjusting screw is fixed to one end of the hinged ring, two adjusting screws are connected by a connecting column, two adjusting grooves with opposite spiral directions for the adjusting screws to pass through are symmetrically provided in the connecting column, and the adjusting grooves are threadedly matched with the adjusting screw.
[0011] Furthermore, the yarn separator includes a yarn dividing rod main shaft that transversely passes through the first wall panel and the second wall panel, and a fixing seat is installed on the second wall panel corresponding to the yarn dividing rod main shaft and symmetrically protrudes and fixed at the top of the yarn dividing rod main shaft, and a U-shaped positioning fixing rod is fixed on the fixing seat.
[0012] Furthermore, a plurality of U-shaped positioning and fixing rods are provided, and the plurality of U-shaped positioning and fixing rods are equidistantly arranged on the top of the fixing seat, and a threading groove for the yarn to pass through is reserved between two of the U-shaped positioning and fixing rods.
[0013] Furthermore, the connecting seat is a Q-shaped plate structure, one end of the main shaft of the yarn separation rod is installed on the connecting seat, and the connecting seat and the main shaft of the yarn separation rod are fixed by bolts.
[0014] Furthermore, a mounting frame is installed between the two brackets, a second auxiliary wheel is rotatably arranged on the mounting frame, the second transmission wheel, the second auxiliary wheel and the mounting frame are connected by a transmission belt, and several second transmission wheels and second auxiliary wheels on the same side are driven to rotate by a group of transmission motors.
[0015] Further, a plurality of first driving wheels are installed on the outer side edge of the second wall panel from top to bottom. A second meshing wheel is installed on the outer side edge of the top first driving wheel. One end of the top coiling roller extending out of the second wall panel is fixed with a first meshing wheel. The first meshing wheel and the second meshing wheel are in meshing transmission. The rest of the first driving wheels are sequentially installed at one end of the corresponding coiling roller below. A first auxiliary wheel is rotatably arranged between two corresponding first driving wheels on the outer side edge of the second wall panel. The first driving wheel and the first auxiliary wheel are connected by a transmission belt. A group of transmission motors drive a plurality of first driving wheels and first auxiliary wheels on the same side to transmit power.
[0016] Further, mounting blocks are installed at both ends of the hair stick support mounting shaft. The mounting blocks are installed on the outer side edges of the first wall panel and the second wall panel by bolts.
[0017] Further, the hair stick receiving assembly includes a hair stick bracket fixing bracket that is fixedly connected to the hair stick support mounting shaft by bolts. One end of the hair stick bracket fixing bracket away from the hair stick support mounting shaft is installed with a hair stick bracket fixing shaft. A hair stick bracket is clamped and installed on the hair stick bracket fixing shaft. A sickle-shaped hair stick bracket base is clamped and installed on the side of the hair stick support mounting shaft corresponding to the hair stick bracket fixing bracket. One hair stick bracket fixing shaft and one hair stick bracket base on the same side form a group. A clamping groove is formed at the bottom of one end of the hair stick bracket close to the hair stick bracket base. A nylon wear-resistant sheet inside the hair stick bracket is clamped and installed on the clamping groove. A spring steel sheet is installed at the bottom of the nylon wear-resistant sheet inside the hair stick bracket.
[0018] Further, a hair stick bracket positioning and adjusting screw is vertically penetrated and installed at the middle section of the hair stick bracket. The hair stick bracket and the hair stick bracket positioning and adjusting screw are in threaded cooperation. The bottom of the hair stick bracket positioning and adjusting screw abuts against the top of the hair stick bracket base.
[0019] (3) Beneficial effects
[0020] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0021] The utility model can drive the driving motor to rotate and drive the second driving wheel to rotate during operation through the cooperation between a slidable yarn distributing device arranged between the first wallboard and the second wallboard, a cam and a connecting component, etc. Driven by a transmission belt, a plurality of the second driving wheels all rotate. When the second driving wheel rotates, it drives the cam to rotate. The cam rotates eccentrically to drive the whole connecting component to move, and pulls the connecting seat through the connecting component. The connecting seat drives the main shaft of the yarn distributing rod to be pulled, so that the main shaft of the yarn distributing rod is driven to move. Therefore, during the rotation of the connecting component along with the cam, the whole yarn distributing device swings reciprocally, so that the yarn can be assisted and guided during the winding process. The overall movement of the small parts of the yarn distributing device can also drive the yarn to be wound around the winding roller left and right. At the same time, driving a plurality of yarn distributing devices to swing integrally by a group of motors can ensure that a plurality of winding rollers carry out winding work simultaneously during the yarn winding process, reduce the overall energy consumption of the motor, and avoid as much as possible the need to drive the whole frame to move during the yarn winding, which requires a motor with a large power to work, thus reducing the electricity cost.
[0022] By arranging the connecting component in the utility model, the connecting column is rotated in advance. The adjusting groove on the connecting column is in threaded cooperation with the adjusting screw rod, so that the whole adjusting screw rod extends out a certain length. After reaching the required length, the connecting seat is stably connected with the cam. The overall length of the connecting component can be adjusted in advance according to the position of the yarn distributing device before work, so as to ensure that the yarn distributing device reciprocally moves within a specific range during subsequent work, thereby adapting to different requirements.
[0023] By installing the first auxiliary wheel and the second auxiliary wheel in the utility model, the overall tightness of the transmission belt can be adjusted before the transmission belt drives, so as to ensure that the transmission belt can stably fit on the driving wheel during the transmission process, and avoid as much as possible the situations such as the transmission belt loosening or the belt slipping. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can be obtained according to these drawings.
[0025] Figure 1 It is a schematic structural diagram of the utility model;
[0026] Figure 2 It is a schematic structural diagram of another perspective of the utility model;
[0027] Figure 3 It is a schematic structural diagram of the yarn distributing device of the utility model;
[0028] Figure 4For the present utility model Figure 1 The enlarged structural schematic diagram of position A in
[0029] Figure 5 The longitudinal sectional view of the connection component of the present utility model;
[0030] Figure 6 The structural schematic diagram of the hair stick receiving component of the present utility model.
[0031] The reference signs in the drawings are: 1, the first wallboard; 2, the second wallboard; 3, the coiling roller; 4, the installation shaft of the hair stick bracket; 41, the installation block; 5, the hair stick receiving component; 6, the fixing bracket of the hair stick bracket; 7, the fixing shaft of the hair stick bracket; 8, the base of the hair stick bracket; 9, the hair stick bracket; 91, the clamping groove; 10, the nylon wear-resistant sheet inside the hair stick bracket; 11, the spring steel sheet; 12, the positioning and adjusting screw of the hair stick bracket; 13, the first driving wheel; 131, the first meshing wheel; 132, the second meshing wheel; 14, the first auxiliary wheel; 15, the second driving wheel; 151, the cam; 16, the second auxiliary wheel; 17, the mounting rack; 18, the driving motor; 19, the connection component; 191, the connection column; 192, the adjusting groove; 193, the adjusting screw rod; 194, the articulated ring; 20, the connection seat; 21, the yarn distributor; 22, the main shaft of the yarn distributing rod; 23, the fixing seat; 24, the U-shaped positioning and fixing rod. Specific embodiments
[0032] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0033] This specific embodiment is a structure of a textile machine headstock, as shown in Figure 1 and Figure 2As shown, the textile machine head structure includes a first wall panel 1 and a second wall panel 2, a winding roller 3 is equidistantly arranged between the first wall panel 1 and the second wall panel 2 from top to bottom, a plurality of first transmission wheels 13 are installed on the outer side of the second wall panel 2 from top to bottom, a second meshing wheel 132 is installed on the outer side of the top first transmission wheel 13, a first meshing wheel 131 is fixed to one end of the top winding roller 3 extending out of the second wall panel 2, the first meshing wheel 131 and the second meshing wheel 132 are meshed for transmission, and the remaining first transmission wheels 13 are sequentially installed on the corresponding winding roller 3 below At one end, a first auxiliary wheel 14 is rotatably arranged between the two first transmission wheels 13 on the outer side of the second wall panel 2, and the first transmission wheel 13 is connected to the first auxiliary wheel 14 by a transmission belt, and a plurality of first transmission wheels 13 and first auxiliary wheels 14 on the same side are driven by a group of transmission motors 18. Through the cooperation between the set first transmission wheel 13, the first meshing wheel 131, the second meshing wheel 132 and the transmission motor 18, it can be ensured that a plurality of winding rollers 3 can rotate stably during the working process, and the subsequent yarn winding work can be ensured to proceed smoothly.
[0034] Reference Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown, a yarn separator 21 and a wool stick bracket mounting shaft 4 are respectively installed on one side edge adjacent to the first wall panel 1 and the second wall panel 2 and on both sides of the corresponding winding roller 3. The yarn separator 21 includes a yarn separator rod main shaft 22 which transversely penetrates the first wall panel 1 and the second wall panel 2. A fixing seat 23 is symmetrically protruding and fixed at the top of the yarn separator rod main shaft 22 installed at the corresponding position of the yarn separator rod main shaft 22 on the second wall panel 2. A U-shaped positioning fixing rod 24 is fixed on the fixing seat 23. There are several U-shaped positioning fixing rods 24, and several U-shaped positioning fixing rods 24 are equidistantly arranged on the top of the fixing seat 23. A threading groove for the yarn to pass through is reserved between the two U-shaped positioning fixing rods 24. Through the set yarn separator 21, different strands of yarn can be completely separated during operation to avoid different strands of yarn from being entangled and bonded to each other as much as possible.
[0035] A plurality of brackets are fixed on the outer side of the second wall panel 2, on which a second transmission wheel 15 is rotatably provided, a mounting frame 17 is installed between the two brackets, on which a second auxiliary wheel 16 is rotatably provided, the second transmission wheel 15, the second auxiliary wheel 16 and the mounting frame 17 are connected by a transmission belt, and a plurality of second transmission wheels 15 and second auxiliary wheels 16 on the same side are driven to rotate by a group of transmission motors 18, a cam 151 is installed at one end of the second transmission wheel 15, one end of the yarn splitter 21 extends out of the second wall panel 2, a connecting seat 20 is installed at the end of the yarn splitter 21 extending out of the second wall panel 2, and an auxiliary connecting connecting component 19 is installed at one end of the connecting seat 20 and the outer edge of the cam 151.
[0036] By installing a slidable yarn separator 21 between the first wall panel 1 and the second wall panel 2 and cooperating with the cam 151 and the connecting assembly 19, the transmission motor 18 can rotate to drive the second transmission wheel 15 to rotate during operation. Under the drive of the transmission belt, several second transmission wheels 15 rotate. When the second transmission wheel 15 rotates, the cam 151 is driven to rotate. When the cam 151 rotates eccentrically, it drives the connecting assembly 19 to move as a whole, and pulls the connecting seat 20 through the connecting assembly 19. The connecting seat 20 drives the yarn separation rod main shaft 22 to be pulled, so that the yarn separation rod main shaft 22 is driven to move. While the connecting component 19 rotates with the cam 151, the yarn separator 21 swings back and forth as a whole, so that the yarn can be assisted in guiding during the yarn winding process. The overall movement of the small component of the yarn separator 21 can also drive the yarn to be wound left and right on the winding roller 3. At the same time, a group of motors can drive the multi-group yarn separators 21 to swing as a whole, so that during the yarn winding process, multiple groups of winding rollers 3 can be wound at the same time, reducing the overall energy consumption of the motor, and avoiding the need to drive the overall frame to move a motor with higher power to work when the yarn is wound, thereby reducing electricity costs.
[0037] The connecting component 19 includes a hinged ring 194 hingedly mounted on the cam 151 and the connecting seat 20, an adjusting screw 193 is fixed to one end of the hinged ring 194, two adjusting screws 193 are connected by a connecting column 191, and two adjusting grooves 192 with opposite spiral directions and for the adjusting screws 193 to pass through are symmetrically provided in the connecting column 191, and the adjusting grooves 192 are threadedly matched with the adjusting screws 193.
[0038] By setting up the connecting component 19, the connecting column 191 is rotated in advance, and the adjusting groove 192 on the connecting column 191 is threadedly matched with the adjusting screw rod 193, so that the adjusting screw rod 193 is extended to a certain length as a whole. After reaching the required length, the connecting seat 20 and the cam 151 are stably connected. The overall length of the connecting component 19 can be adjusted in advance according to the position of the yarn splitter 21 before work, so as to ensure that the yarn splitter 21 moves back and forth within a specific range in subsequent work, thereby adapting to different needs.
[0039] Reference Figure 1 and Figure 6As shown, mounting blocks 41 are installed at both ends of the wool stick support mounting shaft 4. The mounting blocks 41 are installed on the outer sides of the first wall panel 1 and the second wall panel 2 by bolts. A wool stick receiving assembly 5 for receiving the wool stick is installed on the wool stick support mounting shaft 4. The wool stick receiving assembly 5 includes a wool stick bracket fixing bracket 6 that is fixedly connected to the wool stick support mounting shaft 4 by bolts. One end of the wool stick bracket fixing bracket 6 away from the wool stick support mounting shaft 4 is installed with a wool stick bracket fixing shaft 7. A wool stick bracket 9 is clamped and installed on the wool stick bracket fixing shaft 7. A sickle-shaped wool stick bracket base 8 is clamped and installed on the side of the wool stick support mounting shaft 4 corresponding to the wool stick bracket fixing bracket 6 by bolts. One wool stick bracket fixing shaft 7 and one wool stick bracket base 8 on the same side form a group. A clamping groove 91 is opened at the bottom of one end of the wool stick bracket 9 close to the wool stick bracket base 8. A wool stick bracket inner nylon wear-resistant sheet 10 is clamped and installed on the clamping groove 91. A spring steel sheet 11 is installed at the bottom of the wool stick bracket inner nylon wear-resistant sheet 10.
[0040] By providing the wool stick receiving assembly 5, a stable support can be provided for the wool stick, ensuring that the wool stick remains stable during processing, assembly or transportation, and preventing it from moving or tilting.
[0041] A wool stick bracket positioning and adjusting screw 12 is vertically installed through the middle section of the above-mentioned wool stick bracket 9. The wool stick bracket 9 is in threaded cooperation with the wool stick bracket positioning and adjusting screw 12. The bottom of the wool stick bracket positioning and adjusting screw 12 abuts against the top of the wool stick bracket base 8. By providing the wool stick bracket positioning and adjusting screw 12, by rotating the wool stick bracket positioning and adjusting screw 12, the height, angle or position of the wool stick bracket 9 can be changed, so as to ensure that the wool stick is in the best position during processing or transportation. At the same time, the fixing effect of the wool stick bracket positioning and adjusting screw 12 can increase the stability of the wool stick bracket 9. By adjusting the wool stick bracket positioning and adjusting screw 12, the wool stick bracket 9 can adapt to wool sticks of different sizes or shapes. This flexibility enables the bracket to be applicable to a variety of production scenarios, improving its versatility and scope of use.
[0042] Working principle:
[0043] Before working, pre-rotate the connecting column 191. The adjusting groove 192 on the connecting column 191 is in threaded engagement with the adjusting lead screw 193, so that the whole adjusting lead screw 193 extends a certain length. After reaching the required length, stably connect the connecting seat 20 with the cam 151. Before working, install the wool bar at the reserved gap between the nylon wear-resistant piece 10 and the spring steel piece 11 in the wool bar bracket. During working, start two driving motors 18. One group of driving motors 18 drives the first driving pulley 13 of the transmission belt to rotate, and driven by the transmission belt, a number of first driving pulleys 13 all rotate, thereby driving the take-up roller 3 to rotate. At the same time, the first driving pulley 13 at the top drives the second meshing wheel 132 to rotate. When the first meshing wheel 131 and the second meshing wheel 132 are in meshing transmission, the rotation direction of the take-up roller 3 at the top is opposite to the rotation direction of the take-up roller 3. During the rotation of the take-up roller 3, the yarn is driven to be wound on the take-up roller 3.
[0044] At the same time, the other group of driving motors 18 rotates to drive the second driving pulley 15 to rotate. Driven by the transmission belt, a number of second driving pulleys 15 all rotate. When the second driving pulley 15 rotates, it drives the cam 151 to rotate. When the cam 151 rotates eccentrically, it drives the whole connecting assembly 19 to move, and pulls the connecting seat 20 through the connecting assembly 19. The connecting seat 20 drives the main shaft 22 of the yarn dividing rod to be pulled, so that the main shaft 22 of the yarn dividing rod is driven to move. Thus, during the rotation of the connecting assembly 19 with the cam 151, the whole yarn divider 21 swings reciprocally, so that during the process of winding the yarn, the yarn can be assisted and guided, ensuring that the yarn swings reciprocally and is wound and installed at different positions. Through mutual left and right winding, better interweaving and fixing can be formed between the yarns, increasing the stability of the yarn and preventing the yarn from loosening or falling off during the winding process.
[0045] All the technical features in this embodiment can be freely combined according to actual needs.
[0046] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A head structure of a textile machine, the head structure of the textile machine comprising a first wallboard (1) and a second wallboard (2), characterized in that, A coiling roller (3) is rotatably arranged at equal intervals from top to bottom between the first wall panel (1) and the second wall panel (2). On one adjacent side of the first wall panel (1) and the second wall panel (2) and corresponding to both sides of the coiling roller (3), a yarn dividing device (21) and a wool bar support mounting shaft (4) are respectively installed. A wool bar receiving assembly (5) for receiving wool bars is installed on the wool bar support mounting shaft (4). A number of brackets are fixed on the outer side edge of the second wall panel (2). A second transmission wheel (15) is rotatably arranged on the brackets. One end of the second transmission wheel (15) is installed with a cam (151). One end of the yarn dividing device (21) extends out of the second wall panel (2). A connecting seat (20) is installed at the end of the yarn dividing device (21) extending out of the second wall panel (2). One end of the connecting seat (20) and the outer edge of the cam (151) are installed with a connecting component (19) for auxiliary connection.
2. The head structure of a textile machine according to claim 1, characterized in that, The connecting component (19) includes a hinged ring (194) hinged and installed on the cam (151) and the connecting seat (20). One end of the hinged ring (194) is fixed with an adjusting screw rod (193). The two adjusting screw rods (193) are connected by a connecting column (191). Two adjusting grooves (192) with opposite spiral directions and for the adjusting screw rods (193) to pass through are symmetrically opened in the connecting column (191). The adjusting grooves (192) are in threaded cooperation with the adjusting screw rods (193).
3. The head structure of a textile machine according to claim 1, characterized in that, The yarn dividing device (21) includes a yarn dividing rod main shaft (22) horizontally penetrating through the first wall panel (1) and the second wall panel (2). A fixing seat (23) is installed on the second wall panel (2) corresponding to the yarn dividing rod main shaft (22). The fixing seat (23) is symmetrically and prominently fixed at the top of the yarn dividing rod main shaft (22). A U-shaped positioning and fixing rod (24) is fixed on the fixing seat (23).
4. The head structure of a textile machine according to claim 3, characterized in that, A number of the U-shaped positioning and fixing rods (24) are provided. The number of the U-shaped positioning and fixing rods (24) is arranged at equal intervals on the top of the fixing seat (23). A threading groove for the yarn to pass through is reserved between the two U-shaped positioning and fixing rods (24).
5. The head structure of a textile machine according to claim 4, characterized in that, The connecting seat (20) has a q-shaped plate structure. One end of the yarn dividing rod main shaft (22) is inserted and installed on the connecting seat (20). The connecting seat (20) and the yarn dividing rod main shaft (22) are fixed by bolts.
6. The head structure of a textile machine according to claim 1, characterized in that, An installation frame (17) is installed between the two brackets. A second auxiliary wheel (16) is rotatably arranged on the installation frame (17). The second transmission wheel (15), the second auxiliary wheel (16) and the installation frame (17) are connected by a transmission belt. A number of the second transmission wheels (15) and the second auxiliary wheels (16) on the same side are driven to rotate by a group of transmission motors (18).
7. The head structure of a textile machine according to claim 1, characterized in that, A plurality of first driving wheels (13) are installed on the outer side edge of the second wall panel (2) from top to bottom. A second meshing wheel (132) is installed on the outer side edge of the top first driving wheel (13). One end of the take-up roller (3) protruding from the second wall panel (2) at the top is fixed with a first meshing wheel (131). The first meshing wheel (131) and the second meshing wheel (132) are in meshing transmission. The remaining first driving wheels (13) are sequentially installed at one end of the corresponding lower take-up roller (3). A first auxiliary wheel (14) is rotatably arranged on the outer side edge of the second wall panel (2) corresponding to the space between two of the first driving wheels (13). The first driving wheel (13) and the first auxiliary wheel (14) are connected by a transmission belt. A group of driving motors (18) drive the plurality of first driving wheels (13) and first auxiliary wheels (14) on the same side for transmission.
8. A head structure of a textile machine according to claim 1, characterized in that, Mounting blocks (41) are installed at both ends of the hair stick support mounting shaft (4). The mounting blocks (41) are installed on the outer side edges of the first wall panel (1) and the second wall panel (2) by bolts.
9. The head structure of a textile machine according to claim 1, characterized in that, The hair stick receiving assembly (5) includes a hair stick bracket fixing bracket (6) bolted and fixed on the hair stick support mounting shaft (4). One end of the hair stick bracket fixing bracket (6) away from the hair stick support mounting shaft (4) is installed with a hair stick bracket fixing shaft (7). A hair stick bracket (9) is snap-fitted and installed on the hair stick bracket fixing shaft (7). A sickle-shaped hair stick bracket base (8) is bolted and installed on the side edge of the hair stick support mounting shaft (4) corresponding to the hair stick bracket fixing bracket (6). One hair stick bracket fixing shaft (7) and one hair stick bracket base (8) on the same side form a group. A clamping groove (91) is formed at the bottom of one end of the hair stick bracket (9) close to the hair stick bracket base (8). A nylon wear-resistant sheet (10) inside the hair stick bracket is snap-fitted and installed on the clamping groove (91). A spring steel sheet (11) is installed at the bottom of the nylon wear-resistant sheet (10) inside the hair stick bracket.
10. A head structure of a textile machine according to claim 9, characterized in that, A hair stick bracket positioning and adjusting screw (12) is vertically installed through the middle section of the hair stick bracket (9). The hair stick bracket (9) and the hair stick bracket positioning and adjusting screw (12) are in threaded cooperation. The bottom of the hair stick bracket positioning and adjusting screw (12) abuts against the top of the hair stick bracket base (8).