Textile felting needle wire drawing forming machine

By heating, lubricating, and drawing the textile needles, the problems of breakage and surface roughness during the drawing process are solved, achieving efficient drawing and preventing deformation of the equipment, thus improving its practicality.

CN223916315UActive Publication Date: 2026-02-17YANTAI TIANWEI NEEDLE MAKING CO LTD
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Patent Information

Application Number
CN202520493334.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-02-17
Estimated Expiration
2035-03-20

AI Technical Summary

Technical Problem

Textile needles are prone to breakage and have rough surfaces during the drawing process, and existing equipment has difficulty in effectively improving their ductility and preventing deformation during the friction process.

Method used

The textile needle material is heated by a heating mechanism, lubricant is applied by a lubrication mechanism, the yarn is clamped and drawn using a limiting mechanism and a drawing mechanism, and deformation is prevented by a cooling mechanism, thus improving the practicality of the equipment.

Benefits of technology

It enhances the ductility of textile needles, reduces the risk of breakage, improves surface quality, and enhances the overall usability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wiredrawing forming machines, in particular to a spinning felting needle wiredrawing forming machine, which heats spinning felting needle materials by starting a heating mechanism to increase the ductility of the spinning felting needle materials, and coats lubricants at the heating positions of spinning felting needles by starting a lubricating mechanism. The spinning felting needle penetrating through the limiting mechanism is clamped through the wire drawing mechanism, wire drawing is conducted on the spinning felting needle by starting the wire drawing mechanism, and the practicability of the equipment is improved; comprising a conveying mechanism; the heating mechanism is installed on the conveying mechanism, the lubricating mechanism is installed on the heating mechanism, the limiting mechanism is installed in the heating mechanism, the wire drawing mechanism is installed at the top end of the conveying mechanism, and the wire drawing mechanism is located on the right side of the heating mechanism; the cooling mechanism is installed in the conveying mechanism and located on the right side of the limiting mechanism.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wire drawing forming machine especially to a textile needle wire drawing forming machine. BACKGROUND

[0002] The textile needle is an important tool used in the textile industry, especially in the production of non-woven fabrics and textile processing. It is a metal needle with hooks and is usually used in mechanical net fixing methods such as needle punching. It can make some fibers in the fluffy net intertwine by repeatedly piercing the fiber net or non-woven fabric, thereby achieving the purpose of reinforcement. At the same time, the needle can also form styles such as loops and pile on the surface of the fiber net, increasing the thickness and strength of the product.

[0003] For example, the wire drawing forming machine disclosed in the utility model patent with application number CN202323273099.6 is representative of one type of prior art. Its main structure includes a workbench, an output roller, a winding roller, a linear guide barrel, a wire drawing die, a sliding block, a fixed block, and a limiting rod. The wire drawing forming of the material is realized by the cooperation of the workbench, the output roller, the winding roller, the linear guide barrel, the wire drawing die, the sliding block, the fixed block, and the limiting rod.

[0004] Because the textile needle is thin, it is easy to break during the wire drawing process. In addition, during the stretching of the textile needle, the textile needle and the die rub against each other for a long time, causing the surface of the wire-drawn textile needle to be rough. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides a textile needle wire drawing forming machine that can increase the ductility of the textile needle material by starting the heating mechanism, apply lubricant to the heated part of the textile needle by starting the lubricating mechanism, clamp the textile needle that passes through the limiting mechanism by the wire drawing mechanism, and draw the textile needle by starting the wire drawing mechanism, thereby improving the practicality of the equipment.

[0006] The utility model discloses a textile needle wire drawing forming machine, including conveying mechanism, still including heating mechanism, lubricating mechanism, limiting mechanism, wire drawing mechanism and cooling mechanism, heating mechanism installs on conveying mechanism, lubricating mechanism installs on heating mechanism, limiting mechanism installs in heating mechanism inside, wire drawing mechanism installs at the top of conveying mechanism, and wire drawing mechanism is located at the right side of heating mechanism, cooling mechanism installs in the inside of conveying mechanism, and cooling mechanism is located at the right side of limiting mechanism, through placing the textile needle material on conveying mechanism, through starting the conveying mechanism and conveying, through starting heating mechanism and heating textile needle material, increase its ductility, through starting lubricating mechanism and coating lubricating on the heating place of textile needle, according to the specification through the textile needle material and passes through limiting mechanism, through wire drawing mechanism and clamps the textile needle of passing through limiting mechanism, through starting wire drawing mechanism and wire drawing of textile needle, through starting cooling mechanism and cooling, prevent the deformation of textile needle subsequently, improve the practicality of equipment.

[0007] Preferably, the conveying mechanism includes two groups of speed reducers, a plurality of transmission wheels, two groups of first motors, a workbench, and two groups of first electric cylinders. The plurality of transmission wheels are respectively installed on the output ends of the two groups of speed reducers. The output ends of the two groups of first motors are respectively installed on the input ends of the two groups of speed reducers. The top end of the lower speed reducer is installed on the top end of the workbench. The top end of the workbench is provided with a plurality of openings. An access hole is arranged on the front wall of the workbench. The top end of the upper speed reducer is installed on the bottom end of the two groups of first electric cylinders. The top ends of the two groups of first electric cylinders are installed on the heating mechanism. By respectively extending the two groups of first electric cylinders, the upper speed reducer is lowered, and the plurality of transmission wheels are used to fix the textile needle material. By respectively starting the two groups of first motors to respectively transmit through the two groups of speed reducers, the plurality of first motors are rotated to convey the textile needle material. The workbench supports the lower speed reducer, thereby improving the practicality of the equipment.

[0008] Preferably, the heating mechanism includes a first support, a second electric cylinder, and an infrared heating instrument. The top end of the second electric cylinder is installed on the first support. The top end of the infrared heating instrument is installed on the bottom end of the second electric cylinder. The first support supports the second electric cylinder. By extending the second electric cylinder, the infrared heating instrument is lowered. By starting the infrared heating instrument, the textile needle material is heated, thereby improving the practicality of the equipment.

[0009] Preferably, the lubricating mechanism comprises a liquid supply tank, an oil pump, a hose, a discharge pipe, a support rod and a collection box, the output end of the liquid supply tank is connected with the input end of the oil pump, the output end of the oil pump is connected with the input end of the hose, the output end of the hose is connected with the input end of the discharge pipe, the top end of the discharge pipe is installed at the bottom end of the support rod, the top end of the support rod is installed on the 21, and the collection box is located below the discharge pipe; the lubricant in the liquid supply tank is discharged to the textile needle material through the hose by starting the oil pump, the support rod supports the discharge pipe, and the collection box collects the dropped lubricant, thereby improving the practicability of the equipment.

[0010] Preferably, the limiting mechanism comprises two groups of bearings, a rotating shaft, a second motor, a plurality of connecting rods and a plurality of limiting molds, the outer rings of the two groups of workbenches are respectively installed on the workbenches, the two ends of the rotating shaft are respectively installed on the inner rings of the two groups of bearings, the right end of the rotating shaft is connected with the output end of the second motor, one side end of the connecting rod is respectively installed on the rotating shaft, and a plurality of limiting molds are respectively installed on the other side end of the plurality of connecting rods; the two groups of bearings respectively support the rotating shaft, the rotating shaft is rotated by starting the second motor through the two groups of bearings, the plurality of connecting rods are respectively rotated, and the plurality of limiting molds respectively limit the textile needle material, thereby improving the practicability of the equipment.

[0011] Preferably, the wire drawing mechanism comprises two groups of sliding grooves, two groups of lead screws, two groups of third motors, two groups of first mounting plates, two groups of guide rods, two groups of third cylinders, two groups of second mounting plates and two groups of electric clamps, the two groups of lead screws are respectively located in the two groups of sliding grooves, the two groups of lead screws are respectively provided with sliding blocks, the outer parts of the sliding blocks are respectively slidably installed on the inner walls of the two groups of sliding grooves, the right ends of the two groups of lead screws are respectively installed on the output ends of the two groups of third motors, the outer ends of the two groups of guide rods are respectively installed on the sliding blocks, the outer ends of the two groups of third cylinders are respectively slidably installed on the two groups of guide rods, the fixed ends of the two groups of second mounting plates are respectively installed on the inner ends of the two groups of guide rods, the inner ends of the two groups of guide rods and the moving ends of the two groups of third cylinders are respectively installed on one end of the two groups of second mounting plates, and the two groups of electric clamps are respectively installed on the other end of the two groups of second mounting plates; the two groups of first mounting plates respectively support the two groups of guide rods and the two groups of third cylinders, the two groups of electric clamps respectively hold the drawn textile needles by respectively extending the two groups of third cylinders through the two groups of second mounting plates, the two groups of guide rods respectively guide the two groups of third cylinders, the two groups of lead screws are rotated by respectively starting the two groups of third motors, the sliding blocks on the two groups of lead screws are guided through the two groups of sliding grooves, the sliding blocks are moved, the textile needles are drawn, and the practicability of the equipment is improved.

[0012] Preferably, the cooling mechanism comprises a fan and a second support, and the second support is installed at the top end of the fan; the fan supports the second support, the drawn textile needles are cooled by starting the second support, and the practicability of the equipment is improved.

[0013] The beneficial effects of the utility model compared with prior art are: through placing the textile needle material on the conveying mechanism, conveying the textile needle material through starting the conveying mechanism, heating the textile needle material through starting the heating mechanism, increasing the ductility, coating the lubricant on the heating place of the textile needle through starting the lubricating mechanism, according to the specification, passing the textile needle material through the limiting mechanism, clamping the textile needle passing through the limiting mechanism through the wire drawing mechanism, drawing the textile needle through starting the wire drawing mechanism, preventing the textile needle from deforming subsequently through starting the cooling mechanism, improving the practicability of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 Is the isometric view of the utility model, and

[0015] Figure 2 Is the isometric view of the conveying mechanism of the utility model, and

[0016] Figure 3 Is the isometric view of the heating mechanism of the utility model, and

[0017] Figure 4 Is the isometric view of the lubricating mechanism of the utility model, and

[0018] Figure 5 Is the isometric view of the limiting mechanism of the utility model, and

[0019] Figure 6 Is the isometric view of the wire drawing mechanism of the utility model, and

[0020] Figure 7 Is the isometric view of the cooling mechanism of the utility model.

[0021] Markings in the drawings: 01, conveying mechanism;11, speed reducer;12, transmission wheel;13, first motor;14, workbench;15, first electric cylinder;02, heating mechanism;21, first support;22, second electric cylinder;23, infrared heating instrument;03, lubricating mechanism;31, liquid supply barrel;32, oil pump;33, hose;34, oil discharge pipe;35, support rod;36, collection box;04, limiting mechanism;41, bearing;42, rotating shaft;43, second motor;44, connecting rod;45, limiting mold;05, wire drawing mechanism;51, sliding slot;52, lead screw;53, third motor;54, first mounting plate;55, guide rod;56, third electric cylinder;57, second mounting plate;58, electric clamp;06, cooling mechanism;61, fan;62, second support. DETAILED DESCRIPTION

[0022] For the convenience of understanding the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive. Embodiment 1

[0023] As Figure 1 shown, a textile needle wire drawing forming machine includes conveying mechanism 01, further including heating mechanism 02, lubricating mechanism 03, limiting mechanism 04, wire drawing mechanism 05 and cooling mechanism 06, heating mechanism 02 is installed on conveying mechanism 01, lubricating mechanism 03 is installed on heating mechanism 02, limiting mechanism 04 is installed inside heating mechanism 02, wire drawing mechanism 05 is installed at the top of conveying mechanism 01, and wire drawing mechanism 05 is located at the right side of heating mechanism 02, cooling mechanism 06 is installed inside conveying mechanism 01, and cooling mechanism 06 is located at the right side of limiting mechanism 04.

[0024] By placing the textile needle material on the conveying mechanism 01, conveying it by starting the conveying mechanism 01, heating the textile needle material by starting the heating mechanism 02, increasing its ductility, coating the textile needle with lubricant by starting the lubricating mechanism 03, passing the textile needle material through the limiting mechanism 04 according to the specification, clamping the textile needle passing through the limiting mechanism 04 by the wire drawing mechanism 05, drawing the textile needle by starting the wire drawing mechanism 05, and cooling it by starting the cooling mechanism 06, preventing subsequent deformation of the textile needle, and improving the practicality of the equipment.

[0025] As Figure 2 shown, the conveying mechanism 01 includes two groups of speed reducers 11, a plurality of transmission wheels 12, two groups of first motors 13, a workbench 14 and two groups of first electric cylinders 15, the plurality of transmission wheels 12 are respectively installed on the output ends of the two groups of speed reducers 11, the output ends of the two groups of first motors 13 are respectively installed on the input ends of the two groups of speed reducers 11, the top end of the lower speed reducer 11 is installed on the top end of the workbench 14, the top end of the workbench 14 is provided with a plurality of openings, and a maintenance opening is arranged on the front wall of the workbench 14, the top end of the upper speed reducer 11 is installed at the bottom end of the two groups of first electric cylinders 15, and the top ends of the two groups of first electric cylinders 15 are installed on the heating mechanism 02.

[0026] By respectively extending the two groups of first electric cylinders 15, the upper speed reducer 11 is lowered, and the plurality of transmission wheels 12 are fixed to the textile needle material, the plurality of first motors 13 are respectively rotated by respectively starting the two groups of first motors 13 through the two groups of speed reducers 11, the textile needle material is conveyed, the workbench 14 supports the lower speed reducer 11, and the practicality of the equipment is improved. Embodiment 2

[0027] As Figures 3 to 5 shown, based on example 1, further comprising heating mechanism 02, lubricating mechanism 03 and limiting mechanism 04, heating mechanism 02 includes first support 21, second cylinder 22 and infrared heating instrument 23, the top end of second cylinder 22 is installed on first support 21, the top end of infrared heating instrument 23 is installed on the bottom end of second cylinder 22; lubricating mechanism 03 includes liquid supply barrel 31, oil pump 32, hose 33, oil discharge pipe 34, support rod 35 and collection box 36, the output end of liquid supply barrel 31 is connected with the input end of oil pump 32, the output end of oil pump 32 is connected with the input end of hose 33, the output end of hose 33 is connected with the input end of oil discharge pipe 34, the top end of oil discharge pipe 34 is installed on the bottom end of support rod 35, the top end of support rod 35 is installed on 21, collection box 36 is located below oil discharge pipe 34; limiting mechanism 04 includes two groups of bearings 41, rotating shaft 42, second motor 43, multiple connecting rods 44 and multiple limiting molds 45, the outer rings of two groups of workbenches 14 are respectively installed on workbenches 14, both ends of rotating shaft 42 are respectively installed on the inner rings of two groups of bearings 41, the right end of rotating shaft 42 is connected with the output end of second motor 43, one side end of connecting rod 44 is respectively installed on rotating shaft 42, multiple limiting molds 45 are respectively installed on the other side end of multiple connecting rods 44;

[0028] First support 21 supports second cylinder 22, makes infrared heating instrument 23 descend by extending second cylinder 22, heats textile needle material by starting infrared heating instrument 23, makes lubricant in liquid supply barrel 31 discharge to textile needle material through hose 33 to oil discharge pipe 34 by starting oil pump 32, support rod 35 supports oil discharge pipe 34, collection box 36 collects dropped lubricant, two groups of bearings 41 respectively support rotating shaft 42, make rotating shaft 42 rotate through two groups of bearings 41 by starting second motor 43, respectively make multiple connecting rods 44 rotate, multiple limiting molds 45 respectively limit textile needle material, improve the practicability of the equipment. Example 3

[0029] As Figure 6 and Figure 7As shown, on the basis of embodiment 1 further includes drawing mechanism 05 and cooling mechanism 06, drawing mechanism 05 includes two sets of chute 51, two sets of lead screw 52, two sets of third motor 53, two sets of first mounting plate 54, two sets of guide rod 55, two sets of third electric cylinder 56, two sets of second mounting plate 57 and two sets of electric clamp 58, two sets of lead screw 52 are located in two sets of chute 51 respectively, two sets of lead screw 52 are respectively provided with sliding block, and the outer part of the sliding block is respectively slidably installed on the inner wall of two sets of chute 51, the right end of two sets of lead screw 52 is respectively installed on the output end of two sets of third motor 53, the outer end of two sets of guide rod 55 is respectively installed on the sliding block, the outer end of two sets of third electric cylinder 56 is respectively slidably installed on two sets of guide rod 55, the fixed end of two sets of second mounting plate 57 is respectively installed on the inner end of two sets of guide rod 55, the inner end of two sets of guide rod 55 and the moving end of two sets of third electric cylinder 56 are respectively installed on one end of two sets of second mounting plate 57, two sets of electric clamp 58 are respectively installed on the other end of two sets of second mounting plate 57; cooling mechanism 06 includes fan 61 and second support 62, second support 62 is installed at the top end of fan 61;

[0030] Two sets of first mounting plate 54 support two sets of guide rod 55 and two sets of third electric cylinder 56 respectively, two sets of third electric cylinder 56 are respectively extended to make two sets of electric clamp 58 clamp the drawn textile needle through two sets of second mounting plate 57 respectively, two sets of guide rod 55 guide two sets of third electric cylinder 56 respectively, two sets of lead screw 52 are rotated by starting two sets of third motor 53 respectively, the sliding block on two sets of lead screw 52 is guided through two sets of chute 51 respectively, the sliding block is moved respectively, the textile needle is drawn respectively, fan 61 supports second support 62, the drawn textile needle is cooled by starting second support 62, improve the practicability of the equipment.

[0031] As Figures 1 to 7As shown, the textile needle wire drawing forming machine of the utility model, in working, first through respectively stretching two groups of first electric jar 15 make upper speed reducer 11 drop, make multiple transmission wheel 12 to textile needle material fixed, through respectively starting two groups of first motor 13 respectively through two groups of speed reducer 11 transmission respectively make multiple first motor 13 rotation, textile needle material is conveyed, worktable 14 supports lower speed reducer 11, then first support 21 supports second electric jar 22, through stretching second electric jar 22 makes infrared heating instrument 23 drop, through starting infrared heating instrument 23 to textile needle material is heated, then through starting oil pump 32 makes the lubricant in liquid supply barrel 31 through hose 33 to oil drain pipe 34 and is discharged to textile needle material, support rod 35 supports oil drain pipe 34, collection box 36 collects the lubricant that falls, then two groups of bearings 41 respectively support rotating shaft 42, through starting second motor 43 through two groups of bearings 41 makes rotating shaft 42 rotate, respectively makes multiple connecting rods 44 rotate, multiple limit moulds 45 respectively limit textile needle material, then two groups of first mounting plate 54 respectively support two groups of guide rod 55 and two groups of third electric jar 56, through respectively stretching two groups of third electric jar 56 respectively through two groups of second mounting plate 57 respectively makes two groups of electric clamps 58 respectively to the textile needle after wire drawing is clamped, two groups of guide rod 55 respectively guide two groups of third electric jar 56, through respectively starting two groups of third motor 53 respectively makes two groups of lead screws 52 rotate, through two groups of sliding grooves 51 respectively guide the sliding block on two groups of lead screws 52, respectively make the sliding block move, respectively to textile needle wire drawing, finally fan 61 supports second support 62, through starting second support 62 to the textile needle after wire drawing is cooled, improve the practicability of equipment.

[0032] The speed reducer 11, the first motor 13, the infrared heating instrument 23, the oil pump 32, the second motor 43, the third motor 53 and the fan 61 of the utility model are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the creative labor of the technical personnel in the field.

[0033] The main functions realized by the utility model are as follows: the textile needle material is heated by starting the heating mechanism 02, the ductility of the textile needle material is increased, the lubricating coating is coated on the heated part of the textile needle by starting the lubricating mechanism 03, the textile needle passing through the limiting mechanism 04 is clamped by the wire drawing mechanism 05, the textile needle is wire drawn by starting the wire drawing mechanism 05, and the practicability of the equipment is improved.

[0034] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A textile needle drawing and forming machine, comprising a conveying mechanism (01); characterized in that, It also includes a heating mechanism (02), a lubrication mechanism (03), a limiting mechanism (04), a wire drawing mechanism (05), and a cooling mechanism (06). The heating mechanism (02) is installed on the conveying mechanism (01), the lubrication mechanism (03) is installed on the heating mechanism (02), the limiting mechanism (04) is installed inside the heating mechanism (02), the wire drawing mechanism (05) is installed at the top of the conveying mechanism (01) and is located to the right of the heating mechanism (02), and the cooling mechanism (06) is installed inside the conveying mechanism (01) and is located to the right of the limiting mechanism (04).

2. The textile needle drawing and forming machine as described in claim 1, characterized in that, The transmission mechanism (01) includes two sets of reducers (11), multiple transmission wheels (12), two sets of first motors (13), a worktable (14), and two sets of first electric cylinders (15). The multiple transmission wheels (12) are respectively installed on the output ends of the two sets of reducers (11), and the output ends of the two sets of first motors (13) are respectively installed on the input ends of the two sets of reducers (11). The top of the lower reducer (11) is installed on the top of the worktable (14). The top of the worktable (14) is provided with multiple openings. The front wall of the worktable (14) is provided with an inspection port. The top of the upper reducer (11) is installed on the bottom of the two sets of first electric cylinders (15), and the top of the two sets of first electric cylinders (15) is installed on the heating mechanism (02).

3. The textile needle drawing and forming machine as described in claim 1, characterized in that, The heating mechanism (02) includes a first bracket (21), a second electric cylinder (22) and an infrared heater (23). The top of the second electric cylinder (22) is mounted on the first bracket (21), and the top of the infrared heater (23) is mounted on the bottom of the second electric cylinder (22).

4. The textile needle drawing and forming machine as described in claim 1, characterized in that, The lubrication mechanism (03) includes a liquid supply tank (31), an oil pump (32), a hose (33), an oil drain pipe (34), a support rod (35), and a collection box (36). The output end of the liquid supply tank (31) is connected to the input end of the oil pump (32), the output end of the oil pump (32) is connected to the input end of the hose (33), the output end of the hose (33) is connected to the input end of the oil drain pipe (34), the top end of the oil drain pipe (34) is installed at the bottom end of the support rod (35), the top end of the support rod (35) is installed on 21, and the collection box (36) is located below the oil drain pipe (34).

5. A textile needle drawing and forming machine as described in claim 2, characterized in that, The limiting mechanism (04) includes two sets of bearings (41), a rotating shaft (42), a second motor (43), multiple connecting rods (44) and multiple limiting molds (45). The outer rings of the two sets of worktables (14) are respectively installed on the worktables (14). The two ends of the rotating shaft (42) are respectively installed on the inner rings of the two sets of bearings (41). The right end of the rotating shaft (42) is connected to the output end of the second motor (43). One side of the connecting rods (44) is respectively installed on the rotating shaft (42). The multiple limiting molds (45) are respectively installed on the other side of the multiple connecting rods (44).

6. A textile needle drawing and forming machine as described in claim 1, characterized in that, The wire drawing mechanism (05) includes two sets of slides (51), two sets of lead screws (52), two sets of third motors (53), two sets of first mounting plates (54), two sets of guide rods (55), two sets of third electric cylinders (56), two sets of second mounting plates (57), and two sets of electric clamps (58). The two sets of lead screws (52) are located in the two sets of slides (51), and each set of lead screws (52) is equipped with a slider. The sliders are slidably mounted on the inner walls of the two sets of slides (51). The right ends of the two sets of lead screws (52) are respectively mounted on... On the output ends of the two sets of third motors (53), the outer ends of the two sets of guide rods (55) are respectively mounted on the sliders, the outer ends of the two sets of third electric cylinders (56) are respectively slidably mounted on the two sets of guide rods (55), the fixed ends of the two sets of second mounting plates (57) are respectively mounted on the inner ends of the two sets of guide rods (55), the inner ends of the two sets of guide rods (55) and the moving ends of the two sets of third electric cylinders (56) are respectively mounted on one end of the two sets of second mounting plates (57), and the two sets of electric clamps (58) are respectively mounted on the other end of the two sets of second mounting plates (57).

7. A textile needle drawing and forming machine as described in claim 1, characterized in that, The cooling mechanism (06) includes a fan (61) and a second bracket (62), the second bracket (62) being mounted on top of the fan (61).

Citation Information

Patent Citations

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