A strip winding device for the processing link of home textile fiber products

By designing a strip winding device including a collector, a rotary piece, a rear plate and an impact rod, the problems of inconvenient collection of dust and cotton wool and poor heat dissipation of the motor in the traditional winding mechanism are solved, and convenient collection of dust and cotton wool and rapid heat dissipation of the motor are achieved.

CN119038257BActive Publication Date: 2025-06-10JIANGSU JIERUIYA TEXTILE CO LTD
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Patent Information

Application Number
CN202411549246.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-06-10
Estimated Expiration
2044-11-01

AI Technical Summary

Technical Problem

The traditional strip winding mechanism is easily contaminated with dust during the winding process, making it inconvenient to collect dust and cotton wool, and the motor heat dissipation is poor.

Method used

A strip winding device including a collector, a rotary member, a rear plate and an impact rod is designed. The collector is used to conveniently collect cotton wool. The rotating part drives the push plate to rotate to accelerate the motor heat dissipation. The rear plate strengthens the dust and cotton wool shock through the impact rod and impact head.

Benefits of technology

It realizes convenient collection of dust and wool and rapid heat dissipation of the motor, improving the efficiency and safety of the winding process.

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Abstract

The present invention provides a strip winding device in the processing link of home textile fiber products, which relates to the technical field of strip winding, and includes: a rear plate, the rear plate is located behind the main body, an auxiliary part is provided at the bottom of the rear plate, a ring of impact heads is provided at the top of the impact rod, the top of the impact head is of a cylindrical structure, the bottom of the impact head is of a cylindrical structure, the impact head is made of spring steel, and a positioning plate is respectively provided at both ends of the bottom of the impact rod. The top part can be continuously pushed, so that the whole rear plate can move upward, and the impact rod can vibrate inside the moving cavity, so that the contact head can continuously knock the bottom of the strip, and the dust adhered to the strip can be continuously shaken off. At the same time as the dust is shaken off, the cotton wool is also vibrated and separated from the strip, and the air flow can drive the cotton wool through the outer groove, solving the problem that the strip winding mechanism lacks a structure for knocking with the winding force to make the dust fall off. When the strip is wound, cotton wool is easily generated, and it is not convenient to collect the cotton wool.
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Description

Technical Field

[0001] The present invention relates to the technical field of strip winding, and particularly relates to a strip winding device in the processing link of home textile fiber products. Background Art

[0002] When processing and producing home textile fiber products, it is usually necessary to wind textile strips so that the textile fiber products can be conveniently processed. At this time, a strip winding mechanism is required;

[0003] However, for the current traditional strip winding mechanism, when the strip is wound, its exterior is prone to being contaminated with dust, and it is not convenient to collect the dust. There is a lack of a structure that utilizes the winding force to knock and make the dust fall off. When the strip is wound, cotton fluffs are easily generated, and it is not convenient to collect the cotton fluffs. There is a lack of a collection structure. After the motor is continuously used, it is prone to emitting a relatively high amount of heat, and there is a lack of a structure that utilizes the winding force to accelerate the heat dissipation of the motor. Summary of the Invention

[0004] In view of this, the present invention provides a strip winding device in the processing link of home textile fiber products, which has a collecting member. The collecting member can be conveniently installed on both sides of the top of the main body, so that when the cotton fluffs are discharged outwards, the cotton fluffs can enter the interior of the collecting member for convenient collection.

[0005] The present invention provides a strip winding device in the processing link of home textile fiber products, specifically including: a main body; the main body is of a rectangular structure, and a motor is provided on the side of the top of the main body. A collecting member is respectively installed on both sides of the top of the main body. The collecting member is of a cylindrical structure, and an opening is provided at the top of the collecting member. Two grooves are respectively provided at both ends of the inner side of the collecting member, and the outer side of the top of the main body is embedded in the interior of the grooves. The interior of the collecting member is of an annular structure, and the rear end of the collecting member is sealed by a filter cotton board; a rotating member, the rotating member is of a cylindrical structure, the rotating member is installed on the top of the main body, the side of the rotating member is clamped with the motor, two side members are respectively provided on both sides of the rotating member, an annular groove is provided on the outer side of each side member, and a ring of push plates arranged in a ring is provided in the annular groove. The push plates are inclined; a rear plate, the rear plate is of an L-shaped plate structure, the rear plate is located behind the main body, an auxiliary member is provided at the bottom of the rear plate, a contact head is provided at the front end of the auxiliary member, a moving cavity is provided inside the contact head, an impact rod is installed in the moving cavity, the impact rod is of a cylindrical structure, a ring of impact heads is provided at the top of the impact rod, the top of the impact head is of a cylindrical structure, the bottom of the impact head is of a cylindrical structure, the impact head is made of spring steel, and two positioning plates are respectively provided at both ends of the bottom of the impact rod. The positioning plates are of a rectangular structure.

[0006] Optionally, a collection bin is provided at the bottom of the main body. At the corner positions at the top of the main body, there is a card slot respectively. The card slot is a rectangular structure. Above the rear end of the main body, there is a rear part. The rear part is a rectangular structure. Inside the rear part, there is a rectangular groove. The middle position of the rear plate is embedded inside the rectangular groove; at the inner edge position of each collection part, there is a blocking part respectively. The blocking part is an annular structure. The cross-section of the blocking part is a wedge-shaped structure. Inside each blocking part, there is a cavity. The cavity is a T-shaped shaft structure. A motor is inserted inside the cavity on the right side; on both sides of each collection part, there is a mounting part respectively. The mounting part is an L-shaped structure. Inside the mounting part, there is a T-shaped groove. At the top of the mounting part, there is a round hole. A clamping block is installed inside the T-shaped groove. The clamping block is an L-shaped structure. The bottom of the clamping block is inserted inside the card slot. At the top of each clamping block, there is a guide rod. A spring is sleeved on the outer side of the bottom of the guide rod. The top of the guide rod is inserted inside the round hole.

[0007] Optionally, the side part is a circular plate-like structure. The outer side of the side part is inclined. On the outer side of the rotating part and the inner side of the side part, there are annularly arranged auxiliary grooves. The auxiliary grooves are U-shaped structures; on the outer side of each side part, there are annularly arranged outer grooves. The outer grooves are inclined. The inner end of the outer groove is a rectangular structure. On the inner side of each side part, there are three annularly arranged moving grooves. The moving grooves are T-shaped structures; inside each moving groove, there is a guide rod. The guide rod is a cylindrical structure. A spring is sleeved on the outer side of the guide rod. The side end of a support plate is sleeved on the outer side of the guide rod. The support plate is a long strip-like structure. The outer end of the support plate is a T-shaped structure. There is a round hole inside the outer end of the support plate. The outer end of the support plate is embedded inside the moving groove.

[0008] Optionally, in front of the top of the rear plate, there is a top part. The top of the top part is an H-shaped plate-like structure. The bottom of the top part is a cylindrical structure. The bottom of the top part is a rotatable structure. The bottom of the top part contacts the top of the rotating part. The auxiliary part is a rectangular structure. The front end of the auxiliary part is an inclined structure; inside the auxiliary part, there are uniformly arranged auxiliary rods. The auxiliary rods are wedge-shaped structures. The contact head is a cylindrical structure; the moving cavity is composed of a large semi-circular groove at the top and a small semi-circular groove at the bottom. At both ends of the bottom of the moving cavity, there is a rectangular groove respectively. A positioning plate is embedded inside the rectangular groove. An impact plate is installed inside the top of the moving cavity. The impact plate is an arc-shaped plate-like structure. The impact plate is made of spring steel. Four square plates are provided at the outer end of the bottom of the impact plate.

[0009] Advantageous effects

[0010] According to the winding mechanism of each embodiment of the present invention, compared with the traditional winding mechanism, it is provided with impact rods. When the device is in use, when the rotating part rotates, it can control the up and down movement of the rear plate, so that the contact head can continuously knock on the strip material, enabling the impact rods and the impact heads to enhance the knocking effect, so that dust can fall off and be collected.

[0011] In addition, by setting up the pushing plate, when the device is in use, the strip material can be initially wound around the outer sides of the rotating member and the supporting plate, and then the motor is controlled to operate so that the rotating member can rotate, and the strip material can be pulled and wound. When winding, the pushing plate can be driven to rotate together. Since the pushing plate is inclined, the air flow can be pushed to flow outwards, enabling the air flow to pass through the inner cavity, and the motor inside the inner cavity can have its heat taken away, thereby accelerating the heat dissipation of the main body;

[0012] In addition, by setting up the collecting member, when the rotating member is operating, the air flow can be controlled to flow, enabling the air flow to flow outwards through the outer groove with an inclined structure, and the air flow and cotton wool can be driven to be extracted outwards together, so that the cotton wool can enter the inside of the collecting member. Since the outer end of the collecting member is sealed by a filter panel, the air flow can be discharged conveniently, while the cotton wool can be conveniently collected inside the collecting member. If there is no cotton wool on the surface of the strip material, the clamping block can be directly pulled upwards, so that the bottom of the clamping block can be disengaged from the inside of the clamping groove, and the collecting member can be conveniently released from fixation and removed conveniently, making the collecting member more convenient to use;

[0013] In addition, by setting up the impact rod, when the device is in use, since the three supporting plates are on the outer side of the rotating member, the wound strip material can be collected in a triangular shape. Since the bottom end of the top member contacts the top end of the strip material, the top member can be continuously pushed, causing the entire rear plate to move upwards, enabling the impact rod to vibrate inside the moving cavity, and the contact head to continuously knock on the bottom of the strip material, so that the dust adhered to the strip material can be continuously shaken off. At the same time as the dust is shaken off, the cotton wool is also vibrated and detached from the strip material, and the air flow can drive the cotton wool to pass through the outer groove. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0015] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0016] In the drawings:

[0017] Figure 1 shows a schematic diagram of the three-dimensional structure of the winding mechanism according to an embodiment of the present invention;

[0018] Figure 2 shows a schematic diagram of the bottom view structure of the winding mechanism according to an embodiment of the present invention;

[0019] Figure 3 shows a schematic diagram of the exploded three-dimensional structure of the winding mechanism according to an embodiment of the present invention;

[0020] Figure 4Shows a schematic diagram of the exploded bottom view structure of the winding mechanism according to an embodiment of the present invention;

[0021] Figure 5 Shows a schematic diagram of the exploded three-dimensional structure of the main body of the winding mechanism according to an embodiment of the present invention;

[0022] Figure 6 Shows a schematic diagram of the exploded bottom view structure of the main body of the winding mechanism according to an embodiment of the present invention;

[0023] Figure 7 Shows a schematic diagram of the exploded three-dimensional structure of the rotating part of the winding mechanism according to an embodiment of the present invention;

[0024] Figure 8 Shows a schematic diagram of the decomposition and partial enlarged structure of the rear plate of the winding mechanism according to an embodiment of the present invention.

[0025] List of reference numerals

[0026] 1. Main body; 101. Collection bin; 102. Card slot; 103. Rear part; 104. Collection part; 105. Stop piece; 106. Inner cavity; 107. Mounting piece; 108. Clamping block;

[0027] 2. Rotating part; 201. Side part; 202. Auxiliary groove; 203. Outer groove; 204. Push plate; 205. Moving groove; 206. Guide rod; 207. Support plate;

[0028] 3. Rear plate; 301. Top piece; 302. Auxiliary piece; 303. Auxiliary rod; 304. Contact head; 305. Moving cavity; 306. Impact plate; 307. Impact rod; 308. Positioning plate. Detailed implementation manners

[0029] In order to make the objectives, solutions, and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.

[0030] Embodiment: Please refer to Figures 1 to 8 :

[0031] The present invention provides a strip winding device for the processing link of home textile fiber products, including: a main body 1; the main body 1 is of a rectangular structure, and a motor is provided on the top side of the main body 1 so that the motor can be installed on the top of the main body 1 to drive the rotating member 2. On both sides of the top of the main body 1, a collecting member 104 is respectively installed. The collecting member 104 is of a cylindrical structure, so that the discharged fluffs can be conveniently collected. An opening is provided at the top of the collecting member 104, so that the cotton wadding can be conveniently cleaned. At both ends of the inner side of the collecting member 104, a groove is respectively provided, and the outer side of the top of the main body 1 is embedded in the groove, so that the collecting member 104 can be conveniently connected to the main body 1. The inside of the collecting member 104 is of an annular structure, and the rear end of the collecting member 104 is sealed by a filter cotton board, so that the air flow can be discharged through it, while the cotton wadding will be blocked and collected; a rotating member 2, the rotating member 2 is of a cylindrical structure, the rotating member 2 is installed on the top of the main body 1, and the side of the rotating member 2 is clamped with the motor and can be driven by the rotating member 2 to rotate. On both sides of the rotating member 2, a side member 201 is respectively provided. On the outer side of each side member 201, an annular groove is provided, and a ring of push plates 204 is arranged in the annular groove. The push plates 204 are inclined, so that when the rotating member 2 drives the push plates 204 to rotate together, the push plates 204 can push the air flow to flow outwards, so that the air flow can pass through the outside of the motor, thereby accelerating the heat dissipation of the motor; a rear plate 3, the rear plate 3 is of an L-shaped plate structure, the rear plate 3 is behind the main body 1 and can be displaced in a guiding manner behind the main body 1. An auxiliary member 302 is provided at the bottom of the rear plate 3. A contact head 304 is provided at the front end of the auxiliary member 302. A moving cavity 305 is provided inside the contact head 304. An impact rod 307 is installed inside the moving cavity 305. The impact rod 307 is of a cylindrical structure. An annular arrangement of impact heads is provided at the top of the impact rod 307, so that the impact rod 307 and the impact heads can be displaced inside the moving cavity 305, so that the impact heads can continuously impact the contact head 304 to generate vibration. The top of the impact head is of a cylindrical structure, the bottom of the impact head is of a cylindrical structure, and the impact head is made of spring steel material to enhance the vibration feeling. At both ends of the bottom of the impact rod 307, a positioning plate 308 is respectively provided. The positioning plate 308 is of a rectangular structure and is used to be embedded in the rectangular groove at the bottom of the moving cavity 305, so that the impact rod 307 can be displaced in a guiding manner.

[0032] Reference Figure 5 and Figure 6, a collection bin 101 is provided at the bottom of the main body 1. When dust falls, it can pass through the interior of the auxiliary part 302, enabling the dust to enter the interior of the collection bin 101 for convenient collection. At the top corner positions of the main body 1, a card slot 102 is provided respectively. The card slot 102 is of rectangular structure. After the collection part 104 is installed, the bottom end of the card block 108 can be inserted into the interior of the card slot 102, enabling the collection part 104 to be stably and conveniently installed and used. Above the rear end of the main body 1, a rear part 103 is provided. The rear part 103 is of rectangular structure. An inner rectangular groove is provided inside the rear part 103, and the middle position of the rear plate 3 is embedded in the inner rectangular groove, enabling the rear plate 3 to be displaced under the guidance of the rear part 103; at the inner edge position of each collection part 104, a baffle 105 is provided respectively. The baffle 105 is of circular ring structure, and the cross-section of the baffle 105 is of wedge structure. When cotton wool enters, it can be controlled by the baffle 105 to flow in. After the cotton wool enters, it will be assisted by the baffle 105 to be blocked, preventing the cotton wool from breaking away and discharging. An inner cavity 106 is provided inside each baffle 105. The inner cavity 106 is of T-shaped shaft structure, enabling air flow to circulate inside it. A motor is inserted into the inner cavity 106 on the right side, enabling the motor to be embedded and used inside it; on both sides of each collection part 104, a mounting part 107 is provided respectively. The mounting part 107 is of L-shaped structure. An inner T-shaped groove is provided inside the mounting part 107 for the card block 108 to displace inside it. A round hole is provided at the top of the mounting part 107 for the guide rod to displace inside it. The card block 108 is installed inside the T-shaped groove. The card block 108 is of L-shaped structure. The bottom of the card block 108 is inserted into the interior of the card slot 102, enabling the collection part 104 to be stably fixed and used. At the top of each card block 108, a guide rod is provided. A spring is sleeved outside the bottom of the guide rod, and the top of the guide rod is inserted into the round hole, used to enable the card block 108 to displace in a guided manner.

[0033] Reference Figure 7, the side member 201 is a circular plate-like structure. The outer side of the side member 201 is inclined, which can guide the strip material to be wound. The outer side of the rotating member 2 and the inner side of the side member 201 are provided with annularly arranged auxiliary grooves 202. The auxiliary grooves 202 are U-shaped structures, so that after the strip material is wound, air flow can circulate inside the strip material to prevent the strip material from getting damp; the outer side of each side member 201 is provided with annularly arranged outer grooves 203. The outer grooves 203 are inclined, and the inner end of the outer groove 203 is a rectangular structure. When the side member 201 rotates, the outer groove 203 can extract the air flow and discharge it outward, so that the air flow can drive the cotton wool to be discharged, and the cotton wool can be conveniently collected. The inner side of each side member 201 is provided with three annularly arranged moving grooves 205. The moving grooves 205 are T-shaped structures, which are used to embed and install the outer end of the support plate 207, so that the support plate 207 can be guided to displace; each moving groove 205 is internally provided with a guide rod 206. The guide rod 206 is a cylindrical structure, which is used to be embedded in the round hole of the support plate 207. A spring is sleeved on the outer side of the guide rod 206, which is used to continuously push the support plate 207 to displace outward. After the strip material is wound on the outer side of the support plate 207, the strip material can be supported and clamped. The side end of the support plate 207 is sleeved on the outer side of the guide rod 206. The support plate 207 is a long strip-like structure. The outer end of the support plate 207 is a T-shaped structure. The outer end of the support plate 207 is internally provided with a round hole. The outer end of the support plate 207 is embedded in the moving groove 205 and can be displaced outward under force in the moving groove 205, so that the strip material can be supported and the winding tightness effect can be improved.

[0034] Reference Figure 8, a top piece 301 is provided in front of the top end of the rear plate 3. The top end of the top piece 301 is in an H-shaped plate structure, which is used to support the bottom end of the top piece 301. The bottom of the top piece 301 is in a cylindrical structure, and the bottom of the top piece 301 is a rotatable structure, which is used to contact the top end of the strip. When the strip and the support plate 207 rotate together, the top piece 301 can be continuously pushed upward, so that the contact head 304 can continuously strike the strip. The bottom of the top piece 301 contacts the top end of the rotating piece 2. The auxiliary piece 302 is in a rectangular structure, and the front end of the auxiliary piece 302 is in an inclined structure, which can control the guiding and flowing of dust; a uniformly arranged auxiliary rod 303 is provided inside the auxiliary piece 302. The auxiliary rod 303 is in a wedge-shaped structure, so that dust can pass through the auxiliary rod 303 and enter the inside of the collection bin 101. The contact head 304 is in a cylindrical structure, which can strike the strip and prevent the strip from being scratched; the moving cavity 305 is composed of a large semi-circular groove at the top and a small semi-circular groove at the bottom, so that the impact plate 306 can move inside the large semi-circular groove at the top. A rectangular groove is provided at each end of the bottom of the moving cavity 305, and a positioning plate 308 is embedded in the rectangular groove, so that the positioning plate 308 can drive the impact rod 307 to guide and displace. The impact plate 306 is installed inside the top end of the moving cavity 305. The impact plate 306 is in an arc-shaped plate structure, which can improve the vibration effect. The impact plate 306 is made of spring steel. Four square plates are provided at the outer end of the bottom of the impact plate 306, so that the impact plate 306 can guide and displace.

[0035] Specific usage method and function of this embodiment: In the present invention, when the device needs to be used, the rotating member 2 can be controlled to be installed first so that the rotating member 2 can be clamped with the motor. Then, the collecting member 104 is controlled to be installed. First, the clamping block 108 is pulled up, and then the collecting member 104 is controlled to be on both sides of the main body 1, so that both sides of the top of the main body 1 can be embedded in the grooves. Then, the clamping block 108 is released, so that the spring outside the guide rod can stretch, and the bottom of the clamping block 108 can be inserted into the internal of the clamping groove 102, so that the two collecting members 104 can be firmly installed and connected. Then, the strip to be wound is controlled to be connected with the rotating member 2, so that the strip can be wound around the outside of the rotating member 2 and the support plate 207, and the bottom of the top member 301 can be in contact with the top end of the strip. Then, the motor switch is turned on, so that the motor can control the rotation of the rotating member 2. When the rotating member 2 rotates, the strip can be tightened, so that the support plate 207 can retract inward, thereby compressing the spring, and the strip can be gradually wound up. During the winding process, the pushing plate 204 is driven by the rotating member 2 to rotate together, so that the airflow can be controlled to flow outwards, so that the airflow can pass through the outside of the motor, and the motor can be quickly cooled. Since the three support plates 207 support the winding of the strip, the wound strip can be triangular, so that the support plate 207 can support inside the strip, so that the strip can be tightened. At the same time, the support plate 207 can support the top member 301, so that the rear plate 3 can be driven to rise continuously. After the rear plate 3 rises, the impact rod 307 can impact the impact plate 306 inside the moving cavity 305, so that the contact head 304 can be vibrated, and the contact head 304 can continuously vibrate and knock the strip, so that the dust and cotton wool contaminated on the outside of the strip can be vibrated off. The dust and cotton wool at the bottom can be controlled to be collected into the auxiliary member 302, and then the dust and cotton wool can enter the collection bin 101 through the auxiliary rod 303 for collection. The cotton wool shaken off from the strip will float, so that when the outer groove 203 rotates, it can extract the airflow, and the airflow can drive the cotton wool to flow outwards, so that the cotton wool can enter the collecting member 104 for convenient collection, reducing the diffusion of cotton wool, and the strip can be conveniently wound and used.

[0036] Finally, it should be noted that when the present invention describes the positions of various components and their cooperation relationships, etc., usually one / a pair of components are taken as examples. However, those skilled in the art should understand that such positions, cooperation relationships, etc. are equally applicable to other components / other pairs of components.

[0037] The above is only an exemplary embodiment of the present invention, rather than being used to limit the protection scope of the present invention. The protection scope of the present invention is determined by the appended claims.

Claims

1. A strip winding device for home textile fiber product processing, characterized in that: include: A main body (1); a motor is provided on the side of the top end of the main body (1); a collecting member (104) is installed on both sides of the top end of the main body (1); an opening is provided at the top end of the collecting member (104); a groove is provided at each end of the inner side of the collecting member (104); the inside of the groove is embedded in the outer side of the top end of the main body (1); the inside of the collecting member (104) is a circular ring structure; the rear end of the collecting member (104) is sealed by a filter cotton plate; a rotating member (2); the rotating member (2) is installed at the top end of the main body (1); the rotating member (2) ) is engaged with the motor, a side piece (201) is provided on each side of the rotating piece (2), an annular groove is provided on the outer side of each side piece (201), a push plate (204) arranged in an annular shape is provided inside the annular groove, and the push plate (204) is inclined; an outer side of each side piece (201) is provided with an annular outer groove (203), the outer groove (203) is inclined, and the inner end of the outer groove (203) is a rectangular structure, and three annular movable grooves (205) are provided on the inner side of each side piece (201); A guide rod (206) is provided inside each movable groove (205), a spring is sleeved on the outer side of the guide rod (206), the outer side of the guide rod (206) is sleeved on the side end of the support plate (207), the support plate (207) is a long strip structure, the outer end of the support plate (207) is a T-shaped structure, a circular hole is provided inside the outer end of the support plate (207), and the outer end of the support plate (207) is embedded in the movable groove (205); A rear plate (3), wherein the rear plate (3) is located behind the main body (1), an auxiliary part (302) is provided at the bottom of the rear plate (3), a contact head (304) is provided at the front end of the auxiliary part (302), a movable cavity (305) is provided inside the contact head (304), an impact rod (307) is installed inside the movable cavity (305), a ring-shaped impact head is provided at the top end of the impact rod (307), the top end of the impact head is a cylindrical structure, the bottom end of the impact head is a cylindrical structure, the impact head is made of spring steel, and a positioning plate (308) is provided at each end of the bottom of the impact rod (307).

2. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: The bottom of the main body (1) is provided with a collecting bin (101), the top corners of the main body (1) are respectively provided with a slot (102), a rear piece (103) is provided above the rear end of the main body (1), a rectangular slot is provided inside the rear piece (103), and the middle position of the rear plate (3) is embedded inside the rectangular slot.

3. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: A stopper (105) is provided at the inner edge of each collecting member (104), the cross section of the stopper (105) being a wedge-shaped structure, an inner cavity (106) is provided inside each stopper (105), and a motor is inserted into the inner cavity (106) on the right side.

4. The strip winding device for home textile fiber product processing as claimed in claim 2, characterized in that: A mounting piece (107) is provided on both sides of each collecting piece (104), a T-shaped slot is provided inside the mounting piece (107), a round hole is provided at the top end of the mounting piece (107), a clamping block (108) is installed inside the T-shaped slot, the bottom of the clamping block (108) is inserted into the inside of the clamping slot (102), a guide rod is provided at the top end of each clamping block (108), a spring is sleeved on the outer side of the bottom of the guide rod, and the top end of the guide rod is inserted into the inside of the round hole.

5. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: The outer side of the side piece (201) is inclined, and the outer side of the rotating piece (2) and the inner side of the side piece (201) are provided with annularly arranged auxiliary grooves (202), and the auxiliary grooves (202) are U-shaped structures.

6. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: A top piece (301) is provided in front of the top of the rear plate (3); the top of the top piece (301) is an H-shaped plate structure; the bottom of the top piece (301) is a cylindrical structure; the bottom of the top piece (301) is a rotatable structure; the bottom of the top piece (301) contacts the top of the rotating piece (2); and the front end of the auxiliary piece (302) is an inclined structure.

7. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: The auxiliary component (302) is provided with evenly arranged auxiliary rods (303) inside, the auxiliary rods (303) are wedge-shaped structures, and the contact head (304) is a cylindrical structure.

8. The strip winding device for home textile fiber product processing as claimed in claim 1, characterized in that: The movable cavity (305) is composed of a large semicircular groove at the top and a small semicircular groove at the bottom. A rectangular groove is provided at each end of the bottom of the movable cavity (305). A positioning plate (308) is embedded in the rectangular groove. An impact plate (306) is installed inside the top of the movable cavity (305). The impact plate (306) is made of spring steel. Four square plates are provided at the outer end of the bottom of the impact plate (306).

Citation Information

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