A processing platform for cotton yarn pads
The design of the automated processing platform has solved the problems of low efficiency and unstable quality in cotton yarn pad processing, achieving efficient and stable automatic cutting and edge sealing, thereby improving product quality and enterprise competitiveness.
Patent Information
- Application Number
- CN202511468118.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2045-10-15
AI Technical Summary
Traditional cotton yarn pad processing suffers from low efficiency due to manual operation, unstable product quality, weak edge sealing, and difficulty in ensuring consistency, resulting in insufficient production capacity and large quality differences, which increases enterprise costs and the difficulty of quality inspection.
Design an automated processing platform driven by an integrated electrical control box, including an edge banding assembly, a pressing rack, a feeding assembly, and a rolling assembly. Automatic cutting, edge banding, and collection are achieved through a mechanical sewing mechanism and infrared sensors, ensuring the stability and consistency of the processing.
It improved processing efficiency, reduced labor costs, ensured the stability and consistency of product quality, reduced the labor intensity and fatigue of workers, and enhanced the competitiveness of enterprises.
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Figure CN120925284B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of cotton gauze pads, in particular to a processing platform for cotton gauze pads. BACKGROUND
[0002] In the fields of medical treatment, health care and the like, cotton gauze pads are widely used. In the medical treatment field, cotton gauze pads, as important basic consumables, are often used in wound bandaging, surgical instrument wiping and postoperative nursing and the like; in the health care field, cotton gauze pads are widely used in the sub-fields of mother and infant nursing, beauty and skin care, such as newborn umbilical cord disinfection and beautician facial cleaning. At present, in the processing of cotton gauze pads, there are many problems in the cutting and edge sealing operation of cotton gauze pad raw materials.
[0003] The traditional processing mode usually requires workers to hold sewing machines to seal the edges of each piece of cotton gauze pad raw material according to a template. This mode of "manual operation + single machine operation" not only needs to invest a large amount of manpower, but also can only achieve 1 / 5 of the daily production capacity of mechanized production, and often causes supply delays during the order peak period. More importantly, manual operation cannot guarantee the consistency and quality stability of edge sealing: due to the difficulty in accurately controlling the sewing machine presser foot force, thread speed and the like, quality problems such as unstable edge sealing and width deviation of more than ±2mm are prone to occur, and some products may even crack after high-temperature sterilization. In addition, manual operation is also easily affected by factors such as worker fatigue and technical level difference, and the product qualification rate of new and old employees can differ by more than 15%, further reducing the product quality uniformity and increasing the quality inspection and rework costs of enterprises.
[0004] Therefore, it is an urgent problem to be solved to develop a processing platform capable of automatically cutting and sealing the edges of cotton gauze pad raw materials to improve processing efficiency and product quality.
[0005] In view of this, a processing platform for cotton gauze pads is provided. SUMMARY
[0006] In view of the deficiencies of the prior art, the application provides a processing platform for cotton gauze pads.
[0007] To achieve the above-mentioned purpose, the application provides the following technical scheme: a processing platform for cotton gauze pads, comprising: an integrated electrical control box, a mounting rack is fixed on one side of the integrated electrical control box, a driving assembly is installed in the middle of the mounting rack, two pressing racks are drivingly connected in an upper-lower symmetrical structure outside the driving assembly, a sliding groove frame is fixed on one side of the pressing rack, a tooth ring in a rectangular structure is fixed in the sliding groove frame, and an edge sealing assembly is limited between the tooth ring and the sliding groove frame.
[0008] The edge sealing assembly comprises a roller plate rolling frictionally limited in the sliding groove frame, a driving motor is fixedly connected in the middle of the roller plate, the output shaft of the driving motor penetrates the roller plate and is fixedly connected with a driving gear suitable for engaging transmission with the tooth ring, one end of the roller plate is fixedly connected with a mechanical sewing mechanism, and the mechanical sewing mechanism comprises an electric needle rod mechanism and an electric shuttle bed mechanism fixedly connected on one side of the electric needle rod mechanism.
[0009] As an optional solution of the technical scheme of the present application, an infrared sensor is fixed between the two mechanical sewing mechanisms and is arranged in a staggered symmetrical structure.
[0010] As an optional solution of the technical scheme of the present application, an elastic sleeve is fixedly connected on one side of the integrated electrical control box, a material collecting vehicle is clamped and limited in the elastic sleeve, and a material sliding cover plate is hingedly installed on the top of the material collecting vehicle.
[0011] As an optional solution of the technical scheme of the present application, a material discharging assembly is fixedly connected to one end of the mounting frame, a material winding assembly is fixedly connected to the other end of the mounting frame, a supporting frame is fixedly connected to one side of the material winding assembly and the material discharging assembly, and a material guide roller is rotatably connected to one end of the supporting frame.
[0012] As an optional solution of the technical scheme of the present application, the material discharging assembly comprises a lifting frame A, two insertion columns A are symmetrically and slidingly connected to one end of the lifting frame A, a circular truncated column is rotatably connected to the other end of the insertion column A, and a spring member is sleeved on the circular truncated column.
[0013] As an optional solution of the technical scheme of the present application, a damping roller is slidingly connected to the middle of the lifting frame A, and the damping roller and the lifting frame A are elastically limited by a spring elastic member.
[0014] As an optional solution of the technical scheme of the present application, the material winding assembly comprises a lifting frame B, a winding motor is fixedly connected to one end of the lifting frame B, an insertion column B is slidingly connected to the other end of the lifting frame B, the other end of the insertion column B and the output shaft of the winding motor both penetrate the lifting frame B and are fixedly connected with a pyramid, and a spring member is sleeved on the outside of the insertion column B.
[0015] As an optional solution of the technical scheme of the present application, a limiting shaft is hingedly installed at one end of the lifting frame B, and a suction disc is rotatably connected to the outside of the limiting shaft.
[0016] As an optional solution of the technical scheme of the present application, the driving assembly comprises two bidirectional lead screws rotating and being limited in the mounting frame in a symmetrical structure, the two bidirectional lead screws are frictionally transmitted through a synchronous wheel and a synchronous belt structure, and are threadedly adapted with the material pressing frame, one of the bidirectional lead screws penetrates the mounting frame and is fixedly connected with a lifting motor, and the lifting motor is connected and fixed with the mounting frame through a motor base.
[0017] As an optional solution of the technical scheme of the present application, the pressing frame comprises a lifting screw sleeve plate frame, an alloy pressing plate is fixedly connected to the middle of the lifting screw sleeve plate frame, an alloy pressing frame is fixedly connected to the outside of the alloy pressing plate, and annular knife grooves are formed on one side of the alloy pressing frame, and a knife ring plate is fixedly connected to one of the annular knife grooves through a bolt.
[0018] The one or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:
[0019] 1. The present application forms a set of coherent and efficient automatic processes from the discharge of raw materials, processing to the winding of finished products. The lifting frame A of the discharge assembly is slidably connected to two insertion columns A at one end and rotatably connected to a circular table column, which cooperates with the damping roller slidably connected in the middle to stably and smoothly discharge the raw materials. The lifting frame B of the winding assembly is fixedly connected to the winding motor at one end and slidably connected to the insertion column B at the other end, and the output ends of both are connected to the pyramid table, which can efficiently collect the processed cotton pad, reduce manual intervention, and ensure the product yield. The discharge assembly and the winding assembly at both ends of the mounting frame cooperate with each other through the supporting frame and the material guiding roller to ensure stable conveying of the raw materials during processing. The edge sealing assembly is driven by the driving motor to engage the driving gear and the gear ring through the roller plate in the sliding groove frame, realizing the automatic movement of the mechanical sewing mechanism along the edge of the cotton pad for edge sealing. Compared with the traditional manual sewing machine for edge sealing one by one, the processing time is greatly shortened, and the work efficiency is improved.
[0020] 2. The alloy pressing plate fixedly connected to the middle of the lifting screw sleeve plate frame and the alloy pressing frame fixedly connected to the outside can stably press the cotton pad raw materials during processing, prevent displacement of the raw materials during cutting and edge sealing, and ensure the integrity of the cutting of the cotton pad. The annular knife grooves formed on one side of the alloy pressing frame cooperate with the knife ring plate fixedly connected thereto through the bolt to realize precise cutting of the raw materials, making the cutting edge neat with minimal error, effectively avoiding the uneven phenomenon that may occur during manual cutting. In the edge sealing process, the double-channel edge sealing assembly improves the firmness of the edge sealing of the cotton pad. The infrared sensors fixed between the two mechanical sewing mechanisms are arranged in a staggered symmetrical structure, which can monitor the position and state of the cotton pad in real time during processing. Once an abnormality occurs, it can be timely feedback and adjusted, further ensuring the stability of the product quality.
[0021] 3. The application realizes centralized control of various components through an integrated electrical control box, which is easy to operate, greatly optimizes the operation process and reduces the labor intensity of workers. Workers only need to place raw materials on the feeding assembly in the initial stage and take away the finished products from the material collecting trolley after the processing is completed, and the complex processes such as cutting and edge sealing are automatically completed by the platform. The elastic sleeve fixed on one side of the integrated electrical control box can conveniently clamp and limit the material collecting trolley, and the sliding cover plate hingedly installed on the top of the material collecting trolley is convenient for workers to collect finished products and can prevent finished products from being contaminated during the collection process. The design of the feeding assembly and the winding assembly makes the replacement of raw materials and the collection of finished products become easy and convenient, reducing the physical and time cost of workers in this regard. The automatic operation of the edge sealing assembly eliminates the need for workers to hold a sewing machine for long-term repeated operation, avoids fatigue caused by long-term work, reduces the dependence on the technical level of workers, improves the comfort and safety of work, and also reduces the labor cost of enterprises and improves the comprehensive competitiveness of enterprises. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a left side view of the overall structure of the application.
[0023] Figure 2 It is a right side view of the overall structure of the application.
[0024] Figure 3 It is a connection diagram of part of the structure of the application.
[0025] Figure 4 It is a cross-sectional connection diagram of the chute frame structure of the application.
[0026] Figure 5 It is a sectional view of the edge sealing assembly structure of the application.
[0027] Figure 6 It is a connection diagram of the integrated electrical control box structure of the application.
[0028] Figure 7 It is a connection diagram of the mounting bracket structure of the application.
[0029] Figure 8 It is a structure diagram of the feeding assembly of the application.
[0030] Figure 9 It is a structure diagram of the winding assembly of the application.
[0031] Figure 10 It is a structure diagram of the driving assembly of the application.
[0032] Figure 11 It is a structure diagram of the pressing frame of the application.
[0033] Label explanation in the figure: 100, integrated electrical control box; 101, elastic sleeve; 102, material receiving trolley; 103, material sliding cover plate; 200, mounting frame; 201, material feeding assembly; 202, material winding assembly; 203, supporting frame; 204, material guide roller; 205, lifting frame A; 206, column A; 207, circular column; 208, damping roller; 209, lifting frame B; 210, motor; 211, column B; 212, pyramid; 213, limiting shaft; 214, suction cup; 300, driving assembly; 301, bidirectional screw; 302, lifting motor; 400, pressing frame; 401, lifting screw sleeve plate frame; 402, alloy pressing plate; 403, alloy pressing frame; 404, annular knife groove; 405, knife ring plate; 500, sliding groove frame; 600, ring gear; 700, edge sealing assembly; 701, roller plate; 702, driving motor; 703, driving gear; 704, mechanical sewing mechanism; 705, infrared sensor. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application.
[0035] Reference Figures 1-5 A processing platform for cotton wadding, comprising: an integrated electrical control box 100, one side of the integrated electrical control box 100 being fixedly connected with a mounting frame 200, the mounting frame 200 having a driving assembly 300 installed in the middle, the driving assembly 300 being externally connected with two pressing frames 400 in a symmetrical structure, one side of the pressing frame 400 being fixedly connected with a sliding groove frame 500, the sliding groove frame 500 being fixedly connected with a ring gear 600 in a rectangular structure inside, and the ring gear 600 being limited with an edge sealing assembly 700 between the sliding groove frame 500.
[0036] The edge sealing assembly 700 comprises a roller plate 701 that rolls and rubs in the sliding groove frame 500, the roller plate 701 having a driving motor 702 fixedly connected in the middle, the output shaft of the driving motor 702 penetrating the roller plate 701 and being fixedly connected with a driving gear 703 that can be engaged with the ring gear 600 for transmission and adaptation, one end of the roller plate 701 being fixedly connected with a mechanical sewing mechanism 704, and the mechanical sewing mechanism 704 comprising an electric needle rod mechanism and an electric shuttle bed mechanism fixedly connected on one side thereof.
[0037] The cotton yarn pad processing platform integrates the electrical control box 100 to uniformly control the operation of each component of the equipment, the mounting frame 200 provides a stable support structure for the entire processing platform, ensures the accurate installation position of each component, and maintains stability during operation. The driving assembly 300 works, the lifting motor 302 starts, drives the two-way screw rod 301 connected thereto to rotate, synchronously rotates the two two-way screw rods 301 through the synchronous wheel synchronous belt structure, and then drives the pressure material frame 400 threadedly matched therewith to move up and down, realizes the pressing and loosening operation of the cotton yarn pad raw material, and provides stable processing conditions for the subsequent cutting and edge sealing process.
[0038] With reference to Figure 3 and Figure 5 , the infrared sensor 705 is fixed between the two mechanical sewing mechanisms 704 and is arranged in a staggered symmetrical structure.
[0039] The cotton yarn pad processing platform is arranged in a staggered symmetrical structure between the two mechanical sewing mechanisms 704, which can realize double-seam sewing and improve the firmness of the seam. The infrared sensor 705 can accurately detect the position and movement state of the cotton yarn pad raw material. When the positions of the two mechanical sewing mechanisms 704 deviate, the infrared sensor 705 can feed back signals to the integrated electrical control box 100 in time to control the relevant components to adjust, so that the corresponding positions of the two mechanical sewing mechanisms 704 can be ensured to be sewn by the electric needle rod mechanism and the electric shuttle bed mechanism, thereby improving the edge sealing quality and consistency.
[0040] With reference to Figure 1 and Figure 6 , the elastic sleeve 101 is fixed on one side of the integrated electrical control box 100, the material collecting trolley 102 is clamped and limited in the elastic sleeve 101, and the sliding material cover plate 103 is hingedly installed on the top of the material collecting trolley 102.
[0041] The cotton yarn pad processing platform can stably clamp and limit the material collecting trolley 102 by arranging the elastic sleeve 101 on one side of the integrated electrical control box 100, so as to facilitate the collection of finished cotton yarn pads during the processing process. The sliding material cover plate 103 hingedly installed on the top of the material collecting trolley 102 can be opened when collecting finished products to guide the falling cotton yarn pads; when the material collecting trolley 102 needs to be transported, the sliding material cover plate 103 can be closed to protect the cotton yarn pads in the trolley.
[0042] With reference to Figure 1 and Figure 7 , the mounting frame 200 is fixed at one end with the material discharging assembly 201 and at the other end with the material winding assembly 202, the material winding assembly 202 and the material discharging assembly 201 are fixed on one side with the supporting frame 203, and the supporting frame 203 is rotatably connected at one end with the material guide roller 204.
[0043] The cotton yarn pad processing platform realizes automatic feeding of raw materials and automatic winding of finished products in the cotton yarn pad processing process by arranging a feeding assembly 201 at one end of the mounting frame 200 and a winding assembly 202 at the other end. The supporting frame 203 arranged on one side of the feeding assembly 201 and the winding assembly 202 can support the raw material roll and the finished product roll, and ensure that they remain stable during feeding and winding. The material guide roller 204 rotatably connected at one end of the supporting frame 203 can guide the conveying direction of the raw materials and the finished products, reduce the friction resistance in the conveying process, and make the feeding and winding process smoother.
[0044] With reference to Figure 7 and Figure 8 , the feeding assembly 201 comprises a lifting frame A 205, two insertion columns A 206 symmetrically connected at one end of the lifting frame A 205 are slidably connected, a circular truncated cone 207 rotatably connected at the other end of the insertion column A 206 is arranged, and a spring member is sleeved. Among them, the damping roller 208 is slidably connected in the middle of the lifting frame A 205, and the damping roller 208 and the lifting frame A 205 are elastically limited by the spring elastic member.
[0045] The cotton yarn pad processing platform adjusts the two insertion columns A 206 symmetrically connected at one end of the lifting frame A 205 in the feeding assembly 201 according to the inner diameter of the raw material roll, and the circular truncated cone 207 rotatably connected at the other end of the insertion column A 206 is convenient for placing and fixing the raw material roll. The sleeved spring member can provide a certain elastic support force to ensure the stability of the raw material roll during feeding. The damping roller 208 slidably connected in the middle of the lifting frame A 205 is elastically limited between the lifting frame A 205 and the spring elastic member, which can press and limit the material roll to avoid the mess caused by too fast feeding of the raw material roll, and ensure the smooth and orderly feeding process.
[0046] With reference to Figure 7 and Figure 9 , the winding assembly 202 comprises a lifting frame B 209, a winding motor 210 is fixedly connected at one end of the lifting frame B 209, and an insertion column B 211 is slidably connected at the other end. The other end of the insertion column B 211 and the output shaft of the winding motor 210 both penetrate through the lifting frame B 209, and a pyramid 212 is fixedly connected. A spring member is sleeved outside the insertion column B 211. Among them, a limiting shaft 213 is hingedly installed at one end of the lifting frame B 209, and a suction cup 214 is rotatably connected outside the limiting shaft 213.
[0047] The cotton yarn pad processing platform adjusts the two insertion columns A 206 symmetrically connected at one end of the lifting frame A 205 according to the inner diameter of the raw material roll, and the circular truncated cone 207 rotatably connected at the other end of the insertion column A 206 is convenient for placing and fixing the raw material roll. The sleeved spring member can provide a certain elastic support force to ensure the stability of the raw material roll during feeding. The damping roller 208 slidably connected in the middle of the lifting frame A 205 is elastically limited between the lifting frame A 205 and the spring elastic member, which can press and limit the material roll to avoid the mess caused by too fast feeding of the raw material roll, and ensure the smooth and orderly feeding process.
[0048] Referring to Figure 1 and Figure 10 , the driving assembly 300 includes two bidirectional screws 301 in a symmetrical structure rotating in the mounting frame 200, and the two bidirectional screws 301 are synchronously driven through a synchronous wheel and synchronous belt structure, and are threadedly fitted with the material pressing frame 400, and one of the bidirectional screws 301 penetrates through the mounting frame 200 and is fixedly connected with a lifting motor 302, and the lifting motor 302 is fixedly connected with the mounting frame 200 through a motor base.
[0049] The cotton pad processing platform, through the two bidirectional screws 301 in the driving assembly 300 in a symmetrical structure rotating in the mounting frame 200, and the two bidirectional screws 301 are synchronously driven through a synchronous wheel and synchronous belt structure, and are threadedly fitted with the material pressing frame 400, and one of the bidirectional screws 301 penetrates through the mounting frame 200 and is fixedly connected with a lifting motor 302, and the lifting motor 302 is fixedly connected with the mounting frame 200 through a motor base.
[0050] Referring to Figure 3 and Figure 11 , the material pressing frame 400 includes a lifting screw sleeve plate frame 401, the middle part of the lifting screw sleeve plate frame 401 is fixedly connected with an alloy pressing plate 402, the outer part of the alloy pressing plate 402 is fixedly connected with an alloy pressing frame 403, one side of the alloy pressing frame 403 is provided with an annular knife groove 404, and one of the annular knife grooves 404 is fixedly connected with a knife ring plate 405 through a bolt.
[0051] The cotton pad processing platform, through the two bidirectional screws 301 in the driving assembly 300 in a symmetrical structure rotating in the mounting frame 200, and the two bidirectional screws 301 are synchronously driven through a synchronous wheel and synchronous belt structure, and are threadedly fitted with the material pressing frame 400, and one of the bidirectional screws 301 penetrates through the mounting frame 200 and is fixedly connected with a lifting motor 302, and the lifting motor 302 is fixedly connected with the mounting frame 200 through a motor base.
[0052] Working principle: when using the cotton pad processing platform, first place the cotton pad raw material on the material placing assembly 201, and through the cooperation of the lifting frame A205, the plug column A206, the circular column 207 and the damping roller 208 of the material placing assembly 201, the stable placement and smooth conveying of the raw material can be realized. The raw material is guided by the material guiding roller 204 and enters between the two material pressing frames 400;
[0053] The driving assembly 300 starts, the lifting motor 302 drives the bidirectional screw rod 301 to rotate, and the two bidirectional screw rods 301 are synchronously driven through the synchronous wheel synchronous belt structure friction transmission, so that the two pressure material frames 400 which are screw fitted with the two bidirectional screw rods 301 move downward at the same time, and the alloy pressing plate 402 and the alloy pressing frame 403 are used to press the cotton yarn pad raw material tightly. When the cotton yarn pad raw material is pressed tightly, the two alloy pressing frames 403 which are close to each other are cut under the cooperation of one of the installation knife ring plates 405, so as to form a gauze block;
[0054] The edge sealing assembly 700 starts to work, the driving motor 702 drives the driving gear 703 to rotate, the driving gear 703 is engaged with the tooth ring 600, so that the roller plate 701 rolls in the sliding groove frame 500, and then drives the mechanical sewing mechanism 704 to perform edge sealing operation along the edge of the cotton yarn pad raw material. In the edge sealing process, the infrared sensor 705 can detect the positions of the two edge sealing assemblies 700, ensure that the two edge sealing assemblies 700 move synchronously, ensure that the corresponding electric needle rod mechanism and the electric shuttle mechanism between the two mechanical sewing mechanisms 704 are sewn, and perform double-edge sealing operation on the gauze block;
[0055] After the edge sealing is completed, the driving assembly 300 drives the pressure material frame 400 to rise, the winding motor 210 of the winding assembly 202 starts, the pyramidal table 212 winds up the cotton yarn pad after the edge sealing and collects, at the same time, the products after the edge sealing are collected in the collection car 102 along the sliding material cover plate 103 inclined surface.
[0056] In the description of the present application, it should be understood that the terms "center", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of the description of the present application and the simplification of the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the protection scope of the present application.
[0057] The basic principles, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application, and various changes and improvements can be made to the present application without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A processing platform for cotton wadding, characterized in that, Include: Integrated electrical control box (100), one side of the integrated electrical control box (100) is fixedly connected with a mounting rack (200), a driving assembly (300) is installed in the middle of the mounting rack (200), the driving assembly (300) is externally symmetrically connected with two pressing material racks (400), one side of the pressing material rack (400) is fixedly connected with a chute frame (500), a tooth ring (600) in a rectangular structure is fixedly connected in the chute frame (500), and the tooth ring (600) is limited with an edge sealing assembly (700) between the chute frame (500); The edge sealing assembly (700) includes a roller plate (701) rolling frictionally limited in the chute frame (500), a driving motor (702) is fixedly connected in the middle of the roller plate (701), the output shaft of the driving motor (702) penetrates the roller plate (701), and a driving gear (703) which can be engaged with the tooth ring (600) is fixedly connected, one end of the roller plate (701) is fixedly connected with a mechanical sewing mechanism (704), and the mechanical sewing mechanism (704) includes an electric needle rod mechanism and an electric shuttle mechanism fixedly connected on one side of the mechanical sewing mechanism (704); Two mechanical sewing mechanisms (704) are fixedly provided with an infrared sensor (705) and are arranged in a staggered symmetrical structure; One side of the integrated electrical control box (100) is fixedly connected with an elastic sleeve (101), a material collecting vehicle (102) is clamped and limited in the elastic sleeve (101), and a material sliding cover plate (103) is hingedly installed on the top of the material collecting vehicle (102); One end of the mounting rack (200) is fixedly connected with a material feeding assembly (201), the other end is fixedly connected with a material winding assembly (202), and one side of the material winding assembly (202) and the material feeding assembly (201) is fixedly connected with a supporting frame (203), one end of the supporting frame (203) is rotatably connected with a material guide roller (204); The material feeding assembly (201) includes a lifting frame A (205), two insertion columns A (206) are symmetrically connected at one end of the lifting frame A (205), the other end of the insertion column A (206) is rotatably connected with a circular truncated column (207), and a spring member is sleeved; The driving assembly (300) includes two bidirectional lead screws (301) rotatably limited in the mounting rack (200) in a symmetrical structure, the two bidirectional lead screws (301) are frictionally transmitted through a synchronous wheel synchronous belt structure between them, and are threadedly adapted with the pressing material rack (400), and one of the bidirectional lead screws (301) penetrates the mounting rack (200) and is fixedly connected with a lifting motor (302), the lifting motor (302) is connected and fixed with the mounting rack (200) through a motor base; The pressing material rack (400) includes a lifting screw sleeve plate frame (401), an alloy pressing plate (402) is fixedly connected in the middle of the lifting screw sleeve plate frame (401), an alloy pressing frame (403) is fixedly connected outside the alloy pressing plate (402), an annular knife groove (404) is formed on one side of the alloy pressing frame (403), and a knife ring plate (405) is fixedly connected in one of the annular knife grooves (404) through bolt members.
2. The processing platform for cotton yarn pads of claim 1, wherein: The middle of the lifting frame A (205) is slidably connected with a damping roller (208), and the damping roller (208) and the lifting frame A (205) are elastically limited by a spring elastic element.
3. The processing platform for cotton yarn pads of claim 1, wherein: The roll material assembly (202) comprises a lifting frame B (209), one end of the lifting frame B (209) is fixedly connected with a winding motor (210), the other end is slidably connected with a plug post B (211), the other end of the plug post B (211) and the output shaft of the winding motor (210) penetrate through the lifting frame B (209), and a pyramid table (212) is fixedly connected, and the outside of the plug post B (211) is sleeved with a spring element.
4. The processing platform for cotton batts of claim 3 wherein: One end of the lifting frame B (209) is hingedly installed with a limiting shaft (213), and the outside of the limiting shaft (213) is rotatably connected with a suction cup (214).
Citation Information
Patent Citations
Edge sealing equipment for curtain production
CN210104216U
Cotton yarn strip cutting device for cotton yarn processing
CN219768367U