Jade and fox velvet super-simulation wool fabric and preparation process thereof
Through the combination of auxiliary devices and hot pressing devices, the problem of insufficient adhesion strength of the pile layer of wool-like fabrics is solved, automated production is achieved, the bonding strength between the pile layer and the adhesive layer is improved, hair loss is reduced, production efficiency is improved and costs are reduced.
Patent Information
- Application Number
- CN202511033241.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2025-09-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
After flocking, the existing wool-like fabrics have low adhesion strength and are prone to shedding. In addition, the traditional process is inefficient and labor-intensive.
A combination of auxiliary devices, flocking devices and hot pressing devices is used. Through structures such as a rotating platform, an electric push rod and a suction cup, the flocked fabric is transferred to the hot pressing device for hot pressing, thereby increasing the contact area between the pile layer and the adhesive layer. The electric field generated by the positive and negative electrode plates is used for electrostatic flocking, and automated production is achieved through a conveying device and a gluing structure.
The bonding strength between the pile layer and the adhesive layer is improved, the hair loss phenomenon is reduced, automated production is realized, production efficiency is improved, and labor intensity and cost are reduced.
Smart Images

Figure CN120605852A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of textile fabrics, in particular to a jade fox down super-simulated fur fabric and a preparation process thereof. Background Art
[0002] Currently, wool-like fabrics occupy a prominent position in the textile industry, widely used in clothing, home decor, and other fields. With growing consumer awareness of environmental protection and animal protection, demand for artificial wool-like fabrics is increasing year by year. Existing wool-like fabrics are primarily made from chemical fibers, such as polyester and acrylic. These materials differ somewhat from natural fur in terms of feel and appearance. In recent years, advancements in textile technology have led to the development of highly realistic wool-like fabrics, but further improvements are needed in terms of softness, gloss, and warmth. Currently, common wool-like fabrics on the market are primarily achieved through the following technologies: First, using filament fibers through a pile-cutting process to create a fleece effect. However, this method produces fabrics with a stiff feel and lacks the softness of natural fur. Second, electrostatic flocking is used to adhere short fibers to a base fabric. However, this method results in fabrics that shed easily and have poor durability. Third, a weaving process combined with finishing techniques, such as raising and shearing, creates a fleece-like surface. However, this method results in fabrics with a less delicate feel and lacking gloss.
[0003] The existing patent (publication number: CN108889573B) discloses an electrostatic flocking processing device, including a working box, with corresponding feed ports and discharge ports respectively opened on both sides of the working box, a first support plate is fixedly connected to the side of the working box close to the feed port, a gluing mechanism and a first support mechanism corresponding to the gluing mechanism are installed on the first support plate, a second support plate is fixedly installed on the side of the working box close to the discharge port, a second support mechanism and a receiving mechanism are fixedly installed on the second support plate, the receiving mechanism includes a receiving rack, a receiving roller is rotatably connected to the receiving rack, a receiving motor is fixedly connected to one side of the receiving roller, a flocking cloth is wound around the receiving roller, and the end of the flocking cloth away from the receiving roller passes through the discharge port, the feed port and the gluing mechanism in sequence, and the inner bottom of the working box is fixedly connected to a third support plate.
[0004] The above-mentioned comparative document points out that the electrostatic flocking processing device can electrostatically implant two different colors of fluff in different areas. However, after the flocking is completed, the device cannot perform secondary fixation on the implanted fluff, which makes the adhesion strength of the fluff low and easy to fall off. Therefore, a jade fox velvet super-simulated fur fabric and its preparation process are proposed to solve the above problems. Summary of the Invention
[0005] 1. Technical problems solved In view of the shortcomings of the existing technology, the present invention provides a jade fox down super-simulated fur fabric and a preparation process thereof, which solves the problem that after flocking is completed, the flock cannot be fixed for a second time, resulting in low adhesion strength of the flock and easy hair loss.
[0006] 2. Technical solution To achieve the above objectives, the present invention is implemented through the following technical solutions: A jade fox down super-simulated fur fabric comprises a base fabric, an adhesive layer is provided on the upper layer of the base fabric, and a down layer is adhered to the upper end of the adhesive layer; A process for preparing jade fox down super-simulated fur fabric, comprising a conveying device, an auxiliary device, a flocking device, and a hot pressing device, wherein the auxiliary device comprises a first workbench, a rotating platform fixedly provided on one side of an upper end of the first workbench, the upper end of the rotating platform fixedly connected to the output end of a first electric push rod via a mounting block, a connecting column fixedly provided at one end of the first electric push rod away from the output end, a second frame fixedly connected to the bottom end of the connecting column away from the first electric push rod via a fixing column, and suction cups threadedly provided on all four sides of the bottom end of the second frame; The flocking device includes a flocking box, two second electric push rods are fixedly provided on the inner side wall of the flocking box, and a placement plate is fixedly provided on the output ends of the two second electric push rods; The hot pressing device includes a second workbench, a second linear module is fixedly provided on the upper end of the second workbench, a fixed block is fixedly provided on the upper end of a sliding block threadedly sleeved inside the second linear module, a rotating seat is fixedly provided on the upper end of the fixed block, a hot pressing roller is fixedly provided inside the rotating seat through a bearing, and a plurality of heating tubes are sleeved inside the hot pressing roller; Through the above technical solution, the device is equipped with an auxiliary device, a flocking device and a hot pressing device. After the flocking of the base cloth is completed, the second electric push rod pushes the placement plate out of the flocking box, and the flocked fabric is transferred to the second workbench through the rotating platform, the first electric push rod, the connecting column, the second frame and the suction cup in the auxiliary device. Through the structure of the hot pressing device, the second linear module drives the hot pressing roller to hot press the fabric. During the hot pressing process, the contact area between the pile and the adhesive layer is increased, thereby improving the bonding strength between the pile layer and the adhesive layer, thereby reducing the hair loss phenomenon.
[0007] Furthermore, the conveying device includes two first mounting blocks, one side of each of the two first mounting blocks is fixedly provided with a mounting plate, one side of each mounting plate is fixedly provided with a first linear module, the first linear module is fixedly provided with a connecting block via a slider, and a glue coating roller is fixedly provided inside one side of each connecting block via a bearing; Through the above technical solution, the device is configured as a glue coating structure. When the conveying device conveys the base cloth to the placement plate, the first linear module is started to rotate the glue coating roller, thereby coating the base cloth with glue.
[0008] Furthermore, a positive electrode plate and a negative electrode plate are fixedly provided at the upper and lower ends of the flocking box through support frames, and a switch is fixedly provided on one side of the flocking box; Through the above technical solution, the positive electrode plate and the negative electrode plate are energized to generate a downward electric field, which affects and attracts the fluff, and flies to the surface of the adhesive layer, completing the electrostatic flocking.
[0009] Furthermore, a blower is fixedly provided on one side of the flocking box, a ventilation hole is opened through one side of the flocking box, a box door is fixedly provided on one side of the flocking box through a hinge, a material receiving port opened through one side of the flocking box is fixedly provided with a baffle through a spring hinge, and the blowing end of the blower corresponds to the ventilation hole; Through the above technical solution, the baffle set by the spring hinge can be automatically closed and automatically closed when the placement plate is retracted to ensure the sealing of the inside of the box. The blowing end of the blower corresponds to the ventilation hole to blow air inside the flocking box, so that the fluff is evenly dispersed and the flocking effect is guaranteed.
[0010] Furthermore, two second mounting blocks are fixedly provided on the upper end of the first workbench, a cylinder is fixedly provided on one side of each of the two second mounting blocks, a first frame is fixedly provided on the output ends of the two cylinders, suction cups are threadedly provided on the four sides of the upper end of the first frame, four through holes are provided through the interior of the placement plate, and the four through holes correspond to the four suction cups provided inside the first frame; Through the above technical solution, the through holes correspond to the four suction cups arranged inside the first frame. When the conveying device conveys the base cloth to the placement plate, the cylinder lifts the first frame and places the four suction cups inside the through holes to fix the base cloth, thereby avoiding adhesion between the base cloth and the glue roller during glue coating, thereby ensuring the smooth progress of the process.
[0011] Furthermore, one end of each of the plurality of heating tubes extending out of the hot pressing roller is provided with a limiting sleeve, and the limiting sleeve is fixedly connected to the hot pressing roller; Through the above technical solution, the limiting sleeve is used to fix the heating tube to prevent the heating tube from moving during the hot pressing process, reducing the heat uniformity of the hot pressing roller, and thus affecting the hot pressing effect.
[0012] Furthermore, the side of the placement plate away from the output end of the second electric push rod is configured to be semicircular; Through the above technical solution, the semicircular arc shape matches the corner of the conveyor belt of the conveying device, ensuring the contact between the placement plate and the conveyor belt, avoiding the base cloth from being unable to be accurately placed on the placement plate when being conveyed.
[0013] 3. Beneficial effects The present invention provides a jade fox down super-simulated fur fabric and its preparation process, which has the following beneficial effects: The present invention provides a jade fox down super-simulated fur fabric and a preparation process thereof. The device is provided with an auxiliary device, a flocking device and a hot pressing device. After the flocking of the base cloth is completed, the second electric push rod pushes the placement plate out of the flocking box, and the flocked fabric is transferred to the second workbench through the rotating platform, the first electric push rod, the connecting column, the second frame and the suction cup in the auxiliary device. Through the structure of the hot pressing device, the second linear module drives the hot pressing roller to hot press the fabric. During the hot pressing process, the contact area between the down and the adhesive layer is increased, thereby improving the bonding strength between the down layer and the adhesive layer, thereby reducing the hair falling phenomenon.
[0014] The present invention provides a jade fox down super-simulated fur fabric and a preparation process thereof. The device basically constitutes an automated production system by arranging a conveying device, a gluing structure, an auxiliary device, a flocking device, a transfer structure and a hot pressing device. The conveying device conveys the base cloth at a fixed speed. When the base cloth is conveyed to the upper end of the placement plate, the gluing roller of the gluing structure cooperates with the first linear module to move laterally to complete the uniform gluing. Subsequently, the second electric push rod retracts the placement plate into the flocking box, and the electrostatic flocking process is completed by the electric field generated by the positive and negative plates. After the flocking is completed, it extends out and is placed on the second workbench of the hot pressing device with the help of a transfer structure composed of a rotating platform, an electric push rod and a suction cup. The fabric is then shaped by the constant temperature rolling of the hot pressing roller. Each device cooperates through a control system to realize automated closed-loop operation from base cloth transmission to finished product output. Compared with traditional processes, production efficiency is improved, manual participation is reduced, and labor intensity and production costs are significantly reduced.
[0015] The present invention provides a jade fox down super-simulated fur fabric and a preparation process thereof. Through the first frame and suction cup and other structures in the auxiliary device, the base fabric can be prevented from adhering to the glue coating roller during the gluing process, thereby ensuring the smooth progress of the process and reducing errors generated in the preparation process. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a structural diagram of the raw material conveying device of the present invention; Figure 3 This is a schematic diagram of the raw material glue coating, fixing and transfer structure of the present invention; Figure 4 This is a schematic diagram of the electrostatic flocking preparation structure of the present invention; Figure 5 Schematic diagram of the hot pressing structure of the present invention; Figure 6 It is a schematic diagram of the fabric structure of the present invention.
[0017] Among them, 1, conveying device; 101, first mounting block; 102, mounting plate; 103, first linear module; 104, connecting block; 105, glue roller; 2. Auxiliary device; 201. First workbench; 202. Second mounting block; 203. Cylinder; 204. First frame; 205. Suction cup; 206. Rotating platform; 207. First electric push rod; 208. Connecting column; 209. Second frame; 3. Flocking device; 301. Flocking box; 302. Second electric push rod; 303. Placement plate; 304. Through hole; 305. Positive electrode plate; 306. Negative electrode plate; 307. Switch; 308. Blower; 309. Ventilation hole; 310. Box door; 311. Baffle; 4. Hot pressing device; 401. Second workbench; 402. Second linear module; 403. Fixed block; 404. Rotating seat; 405. Hot pressing roller; 406. Heating tube; 407. Limiting sleeve; 5. Base fabric; 6. Adhesive layer; 7. Fluff layer. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the specific embodiments of the present invention to clearly and completely describe the technical solutions in the specific embodiments of the present invention. Obviously, the specific embodiments described are only part of the specific embodiments of the present invention, rather than all the specific embodiments. Based on the specific embodiments of the present invention, all other specific embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Specific implementation 1: like Figure 1 、 Figure 3 and Figure 6 As shown, a specific embodiment of the present invention provides a jade fox velvet super-simulated fur fabric and a preparation process thereof, comprising a base fabric 5, an adhesive layer 6 is provided on the upper layer of the base fabric 5, and a fluff layer 7 is bonded to the upper end of the adhesive layer 6, comprising a conveying device 1, an auxiliary device 2, a flocking device 3 and a hot pressing device 4, the auxiliary device 2 comprising a first workbench 201, a rotating platform 206 is fixedly provided on one side of the upper end of the first workbench 201, the rotating platform 206 is composed of a servo motor and a cylindrical shell fixedly connected to the output end of the servo motor, the cylindrical shell is rotated by the servo motor, the upper end of the rotating platform 206 is fixedly connected to the output end of the first electric push rod 207 through a mounting block, the end of the first electric push rod 207 away from the output end is fixedly provided with a connecting column 208, the bottom end of the connecting column 208 away from the first electric push rod 207 is fixedly connected to the second frame 209 through a fixed column, and the bottom end of the second frame 209 is threadedly provided with suction cups 205 all around. The above-mentioned device is mainly used to operate the flocked fabric.
[0020] See also Figure 4 and Figure 5The flocking device 3 includes a flocking box 301, two second electric push rods 302 are fixedly provided on the internal side wall of the flocking box 301, and a placement plate 303 is fixedly provided on the output ends of the two second electric push rods 302. The hot pressing device 4 includes a second workbench 401, and a second linear module 402 is fixedly provided on the upper end of the second workbench 401. A fixed block 403 is fixedly provided on the upper end of the sliding block with a threaded sleeve inside the second linear module 402, and a rotating seat 404 is fixedly provided on the upper end of the fixed block 403. A hot pressing roller 405 is fixedly provided inside the rotating seat 404 through a bearing, and a plurality of heating tubes 406 are sleeved inside the hot pressing roller 405. When the hot pressing roller 405 is performing hot pressing, the heating tube 406 must be started in advance to ensure the efficiency of hot pressing.
[0021] See also Figure 2 、 Figure 4 and Figure 5 The conveying device 1 includes two first mounting blocks 101, and a mounting plate 102 is fixedly provided on one side of the two first mounting blocks 101. A first linear module 103 is fixedly provided on one side of the mounting plate 102. The first linear module 103 is fixedly provided with a connecting block 104 through a slider. A glue coating roller 105 is fixedly provided inside one side of the connecting block 104 through a bearing. The device is a glue coating structure. When the conveying device 1 conveys the material to the placement plate 303, the first linear module 103 is started to rotate the glue coating roller 105, and then the base cloth 5 is coated with glue. A plurality of heating tubes 406 extend out of the hot pressing roller 405 and are provided with a limiting sleeve 407 at one end. The limiting sleeve 407 is fixedly connected to the hot pressing roller 405. The limiting sleeve 407 is used to fix the heating tube 406 to prevent the heating tube 406 from moving during the hot pressing process, reducing the heat uniformity of the hot pressing roller 405, thereby affecting the hot pressing effect.
[0022] The device is provided with an auxiliary device 2, a flocking device 3 and a hot pressing device 4. After the flocking of the base cloth 5 is completed, the second electric push rod 302 pushes the placement plate 303 out of the flocking box 301, and the flocked fabric is transferred to the second workbench 401 through the rotating platform 206, the first electric push rod 207, the connecting column 208, the second frame 209 and the suction cup 205 in the auxiliary device 2. Through the structure of the hot pressing device 4, the second linear module 402 drives the hot pressing roller 405 to hot press the fabric. During the hot pressing process, the contact area between the pile and the adhesive layer 6 is increased, thereby improving the bonding strength between the pile layer 7 and the adhesive layer 6, thereby reducing the hair loss phenomenon. Specific implementation 2: like Figure 4 and Figure 6As shown, the upper and lower ends of the flocking box 301 are fixed with a positive electrode plate 305 and a negative electrode plate 306 respectively through a support frame, and a switch 307 is fixed on one side of the flocking box 301. The positive electrode plate 305 and the negative electrode plate 306 are energized to generate a downward electric field, and the fluff is affected and attracted and distributed to the surface of the adhesive layer 6 to complete the electrostatic flocking. A blower 308 is fixed on one side of the flocking box 301, and a ventilation hole 309 is opened on one side of the flocking box 301. One side of the flocking box 301 is hinged. The chain is fixed with a box door 310, which can be opened to facilitate adding fluff to the inside of the flocking box 301. A material receiving port is opened on one side of the flocking box 301 and is fixed with a baffle 311 by a spring hinge. The blowing end of the blower 308 corresponds to the ventilation hole 309. The blower 308 blows air into the flocking box 301 to evenly disperse the fluff. The baffle 311 set by the spring hinge can be automatically closed and automatically closed when the placement plate 303 is retracted to ensure the sealing of the inside of the box.
[0024] See also Figure 2 、 Figure 3 and Figure 4 Two second mounting blocks 202 are fixedly provided on the upper end of the first workbench 201, and a cylinder 203 is fixedly provided on one side of the two second mounting blocks 202. A first frame 204 is fixedly provided on the output end of the two cylinders 203. Suction cups 205 are threadedly provided on the inner periphery of the upper end of the first frame 204. The cylinders 203 and the suction cups 205 are connected to the external structure. The external structure mainly includes several main components such as a triplet, a solenoid valve, a joint, a vacuum generator and an air pipe. The air pipe is used as a connecting pipe to connect several structures respectively. The working state of the cylinder 203 and the suction cup 205 is controlled by controlling the air inlet pipe and the air outlet pipe. Four through holes 304 are provided inside the placement plate 303. The four through holes 304 all correspond to the four suction cups 205 provided inside the first frame 204. The through holes 304 all correspond to the four suction cups 205 provided inside the first frame 204. When the material is transferred to the placement plate 303, the cylinder 203 lifts the first frame 204 and places the four suction cups 205 inside the through holes 304 to fix the material to avoid adhesion to the glue roller 105 during gluing, thereby ensuring the smooth progress of the process. The side of the placement plate 303 away from the output end of the second electric push rod 302 is set to a semicircular arc shape, which matches the corner of the conveyor belt of the conveying device 1, ensuring the contact between the placement plate 303 and the conveyor belt, and avoiding the inability to accurately reach the placement plate 303 during transmission.
[0025] The device comprises a conveyor 1, a gluing structure, an auxiliary device 2, a flocking device 3, a transfer structure, and a hot pressing device 4, forming a basic automated production system. The conveyor 1 transports the base fabric 5 at a fixed speed. When the base fabric 5 reaches the upper end of the placement plate 303, the gluing roller 105 of the gluing structure cooperates with the first linear module 103 to move laterally to evenly apply the glue. The second electric push rod 302 then retracts the placement plate 303 into the flocking box 301, where the electrostatic flocking process is completed through the electric field generated by the positive and negative plates. After flocking is complete, the device extends and, with the aid of a transfer structure consisting of a rotating platform 206, a first electric push rod 207, and a suction cup 205, places the fabric on the second workbench 401 of the hot pressing device 4. The fabric is then shaped by the constant temperature rolling of the hot pressing roller 405. Each device works in coordination through a control system, achieving automated operation from the base fabric 5 to the finished product output. This improves production efficiency compared to traditional processes, reduces manual intervention, and significantly reduces labor intensity and production costs.
[0026] Working principle: First, the placement plate 303 is extended from the flocking box 301, and the conveyor belt of the conveying device 1 transports the base cloth 5. When the base cloth 5 reaches the corner of the conveyor belt, it is pushed onto the placement plate 303 by the force of the conveyor belt. The cylinder 203 is controlled to push the output shaft of the cylinder 203 out, thereby pushing the first frame 204 to rise, so that the suction cup 205 in the first frame 204 passes through the through hole 304 of the placement plate 303, adsorbs and fixes the base cloth 5, and then controls the first linear module 103 to start, driving the connecting block 104 and the glue coating roller 105 to move horizontally. At the same time, the glue coating roller 105 rotates by itself, and evenly applies glue to the surface of the base cloth 5 to form an adhesive layer 6.
[0027] After the glue coating is completed, the second electric push rod 302 of the flocking device 3 retracts, and the placement plate 303 together with the base cloth 5 is pulled into the flocking box 301. The retracted placement plate 303 is between the positive electrode plate 305 and the negative electrode plate 306. At this time, the baffle 311 is automatically closed due to the spring hinge to ensure the sealing of the box. The switch 307 is turned on to energize the positive electrode plate 305 and the negative electrode plate 306 in the flocking box 301. The fluff is attracted by the electric field and falls vertically on the surface of the adhesive layer 6 of the base cloth 5, completing the electrostatic flocking. During the flocking process, the blower 308 blows air into the box through the ventilation hole 309 to evenly disperse the fluff and avoid accumulation.
[0028] After flocking is completed, the second electric push rod 302 extends out and pushes the placement plate 303 out of the flocking box 301. The rotating platform 206 of the auxiliary device 2 rotates to the corresponding angle, and the first electric push rod 207 descends, so that the suction cup 205 at the bottom of the second frame 209 absorbs the flocked fabric. The first electric push rod 207 rises, and the rotating platform 206 rotates again to transfer the fabric to the second workbench 401 of the hot pressing device 4. The suction cup 205 releases the fabric so that the fabric is laid on the second workbench 401. The second linear module 402 drives the hot pressing roller 405 to move horizontally along the second workbench 401. The hot pressing roller 405 applies pressure and heat to the fabric during rotation. The heat of the hot pressing roller 405 softens the glue of the adhesive layer 6, and the pressure increases the contact area between the fluff layer 7 and the adhesive layer 6, thereby strengthening the bonding strength between the two and reducing hair loss.
[0029] The device comprises a conveyor 1, a gluing structure, an auxiliary device 2, a flocking device 3, a transfer structure, and a hot pressing device 4, forming a basic automated production system. The conveyor 1 transports the base fabric 5 at a fixed speed. When the base fabric 5 reaches the upper end of the placement plate 303, the gluing roller 105 of the gluing structure cooperates with the first linear module 103 to move laterally to evenly apply the glue. The second electric push rod 302 then retracts the placement plate 303 into the flocking box 301, where the electrostatic flocking process is completed through the electric field generated by the positive and negative plates. After flocking is complete, the device extends and, with the aid of a transfer structure consisting of a rotating platform 206, a first electric push rod 207, and a suction cup 205, places the fabric on the second workbench 401 of the hot pressing device 4. The fabric is then shaped by the constant temperature rolling of the hot pressing roller 405. Each device works in coordination through a control system, achieving automated operation from the base fabric 5 to the finished product output. This improves production efficiency compared to traditional processes, reduces manual intervention, and significantly reduces labor intensity and production costs.
[0030] Although specific embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these specific embodiments without departing from the principles and spirit of the invention, and the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A jade fox down super-simulated fur fabric, comprising a base fabric (5), characterized in that: An adhesive layer (6) is provided on the upper layer of the base fabric (5), and a fluff layer (7) is bonded to the upper end of the adhesive layer (6).
2. A process for preparing a jade fox down super-simulated fur fabric according to claim 1, characterized in that: The invention comprises a conveying device (1), an auxiliary device (2), a flocking device (3) and a hot pressing device (4), wherein the auxiliary device (2) comprises a first workbench (201), a rotating platform (206) is fixedly provided on one side of the upper end of the first workbench (201), the upper end of the rotating platform (206) is fixedly connected to the output end of the first electric push rod (207) through a mounting block, a connecting column (208) is fixedly provided on the end of the first electric push rod (207) away from the output end, the bottom end of the connecting column (208) away from the first electric push rod (207) is fixedly connected to a second frame (209) through a fixing column, and suction cups (205) are threadedly provided around the bottom end of the second frame (209); The flocking device (3) comprises a flocking box (301), two second electric push rods (302) are fixedly provided on the inner side wall of the flocking box (301), and a placement plate (303) is fixedly provided on the output ends of the two second electric push rods (302); The hot pressing device (4) comprises a second workbench (401), a second linear module (402) is fixedly provided on the upper end of the second workbench (401), a fixed block (403) is fixedly provided on the upper end of a sliding block threadedly sleeved inside the second linear module (402), a rotating seat (404) is fixedly provided on the upper end of the fixed block (403), a hot pressing roller (405) is fixedly provided inside the rotating seat (404) via a bearing, and a plurality of heating tubes (406) are sleeved inside the hot pressing roller (405).
3. The process for preparing the jade fox down super-simulated fur fabric according to claim 2, wherein: The conveying device (1) comprises two first mounting blocks (101), a mounting plate (102) being fixedly provided on one side of the two first mounting blocks (101), a first linear module (103) being fixedly provided on one side of the mounting plate (102), a connecting block (104) being fixedly provided on the first linear module (103) via a slider, and a glue coating roller (105) being fixedly provided inside one side of the connecting block (104) via a bearing.
4. The process for preparing the jade fox down super-simulated fur fabric according to claim 2, wherein: A positive electrode plate (305) and a negative electrode plate (306) are fixedly provided at the upper and lower ends of the flocking box (301) via support frames, and a switch (307) is fixedly provided on one side of the flocking box (301).
5. The process for preparing the jade fox down super-simulated fur fabric according to claim 4, characterized in that: A blower (308) is fixedly provided on one side of the flocking box (301), a ventilation hole (309) is provided through one side of the flocking box (301), a box door (310) is fixedly provided on one side of the flocking box (301) via a hinge, a material receiving opening provided through one side of the flocking box (301) is fixedly provided with a baffle (311) via a spring hinge, and an air blowing end of the blower (308) corresponds to the ventilation hole (309).
6. The process for preparing the jade fox down super-simulated fur fabric according to claim 2, characterized in that: Two second mounting blocks (202) are fixedly provided on the upper end of the first workbench (201), and a cylinder (203) is fixedly provided on one side of each of the two second mounting blocks (202). A first frame (204) is fixedly provided at the output end of the two cylinders (203). Suction cups (205) are threadedly provided on the inner periphery of the upper end of the first frame (204), and four through holes (304) are provided through the inner portion of the placement plate (303), and the four through holes (304) correspond to the four suction cups (205) provided inside the first frame (204).
7. The process for preparing the jade fox down super-simulated fur fabric according to claim 2, characterized in that: One end of the plurality of heating tubes (406) extending out of the hot pressing roller (405) is sleeved with a limiting sleeve (407), and the limiting sleeve (407) is fixedly connected to the hot pressing roller (405).
8. The process for preparing the jade fox down super-simulated fur fabric according to claim 2, characterized in that: The side of the placement plate (303) away from the output end of the second electric push rod (302) is configured in a semicircular arc shape.
Citation Information
Patent Citations
An electrostatic flocking processing device
CN108889573B