Preparation method of an antibacterial and antistatic soft-shell clothing
Through the transmission, spraying, heating, pasting and blowing on the rack, the problem of reducing the stickiness between the soft shell and the clothing is solved, and the stable bonding between the protective soft shell and the clothing body is achieved, and the protective performance of the clothing is improved.
Patent Information
- Application Number
- CN202210508454.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-10
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-05-10
AI Technical Summary
In the prior art, the stickiness between the soft shell and the clothes is easily reduced, causing the soft shell and the clothes to fall off, affecting the protective performance.
Through the coordinated work of arc-shaped transmission parts, nozzle components, heating modules, stacking components, compression components, swing components and fan components on the frame, uniform spraying, heating, pasting, compression and cooling of hot melt adhesives can be achieved, ensuring stable bonding between the protective soft shell and the clothing body.
The adhesion between the protective soft shell and the clothing body is improved, the soft shell is prevented from falling off, and the protective performance of the clothing is enhanced.
Smart Images

Figure CN114947268B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of textile technology, and particularly relates to a method for preparing an antibacterial and antistatic soft shell garment. Background Art
[0002] Clothing refers to various types of covering material, such as fabric (cotton, silk, velvet, chemical fiber, polyester, and linen), used by humans or by humans to cover the body, provide warmth, and adorn the body. Humankind's earliest clothing was made from animal hides, while the earliest "fabric" used to wrap the body was made from hemp and grass. National standards define clothing as "garments," also known as clothing, worn for protection and decoration. Clothing is worn differently for different occasions, and there are numerous styles.
[0003] By adding a soft shell to the outside of a garment, the protective performance of the garment is enhanced, thereby improving its impact resistance and shock resistance, providing better protection for the wearer. However, in the prior art, soft shells are usually attached to the garment using Velcro. Due to the influence of the soft shell's own weight and the long-term use, the Velcro's adhesion can easily decrease, causing the soft shell to fall off the garment. Summary of the Invention
[0004] The purpose of the present invention is to solve the above-mentioned technical problems existing in the prior art and to provide a method for preparing an antibacterial and antistatic soft shell garment. First, the garment body is cut and sewn into a garment body, and then the garment body is conveyed by an arc-shaped transmission member of a frame. The garment body is conveyed from a feed port to a nozzle assembly, and the arc-shaped transmission member conveys the garment body. At the same time, the nozzle sprays hot melt adhesive so that the hot melt adhesive is evenly sprayed on the back of the garment body. The conveyance of the garment body does not need to be stopped, and the nozzle assembly is synchronized to achieve uniform spraying of the hot melt adhesive, thereby improving the manufacturing efficiency of the soft shell garment. At the same time, the garment body continues to be conveyed to a heating module, and the heating module heats the hot melt adhesive on the garment body to facilitate the connection between the protective soft shell and the garment body; then the arc-shaped transmission member continues to convey the garment body, and the garment body is conveyed to the bottom of the stacking assembly. The stacking assembly lowers the stacked protective soft shell onto the garment body, and the protective soft shell located below is affected by the gravity of the stacked protective soft shell above. The stacking assembly releases the protective soft shell adhered to the garment body, and the stacking assembly rises and clamps the protective soft shell above it, and drives the stacked protective soft shells to continue to rise, thereby realizing that the stacking assembly sticks the protective soft shells to the garment body one by one, thereby realizing automatic sticking of the protective soft shells; then the arc transmission component sends the garment with the protective soft shell from the discharge port to the swing assembly, and the clamping part on the swing assembly clamps the garment body and the protective soft shell. The setting of the clamping part increases the adhesion between the protective soft shell and the garment body, and then the swing assembly drives the garment body to swing toward the side of the fan assembly, and the fan assembly blows air to cool the garment body, so that after the hot melt adhesive solidifies, the garment body and the protective soft shell are fixed; after the swing assembly is reset, the clamping part is loosened, and the preparation is completed after the garment body is removed.
[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0006] A method for preparing an antibacterial and antistatic soft shell garment comprises the following steps:
[0007] a. Clothing
[0008] First, the antibacterial and antistatic fabric is cut and then sewn into garments;
[0009] b. Hot melt adhesive coating
[0010] 1) Spraying
[0011] Place the formed garment body with its back facing upwards into the feed port of the arc-shaped transmission member of the frame for conveying. After the garment body passes through the nozzle assembly, the nozzle assembly evenly sprays hot melt adhesive on the back of the garment body.
[0012] 2) Heating
[0013] After the garment body sprayed with hot melt adhesive passes through the heating module, the heating module heats the hot melt adhesive on the garment body;
[0014] c. Pasting of protective soft shell
[0015] 1) Lowering the protective soft shell
[0016] The arc-shaped transmission element controls the conveyance of the garment body to the stacking assembly. The garment body is located below the stacking assembly. The stacking assembly lowers the stacked protective soft shells onto the garment body.
[0017] 2) Resetting the stack components
[0018] The stacking assembly releases the bottom protective soft shell, then rises and clamps the protective soft shell above it again, driving the remaining protective soft shells to rise again, so that the bottom protective soft shell is attached to the back of the garment;
[0019] d. Blowing cold
[0020] 1) Send
[0021] The arc-shaped transmission member delivers the garment body with the protective soft shell pasted thereon from the discharge port of the arc-shaped transmission member to the swing assembly;
[0022] 2) Cooling with air
[0023] The clamping piece on one side of the swing assembly clamps the garment body, and then the swing assembly drives the protective soft shell with the garment body attached to it to flip toward the side of the fan assembly. After the fan assembly is running, it blows air to cool the garment body, so that the garment body and the protective soft shell are adhered and fixed;
[0024] e. Complete preparation
[0025] After the garment body is fixed to the protective soft shell, the swing assembly drives the garment body to reset, and then the clamping member releases the garment body and removes the garment body from the swing assembly, thereby completing the preparation.
[0026] Furthermore, an arc-shaped transmission member is disposed within the frame, a feed inlet is disposed at one end of the frame, a discharge outlet is disposed at the other end of the frame, a nozzle assembly is disposed on the side of the frame near the feed inlet, and a heating module and a stacking assembly are also disposed on the frame. The heating module is disposed on the side of the nozzle assembly near the discharge outlet, and the stacking assembly is disposed on the side of the frame near the discharge outlet. A swing assembly is disposed on one side of the discharge outlet, and a fan assembly is connected to the swing assembly. After the garment enters from the feed inlet, it is transported to the discharge outlet via the arc-shaped transmission member. After the garment passes through the nozzle assembly, hot melt adhesive is evenly sprayed onto the garment. The heating module heats the hot melt adhesive, and the stacking assembly adheres the protective soft shell to the hot melt adhesive on the garment to secure it. The garment with the protective soft shell adhered thereto is then conveyed from the discharge outlet to the swing assembly. The fan assembly on the swing assembly blows air to cool the garment, thereby causing the hot melt adhesive to cool and solidify, securing the garment to the protective soft shell.
[0027] Furthermore, the arc-shaped transmission element includes a conveyor belt, a bracket, and conveyor rollers. The conveyor rollers are evenly distributed within the frame, and the conveyor belt rotates around the conveyor rollers. The bracket is disposed within the conveyor belt, with the upper and lower ends of the bracket respectively abutting the upper and lower ends of the inner middle portion of the conveyor belt, resulting in the upper and lower end surfaces of the conveyor belt forming arc-shaped surfaces that match the protective soft shell. The conveyor rollers are used to control the rotation of the conveyor belt for conveying the garment. Because the protective soft shell has an inwardly concave adhesive surface to fit the body, the adhesive surface of the protective soft shell does not fully contact the garment when it is attached to the garment, thereby reducing the adhesion between the protective soft shell and the garment. The brackets are provided to form arc-shaped upper and lower end surfaces of the conveyor belt. After the garment is placed on the conveyor belt, the surface of the garment sprayed with hot melt adhesive also forms an arc-shaped surface. This allows the adhesive surface of the protective soft shell to fully contact the garment when it is attached to the hot melt adhesive on the garment, thereby improving the adhesion between the garment and the protective soft shell.
[0028] Furthermore, the bracket includes a fixing frame and a tensioning rod. The fixing frames are fixedly connected to either side of the frame, and the tensioning rods are fixedly connected to the upper and lower ends of the two fixing frames. The tensioning rods respectively abut the upper and lower ends of the middle portion of the inner side of the conveyor belt. The fixing frames are fixed to the frame, thereby connecting the tensioning rods to the frame. The tensioning rods abut the middle portion of the inner side of the conveyor belt, thereby forming an arc-shaped surface at the upper and lower ends of the conveyor belt. This allows the garment being transported by the conveyor belt to fit snugly against the protective soft shell, increasing the contact area between the protective soft shell and the garment.
[0029] Furthermore, the nozzle assembly includes a lifting bracket, a nozzle, and a lifting cylinder. The lifting bracket has an L-shaped structure, and the nozzle is fixedly connected to the top of the lifting bracket. Sliders are provided at both ends of the lifting support. Slide grooves are provided on the corresponding slides on both sides of the frame. The slides are slidably connected in the slide grooves. Cylinder mounting seats are fixedly connected to the two sides of the frame below the slide grooves. The lifting cylinder is fixedly connected to the cylinder mounting seat. The lifting cylinder is connected to the bottom of the lifting bracket. The lifting cylinder controls the lifting bracket to drive the nozzle to move up and down along the slide groove. The lifting cylinder is used to control the lifting bracket to drive the nozzle to move up and down. When hot melt adhesive needs to be sprayed on the clothing, the lifting cylinder controls the nozzle to descend, reducing the distance between the nozzle and the clothing, thereby ensuring that the hot melt adhesive can be sprayed evenly on the clothing, preventing the hot melt adhesive from falling onto the conveyor belt, causing the clothing to stick to the conveyor belt. The setting of the lifting cylinder increases the accuracy of hot melt adhesive spraying.
[0030] Furthermore, the stacking assembly includes a stacking frame, a push member, and a push cylinder. The stacking frame is fixedly connected to both sides of the frame. The stacking frame is provided with an adjustment slot, in which a lead screw is provided. A lead screw motor is provided at the top of the stacking frame. The lead screw motor is connected to the lead screw, which is slidably connected to an adjustment rod. The top of the push member is slidably connected to the adjustment rod. The push cylinder is mounted on the top of the adjustment rod and fixedly connected to the push member. The push cylinder controls the push member to press against both sides of the protective soft shell. The lead screw motor controls the rotation of the lead screw, thereby enabling the adjustment rod to drive the push member to move up and down along the adjustment slot. The push cylinder controls the push member to press against both sides of the protective soft shell.
[0031] Furthermore, the push member includes a sliding rod, a U-shaped fixing frame, and a clamping block. The sliding rod is slidably connected to the adjustment rod, and the push cylinder is connected to the sliding rod. The top of the U-shaped fixing frame is fixedly connected to the bottom of the sliding rod. The clamping blocks are fixedly connected to both ends of the bottom of the U-shaped fixing frame, and the clamping blocks are clamped to the protective soft shell. The push cylinder pushes the sliding rod to slide on the adjustment rod, and the sliding rod drives the U-shaped fixing frame and clamping block to move along the direction of the adjustment rod, thereby achieving the loosening and tightening of the protective soft shell by the clamping block.
[0032] Furthermore, the swing assembly includes a flip frame, a flip table and a clamping member. The flip table is rotatably connected to the top of the flip frame. A hinge is rotatably connected between one end of the flip table and the flip frame. The flip frame is provided with a mounting cavity. A first rotating seat is provided in the mounting cavity. A second rotating seat is correspondingly provided at the bottom of the flip table. A telescopic push rod is rotatably connected between the first rotating seat and the second rotating seat. The telescopic push rod controls the flip table to flip toward the hinge side on the flip frame. The clamping member includes a clamping cylinder and a clamping block. The clamping cylinder is connected to the bottom of the flip table. The clamping cylinder is provided in the mounting cavity. A guide rod is provided on the top of the clamping cylinder. The guide rod passes through the flip table and is fixedly connected to the clamping block. The clamping cylinder controls the guide rod to drive the clamping block to clamp the protective soft shell and the clothing body on the flip table. The clamping cylinder controls the guide rod to drive the clamping block to rise and fall, so that the clamping block is clamped on the clothing body and the protective soft shell. The arrangement of the telescopic push rod and the hinge enables the turning platform to turn on the turning frame toward the side of the fan assembly, so that the clothing body and the protective soft shell face the fan, thereby accelerating the fan to blow air and cool them.
[0033] Furthermore, the fan assembly includes a base, a bracket, a drive motor, fan blades, and a rotating shaft. The base is fixedly connected to the side of the flip frame close to the hinge, the bracket is fixedly connected to the side of the base away from the hinge, the drive motor is fixedly connected to the base, the end of the drive motor is rotatably connected to a driving wheel, the rotating shaft is rotatably connected to the bracket, one end of the rotating shaft is circumferentially distributed with fan blades, and the other end of the rotating shaft is provided with a driven wheel, a belt is rotatably connected between the driving wheel and the driven wheel, and the diameter of the driving wheel is larger than the diameter of the driven wheel. The driving motor controls the driving wheel to rotate, and the driving wheel drives the driven wheel to rotate via the belt, thereby controlling the rotating shaft to drive the fan blades to rotate. The diameter of the driving wheel is larger than the diameter of the driven wheel, thereby improving the efficiency of the fan blade rotation.
[0034] Furthermore, after step c, the protective soft shell is pressed onto the garment body by the pressing assembly, and then sent out from the discharge port to the swing assembly after pressing. The pressing assembly is arranged between the discharge port and the stacking assembly, and the protective soft shell is pasted on the back of the garment body. The pressing assembly presses the protective soft shell onto the garment body. Slide rails are provided on both sides of the frame, and the pressing assembly includes a sliding seat, a swing rod and a pressing wheel. The sliding seat is slidably connected to the slide rail, and a rotating block is fixedly connected to the sliding seat. One end of the swing rod is rotatably connected to the rotating block, and the other end of the swing rod is rotatably connected to the pressing wheel. The rotating block is rotatably connected to an L-shaped turning handle, and the L-shaped turning handle controls the swing rod to drive the pressing wheel to rotate. The clamping assembly is used to press the protective soft shell onto the garment body. The swing of the clamping wheel is controlled by the L-shaped handle. The clamping wheel applies downward pressure to the protective soft shell, so that the protective soft shell is pressed onto the garment body. The setting of the slide rail and the sliding seat enables the clamping wheel to slide along the direction of the slide rail, thereby fully pressing the protective soft shell onto the garment body, thereby improving the adhesion between the protective soft shell and the garment body.
[0035] The present invention has the following beneficial effects due to the adoption of the above technical solution:
[0036] In step b of the present invention, the garment body is conveyed by the arc-shaped transmission member of the frame, and the garment body is conveyed from the feed port to the nozzle assembly. The arc-shaped transmission member conveys the garment body, and at the same time, the nozzle sprays hot melt adhesive, so that the hot melt adhesive is evenly sprayed on the back of the garment body. The conveyance of the garment body does not need to be stopped, and the nozzle assembly is synchronized to achieve uniform spraying of the hot melt adhesive, thereby improving the manufacturing efficiency of the soft shell garment. At the same time, the garment body continues to be conveyed to the heating module, and the heating module heats the hot melt adhesive on the garment body to increase the temperature, thereby facilitating the connection between the protective soft shell and the garment body.
[0037] In step c of the present invention, the arc-shaped transmission member continues to transport the garment, and the garment is transported to the bottom of the stacking assembly. The stacking assembly lowers the stacked protective soft shells onto the garment, and the protective soft shells located below are affected by the gravity of the stacked protective soft shells above, thereby pressing against the hot melt adhesive on the back of the garment, so that the protective soft shells are adhered to the garment, realizing automatic bonding of the protective soft shells to the garment, and the stacking assembly releases the protective soft shells adhered to the garment, and the stacking assembly rises and clamps the protective soft shells above it, and drives the stacked protective soft shells to continue to rise, thereby realizing that the stacking assembly sticks the protective soft shells to the garment one by one, thereby realizing automatic bonding of the protective soft shells.
[0038] In step d of the present invention, the arc-shaped transmission member sends the garment body with the protective soft shell from the discharge port to the swing assembly. The clamping member on the swing assembly clamps the garment body and the protective soft shell. The setting of the clamping member increases the adhesion between the protective soft shell and the garment body. Then the swing assembly drives the garment body to swing toward the side of the fan assembly. The fan assembly blows air to cool the garment body, so that after the hot melt adhesive solidifies, the garment body and the protective soft shell are fixed.
[0039] After step c, the present invention presses the protective soft shell onto the garment body through the pressing assembly, and then sends it out from the discharge port to the swing assembly after pressing. The pressing assembly is arranged between the discharge port and the stacking assembly, and the protective soft shell is pasted on the back of the garment body. The pressing assembly presses the protective soft shell onto the garment body. Slide rails are provided on both sides of the frame, and the pressing assembly includes a sliding seat, a swing rod and a pressing wheel. The sliding seat is slidably connected to the slide rail, and a rotating block is fixedly connected to the sliding seat. One end of the swing rod is rotatably connected to the rotating block, and the other end of the swing rod is rotatably connected to the pressing wheel. The rotating block is rotatably connected to an L-shaped turning handle, and the L-shaped turning handle controls the swing rod to drive the pressing wheel to rotate. The clamping assembly is used to press the protective soft shell onto the garment body. The swing of the clamping wheel is controlled by the L-shaped handle. The clamping wheel applies downward pressure to the protective soft shell, so that the protective soft shell is pressed onto the garment body. The setting of the slide rail and the sliding seat enables the clamping wheel to slide along the direction of the slide rail, thereby fully pressing the protective soft shell onto the garment body, thereby improving the adhesion between the protective soft shell and the garment body.
[0040] The arc-shaped transmission element of the present invention includes a conveyor belt, a bracket, and conveyor rollers. The conveyor rollers are evenly distributed within the frame, and the conveyor belt rotates around the conveyor rollers. The bracket is disposed within the conveyor belt, with the upper and lower ends of the bracket respectively abutting the upper and lower ends of the inner middle portion of the conveyor belt, resulting in curved surfaces on the upper and lower ends of the conveyor belt, which mate with the protective soft shell. The conveyor rollers are used to control the rotation of the conveyor belt for conveying garments. Because the protective soft shell has an inwardly concave adhesive surface to conform to the body, the adhesive surface of the protective soft shell does not fully contact the garment when attached to it, thereby reducing the adhesion between the protective soft shell and the garment. The brackets provide an arc-shaped upper and lower end surface of the conveyor belt. After the garment is placed on the conveyor belt, the surface of the garment sprayed with hot melt adhesive also has an arc-shaped surface. This ensures that when the protective soft shell is attached to the hot melt adhesive on the garment, the adhesive surface of the protective soft shell fully contacts the garment, thereby improving the adhesion between the garment and the protective soft shell. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] The present invention will be further described below in conjunction with the accompanying drawings:
[0042] Figure 1 This is a schematic structural diagram of the present invention when the garment body is fed from the feed port;
[0043] Figure 2 This is a schematic structural diagram of the present invention when the garment body is conveyed to the bottom of the stacking assembly;
[0044] Figure 3 This is a schematic structural diagram of the present invention when the pressing assembly is pressing the garment body with the protective soft shell attached thereto;
[0045] Figure 4 This is a schematic diagram of the structure of the present invention when the clamping assembly is clamping the protective soft shell and the garment body on the turning table;
[0046] Figure 5 This is a structural diagram of the present invention when the fan assembly is blowing air to the garment body;
[0047] Figure 6 Schematic diagram of the structure of the flip assembly in the present invention;
[0048] Figure 7 Schematic diagram of the structure of the stacking assembly in the present invention;
[0049] Figure 8 Schematic diagram of the structure of the arc transmission element in the present invention;
[0050] Figure 9 Schematic diagram of the structure of the bracket in the present invention;
[0051] Figure 10 Schematic diagram of the structure of the fan assembly in the present invention.
[0052] In the figure, 1-body; 2-protective soft shell; 3-frame; 4-arc-shaped transmission member; 5-feeding port; 6-discharging port; 7-nozzle assembly; 8-heating module; 9-stacking assembly; 10-swinging assembly; 11-clamping member; 12-fan assembly; 13-transmission belt; 14-bracket; 15-transmission roller; 16-arc-shaped surface; 17-fixing frame; 18-tensioning rod; 19-lifting bracket; 20-nozzle; 21-lifting cylinder; 22-slider; 23-slide; 24-cylinder mounting seat; 25-stacking frame; 26-thrusting member; 27-thrusting cylinder; 28-adjusting slot; 29-screw; 30-screw Motor; 31-adjusting rod; 32-sliding rod; 33-U-shaped fixing frame; 34-clamping block; 35-turning frame; 36-turning table; 37-hinge; 38-mounting cavity; 39-first rotating seat; 40-second rotating seat; 41-telescopic push rod; 42-clamping cylinder; 43-clamping block; 44-base; 45-bracket; 46-driving motor; 47-fan blade; 48-rotating shaft; 49-driving wheel; 50-driven wheel; 51-belt; 52-clamping assembly; 53-slide rail; 54-sliding seat; 55-swinging rod; 56-pressure wheel; 57-rotating block; 58-L-shaped turning handle; 59-guide rod. DETAILED DESCRIPTION
[0053] like Figures 1 to 10 As shown, a method for preparing an antibacterial and antistatic soft shell garment of the present invention comprises the following steps:
[0054] a. Clothing
[0055] First, the antibacterial and antistatic fabric is cut and then sewn into garments.
[0056] b. Hot melt adhesive coating
[0057] 1) Spraying
[0058] The formed garment body 1 is placed with its back facing upwards into the feed port 5 of the arc-shaped transmission member 4 of the frame 3 for conveying. After the garment body 1 passes through the nozzle assembly 7 , the nozzle assembly 7 evenly sprays the hot melt adhesive on the back of the garment body 1 .
[0059] 2) Heating
[0060] After the garment body 1 sprayed with the hot melt adhesive passes through the heating module 8 , the heating module 8 heats the hot melt adhesive on the garment body 1 .
[0061] c. Pasting of protective soft shell
[0062] 1) Lowering the protective soft shell
[0063] The arc-shaped transmission member 4 controls the conveyance of the garment body 1 toward the stacking assembly 9 . The garment body 1 is located below the stacking assembly 9 . The stacking assembly 9 lowers the stacked protective soft shells 2 onto the garment body 1 .
[0064] 2) Resetting the stacking assembly 9
[0065] The stacking assembly 9 releases the bottom protective soft shell 2, then rises and clamps the protective soft shell 2 above it again, and drives the remaining protective soft shells 2 to rise again, so that the bottom protective soft shell 2 is attached to the back of the garment body 1.
[0066] d. Blowing cold
[0067] 1) Send
[0068] The arc-shaped transmission member 4 delivers the garment body 1 with the protective soft shell 2 attached thereto from the discharge port 6 of the arc-shaped transmission member 4 to the swing assembly 10 .
[0069] 2) Cooling with air
[0070] The clamping part 11 on one side of the swing assembly 10 clamps the garment body 1, and then the swing assembly 10 drives the protective soft shell 2 attached to the garment body 1 to flip toward the side of the fan assembly 12. After the fan assembly 12 is running, it blows air to cool the garment body 1, so that the garment body 1 and the protective soft shell 2 are adhered and fixed.
[0071] e. Complete preparation
[0072] After the garment body 1 and the protective soft shell 2 are fixed, the swing assembly 10 drives the garment body 1 to reset, and then the clamping member 11 releases the garment body 1 and removes the garment body 1 from the swing assembly 10, thereby completing the preparation.
[0073] An arc-shaped transmission member 4 is arranged in the frame 3, a feed port 5 is provided at one end of the frame 3, a discharge port 6 is provided at the other end of the frame 3, a nozzle assembly 7 is arranged on the side of the frame 3 close to the feed port 5, a heating module 8 and a stacking assembly 9 are also provided on the frame 3, the heating module 8 is arranged on the side of the nozzle assembly 7 close to the discharge port 6, the stacking assembly 9 is arranged on the side of the frame 3 close to the discharge port 6, a swing assembly 10 is provided correspondingly on one side of the discharge port 6, and a fan assembly 12 is matched and connected to the swing assembly 10. After the garment body 1 enters from the feed port 5, it is transported to the discharge port 6 through the arc transmission member 4. After the garment body 1 passes through the nozzle assembly 7, the hot melt adhesive is evenly sprayed on the garment body 1. The heating module 8 heats the hot melt adhesive. The stacking assembly 9 sticks the protective soft shell 2 on the hot melt adhesive of the garment body 1 to fix it. The garment body 1 with the protective soft shell 2 stuck on it is sent from the discharge port 6 to the swing assembly 10. The fan assembly 12 on the swing assembly 10 blows air to cool the garment body 1, thereby cooling the hot melt adhesive and solidifying it, thereby fixing the garment body 1 and the protective soft shell 2.
[0074] The arc-shaped transmission member 4 includes a transmission belt 13, a bracket 14 and a transmission roller 15. The transmission rollers 15 are evenly distributed in the frame 3. The transmission belt 13 rotates around the transmission rollers 15. The bracket 14 is arranged in the transmission belt 13. The upper and lower ends of the bracket 14 respectively rest on the upper and lower ends of the inner middle part of the transmission belt 13, so that the upper and lower end surfaces of the transmission belt 13 are arc-shaped surfaces 16, and the arc-shaped surface 16 matches the protective soft shell 2. The conveyor roller 15 is used to control the rotation of the conveyor belt 13 for conveying the garment 1. Since the adhesive surface of the protective soft shell 2 is in an inward arc shape in order to fit the body, when the protective soft shell 2 is attached to the garment 1, its adhesive surface cannot fully contact the garment 1, thereby reducing the adhesion between the protective soft shell 2 and the garment 1. By arranging the bracket 14, the upper and lower end surfaces of the conveyor belt 13 are arc-shaped. After the garment 1 is placed on the conveyor belt 13, the side sprayed with hot melt adhesive is also arc-shaped. Therefore, when the protective soft shell 2 is attached to the hot melt adhesive of the garment 1, the adhesive surface of the protective soft shell 2 can fully contact the garment 1, thereby improving the adhesion between the garment 1 and the protective soft shell 2.
[0075] The bracket 14 includes a fixing frame 17 and a tensioning rod 18. The fixing frames 17 are fixedly connected to either side of the frame 3. The tensioning rod 18 is fixedly connected to the upper and lower ends of the fixing frames 17. The tensioning rod 18 respectively abuts the upper and lower ends of the middle portion of the inner side of the conveyor belt 13. The fixing frames 17 are fixed to the frame 3, thereby connecting the tensioning rod 18 to the frame 3. The tensioning rod 18 abuts the middle portion of the inner side of the conveyor belt 13, forming curved surfaces 16 at the upper and lower ends of the conveyor belt 13. This allows the garment 1 conveyed by the conveyor belt 13 to fit snugly against the protective soft shell 2, thereby increasing the contact area between the protective soft shell 2 and the garment 1.
[0076] The nozzle assembly 7 includes a lifting bracket 19, a nozzle 20 and a lifting cylinder 21. The lifting bracket 19 is an L-shaped structure. The nozzle 20 is fixedly connected to the top of the lifting bracket 19. Sliders 22 are provided at both ends of the lifting support. Sliders 23 are provided on both sides of the frame 3 corresponding to the slides 22. The slides 22 are slidably connected in the slides 23. Cylinder mounting seats 24 are fixedly connected to the two sides of the frame 3 below the slides 23. The lifting cylinder 21 is fixedly connected to the cylinder mounting seat 24. The lifting cylinder 21 is connected to the bottom of the lifting bracket 19. The lifting cylinder 21 controls the lifting bracket 19 to drive the nozzle 20 to rise and fall along the slide 23. The lifting cylinder 21 is used to control the lifting bracket 19 to drive the nozzle 20 to move up and down. When the hot melt adhesive needs to be sprayed on the garment 1, the lifting cylinder 21 controls the nozzle 20 to descend, reducing the distance between the nozzle 20 and the garment 1, thereby ensuring that the hot melt adhesive can be sprayed evenly on the garment 1, avoiding the hot melt adhesive falling onto the conveyor belt 13, causing the garment 1 to stick to the conveyor belt 13, and the setting of the lifting cylinder 21 increases the accuracy of the hot melt adhesive spraying.
[0077] The stacking assembly 9 includes a stacking frame 25, a push member 26, and a push cylinder 27. The stacking frame 25 is fixedly connected to both sides of the frame 3. The stacking frame 25 is provided with an adjustment slot 28, in which a lead screw 29 is provided. A lead screw motor 30 is provided at the top of the stacking frame 25. The lead screw motor 30 is connected to the lead screw 29, and an adjustment rod 31 is slidably connected to the lead screw 29. The top of the push member 26 is slidably connected to the adjustment rod 31. The push cylinder 27 is mounted on the top of the adjustment rod 31 and is fixedly connected to the push member 26. The push cylinder 27 controls the push member 26 to press against both sides of the protective soft shell 2. The lead screw motor 30 controls the rotation of the lead screw 29, thereby enabling the adjustment rod 31 to drive the push member 26 to move up and down along the adjustment slot 28. The push cylinder 27 controls the push member 26 to press against both sides of the protective soft shell 2.
[0078] The push member 26 includes a sliding rod 32, a U-shaped fixing frame 33, and a clamping block 34. The sliding rod 32 is slidably connected to the adjustment rod 31. The push cylinder 27 is connected to the sliding rod 32. The top of the U-shaped fixing frame 33 is fixedly connected to the bottom of the sliding rod 32. The clamping blocks 34 are fixedly connected to both ends of the bottom of the U-shaped fixing frame 33. The clamping blocks 34 clamp onto the protective soft shell 2. The push cylinder 27 pushes the sliding rod 32 to slide on the adjustment rod 31. The sliding rod 32 drives the U-shaped fixing frame 33 and the clamping block 34 to move along the direction of the adjustment rod 31, thereby loosening and tightening the protective soft shell 2 with the clamping block 34.
[0079] The swing assembly 10 includes a flip frame 35, a flip table 36 and a clamping member 11. The flip table 36 is rotatably connected to the top of the flip frame 35. A hinge 37 is rotatably connected between one end of the flip table 36 and the flip frame 35. The flip frame 35 is provided with a mounting cavity 38. A first rotating seat 39 is provided in the mounting cavity 38. A second rotating seat 40 is correspondingly provided at the bottom of the flip table 36. A telescopic push rod 41 is rotatably connected between the first rotating seat 39 and the second rotating seat 40. The telescopic push rod 41 is rotatably connected to the second rotating seat 40. The turning platform 36 is controlled to turn toward the hinge 37 on the turning frame 35. The clamping member 11 includes a clamping cylinder 42 and a clamping block 43. The clamping cylinder 42 is connected to the bottom of the turning platform 36 and is located in the mounting cavity 38. A guide rod 59 is provided on the top of the clamping cylinder 42. The guide rod 59 passes through the turning platform 36 and is fixedly connected to the clamping block 43. The clamping cylinder 42 controls the guide rod 59 to drive the clamping block 43 to clamp the protective soft shell 2 and the garment body 1 on the turning platform 36. The clamping cylinder 42 controls the guide rod 59 to drive the clamping block 43 to move upward and downward, thereby clamping the clamping block 43 to the garment body 1 and the protective soft shell 2. The arrangement of the telescopic push rod 41 and the hinge 37 causes the turning platform 36 to turn toward the fan assembly 12 on the turning frame 35, thereby directing the garment body 1 and the protective soft shell 2 toward the fan, thereby accelerating the fan's air flow and cooling.
[0080] The fan assembly 12 includes a base 44, a bracket 45, a drive motor 46, a fan blade 47, and a rotating shaft 48. The base 44 is fixedly connected to the side of the flip frame 35 close to the hinge 37. The bracket 45 is fixedly connected to the side of the base 44 away from the hinge 37. The drive motor 46 is fixedly connected to the base 44. The end of the drive motor 46 is rotatably connected to a driving pulley 49. The rotating shaft 48 is rotatably connected to the bracket 45. One end of the rotating shaft 48 is circumferentially distributed with fan blades 47. The other end of the rotating shaft 48 is provided with a driven pulley 50. A belt 51 is rotatably connected between the driving pulley 49 and the driven pulley 50. The diameter of the driving pulley 49 is larger than the diameter of the driven pulley 50. The driving motor 46 controls the driving pulley 49 to rotate, and the driving pulley 49 drives the driven pulley 50 to rotate through the belt 51, thereby controlling the rotating shaft 48 to drive the fan blades 47 to rotate. The diameter of the driving pulley 49 is larger than the diameter of the driven pulley 50, thereby improving the efficiency of the rotation of the fan blades 47.
[0081] After step c, the protective soft shell 2 is pressed onto the garment body 1 by the pressing assembly 52, and then sent out from the discharge port 6 to the swing assembly 10 after pressing. The pressing assembly 52 is arranged between the discharge port 6 and the stacking assembly 9, and the protective soft shell 2 is pasted on the back of the garment body 1. The pressing assembly 52 presses the protective soft shell onto the garment body 1. Slide rails 53 are provided on both sides of the frame 3. The pressing assembly 52 includes a sliding seat 54, a swing rod 55 and a clamping wheel 56. The sliding seat 54 is slidably connected to the slide rail 53, and a rotating block 57 is fixedly connected to the sliding seat 54. One end of the swing rod 55 is rotatably connected to the rotating block 57, and the other end of the swing rod 55 is rotatably connected to the clamping wheel 56. The rotating block 57 is rotatably connected to an L-shaped turning handle 58, and the L-shaped turning handle 58 controls the swing rod 55 to drive the clamping wheel 56 to rotate. The clamping assembly 52 is configured to press the protective soft shell 2 onto the garment body 1. The L-shaped handle 58 is used to control the swing of the clamping wheel 56. The clamping wheel 56 applies downward pressure to the protective soft shell 2, so that the protective soft shell 2 is pressed onto the garment body 1. The setting of the slide rail 53 and the sliding seat 54 enables the clamping wheel 56 to slide along the direction of the slide rail 53, thereby fully pressing the protective soft shell 2 onto the garment body 1, thereby improving the adhesion between the protective soft shell 2 and the garment body 1.
[0082] The present invention sets a frame 3, and sequentially sets a nozzle assembly 7, a heating module 8, a stacking assembly 9, a pressing assembly 52, a swing assembly 10 and a fan assembly 12 on the frame 3, and the hot melt adhesive is evenly sprayed on the garment body 1 by the nozzle assembly 7, and then heated by the heating module 8 to ensure that the protective soft shell 2 lowered by the stacking assembly 9 is adhered to the garment body 1, and then the protective soft shell 2 is pressed onto the garment body 1 by the pressing assembly 52, thereby increasing the adhesion between the protective soft shell 2 and the garment body 1, and the garment body 1 is continuously conveyed to the swinging assembly 10, and the swinging assembly 10 drives the garment body 1 and the protective soft shell 2 to swing toward the side of the fan assembly 12, and the fan assembly 12 blows air to cool them, thereby fixing the protective soft shell 2 and the garment body 1, and adhering the protective soft shell 2 to the garment body 1 by the hot melt adhesive, thereby improving the adhesion stability of the protective soft shell 2 and avoiding the falling off of the protective soft shell.
[0083] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent substitutions, or modifications based on the present invention to solve substantially the same technical problems and achieve substantially the same technical effects are all included in the scope of protection of the present invention.
Claims
1. A method for preparing an antibacterial and antistatic soft shell garment, characterized in that The steps include: a. Clothing First, the antibacterial and antistatic fabrics are cut and then sewn into garments; b. Hot melt adhesive coating 1) Spraying Place the formed garment body with its back facing upwards into the feed port of the arc-shaped transmission member of the frame for conveying. After the garment body passes through the nozzle assembly, the nozzle assembly evenly sprays hot melt adhesive on the back of the garment body. 2) Heating After the garment body sprayed with hot melt adhesive passes through the heating module, the heating module heats the hot melt adhesive on the garment body; c. Pasting of protective soft shell 1) Lowering the protective soft shell The arc-shaped transmission member controls the conveyance of the garment body to the stacking assembly. The garment body is located below the stacking assembly, and the stacking assembly lowers the stacked protective soft shell onto the garment body. The arc-shaped transmission member includes a conveyor belt, a bracket, and a conveyor roller. The conveyor rollers are evenly distributed in the frame. The conveyor belt rotates around the conveyor rollers. The bracket is arranged in the conveyor belt. The upper and lower ends of the bracket respectively abut against the upper and lower ends of the inner middle part of the conveyor belt, so that the upper and lower end surfaces of the conveyor belt are arc-shaped surfaces, and the arc-shaped surfaces match the protective soft shell. 2) Resetting the stack components The stacking assembly releases the bottom protective soft shell, then rises and clamps the protective soft shell above it again, driving the remaining protective soft shells to rise again, so that the bottom protective soft shell is attached to the back of the garment; d. Blowing cold 1) Send The arc-shaped transmission member delivers the garment body with the protective soft shell pasted thereon from the discharge port of the arc-shaped transmission member to the swing assembly; 2) Cooling with air The clamping piece on one side of the swing assembly clamps the garment body, and then the swing assembly drives the protective soft shell with the garment body pasted to flip toward the side of the fan assembly. After the fan assembly is running, the garment body is blown to cool down, so that the garment body and the protective soft shell are adhered and fixed; the swing assembly includes a flip frame, a flip table and the clamping piece, the flip table is rotatably connected to the top of the flip frame, a hinge is rotatably connected between one end of the flip table and the flip frame, the flip frame is provided with a mounting cavity, a first rotating seat is provided in the mounting cavity, a second rotating seat is correspondingly provided at the bottom of the flip table, a telescopic push rod is rotatably connected between the first rotating seat and the second rotating seat, and the telescopic push rod controls the flip table to flip toward the hinge side on the flip frame, the clamping piece includes a clamping cylinder and a clamping block, the clamping cylinder is connected to the bottom of the flip table, the clamping cylinder is provided in the mounting cavity, a guide rod is provided on the top of the clamping cylinder, the guide rod passes through the flip table and is fixedly connected to the clamping block, and the clamping cylinder controls the guide rod to drive the clamping block to clamp the protective soft shell and the garment body on the flip table; e. Complete preparation After the garment body is fixed to the protective soft shell, the swing assembly drives the garment body to reset, and then the clamping member releases the garment body and removes the garment body from the swing assembly, thereby completing the preparation.
2. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: The arc-shaped transmission member is arranged in the frame, the feed port is provided at one end of the frame, the discharge port is provided at the other end of the frame, the nozzle assembly is provided on a side of the frame close to the feed port, and a heating module and a stacking assembly are also provided on the frame. The heating module is provided on a side of the nozzle assembly close to the discharge port, and the stacking assembly is provided on a side of the frame close to the discharge port. A swing assembly is correspondingly provided on one side of the discharge port, and a fan assembly is matched and connected to the swing assembly.
3. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: The bracket includes a fixing frame and a tightening rod. The fixing frames are fixedly connected to both sides of the frame respectively. The tightening rod is fixedly connected to the upper and lower ends of the two fixing frames. The tightening rod is respectively against the upper and lower ends of the middle part of the inner side of the conveyor belt.
4. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: The nozzle assembly includes a lifting bracket, a nozzle and a lifting cylinder. The lifting bracket is an L-shaped structure. The nozzle is fixedly connected to the top of the lifting bracket. Sliders are provided at both ends of the lifting support. Slide grooves are provided on both sides of the frame corresponding to the sliders. The sliders are slidably connected in the slide grooves. Cylinder mounting seats are fixedly connected to the cylinder mounting seats on both sides of the frame below the slide grooves. The lifting cylinder is fixedly connected to the cylinder mounting seat. The lifting cylinder is connected to the bottom of the lifting bracket. The lifting cylinder controls the lifting bracket to drive the nozzle to rise and fall along the slide groove.
5. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: The stacking assembly includes a stacking frame, a pushing piece and a pushing cylinder. The stacking frame is fixedly connected to both sides of the frame. The stacking frame is provided with an adjusting slot. A lead screw is provided in the adjusting slot. A lead screw motor is provided on the top of the stacking frame. The lead screw motor is connected to the lead screw. The lead screw is slidably connected to an adjusting rod. The top of the pushing piece is slidably connected to the adjusting rod. The pushing cylinder is installed on the top of the adjusting rod. The pushing cylinder is fixedly connected to the pushing piece. The pushing cylinder controls the pushing piece to press tightly against both sides of the protective soft shell.
6. The method for preparing an antibacterial and antistatic soft shell garment according to claim 5, characterized in that: The pushing member includes a sliding rod, a U-shaped fixing frame and a clamping block. The sliding rod is slidably connected to the adjusting rod, the pushing cylinder is connected to the sliding rod, the top of the U-shaped fixing frame is fixedly connected to the bottom of the sliding rod, the clamping block is fixedly connected to both ends of the bottom of the U-shaped fixing frame, and the clamping block is clamped to the protective soft shell.
7. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: The fan assembly includes a base, a bracket, a drive motor, fan blades and a rotating shaft. The base is fixedly connected to the side of the flip frame close to the hinge, the bracket is fixedly connected to the side of the base away from the hinge, the drive motor is fixedly connected to the base, the end of the drive motor is rotatably connected to a driving wheel, the rotating shaft is rotatably connected to the bracket, the fan blades are distributed circumferentially at one end of the rotating shaft, and a driven wheel is provided at the other end of the rotating shaft. A belt is rotatably connected between the driving wheel and the driven wheel, and the diameter of the driving wheel is larger than the diameter of the driven wheel.
8. The method for preparing an antibacterial and antistatic soft shell garment according to claim 1, characterized in that: After step c, the protective soft shell is pressed onto the garment body by the pressing assembly, and then sent out from the discharge port to the swing assembly after pressing. The pressing assembly is arranged between the discharge port and the stacking assembly, and the protective soft shell is attached to the back of the garment body. The pressing assembly presses the protective soft shell onto the garment body. Slide rails are provided on both sides of the frame. The pressing assembly includes a sliding seat, a swing rod and a pressing wheel. The sliding seat is slidably connected to the slide rail, and a rotating block is fixedly connected to the sliding seat. One end of the swing rod is rotatably connected to the rotating block, and the other end of the swing rod is rotatably connected to the pressing wheel. The rotating block is rotatably connected to an L-shaped handle, and the L-shaped handle controls the swing rod to drive the pressing wheel to rotate.
Citation Information
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