Processing device for carbon fiber composite textile material
By using a motor-driven turntable and stirring blades to accelerate soaking efficiency, an air circulation system for rapid drying, and an easily removable filter structure, the problems of odor pollution and high maintenance costs in carbon fiber composite textile material processing equipment are solved, achieving a highly efficient and environmentally friendly processing process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ZHONGSHAN HENGHUI AUTOMATION TECH CO LTD
- Filing Date
- 2026-03-03
- Publication Date
- 2026-05-05
AI Technical Summary
Existing carbon fiber composite textile material processing equipment generates odors during the drying process, affecting the environment and the health of operators, and has high maintenance costs and long maintenance time.
A processing device for carbon fiber composite textile materials was designed, including a motor-driven turntable and stirring blades to accelerate soaking efficiency; an air circulation system for rapid air drying and a filter box for odor filtering; and an easily disassembled structure for easy maintenance and cleaning.
It improves soaking and drying efficiency, reduces odor pollution, lowers maintenance costs and time, and ensures a clean working environment and normal equipment operation.
Smart Images

Figure CN121976367A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of composite textile material processing technology, and specifically relates to a processing device for carbon fiber composite textile materials. Background Technology
[0002] In the processing of carbon fiber composite textiles, immersion devices are commonly used to degrease and remove impurities. These devices are typically rectangular or circular and are used to soak the fiber material in a degreasing agent or cleaning agent to remove grease and impurities. Immersion devices are usually made of corrosion-resistant materials, such as stainless steel. In the immersion device, the fiber material is completely immersed in the degreasing solution, and stirring devices or vortex systems can be used to enhance the cleaning effect of the solution on the fiber material.
[0003] During processing, carbon fiber composite textile materials need to be air-dried naturally or through air circulation after soaking, degreasing and impurity removal. During the air-drying process, residual ethanol solvent will be mixed in with the circulating air. If the humid air containing residual ethanol solvent is directly discharged into the outside air, it will produce an odor. This odor will cause environmental pollution and affect the working environment of the operators, thus affecting their health.
[0004] Secondly, after long-term use, impurities will accumulate inside the soaking and filtering devices. If not dealt with in time, they will clog the devices and cause damage. Therefore, regular maintenance and cleaning are required. Traditional soaking and filtering devices are maintained and cleaned by disassembling the whole unit, which greatly increases maintenance costs and time. Therefore, by setting up a machine that is easy to disassemble, maintenance costs and time will be effectively reduced, and work efficiency will be increased.
[0005] Therefore, to ensure the quality and processing efficiency of carbon fiber composite textile materials, as well as the normal operation of equipment, it is crucial to install easily disassembleable filtration and soaking mechanisms. These mechanisms can effectively remove impurities and facilitate equipment maintenance and cleaning. Therefore, it is desirable to develop a processing device for carbon fiber composite textile materials to address the above issues. Summary of the Invention
[0006] To address the shortcomings of existing technologies, the present invention aims to provide a processing device for carbon fiber composite textile materials, thereby resolving the problems mentioned in the background section.
[0007] This invention is achieved through the following technical solution: a processing device for carbon fiber composite textile materials, comprising: a main body shell, a filter box one and an soaking tank, a top cover one is provided on the top left side of the main body shell, a top cover two is provided on the right side of the top cover one, and a set of bases is provided at the bottom of the main body shell; A set of socket plate 1 is provided on the left side of the main body shell, and a set of filter box 1 is provided on the left side of socket plate 1. A set of socket plate 2 is provided on the right side of the main body shell, and a set of filter box 2 is provided on the right side of socket plate 2. A set of support frame is provided at the top inside the main body shell. A set of embedding grooves are opened on the left and right sides of the inside of the support frame. Several sets of springs 3 are provided at the bottom inside the support frame. The support frame has a set of working boxes inside, a set of connecting pipes below the working boxes, a set of placement buckets below the connecting pipes, a set of soaking buckets outside the placement buckets, a set of fixing frames outside the soaking buckets, a set of motor chambers in the center of the base, and two sets of water storage chambers on the left and right sides of the motor chambers.
[0008] As a preferred embodiment, the bottom of the fixing frame is connected to the top of the two sets of water storage chambers through two sets of water guide pipes. A set of observation glass is installed on the front of the main body shell. The observation glass is tempered glass. A set of water stop valves is provided on the left and right sides of the lower part of the front of the main body shell. The rear side of the water stop valve penetrates the front of the main body shell and is connected to the water guide pipe. The main body shell is made of stainless steel, the base is made of stainless steel, and there are two sets of support feet on the left and right sides of the bottom of the base. The two sets of support feet are made of natural rubber. There is a set of drain outlets on the left and right sides of the front of the base. The two sets of drain outlets are connected to the two sets of water storage chambers. There is a set of dehumidification pipe 1 on the left side of the main body shell and a set of dehumidification pipe 2 on the right side of the main body shell.
[0009] In a preferred embodiment, the top left side of the top cover one is hinged to the top of the main body shell via hinge post one, and the top right side of the top cover two is hinged to the top of the main body shell via hinge post two. A set of air inlets is provided on the top left side of Top Cover 1 and the top right side of Top Cover 2. A dustproof net is installed inside the air inlet. A set of knobs is provided on the top rear side of Top Cover 1. A set of slots is provided on the front right side of Top Cover 1. A set of knobs is provided on the top front side of Top Cover 2. A set of slots is provided on the rear left side of Top Cover 2.
[0010] In a preferred embodiment, a set of transmission chambers is provided below the knob, and a set of gears is provided on the rear side inside the transmission chamber. The knob and gears are connected and fixed by a set of transmission shafts. A set of locking strips is provided in front of the gears, and the front side of the gears meshes with the rear side of the locking strips. The right side of the transmission chamber is a through structure. The locking strips and the slots are positioned opposite each other. The width and height of the locking strips are smaller than the width and height of the slots. Below the knob is a transmission chamber, and inside the front of the transmission chamber is a gear. The knob and the gear are connected and fixed by a transmission shaft. Behind the gear is a retaining bar, which meshes with the front of the retaining bar. The left side of the transmission chamber is a through structure. The retaining bar and the retaining groove are opposite each other. The width and height of the retaining bar are smaller than the width and height of the retaining groove.
[0011] As a preferred embodiment, the front and rear sides of the first and second socket plates are respectively provided with two sets of fixing ears, and the four sets of fixing ears are connected and fixed by four sets of bolts. The first filter box and the first socket plate are an integral structure. The filter box is hollow inside. The right side of the filter box is connected to the left side of the exhaust pipe. The filter box 2 and the connecting plate 2 are an integral structure. The interior of the filter box 2 is hollow. Both the filter box 1 and the filter box 2 contain activated carbon particles. The left side of the filter box 2 is connected to the right side of the exhaust pipe 2. The left side of the filter box 1 is connected to a set of air outlet 1, and the right side of the filter box 2 is connected to a set of air outlet 2.
[0012] As a preferred embodiment, several sets of stirring blades are welded to the upper part of the inner wall of the soaking tank. A set of pressure chamber one is opened inside the lower part of the soaking tank. A set of pressure chamber two is opened on the left and right sides of pressure chamber one. The left and right sides of pressure chamber one are respectively connected to the lower part of the two sets of pressure chamber two. A set of water outlets is opened through the upper part of each set of pressure chamber two, and a sealing strip is provided on the inner wall of the through point. Each set of leak outlets has a set of slots at the top. Several sets of springs are evenly spaced at the bottom of the pressure chamber. A pressure plate is installed inside the pressure chamber. A connecting rod is installed above the pressure plate. The top of the connecting rod extends upward through the bottom of the soaking tank. A sealing ring is installed above the penetration point. A cross transmission block is installed at the top of the connecting rod. A water baffle is installed inside each set of pressure chambers. The length, width, and height of the water baffle are all greater than the length, width, and height of the leak outlet.
[0013] In a preferred embodiment, four sets of insert rods are equidistantly arranged in an annular area near the center of the bottom of the soaking tank. The bottom of the fixing frame is recessed downward to form a set of rotating grooves. Inside the rotating grooves, there is a set of turntables. The top of the turntables has four sets of slots. The positions of the four sets of slots correspond one-to-one with the positions of the four sets of insert rods. The radius of the insert rod is less than the radius of the slot, and the height of the insert rod is less than the height of the slot. A set of ball grooves is provided in the annular area at the bottom of the soaking tank away from the center. A set of ball grooves is provided at the bottom of the fixing frame. Ball grooves 1 and 2 are positioned opposite each other and have the same radius. Several sets of universal balls are provided between ball grooves 1 and 2. A set of motors is installed inside the motor cavity. The motors are servo motors. A set of rotating shafts is provided on the top of the motors. The top of the motors is connected to the bottom of the rotating shafts through a transmission mechanism. The top of the rotating shafts passes through the bottom of the fixing frame and is connected and fixed to the bottom of the turntable.
[0014] As a preferred embodiment, the side of the placement bucket is provided with several sets of through holes, the top of the placement bucket is provided with a screw groove, the inside of the screw groove is provided with an internal thread groove, the bottom of the placement bucket is recessed upward to form a set of rotating grooves, a set of turntables is provided inside the rotating grooves, a set of cross transmission grooves is provided at the bottom of the turntables, and several sets of universal balls are provided between the turntables and the rotating grooves. The length, width, and depth of the cross transmission groove are all greater than the length, width, and height of the cross transmission block. A set of threaded connecting pipes is provided below the connecting pipe. Threads are opened on the outside of the threaded connecting pipes. The radius of the threaded connecting pipes is less than the radius of the screw groove. The length of the threaded connecting pipes is equal to the length of the screw groove. The connecting pipe and the working box are an integral structure. The top of the connecting pipe and the bottom of the working box are a through structure. A set of unlocking grooves are opened on the left and right sides of the top of the working box. In actual use, the motor is started, and its rotation drives the rotating shaft through the transmission mechanism. The rotating shaft drives the first turntable to rotate inside the first rotating groove. The rotation of the first turntable, through the interlocking connection of four sets of plug rods and slots, drives the soaking tank to rotate. When the soaking tank rotates, several sets of universal balls rotate between the first and second ball grooves, reducing the friction between the bottom of the soaking tank and the bottom of the fixed frame, thus making the rotation of the soaking tank more stable and smooth. When the soaking tank rotates, the cross transmission block at the bottom of the soaking tank engages with the cross transmission groove, thereby driving the second turntable to rotate inside the second rotating groove. When the second turntable rotates, it drives several sets of universal balls to rotate, thereby reducing the friction between the second turntable and the second rotating groove. At the same time, several sets of stirring blades inside the soaking tank stir the ethanol solvent, causing the ethanol solvent to form a vortex, thereby thoroughly washing and soaking the carbon fiber composite textile material placed inside the tank, accelerating the dissolution and removal of grease and impurities on the surface of the carbon fiber composite textile material, thereby improving the soaking efficiency, and thus improving the degreasing and impurity removal efficiency, and ultimately improving the work efficiency.
[0015] As a preferred embodiment, each unlocking slot is provided with an unlocking button above it, and each unlocking slot is provided with a telescopic cavity below it. Each telescopic cavity is provided with a telescopic opening on the side away from the center. Inside the telescopic cavity, a number of springs are provided at the front and back positions on the side away from the center. A limiting block is provided on the side of the springs near the center. A locking head is provided on the side of the limiting block near the center. The length and width of the locking head are smaller than the length and width of the telescopic opening and the embedded slot. The unlocking button is connected to the limit block by a set of fixed rods. The bottom of the unlocking groove is connected to the top of the telescopic cavity. Two sets of handles are welded and fixed inside the two sets of unlocking grooves. Two sets of liquid injection ports are opened through the inside of the two sets of handles. An air circulation mechanism is provided in the center of the working box. The air circulation mechanism consists of a fan, a power system and a connection system. The top and bottom of the air circulation system are both through structures. A dustproof net is installed above the air circulation mechanism. In actual use, when the air circulation mechanism is activated, the power system supplies power to the fan through the connection system, driving the fan to rotate. The fan introduces external air into the main body shell through two sets of air inlets, and then introduces the air into the connecting pipe, and finally into the placement bucket, so as to quickly dry the carbon fiber composite textile material inside the placement bucket and improve work efficiency.
[0016] The beneficial effects of the present invention after adopting the above technical solution are as follows: By setting a motor, a rotating shaft, a turntable, and stirring blades, the rotating shaft can be driven to rotate by the rotation of the motor, thereby driving the turntable to rotate. Then, the soaking tank can be driven to rotate by the interlocking action of the plug and the slot, thereby causing several sets of stirring blades to rotate, thereby stirring the ethanol solvent inside the soaking tank, and dissolving the grease and impurities on the surface of the carbon fiber composite textile material, improving the purity of the carbon fiber composite textile material and improving work efficiency. By setting an air circulation mechanism, an air inlet, and a connecting pipe, external air can be introduced into the placement tank, thereby accelerating the drying speed of the carbon fiber composite textile material and improving work efficiency. By setting filter box one and filter box two, the circulated air can be filtered and odors removed, protecting the working environment. By setting threaded connecting pipes, screw grooves, socket plate one and socket plate two, the placement tank, filter box one and filter box two can be easily maintained and cleaned, preventing the accumulation of impurities from affecting the working efficiency of the device. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of a processing device for carbon fiber composite textile materials according to the present invention.
[0019] Figure 2 This is a schematic diagram of the internal structure of a processing device for carbon fiber composite textile materials according to the present invention.
[0020] Figure 3 This is a top view of a processing apparatus for carbon fiber composite textile materials according to the present invention.
[0021] Figure 4 This is a schematic diagram of the internal structure of top cover one and top cover two in a carbon fiber composite textile material processing device of the present invention.
[0022] Figure 5 This is a schematic diagram of the soaking tank in a processing device for carbon fiber composite textile materials according to the present invention.
[0023] Figure 6 This is a schematic diagram of the internal structure of the soaking tank in the processing device for carbon fiber composite textile materials according to the present invention.
[0024] Figure 7 This is a schematic diagram of the turntable and universal ball in the processing device for carbon fiber composite textile materials of the present invention.
[0025] Figure 8 This is a schematic diagram of the structure of the bucket placed in the processing device for carbon fiber composite textile materials according to the present invention.
[0026] Figure 9 This is a schematic diagram of the bottom structure of the bucket placed in the processing device for carbon fiber composite textile materials according to the present invention.
[0027] Figure 10 This is a schematic diagram showing the connection of the working box, connecting pipe, and placement bucket in a carbon fiber composite textile material processing device according to the present invention.
[0028] Figure 11 This is a schematic diagram of the clamp and spring 2 in a carbon fiber composite textile material processing device of the present invention.
[0029] Figure 12 This is a schematic diagram of the internal structure of the telescopic cavity in a carbon fiber composite textile material processing device of the present invention.
[0030] Figure 13 This is a schematic diagram of the threaded connecting pipe and the rotary groove in a carbon fiber composite textile material processing device of the present invention.
[0031] In the diagram, 100-main body shell, 110-base, 120-drain outlet, 130-socket plate one, 140-socket plate two, 150-filter box one, 160-filter box two, 170-top cover one, 180-top cover two, 190-air inlet, 200-knob one; 210-Knob II, 220-Support Bracket, 230-Work Box, 240-Connecting Pipe, 250-Placement Bucket, 260-Soaking Bucket, 270-Fixing Bracket, 280-Turntable I, 290-Water Guide Pipe, 300-Motor, 310-Shaft, 320-Water Storage Chamber, 330-Activated Carbon Granules, 340-Exhaust Pipe I, 350-Exhaust Pipe II, 360-Gear I, 370-Card Strip I, 380-Card Slot I, 390-Gear II, 400-Card Strip II; 410-Slot II, 420-Leakage Outlet, 430-Water Baffle, 440-Ball Groove I, 450-Insertion Rod, 460-Pressure Chamber I, 470-Pressure Chamber II, 480-Slot III, 490-Cross Transmission Block, 500-Connecting Rod, 510-Pressure Plate, 520-Spring I, 530-Slot, 540-Rotating Groove I, 550-Ball Groove II, 560-Universal Ball I, 570-Turntable II, 580-Cross Transmission Groove, 590-Rotating Groove II, 600-Universal Ball II; 610-Air circulation mechanism, 620-Handle, 630-Injection port, 640-Unlocking groove, 650-Unlocking button, 660-Telescopic cavity, 670-Spring II, 680-Clip head, 690-Limit block, 700-Threaded connecting pipe, 710-Screw joint groove, 720-Spring III. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0033] Please see Figures 1 to 13 The present invention provides a technical solution: a processing device for carbon fiber composite textile materials, comprising: a main body shell 100, a filter box 150 and an soaking tank 260, a top cover 170 on the left side of the top of the main body shell 100, a top cover 180 on the right side of the top cover 170, and a set of bases 110 at the bottom of the main body shell 100. A set of socket plate 130 is provided on the left side of the main body shell 100. A set of filter box 150 is provided on the left side of socket plate 130. A set of socket plate 240 is provided on the right side of the main body shell 100. A set of filter box 260 is provided on the right side of socket plate 240. A set of support frame 220 is provided at the top inside the main body shell 100. A set of embedding grooves are opened on the left and right sides inside the support frame 220. Several sets of springs 3720 are provided at the bottom inside the support frame 220. The support frame 220 has a set of working boxes 230 inside, a set of connecting pipes 240 below the working boxes 230, a set of placement buckets 250 below the connecting pipes 240, a set of soaking buckets 260 outside the placement buckets 250, a set of fixing frames 270 outside the soaking buckets 260, and a set of motor chambers 320 in the center of the base 110. Two sets of water storage chambers 320 are provided on the left and right sides of the motor chambers.
[0034] Please see Figures 1 to 3The bottom of the fixed frame 270 is connected to the top of the two sets of water storage chambers 320 through two sets of water guide pipes 290. A set of observation glass is installed on the front of the main body shell 100. The observation glass is tempered glass. A set of water stop valves is provided on the left and right sides of the lower front of the main body shell 100. The rear side of the water stop valve penetrates the front of the main body shell 100 and is connected to the water guide pipe 290. The main body shell 100 is made of stainless steel, the base 110 is made of stainless steel, and the base 110 has two sets of support feet on the left and right sides of the bottom. The two sets of support feet are made of natural rubber. The base 110 has a set of drain outlets 120 on the left and right sides of the front. The two sets of drain outlets 120 are connected to two sets of water storage chambers 320 respectively. The main body shell 100 has a set of dehumidification pipe 1 340 on the left side and a set of dehumidification pipe 2 350 on the right side.
[0035] Please see Figure 1 and Figure 4 The top left side of the top cover 170 is hinged to the top of the main shell 100 via hinge post 1, and the top right side of the top cover 180 is hinged to the top of the main shell 100 via hinge post 2. A set of air inlets 190 are respectively opened through the top left side of top cover 170 and top right side of top cover 280. A dustproof net is installed inside the air inlet 190. A set of knobs 200 is provided on the top rear side of top cover 170. A set of slots 410 is provided on the front right side of top cover 170. A set of knobs 210 is provided on the top front side of top cover 280. A set of slots 380 is provided on the rear left side of top cover 280.
[0036] Please see Figure 1 and Figure 4 Below the knob 200, there is a set of transmission chambers. Inside the transmission chamber, there is a set of gears 360 on the rear side. The knob 200 and gears 360 are connected and fixed by a set of transmission shafts. In front of gears 360, there is a set of retaining strips 370. The front side of gears 360 meshes with the rear side of retaining strips 370. The right side of the transmission chamber is a through structure. Retaining strips 370 and retaining slots 380 are opposite each other. The width and height of retaining strips 370 are smaller than the width and height of retaining slots 380. Below the knob 210 is a transmission chamber 2. Inside the transmission chamber 2, on the front side, is a gear 290. The knob 210 and the gear 290 are connected and fixed by a transmission shaft 2. Behind the gear 290 is a retaining bar 200. The rear side of the gear 290 meshes with the front side of the retaining bar 200. The left side of the transmission chamber 2 is a through structure. The retaining bar 200 and the retaining groove 210 are opposite each other. The width and height of the retaining bar 200 are smaller than the width and height of the retaining groove 210.
[0037] Please see Figures 1 to 3The front and rear sides of the first socket plate 130 and the second socket plate 140 are respectively provided with two sets of fixing ears. The four sets of fixing ears are connected and fixed by four sets of bolts. The filter box 150 and the first socket plate 130 are an integral structure. The filter box 150 has a hollow structure inside. The right side of the filter box 150 is connected to the left side of the exhaust pipe 340. The filter box 2 160 and the socket plate 2 140 are integrated. The filter box 2 160 has a hollow structure inside. Both the filter box 1 150 and the filter box 2 160 are equipped with activated carbon particles 330. The left side of the filter box 2 160 is connected to the right side of the exhaust pipe 2 350. The left side of the filter box 1 150 is provided with a set of air outlet 1, and the right side of the filter box 2 160 is provided with a set of air outlet 2. Example 1: Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 10 , Figure 11 , Figure 12 and Figure 13 After the carbon fiber composite textile material is completely air-dried, the air circulation mechanism 610 is turned off. After the staff takes protective measures, they hold the two sets of handles 620 and lift the work box 230 upwards, so that the work box 230 drives the placement bucket 250 through the connecting pipe 240 and is taken out from the main body shell 100. Then, one staff member keeps the work box 230 lifted, so that the bottom placement bucket 250 is suspended in the air, while another staff member rotates the filter box to make the threaded connecting pipe 700 rotate and disengage from the screw groove 710, thereby removing the placement bucket 250. The internally dried carbon fiber composite textile material is removed and sent to the next processing unit for further processing, thus completing the drying and removal of the carbon fiber composite textile material. After removing the placement bucket 250, the four sets of bolts are removed with a wrench, allowing the first socket plate 130 and the second socket plate 140 to be removed from the outside of the main body shell 100. Then, the first socket plate 130, the second socket plate 140, the first filter box 150, and the second filter box 160 can be maintained. The final effect is to facilitate the maintenance and cleaning of the placement bucket 250 and the work box 230, and to facilitate the maintenance of the first socket plate 130, the second socket plate 140, the first filter box 150, and the second filter box 160, preventing the accumulation of impurities from affecting the normal use of the device and improving work efficiency.
[0038] Please see Figure 2 , Figure 5 and Figure 6Several sets of stirring blades are welded to the upper part of the inner wall of the soaking tank 260. A set of pressure chamber 1 460 is opened in the lower part of the soaking tank 260. A set of pressure chamber 2 470 is opened on the left and right sides of the pressure chamber 1 460. The left and right sides of the lower part of the pressure chamber 1 460 are respectively connected to the lower part of the two sets of pressure chamber 2 470. A set of drain outlets 420 is opened in the upper part of each set of pressure chamber 2 470. The inner wall of the connection is provided with a sealing strip. Each set of drain outlets 420 has a set of slots 480 at the top. Several sets of springs 520 are equidistantly arranged at the bottom of the pressure chamber 460. A set of pressure plates 510 is installed inside the pressure chamber 460. A set of connecting rods 500 is installed above the pressure plates 510. The top of the connecting rods 500 extends upward through the bottom of the soaking tank 260. A sealing ring is installed above the penetration point. A set of cross transmission blocks 490 is installed at the top of the connecting rods 500. Each set of pressure chambers 470 has a set of baffles 430 inside. The length, width and height of the baffles 430 are all greater than the length, width and height of the drain outlets 420.
[0039] Please see Figure 2 , Figure 5 , Figure 6 and Figure 7 Four sets of insert rods 450 are equidistantly arranged in an annular area near the center of the bottom of the soaking tank 260. The bottom of the fixing frame 270 is recessed to form a set of rotating grooves 540. Inside the rotating grooves 540, there is a set of turntables 280. The top of the turntables 280 has four sets of slots 530. The positions of the four sets of slots 530 correspond one-to-one with the positions of the four sets of insert rods 450. The radius of the insert rods 450 is less than the radius of the slots 530, and the height of the insert rods 450 is less than the height of the slots 530. A set of ball grooves 440 is provided in the annular area at the bottom of the soaking tank 260 away from the center. A set of ball grooves 550 is provided at the bottom of the fixing frame 270. Ball grooves 440 and 550 are positioned opposite each other and have the same radius. Several sets of universal balls 560 are provided between ball grooves 440 and 550. A set of motors 300 is installed inside the motor cavity. The motors 300 are servo motors. A set of rotating shafts 310 is provided on the top of the motors 300. The top of the motors 300 is connected to the bottom of the rotating shafts 310 through a transmission mechanism. The top of the rotating shafts 310 passes through the bottom of the fixing frame 270 and is connected and fixed to the bottom of the turntable 280.
[0040] Please see Figure 2 , Figure 8 , Figure 9 and Figure 10The side of the placement bucket 250 has several sets of through holes. The inner side of the top of the placement bucket 250 has a screw groove 710. The inner side of the screw groove 710 has an internal thread groove. The bottom center of the placement bucket 250 is recessed to form a set of rotating grooves 590. A set of turntables 570 is provided inside the rotating grooves 590. A set of cross transmission grooves 580 is provided at the bottom of the turntables 570. Several sets of universal balls 600 are provided between the turntables 570 and the rotating grooves 590. The length, width, and depth of the cross transmission groove 580 are all greater than the length, width, and height of the cross transmission block 490. A set of threaded connecting pipes 700 is provided below the connecting pipe 240. The threaded connecting pipe 700 has threads on its outer side. The radius of the threaded connecting pipe 700 is less than the radius of the screw groove 710. The length of the threaded connecting pipe 700 is equal to the length of the screw groove 710. The connecting pipe 240 and the working box 230 are an integral structure. The top of the connecting pipe 240 and the bottom of the working box 230 are a through structure. A set of unlocking grooves 640 are provided on the left and right sides of the top of the working box 230 respectively. Example 2: Please refer to Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 In actual use, first rotate knob 200 to drive gear 360, which in turn drives the locking strip 370 to move into the transmission cavity 1 through meshing, thereby disengaging the right side of the locking strip 370 from the slot 380. Similarly, rotate knob 210 to drive gear 390 to move the locking strip 400 into the transmission cavity 2 through meshing, thereby disengaging the left side of the locking strip 400 from the slot 410, thus releasing the lock of top cover 170 and top cover 280. Then, flip top cover 170 and top cover 280 to open them, exposing the interior of the main body shell 100. Inject sufficient ethanol solvent into the soaking tank 260 through the two sets of injection ports 630, so that the interface of the ethanol solvent is higher than the top of the carbon fiber composite textile material inside the placement tank 250. Then, reverse the above steps to close top cover 170 and top cover 280. The motor 300 is started, and its rotation drives the rotating shaft 310 to rotate via the transmission mechanism. The rotation of the rotating shaft 310 causes the turntable 280 to rotate inside the rotating groove 540. The rotation of the turntable 280, through the engagement of four sets of insert rods 450 and slots 530, drives the soaking tank 260 to rotate. When the soaking tank 260 rotates, several sets of universal balls 560 rotate between ball grooves 440 and 550, reducing the friction between the bottom of the soaking tank 260 and the bottom of the fixed frame 270, thus making the rotation of the soaking tank 260 more stable and smooth. When the soaking tank 260 rotates, the cross transmission block 490 at the bottom of the soaking tank 260 engages with the cross transmission groove 580, thereby driving the turntable 280 to rotate. The 70 rotates inside the rotating tank 250. When the turntable 2570 rotates, it drives several sets of universal balls 2600 to rotate, thereby reducing the friction between the turntable 2570 and the rotating tank 2590. At the same time, several sets of stirring blades inside the soaking tank 260 stir the ethanol solvent, making the ethanol solvent form a vortex, thereby thoroughly washing and soaking the carbon fiber composite textile material inside the placement tank 250, accelerating the dissolution and removal of grease and impurities on the surface of the carbon fiber composite textile material, thereby improving the soaking efficiency, and then improving the degreasing and impurity removal efficiency, and thus improving the work efficiency (motor 300 is existing technology, and its model can be selected according to the needs of those skilled in the art, and will not be described here).
[0041] Please see Figure 2 , Figure 10 , Figure 11 , Figure 12 and Figure 13 Each unlocking slot 640 has an unlocking button 650 above it, and each unlocking slot 640 has a telescopic cavity 660 below it. Each telescopic cavity 660 has a telescopic opening on the side away from the center. Inside the telescopic cavity 660, several springs 670 are provided at the front and back positions on the side away from the center. A limiting block 690 is provided on the side of the springs 670 near the center. A locking head 680 is provided on the side of the limiting block 690 near the center. The length and width of the locking head 680 are smaller than the length and width of the telescopic opening and the embedded slot. The unlocking button 650 and the limit block 690 are connected by a set of fixing rods. The bottom of the unlocking groove 640 is connected to the top of the telescopic cavity 660. Two sets of handles 620 are welded and fixed inside the two sets of unlocking grooves 640. Two sets of liquid injection ports 630 are opened through the inside of the two sets of handles 620. An air circulation mechanism 610 is provided in the center of the work box 230. The air circulation mechanism 610 consists of a fan, a power system and a connection system. The top and bottom of the air circulation system are through structures. A dustproof net is installed above the air circulation mechanism 610. Example 3: Please refer to Figure 2 , Figure 3 , Figure 5 , Figure 6, Figure 8 and Figure 10 The washing and soaking process is observed through the glass. After washing and soaking are completed, the motor 300 is turned off. Simultaneously, the top cover 170 and the top cover 2 180 are opened according to the steps. The two sets of unlocking buttons 650 are pushed, causing the unlocking buttons 650 to move the limiting block 690 through the fixing rod and stretch several sets of springs 2 670, thereby causing the clip 680 to disengage from the embedded groove. At this time, several sets of springs 3 720 rebound and push the working box 230 upward, thereby driving the placement tub 250 upward through the connecting pipe 240. After moving upward, several sets of springs 520 rebound and push the pressure plate 510 upward, thereby driving the cross transmission block 490 to move upward through the connecting rod 500. At the same time, the upward movement of the pressure plate 510 reduces the air pressure inside the pressure chamber 460 and reduces the air pressure inside the pressure plate 510 through the connection between the pressure chamber 460 and the pressure chamber 470. This causes the top of the baffle plate 430 to disengage from the slot 480 and move the baffle plate 430 down into the pressure chamber 470, thus exposing the drain outlet 420. After the drain outlet 420 is exposed, the soaked ethanol solvent flows into the fixed frame 270 through the two drain outlets 420. At this time, the two sets of stop valves are opened, allowing the ethanol solvent to flow downwards into the two sets of water storage chambers 320 through the two sets of guide pipes, and then into the external processing mechanism through the two sets of drain outlets 120. The external processing mechanism further processes the ethanol solvent. Then, the air circulation mechanism 610 is turned on. At this time, the power system supplies power to the fan through the connection system, driving the fan to rotate. The fan introduces external air into the main body shell 100 through the two sets of air inlets 190, and then introduces the air into the connecting pipe 240, and finally into the placement tank 250, so as to quickly dry the carbon fiber composite textile material inside the placement tank 250, improving work efficiency. During this process, the filter screen can filter the external air to prevent external air from entering the tank. Dust in the air enters the placement container 250 and contaminates the carbon fiber composite textile material. The air continuously dries the carbon fiber composite textile material, and then enters the filter box 150 and filter box 260 through exhaust pipe 1 340 and exhaust pipe 2 350 respectively. At this time, the activated carbon particles 330 inside filter box 150 and filter box 260 filter the recirculated air, so that the residual ethanol solution in the recirculated air is adsorbed by the activated carbon particles 330, and at the same time, the odor in the air is removed. This filters the recirculated air to prevent odor pollution and ensure the cleanliness of the working environment. The filtered air is discharged to the external air purification unit for further treatment through air outlet 1 and air outlet 2 respectively (the fan is existing technology, and its model can be selected according to the needs of those skilled in the art, and will not be described here).
[0042] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A processing apparatus for carbon fiber composite textile materials, comprising: The main body shell (100), filter box one (150) and soaking tank (260) are characterized in that: a top cover one (170) is provided on the left side of the top of the main body shell (100), a top cover two (180) is provided on the right side of the top cover one (170), and a set of bases (110) is provided at the bottom of the main body shell (100). The main body shell (100) has a set of socket plate one (130) on the left side, and a set of filter box one (150) on the left side of socket plate one (130). The main body shell (100) has a set of socket plate two (140) on the right side, and a set of filter box two (160) on the right side of socket plate two (140). The main body shell (100) has a set of support frame (220) at the top inside. The support frame (220) has a set of embedding grooves on the left and right sides inside. The support frame (220) has several sets of spring three (720) at the bottom inside. The support frame (220) has a set of working boxes (230) inside, a set of connecting pipes (240) below the working boxes (230), a set of placement buckets (250) below the connecting pipes (240), a set of soaking buckets (260) outside the placement buckets (250), a set of fixing frames (270) outside the soaking buckets (260), a set of motor cavities in the center of the base (110), and two sets of water storage cavities (320) on the left and right sides of the motor cavities.
2. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: The bottom of the fixing frame (270) is connected to the top of the two sets of water storage chambers (320) through two sets of water guide pipes (290). A set of observation glass is installed on the front of the main body shell (100). The observation glass is tempered glass. A set of water stop valves is provided on the left and right sides of the lower front of the main body shell (100). The rear side of the water stop valve penetrates the front of the main body shell (100) and is connected to the water guide pipe (290). The main shell (100) is made of stainless steel, the base (110) is made of stainless steel, and two sets of support feet are installed on the left and right sides of the bottom of the base (110). The two sets of support feet are made of natural rubber. A set of drain outlets (120) are provided on the left and right sides of the front of the base (110). The two sets of drain outlets (120) are respectively connected to two sets of water storage chambers (320). A set of dehumidification pipe one (340) is provided on the left side of the main shell (100), and a set of dehumidification pipe two (350) is provided on the right side of the main shell (100).
3. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: The top left side of the top cover one (170) is hinged to the top of the main shell (100) via hinge post one, and the top right side of the top cover two (180) is hinged to the top of the main shell (100) via hinge post two; A set of air inlets (190) are respectively opened through the top left side of the top cover one (170) and the top right side of the top cover two (180). A dustproof net is installed inside the air inlet (190). A set of knobs (200) is provided on the top rear side of the top cover one (170). A set of slots (410) is provided on the front right side of the top cover one (170). A set of knobs (210) is provided on the front top side of the top cover two (180). A set of slots (380) is provided on the rear left side of the top cover two (180).
4. The processing apparatus for carbon fiber composite textile materials as described in claim 3, characterized in that: Below the knob (200) is a set of transmission chambers. Inside the transmission chamber is a set of gears (360) on the rear side. The knob (200) and gears (360) are connected and fixed by a set of transmission shafts. In front of gears (360) is a set of clips (370). The front side of gears (360) meshes with the rear side of clips (370). The right side of the transmission chamber is a through structure. Clips (370) and slots (380) are opposite each other. The width and height of clips (370) are smaller than the width and height of slots (380). Below the knob two (210) is a set of transmission chamber two. Inside the transmission chamber two, there is a set of gear two (390) on the front side. The knob two (210) and gear two (390) are connected and fixed by a set of transmission shaft two. Behind the gear two (390) is a set of retaining strip two (400). The rear side of the gear two (390) meshes with the front side of retaining strip two (400). The left side of the transmission chamber two is a through structure. The retaining strip two (400) and the retaining groove two (410) are opposite to each other. The width and height of the retaining strip two (400) are smaller than the width and height of the retaining groove two (410).
5. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: The front and rear sides of the first socket plate (130) and the second socket plate (140) are respectively provided with two sets of fixing ears. The four sets of fixing ears are connected and fixed by four sets of bolts. The first filter box (150) and the first socket plate (130) are an integral structure. The filter box (150) has a hollow structure inside. The right side of the filter box (150) is connected to the left side of the first exhaust pipe (340). The filter box 2 (160) and the socket plate 2 (140) are an integral structure. The filter box 2 (160) has a hollow structure inside. Both the filter box 1 (150) and the filter box 2 (160) are provided with activated carbon particles (330). The left side of the filter box 2 (160) is connected to the right side of the exhaust pipe 2 (350). The left side of the filter box 1 (150) is provided with a set of air outlet 1, and the right side of the filter box 2 (160) is provided with a set of air outlet 2.
6. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: Several sets of stirring blades are welded to the upper part of the inner wall of the soaking tank (260). A set of pressure chamber one (460) is opened inside the lower part of the soaking tank (260). A set of pressure chamber two (470) is opened on the left and right sides of the pressure chamber one (460). The lower left and right sides of the pressure chamber one (460) are respectively connected to the lower part of the two sets of pressure chamber two (470). A set of drain outlets (420) is opened above each set of pressure chamber two (470), and a sealing strip is provided on the inner wall of the opening. Each set of the drain outlets (420) has a set of three slots (480) at the top. Several sets of springs (520) are equidistantly arranged at the bottom of the first pressure chamber (460). A set of pressure plates (510) is provided inside the first pressure chamber (460). A set of connecting rods (500) is provided above the pressure plates (510). The top of the connecting rods (500) extends upward through the bottom of the soaking tank (260). A sealing ring is provided above the penetration point. A set of cross transmission blocks (490) is provided at the top of the connecting rods (500). Each set of the second pressure chambers (470) has a set of baffles (430) inside. The length, width and height of the baffles (430) are all greater than the length, width and height of the drain outlets (420).
7. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: The soaking tub (260) has four sets of insert rods (450) equidistantly arranged in an annular area near the center of the bottom. The bottom of the fixing frame (270) is recessed to form a set of rotating grooves (540). Inside the rotating grooves (540) is a set of turntables (280). The top of the turntables (280) has four sets of slots (530). The positions of the four sets of slots (530) correspond one-to-one with the positions of the four sets of insert rods (450). The radius of the insert rods (450) is smaller than the radius of the slots (530), and the height of the insert rods (450) is smaller than the height of the slots (530). A set of ball grooves (440) is provided in the annular area away from the center of the bottom of the soaking tank (260), and a set of ball grooves (550) is provided at the bottom of the fixing frame (270). The ball grooves (440) and (550) are opposite to each other and have the same radius. Several sets of universal balls (560) are provided between the ball grooves (440) and (550). A set of motors (300) is installed inside the motor cavity. The motors (300) are servo motors (300). A set of rotating shafts (310) is provided on the top of the motors (300). The top of the motors (300) is connected to the bottom of the rotating shafts (310) through a transmission mechanism. The top of the rotating shafts (310) passes through the bottom of the fixing frame (270) and is connected and fixed to the bottom of the turntable (280).
8. The processing apparatus for carbon fiber composite textile materials as described in claim 1, characterized in that: The placement bucket (250) has several sets of through holes through its side. The placement bucket (250) has a screw groove (710) on the inner side of its top. The screw groove (710) has an internal thread groove on its inner side. The placement bucket (250) has a set of rotating grooves (590) recessed upward at the center of its bottom. The rotating grooves (590) have a set of turntables (570) inside them. The turntables (570) have a set of cross drive grooves (580) at their bottom. The turntables (570) and the rotating grooves (590) have several sets of universal balls (600). The length, width, and depth of the cross transmission groove (580) are all greater than the length, width, and height of the cross transmission block (490). A set of threaded connecting pipes (700) is provided below the connecting pipe (240). The threaded connecting pipe (700) has threads on its outer side. The radius of the threaded connecting pipe (700) is less than the radius of the screw groove (710). The length of the threaded connecting pipe (700) is equal to the length of the screw groove (710). The connecting pipe (240) and the working box (230) are an integral structure. The top of the connecting pipe (240) and the bottom of the working box (230) are a through structure. A set of unlocking grooves (640) are provided on the left and right sides of the top of the working box (230).
9. The processing apparatus for carbon fiber composite textile materials as described in claim 8, characterized in that: Each unlocking slot (640) is provided with an unlocking button (650) above it, and each unlocking slot (640) is provided with a telescopic cavity (660) below it. Each telescopic cavity (660) is provided with a telescopic opening on the side away from the center. Several sets of springs (670) are provided at the front and back positions on the side away from the center inside the telescopic cavity (660). A set of limiting blocks (690) is provided on the side of the springs (670) near the center. A set of locking heads (680) is provided on the side of the limiting blocks (690) near the center. The length and width of the locking heads (680) are smaller than the length and width of the telescopic opening and the embedded slot. The unlocking button (650) and the limiting block (690) are connected by a set of fixing rods. The bottom of the unlocking groove (640) is connected to the top of the telescopic cavity (660). Two sets of handles (620) are welded and fixed on the inner side of the two sets of unlocking grooves (640). Two sets of liquid injection ports (630) are opened through the inner side of the two sets of handles (620). An air circulation mechanism (610) is provided in the center of the work box (230). The air circulation mechanism (610) consists of a fan, a power system and a connection system. The top and bottom of the air circulation system are through structures. A dustproof net is installed on the top of the air circulation mechanism (610).