Rainproof cloth processing equipment and process thereof
By designing the glue spraying mechanism and linkage components in the rainproof cloth processing equipment, the problem of insufficient adhesive spraying at the edge of the fabric and large amount of conveyor belt cleaning workload is solved, and reliable processing and stable production of rainproof cloth is achieved.
Patent Information
- Application Number
- CN202510276132.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-07-11
AI Technical Summary
The existing rainproof cloth processing equipment is difficult to ensure that the amount of glue spraying on the edges of the fabric is accurate and sufficient, and the cleaning of the conveyor belt is relatively large.
A rainproof cloth processing equipment is designed, including a glue spraying mechanism, a composite mechanism and a winding mechanism. The movable shell drives the nozzle to reciprocate, and the automatic shading of the shield plate is achieved through the linkage assembly, combining the mixing blade and the material pump to ensure uniform spraying and conveying of the glue.
Reliable processing of rainproof cloth is achieved, ensuring accurate and sufficient glue spraying, reducing the cleaning workload of the conveyor belt, and improving the stability and efficiency of processing.
Smart Images

Figure CN120287564A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of rainproof cloth, and relates to a processing device and process for rainproof cloth. Background Art
[0002] A rainproof cloth is a fabric material specially designed to block rainwater. It usually has excellent waterproof performance and is thus widely used in various occasions. Whether it is outdoor activities, camping adventures, or building temporary shelters, or even agricultural covering, the rainproof cloth can play an important role. It can not only provide protection for people to avoid being invaded by rainwater, but also provide an additional layer of protection for various items, effectively preventing damage caused by moisture and water damage. In addition, the rainproof cloth can also be made of a composite of various materials to meet different environmental and usage requirements. In order to facilitate the processing of the rainproof cloth and ensure that the composite fastness at the edge and inside of the rainproof cloth is consistent during the processing, it is particularly necessary to design a processing device and process for the rainproof cloth. Summary of the Invention
[0003] The purpose of the present invention is to address the above problems existing in the prior art and propose a processing device and process for rainproof cloth.
[0004] The purpose of the present invention can be achieved by the following technical solutions: A processing device for rainproof cloth includes a first frame and a second frame. A conveyor belt is arranged on the first frame, and the conveyor belt is driven to operate by a first power motor. A glue spraying mechanism, a composite mechanism, and an upper film unwinding mechanism are sequentially arranged on the first frame, and a winding mechanism is arranged on the second frame.
[0005] In the present invention, the lower fabric is conveyed to the glue spraying mechanism through the conveyor belt for glue spraying, and then enters the composite mechanism to composite the film coming from the upper film unwinding mechanism, and then enters the winding mechanism for winding, thus completing the processing operation of the rainproof cloth, and the processing is reliable and stable.
[0006] The glue spraying mechanism includes a cross beam, a movable housing, a feeding barrel, a mounting arm, and a nozzle. The cross beam is installed on the first frame. The movable housing is slidably connected to the cross beam and can reciprocate along the cross beam. One end of the mounting arm is connected to the movable housing, and the other end of the mounting arm is movably connected to the nozzle. The nozzle is adjusted in angle by a second driving motor. The nozzle is connected to the feeding barrel through a feeding pipe. The feeding barrel is arranged on the side of the first frame, and a material pump is also arranged on the feeding pipe.
[0007] With this structure, by the reciprocating movement of the movable housing along the cross beam, the movable housing drives the nozzle to reciprocate, and the glue from the feeding barrel is evenly sprayed on the lower fabric, and the spraying is convenient.
[0008] On both sides of the movable housing, there are also a first telescopic member and a second telescopic member. A first shielding plate is connected to the first telescopic member, and the first shielding plate is arranged on one side of the nozzle. A second shielding plate is connected to the second telescopic member, and the second shielding plate is arranged on the other side of the nozzle. At the cross beam, there is also a linkage assembly for driving the first telescopic member and the second telescopic member to act.
[0009] With this structure, under the action of the linkage assembly, after the nozzle moves to one side and reaches the position, the first telescopic member can drive the first shielding plate to extend out to shield one side of the nozzle. After the nozzle moves to the other side and reaches the position, the second telescopic member can drive the second shielding plate to extend out to shield the other side of the nozzle. Eventually, it can enable the nozzle to spray in place while also reducing the glue sprayed onto the conveyor belt, and the auxiliary effect is good.
[0010] The feeding barrel is installed on the base. Two cylinders are installed on the base. The end of the piston rod of the cylinder is connected to the main lifting platform. A push rod motor is installed on the main lifting platform. The end of the push rod of the push rod motor is connected to the support. A third power motor is installed on the support. The end of the output shaft of the third power motor is connected to a stirring paddle. The support is also connected to an auxiliary adjustment platform. The stirring paddle is also rotatably connected to the auxiliary adjustment platform. Two guide columns are also installed on the auxiliary adjustment platform, and the guide columns are slidably connected to the main lifting platform.
[0011] The bottom of the feeding barrel has a discharge port, and the discharge port is connected to a feeding pipe through a valve.
[0012] With this structure, the third power motor drives the stirring paddle to rotate, and the stirring paddle can stir the glue in the feeding barrel. At the same time, the height position of the stirring paddle can be adjusted according to the amount of glue. At the same time, the stirring paddle can be quickly lifted upward and taken out of the feeding barrel through the cylinder.
[0013] The upper film unwinding mechanism includes a support and an unwinding roller. The support is installed on the first frame. The unwinding roller is horizontally rotatably installed on the support in a detachable manner. The unwinding roller is driven to rotate by a fourth power motor.
[0014] With this structure, the fourth power motor drives the unwinding roller to rotate, and the unwinding roller can unwind the film.
[0015] The winding mechanism includes a winding roller, a guiding roller, and an auxiliary roller. The guiding roller and the auxiliary roller are horizontally rotatably installed on the second frame. The winding roller is horizontally rotatably installed on the second frame in a detachable manner. The winding roller is driven to rotate by a fifth power motor.
[0016] A control main box is also installed on the first frame.
[0017] The linkage assembly includes a U-shaped seat, a guide wheel, a ratchet wheel, a pawl, a pentagram-shaped wheel disc, a reciprocating block, and a switching seat. The U-shaped seat is installed inside the movable housing. The first telescopic member and the second telescopic member are respectively slidably connected to both sides of the U-shaped seat. There is a first spring between the first telescopic member and the U-shaped seat, and a second spring between the second telescopic member and the U-shaped seat. The middle of the first telescopic member has a first working hole, and the middle of the second telescopic member has a second working hole. The reciprocating block is slidably connected inside the U-shaped seat. The ratchet wheel and the pentagram-shaped wheel disc are connected together by a rotating shaft. The rotating shaft is vertically rotatably connected to the middle of the reciprocating block, and the ratchet wheel is arranged outside the reciprocating block, while the pentagram-shaped wheel disc is arranged inside the reciprocating block. The ratchet wheel has ten ratchet teeth, and the ratchet teeth include tooth tip parts and tooth root parts. The pentagram-shaped wheel disc includes five recessed parts and five protruding parts. One end of the pawl is rotatably installed on one side of the U-shaped seat through a positioning shaft. The middle of the pawl has a strip-shaped groove, and a limiting pin is arranged in the strip-shaped groove. The limiting pin is also connected to one side of the U-shaped seat. The inner side of one end of the pawl can abut against the ratchet wheel. An L-shaped elastic reset member that abuts against the outer side of one end of the pawl is also installed on one side of the U-shaped seat. The switching seat is slidably connected inside the reciprocating block. The middle of the switching seat has a yielding notch. One side of the yielding notch has a first abutting pin, and the first abutting pin can be stuck at the recessed part or the protruding part. The other side of the yielding notch has a second abutting pin, and the second abutting pin can be stuck at the recessed part or the protruding part. A first locking pin is also horizontally slidably connected to one side of the switching seat. The middle of the first locking pin has a first limiting groove, and a first limiting pin is arranged in the first limiting groove. The first limiting pin is also installed on one side of the switching seat. One end of the first locking pin can be inserted into the first working hole, and there is a third spring between the other end of the first locking pin and the first abutting pin. A second locking pin is horizontally slidably connected to the other side of the switching seat. The middle of the second locking pin has a second limiting groove, and a second limiting pin is arranged in the second limiting groove. The second limiting pin is also installed on the other side of the switching seat. One end of the second locking pin can be inserted into the second working hole, and there is a fourth spring between the other end of the second locking pin and the second abutting pin. The guide wheel is connected to the end of the switching seat through an auxiliary arm, and there is also a fifth spring between the auxiliary arm and the reciprocating block. Right trapezoidal guide blocks 1 and 2 that cooperate with the guide wheel are respectively arranged at both ends of the cross beam.
[0018] With this structure, when the movable housing moves from the other end of the crossbeam to one end of the crossbeam, the locking pin 1 is in a state of being inserted into the working hole 1. After the movable housing moves to the end of one end of the crossbeam, the guide wheel contacts the right trapezoidal guide block 1, and then the reciprocating block is pushed out. The first telescopic member can drive the shielding plate 1 to extend out to shield one side of the nozzle. During the extension process, the ratchet wheel remains stationary. Then, when the movable housing moves from one end of the crossbeam to the other end of the crossbeam, the guide wheel gradually disengages from the right trapezoidal guide block 1. The reciprocating block is reset inward under the action of the spring 5. The pawl abuts against the tip of the next ratchet tooth and pushes the ratchet wheel to rotate by one tooth position. At this time, the ratchet wheel also drives the pentagram wheel disk to rotate. The protruding part of the pentagram wheel disk pushes the abutting pin 2 to move outward, thereby driving the switching seat to move to the other side. At this time, the locking pin 2 is in a state of being inserted into the working hole 2, and at the same time, the locking pin 1 disengages from the working hole 1. After the movable housing moves to the end of the other end of the crossbeam, the guide wheel contacts the right trapezoidal guide block 2, and then the reciprocating block is pushed out. The second telescopic member can drive the shielding plate 2 to extend out to shield the other side of the nozzle, thus realizing the linkage effect of the shielding plate 1 and the shielding plate 2.
[0019] A processing technology for a rainproof cloth includes the following specific steps: S1. Pour the glue raw material into the feeding barrel of the processing equipment for the rainproof cloth, and use the stirring paddle to ensure that the glue is evenly mixed; S2. Subsequently, place the upper film on the unwinding roller; S3. The lower fabric is sent to the nozzle through the conveyor belt, and the nozzle moves reciprocally to evenly spray glue on the lower fabric; S4. Then, compound the lower fabric coated with glue with the upper film; S5. Finally, wind the compounded rainproof cloth through the winding roller.
[0020] Compared with the prior art, the processing equipment and technology of this rainproof cloth have the following advantages: Through the equipment and technology of the present invention, the processing task of the rainproof cloth can be easily completed. At the same time, while reducing the cleaning workload of the conveyor belt, it ensures that the glue spraying amount at the edge of the fabric is both accurate and sufficient. Description of the Drawings
[0021] Figure 1 is the schematic plan view of the present invention; Figure 2 is the schematic plan view at the first frame of the present invention; Figure 3 is the schematic three-dimensional view at the mounting arm of the present invention; Figure 4 is the schematic plan view at the base of the present invention; Figure 5 is the partial schematic plan view at the second frame of the present invention; Figure 6It is a schematic three-dimensional structure diagram of the linkage component of the present invention; Figure 7 It is a schematic plan structure diagram of the linkage component of the present invention; Figure 8 It is an exploded view of the linkage component of the present invention; Figure 9 It is a schematic plan structure diagram of a disassembled part of the linkage component of the present invention; In the figure, 1 is the first frame; 201 is the base; 202 is the feeding barrel; 203 is the feeding pipe; 204 is the mounting arm; 205 is the movable housing; 206 is the first right-angled trapezoidal guide block; 207 is the guide wheel; 208 is the second right-angled trapezoidal guide block; 209 is the nozzle; 210 is the second driving motor; 211 is the cylinder; 212 is the auxiliary adjustment table; 213 is the third power motor; 214 is the support; 215 is the main lifting table; 216 is the guide post; 217 is the push rod motor; 218 is the stirring paddle; 219 is the U-shaped seat; 220 is the auxiliary arm; 221 is the positioning shaft; 222 is the limiting pin; 223 is the pawl; 223a is the strip-shaped groove; 224 is the L-shaped elastic reset member; 225 is the ratchet; 225a is the tooth tip part; 225b is the tooth root part; 226 is the first telescopic member; 226a is the first working hole; 227 is the first baffle; 228 is the reciprocating block; 229 is the second baffle; 230 is the second telescopic member; 230a is the second working hole; 231 is the second connector; 232 is the rotating shaft; 233 is the five-pointed star-shaped wheel disc; 233a is the protruding part; 233b is the recessed part; 234 is the third spring; 235 is the first limiting pin; 236 is the first locking pin; 236a is the first limiting groove; 237 is the first abutting pin; 238 is the second abutting pin; 239 is the fourth spring; 240 is the second locking pin; 240a is the second limiting groove; 241 is the switching seat; 242 is the second limiting pin; 243 is the second spring; 244 is the first spring; 245 is the first connector; 246 is the cross beam; 301 is the unwinding roller; 302 is the fourth power motor; 303 is the mounting seat; 401 is the fifth power motor; 402 is the winding roller; 403 is the auxiliary roller; 404 is the guide roller; 5 is the conveyor belt; 6 is the composite mechanism; 7 is the second frame; 8 is the control main box. Detailed implementation manners
[0022] The following are specific embodiments of the present invention and in combination with the accompanying drawings, the technical solutions of the present invention will be further described, but the present invention is not limited to these embodiments.
[0023] As Figures 1-9As shown in the figure, the processing equipment for the rainproof cloth includes a first frame 1 and a second frame 7. A conveyor belt 5 is arranged on the first frame 1, and the conveyor belt 5 is driven to operate by a first power motor. A glue spraying mechanism, a compounding mechanism 6, and an upper film unwinding mechanism are sequentially arranged on the first frame 1. The compounding mechanism 6 adopts an existing structure and can realize the compounding of the coated fabric and the film. A winding mechanism is arranged on the second frame 7. In the present invention, the lower fabric is conveyed to the glue spraying mechanism by the conveyor belt 5 for glue spraying, and then enters the compounding mechanism 6 to compound the film coming from the upper film unwinding mechanism, and then enters the winding mechanism for winding, thereby completing the processing operation of the rainproof cloth, and the processing is reliable and stable.
[0024] The glue spraying mechanism includes a cross beam 246, a movable housing 205, a feeding barrel 202, a mounting arm 204, and a spray head 209. The cross beam 246 is installed on the first frame 1. The movable housing 205 is slidably connected to the cross beam 246, and the movable housing 205 can reciprocate along the cross beam 246. In this embodiment, the movable housing 205 adopts an existing method to realize its movement along the cross beam 246. One end of the mounting arm 204 is connected to the movable housing 205, and the other end of the mounting arm 204 is movably connected to the spray head 209. The spray head 209 uses a second driving motor 210 to realize its angle adjustment. The spray head 209 is connected to the feeding barrel 202 through a feeding pipe 203. The feeding barrel 202 is arranged on the side of the first frame 1, and a metering pump is also arranged on the feeding pipe 203. With this structure, by the reciprocating movement of the movable housing 205 along the cross beam 246, the movable housing 205 drives the spray head 209 to reciprocate, and the glue from the feeding barrel 202 is evenly sprayed on the lower fabric, and the spraying is convenient.
[0025] On both sides of the movable housing 205, there are also a first telescopic member 226 and a second telescopic member 230. A first shielding plate 227 is connected to the first telescopic member 226, and the first shielding plate 227 is arranged on one side of the spray head 209. A second shielding plate 229 is connected to the second telescopic member 230, and the second shielding plate 229 is arranged on the other side of the spray head 209. There is also a linkage assembly at the cross beam 246 to drive the first telescopic member 226 and the second telescopic member 230 to act. With this structure, under the action of the linkage assembly, after the spray head 209 moves to one side in place, the first telescopic member 226 can drive the first shielding plate 227 to extend out to shield one side of the spray head 209, and after the spray head 209 moves to the other side in place, the second telescopic member 230 can drive the second shielding plate 229 to extend out to shield the other side of the spray head 209. Finally, the spray head 209 can be sprayed in place and at the same time, the spraying of glue on the conveyor belt 5 is reduced, and further, the workload of cleaning the conveyor belt 5 can be reduced; the auxiliary effect is good.
[0026] The feeding bucket 202 is installed on the base 201. Two cylinders 211 are installed on the base 201. The end of the piston rod of the cylinder 211 is connected to the main lifting platform 215. A push rod motor 217 is installed on the main lifting platform 215. The end of the push rod of the push rod motor 217 is connected to the support 214. A third power motor 213 is installed on the support 214. The end of the output shaft of the third power motor 213 is connected to a stirring paddle 218. A secondary adjustment platform 212 is also connected to the support 214. The stirring paddle 218 is also rotatably connected to the secondary adjustment platform 212. Two guide posts 216 are installed on the secondary adjustment platform 212. The guide posts 216 are slidably connected to the main lifting platform 215. The bottom of the feeding bucket 202 has a discharge port, and the discharge port is connected to a feeding pipe 203 through a valve. With this structure, the third power motor 213 drives the stirring paddle 218 to rotate, and the stirring paddle 218 can stir the glue in the feeding bucket 202. At the same time, the height position of the stirring paddle 218 can be adjusted according to the amount of glue. At the same time, the stirring paddle 218 can be quickly lifted upward by the cylinder 211 and taken out of the feeding bucket 202.
[0027] The upper film unwinding mechanism includes a mounting seat 303 and an unwinding roller 301. The mounting seat 303 is installed on the first frame 1. The unwinding roller 301 is horizontally rotatably installed on the mounting seat 303 in a detachable manner. The unwinding roller 301 is driven to rotate by a fourth power motor 302. The unwinding roller 301 adopts an existing structure and can be driven to rotate by the fourth power motor. With this structure, the fourth power motor 302 drives the unwinding roller 301 to rotate, and the unwinding roller 301 can unwind the film.
[0028] The winding mechanism includes a winding roller 402, a guide roller 404 and an auxiliary roller 403. The guide roller 404 and the auxiliary roller 403 are horizontally rotatably installed on the second frame 7. The winding roller 402 is horizontally rotatably installed on the second frame 7 in a detachable manner. The winding roller 402 is driven to rotate by a fifth power motor 401. With this structure, the fifth power motor 401 drives the winding roller 402 to rotate, and the winding roller 402 can wind the rainproof cloth.
[0029] A control main box 8 is also installed on the first frame 1, which adopts an existing product.
[0030] The linkage assembly includes a U-shaped seat 219, a guide wheel 207, a ratchet wheel 225, a pawl 223, a pentagram wheel 233, a reciprocating block 228, and a switching seat 241. The U-shaped seat 219 is installed in the movable housing 205. The first telescopic member 226 and the second telescopic member 230 are respectively slidably connected to both sides of the U-shaped seat 219. There is a first spring 244 between the first telescopic member 226 and the U-shaped seat 219. Specifically, the first telescopic member 226 has a first connecting head 245, and one side of the U-shaped seat 219 has a second connecting head 231. The first spring 244 is connected between the first connecting head 245 and the second connecting head 231. There is a second spring 243 between the second telescopic member 230 and the U-shaped seat 219, and the second spring 243 adopts the installation method of the first spring 244.The first telescopic member 226 has a working hole 1 226a in the middle, the second telescopic member 230 has a working hole 230a in the middle, the reciprocating block 228 is slidably connected in the U-shaped seat 219, the ratchet 225 and the five-pointed star-shaped wheel disc 233 are connected together through the rotating shaft 232, the rotating shaft 232 is vertically rotatably connected in the middle of the reciprocating block 228, and the ratchet 225 is arranged outside the reciprocating block 228, the five-pointed star-shaped wheel disc 233 is arranged inside the reciprocating block 228, the ratchet 225 has ten ratchet teeth, the ratchet teeth include a tooth tip 225a and a tooth root 225b, the five-pointed star-shaped wheel disc 233 includes five concave portions 233b and five protruding portions 233a, and the concave portion 233b and the protruding portion 23 3a are arranged corresponding to the tooth root positions respectively, one end of the pawl 223 is rotatably installed on one side of the U-shaped seat 219 through the positioning shaft 221, the middle part of the pawl 223 has a strip groove 223a, and a limit pin is arranged in the strip groove 223a. The limit pin 222 is also connected to one side of the U-shaped seat 219, and the inner side of one end of the pawl 223 can abut against the ratchet 225. An L-shaped elastic reset member 224 abutting against the outer side of one end of the pawl 223 is also installed on one side of the U-shaped seat 219. The switching seat 241 is slidably connected in the reciprocating block 228, and the middle part of the switching seat 241 has a clearance notch, and one side of the clearance notch has a contact pin 237, and the contact pin 237 can be stuck to the recessed portion 233b or the protruding portion 233a. The other side of the gap is provided with a second abutment pin 238, and the second abutment pin 238 can be stuck in the concave portion 233b or the protruding portion 233a. A locking pin 236 is also horizontally slidably connected to one side of the switching seat 241. The middle of the locking pin 236 has a limiting groove 236a, and a limiting pin 235 is arranged in the limiting groove 236a. The limiting pin 235 is also installed on one side of the switching seat 241. One end of the locking pin 236 can be inserted into the working hole 226a. The locking pin 236 is placed between the other end and the abutment pin 237, and a spring 3 234 is provided. The other side of the switching seat 241 is also horizontally slidably connected with a locking pin 240, and the middle of the locking pin 240 has a limiting groove 240. a, a limiting pin 242 is provided in the limiting groove 240a, and the limiting pin 242 is also installed on the other side of the switching seat 241, one end of the locking pin 240 can be inserted into the working hole 230a, and a spring 4 239 is provided between the other end of the locking pin 240 and the abutting pin 238, and the guide wheel 207 is connected to the end of the switching seat 241 through the auxiliary arm 220, and a spring 5 is provided between the auxiliary arm 220 and the reciprocating block 228; the two ends of the crossbeam 246 are respectively provided with a right-angled trapezoidal guide block 1 206 and a right-angled trapezoidal guide block 208 that match the guide wheel 207, in this embodiment, the positions of the right-angled trapezoidal guide block 1 206 and the right-angled trapezoidal guide block 208 can be adjusted according to actual needs;With this structure, when the movable housing 205 moves from the other end of the cross beam 246 to one end of the cross beam 246, the first locking pin 236 is in a state of being inserted into the first working hole 226a. After the movable housing 205 moves to the end of one end of the cross beam 246, the guide wheel 207 contacts the first right trapezoidal guide block 206, and then the reciprocating block 228 is pushed to extend. The first telescopic member 226 can drive the first shielding plate 227 to extend to shield one side of the nozzle 209. During the extension process, the ratchet wheel 225 does not move. Then, when the movable housing 205 moves from one end of the cross beam 246 to the other end of the cross beam 246, the guide wheel 207 gradually disengages from the first right trapezoidal guide block 206. The reciprocating block 228 is reset inward under the action of the fifth spring. The pawl 223 abuts against the tip 225a of the next tooth of the ratchet wheel 225 and pushes the ratchet wheel 225 to rotate by one tooth position. At this time, the ratchet wheel 225 also drives the pentagram wheel 233 to rotate. The protruding portion 233a of the pentagram wheel 233 pushes the second abutting pin 238 to move outward, thereby driving the switching seat 241 to move to the other side. At this time, the second locking pin 240 is in a state of being inserted into the second working hole 230a, and at the same time, the first locking pin 236 disengages from the first working hole 226a. After the movable housing 205 moves to the end of the other end of the cross beam 246, the guide wheel 207 contacts the second right trapezoidal guide block 208, and then the reciprocating block 228 is pushed to extend. The second telescopic member 230 can drive the second shielding plate 229 to extend to shield the other side of the nozzle 209, thus realizing the linkage effect of the first shielding plate 227 and the second shielding plate 229.;
[0031] In this embodiment, after the reciprocating block 228 is reset inward under the action of the fifth spring and reaches the in-place state, at this time, the pawl 223 is disengaged from the ratchet wheel 225. At this time, the pentagram wheel 233 is restricted by the first abutting pin 236 and the second abutting pin 238.
[0032] The processing technology of this rainproof cloth includes the following specific steps: S1. Pour the glue raw material into the feeding bucket 202 of the rainproof cloth processing equipment, and use the stirring paddle 218 to ensure that the glue is evenly mixed; S2. Subsequently, place the upper layer of the film on the unwinding roller 301; S3. The lower layer of the fabric is sent to the nozzle 209 through the conveyor belt 5, and the nozzle 209 moves reciprocally to evenly spray the glue on the lower layer of the fabric; S4. Then, compound the lower layer of the fabric coated with glue with the upper layer of the film; S5. Finally, wind the compounded rainproof cloth through the winding roller 402.
[0033] In this embodiment, the film is a PVC film, and the fabric is an existing product that can be purchased on the market, such as warp knitted fabric and short plush fabric.
[0034] The above components are all common standard parts or parts known to those skilled in the art. Their structures and principles can all be known by those skilled in the art through technical manuals or obtained through conventional experimental methods.
[0035] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains can make various modifications or supplements to the described specific embodiments or use similar means for substitution, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
Claims
1. A processing device for a rainproof cloth, comprising a first frame (1) and a second frame (7), characterized in that, A conveyor belt (5) is provided on the first frame (1), and the conveyor belt (5) is driven to operate by a first power motor. A glue spraying mechanism, a compounding mechanism (6), and an upper film unwinding mechanism are sequentially arranged on the first frame (1). A winding mechanism is provided on the second frame (7).
2. The processing equipment for a rainproof cloth according to claim 1, characterized in that, The glue spraying mechanism includes a cross beam (246), a movable housing (205), a feed bucket (202), a mounting arm (204), and a nozzle (209). The cross beam (246) is installed on the first frame (1). The movable housing (205) is slidably connected to the cross beam (246), and the movable housing (205) can reciprocate along the cross beam (246). One end of the mounting arm (204) is connected to the movable housing (205), and the other end of the mounting arm (204) is movably connected to the nozzle (209). The nozzle (209) is adjusted in angle by a second drive motor (210). The nozzle (209) is connected to the feed bucket (202) through a feed pipe (203). The feed bucket (202) is arranged on the side of the first frame (1), and a material pump is also provided on the feed pipe (203).
3. The processing equipment for a rainproof cloth according to claim 2, characterized in that, On both sides of the movable housing (205), there are also a first telescopic member (226) and a second telescopic member (230). A first shielding plate (227) is connected to the first telescopic member (226), and the first shielding plate (227) is arranged on one side of the nozzle (209). A second shielding plate (229) is connected to the second telescopic member (230), and the second shielding plate (229) is arranged on the other side of the nozzle (209). There is also a linkage assembly at the cross beam (246) for driving the first telescopic member (226) and the second telescopic member (230) to act.
4. The processing equipment for a rainproof cloth according to claim 2, characterized in that, The feed bucket (202) is installed on a base (201). Two cylinders (211) are installed on the base (201). The end of the piston rod of the cylinder (211) is connected to a main lifting platform (215). A push rod motor (217) is installed on the main lifting platform (215). The end of the push rod of the push rod motor (217) is connected to a support (214). A third power motor (213) is installed on the support (214). The end of the output shaft of the third power motor (213) is connected to a stirring paddle (218). A secondary adjustment platform (212) is also connected to the support (214). The stirring paddle (218) is also rotatably connected to the secondary adjustment platform (212). Two guide posts (216) are installed on the secondary adjustment platform (212), and the guide posts (216) are slidably connected to the main lifting platform (215).
5. The processing equipment for a rainproof cloth according to claim 2, characterized in that, The bottom of the feed bucket (202) has a discharge port, and the discharge port is connected to the feed pipe (203) through a valve.
6. The processing equipment for a rainproof cloth according to claim 1, characterized in that, The upper film unwinding mechanism includes a mounting seat (303) and an unwinding roller (301). The mounting seat (303) is installed on the first frame (1). The unwinding roller (301) is horizontally rotatably installed on the mounting seat (303) in a detachable manner. The unwinding roller (301) is driven to rotate by a fourth power motor (302).
7. The processing equipment for a rainproof cloth according to claim 1, characterized in that, The winding mechanism includes a winding roller (402), a guiding roller (404) and an auxiliary roller (403). The guiding roller (404) and the auxiliary roller (403) are horizontally rotatably mounted on the second frame (7). The winding roller (402) is horizontally rotatably mounted on the second frame (7) in a detachable manner, and the winding roller (402) is driven to rotate by a fifth power motor (401).
8. The processing equipment for a rainproof cloth according to claim 1, characterized in that, A control main box (8) is further mounted on the first frame (1).
9. A processing technology of a rainproof cloth, characterized in that, It includes the following specific steps: S1. Pour the glue raw material into the feeding barrel (202) of the processing equipment for the rainproof cloth, and use the stirring paddle (218) to ensure that the glue is evenly mixed; S2. Subsequently, place the upper layer of film on the unwinding roller (301); S3. The lower layer of fabric is sent to the spray head (209) through the conveyor belt (5), and the spray head (209) moves reciprocally to evenly spray the glue on the lower layer of fabric; S4. Then, laminate the lower layer of fabric coated with glue with the upper layer of film; S5. Finally, wind the composite rainproof cloth through the winding roller (402).