Disclosure of Invention
Aiming at the problems in the prior art, the invention provides a chemical fiber spinning machine.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides a chemical fiber textile machine, includes weaving mechanism, singeing mechanism, circulation mechanism, rolling mechanism, ash removal mechanism and around cloth mechanism, one side of weaving mechanism is provided with the working chamber, singeing mechanism fixed connection is in the working chamber, circulation mechanism is in one side of singeing mechanism, circulation mechanism with first transmission shaft swing joint in the singeing mechanism, separated by the baffle in the middle of the working chamber, rolling mechanism is in the right side region of baffle, rolling mechanism with second transmission shaft swing joint in the singeing mechanism, ash removal mechanism fixed connection is in on the working chamber outer wall, ash removal mechanism with the regional intercommunication that singeing mechanism is located, around cloth mechanism fixed connection is in on the working chamber lateral wall.
Preferably, the weaving mechanism comprises a shell, fixedly connected with heat dissipation net on the shell, be provided with control switch on the shell of the adjacent face of heat dissipation net, there is the sight glass one side of control switch, sight glass fixedly connected is in on the shell, swing joint has weaving needle group in the shell, first export has been seted up to one side of shell, fixedly connected with guide structure in the first export, there is the fixed axle in the guide structure, fixed axle one end fixed connection is in on the first export, the fixed axle other end rotates with the spacing dish to be connected, spacing dish and dwang fixed connection, the nestification has the cloth on the dwang.
Preferably, the singeing mechanism comprises a working chamber, the working chamber is arranged on one side of the shell, a movable door is arranged on one side of the working chamber, a partition plate is fixedly connected in the working chamber, the partition plate divides the working chamber into a left area and a right area, a second outlet is arranged on the side wall of the working chamber, a guide structure is fixedly connected on the second outlet, a singeing structure is arranged on one side of the second outlet, the singeing structure is fixedly connected on the inner wall of the working chamber, an oil storage chamber is arranged in the singeing structure, a fire hole is fixedly connected on the oil storage chamber, and one end of the oil storage chamber is fixedly connected on the inner wall of the working chamber.
Preferably, the singeing mechanism further comprises a first transmission shaft, the first transmission shaft is rotationally connected with the working chamber, a second singeing structure is arranged below the first transmission shaft and fixedly connected with the inner wall of the working chamber, a third outlet is formed in the partition plate, the third outlet is fixedly connected with the guide structure, a second transmission shaft is arranged on the right side of the partition plate and is rotationally connected with the inner wall of the working chamber, the second transmission shaft is fixedly connected with the motor rotor, and the motor is fixedly connected with the outer wall of the working chamber.
Preferably, the circulation mechanism comprises a rotary table, the rotary table is fixedly connected to the first transmission shaft, a T-shaped rod is fixedly connected to the rotary table, the lower end of the T-shaped rod is hinged to one end of a hinged rod, the other end of the hinged rod is fixedly connected with a push-pull rod, the push-pull rod extends into a piston tube, the piston tube is fixedly connected to the bottom of a working chamber and extends to the interior of the piston tube, the push-pull rod is fixedly connected with a piston, the piston is in sliding connection with the piston tube, a telescopic spring is fixedly connected to the piston, the other end of the telescopic spring is fixedly connected to the upper wall of the piston tube, one side of the piston tube is fixedly connected and communicated with an oil outlet tube, the other side of the piston tube is fixedly connected with an oil inlet tube, the oil outlet tube is fixedly connected with a unidirectional flow guide structure in the oil inlet tube, a blocking block is arranged in the unidirectional flow guide structure, the blocking block is fixedly connected to the walls of the oil outlet tube and the oil inlet tube, the rubber ball is mutually abutted to the blocking block, the rubber ball is fixedly connected with the spring, the other end of the piston tube is fixedly connected to the oil inlet tube, and the oil outlet tube is fixedly connected to the oil inlet tube, and the oil storage tube is fixedly connected to the other end of the oil storage chamber.
Preferably, the rolling mechanism comprises a fixed foot fixedly connected to the bottom of the working chamber, the fixed foot is fixedly connected with a support, a fixed block is fixedly connected to the fixed foot, a screw hole is formed in the fixed block, a rotary screw rod is screwed with the screw hole, the lower end of the rotary screw rod penetrates through the fixed block and the sliding block to be abutted against, the sliding block is slidably connected with two sides of the sliding block, the opening is formed in the fixed foot, a compression spring is fixedly connected to the lower end of the sliding block, and the compression spring is fixedly connected to the opening.
Preferably, the rolling mechanism further comprises a first roller gate, the first roller gate is rotationally connected with the fixed leg, a second roller gate and a third roller gate are arranged below the first roller gate, the second roller gate is rotationally connected with the third roller gate and the fixed leg, the first roller gate is hinged with a linkage rod, and the other end of the linkage rod is hinged with the second transmission shaft.
Preferably, the ash removal mechanism comprises an ash suction pipe, the ash suction pipe is fixedly connected and communicated with the outer wall of the working chamber, the ash suction pipe is arranged below the singeing structure, a fan blade is rotationally connected in the ash suction pipe, the fan blade is rotationally connected with one end of an ash removal belt, the other end of the ash removal belt is rotationally connected with a rotating disc, the rotating disc is rotationally connected with a rotating shaft, and the rotating shaft is fixedly connected with a rotor of the motor.
Preferably, the cloth winding mechanism comprises a roller, the roller is movably connected with a fixing frame, the fixing frame is fixedly connected with the working chamber, the roller is rotationally connected with one end of a collecting belt, and the other end of the collecting belt is rotationally connected with the rotating disc.
The invention has the beneficial effects that:
(1) In the chemical fiber spinning machine, in the singeing mechanism, the fire hole in the singeing structure above the first transmission shaft is opposite to the upper surface of the cloth strip, the flame of the fire hole burns down the nap on the upper surface of the cloth strip, the fire hole in the singeing structure below the first transmission shaft is opposite to the lower surface of the cloth strip, the flame of the fire hole burns down the nap on the lower surface of the cloth strip, the temperature of the fire hole can be transmitted to liquid oil in the oil storage chamber, and the liquid oil is continuously heated.
(2) According to the chemical fiber spinning machine, in the circulating mechanism, the push-pull rod drives the piston to slide up and down in the piston tube, when the piston slides up, the piston generates suction force to the lower side, at the moment, the rubber ball in the unidirectional flow guide structure in the oil outlet tube is clung to the blocking block, at the moment, the oil outlet tube is blocked, at the same time, the rubber ball in the unidirectional flow guide structure in the oil inlet tube is far away from the blocking block, at the moment, the oil inlet tube is opened, the oil inlet tube sucks high-temperature liquid oil in the oil storage chamber into the piston tube, when the piston slides down in the piston tube, the piston can press the high-temperature liquid oil below, the rubber ball in the unidirectional flow guide structure in the oil inlet tube is clung to the blocking block, at the moment, the oil inlet tube is closed, at the moment, the rubber ball in the unidirectional flow guide structure in the oil outlet tube is far away from the blocking block, at the moment, the oil outlet tube is opened, at the moment, the high-temperature liquid oil is extruded into the second roller brake and the third roller brake, at the moment, part of the liquid oil in the second roller brake and the third roller brake is extruded into the oil return tube, and then enters the oil storage chamber.
(3) In the rolling mechanism of the chemical fiber textile machine, the first roller gate rotates to be matched with the second roller gate and the third roller gate to roll the cloth, and meanwhile, the heat of high-temperature liquid oil in the second roller gate and the third roller gate can soften the cloth, so that the rolling is smoother.
(4) In the chemical fiber spinning machine, in the ash removing mechanism, when the machine rotates, the rotating shaft is driven to rotate, the rotating shaft drives the rotating disc to rotate, the rotating disc drives the ash removing belt to rotate, the ash removing belt drives the fan blades to rotate, the fan blades rapidly rotate in the ash suction pipe to form suction force, and ash scraps after fluff in the working chamber is burned can be sucked into the ash suction pipe, so that the cleaning in the working chamber is ensured.
Detailed Description
The invention is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
As shown in fig. 1 to 10, the chemical fiber textile machine according to the present invention comprises a weaving mechanism 1, a singeing mechanism 2, a circulation mechanism 3, a rolling mechanism 4, an ash removal mechanism 5 and a cloth winding mechanism 6, wherein one side of the weaving mechanism 1 is provided with a working chamber 21, the singeing mechanism 2 is fixedly connected in the working chamber 21, the circulation mechanism 3 is movably connected with a first transmission shaft 27 in the singeing mechanism 2 at one side of the circulation mechanism 3, the working chamber 21 is separated by a partition 22, the rolling mechanism 4 is in a right side area of the partition 22, the rolling mechanism 4 is movably connected with a second transmission shaft 28 in the singeing mechanism 2, the ash removal mechanism 5 is fixedly connected to an outer wall of the working chamber 21, the ash removal mechanism 5 is communicated with an area where the singeing mechanism 2 is located, and the cloth winding mechanism 6 is fixedly connected to a side wall of the working chamber 21; the weaving mechanism 1 can produce cloth, the singeing mechanism 2 burns down the fine hair on the surface of the cloth, the circulating mechanism 3 can enable hot oil to circulate in the oil storage chamber 262, the second roller brake 411 and the third roller brake 412, the rolling mechanism 4 can flatten the wrinkled cloth, the ash removing mechanism 5 can absorb ash dust left after the fine hair burns, and the cloth winding mechanism 6 can bundle the processed cloth.
Specifically, the weaving mechanism 1 includes a housing 11, a heat dissipation net 12 is fixedly connected to the housing 11, a control switch 13 is provided on the housing 11 on the surface adjacent to the heat dissipation net 12, a sight glass 14 is provided on one side of the control switch 13, the sight glass 14 is fixedly connected to the housing 11, a textile needle group 15 is movably connected to the housing 11, a first outlet 17 is provided on one side of the housing 11, a guiding structure 16 is fixedly connected to the first outlet 17, a fixed shaft 161 is provided in the guiding structure 16, one end of the fixed shaft 161 is fixedly connected to the first outlet 17, the other end of the fixed shaft 161 is rotatably connected with a limiting disc 162, the limiting disc 162 is fixedly connected with a rotating rod 163, and a cloth strip 18 is nested on the rotating rod 163; the heat dissipation net 12 on the shell 11 can effectively reduce the internal working temperature, the control switch 13 can manually control the weaving program, the observation mirror 14 can look over the weaving condition outside the shell 11, the weaving needle group 15 can weave out cloth, the cloth needs to be reprocessed, and the guiding structure 16 can tighten the cloth so as to better process the cloth.
Specifically, the singeing mechanism 2 includes a working chamber 21, the working chamber 21 is on one side of the housing 11, a partition board 22 is fixedly connected in the working chamber 21, a movable door 24 is opened on one side of the working chamber 21, the partition board 22 divides the working chamber 21 into a left area and a right area, the second outlet 23 is arranged on the side wall of the working chamber 21, a guiding structure 16 is fixedly connected on the second outlet 23, a singeing structure 26 is arranged on one side of the second outlet 23, the singeing structure 26 is fixedly connected on the inner wall of the working chamber 21, an oil storage chamber 262 is arranged in the singeing structure 26, a fire hole 261 is fixedly connected on the oil storage chamber 262, one end of the oil storage chamber 262 is fixedly connected on the inner wall of the working chamber 21, a first transmission shaft 27 is rotatably connected with the working chamber 21, a second singeing structure 26 is fixedly connected on the inner wall of the working chamber 21, a third outlet 210 is opened on the partition board 22, a third motor 210 is fixedly connected on the third outlet 22, the second motor structure 28 is fixedly connected with the outer wall of the working chamber 21, and the second transmission shaft 28 is fixedly connected with the second transmission shaft 28; the cloth strip 18 is nested on the upper surface of the second transmission shaft 28, the motor 29 drives the second transmission shaft 28 to rotate after working, the second transmission shaft 28 drives the cloth strip 18 to rotate, at the moment, the cloth strip 18 drives the first transmission shaft 27 to rotate, the cloth strip 18 is nested on the lower surface of the first transmission shaft 27, the cloth strip 18 is pulled into the working chamber 21 from the second outlet 23, a fire hole 261 in the singeing structure 26 above the first transmission shaft 27 is opposite to the upper surface of the cloth strip 18, the fire hole 261 in the singeing structure 26 below the first transmission shaft 27 is opposite to the lower surface of the cloth strip 18, the fire hole 261 burns the nap on the lower surface of the cloth strip 18, the temperature of the fire hole 261 can be transferred to liquid oil in the oil storage chamber 262, and the liquid oil is continuously heated.
Specifically, the circulation mechanism 3 includes a rotary disc 31, the rotary disc 31 is fixedly connected to the first transmission shaft 27, a T-shaped rod 32 is fixedly connected to the rotary disc 31, the lower end of the T-shaped rod 32 is hinged to one end of the hinge rod 33, the other end of the hinge rod 33 is fixedly connected to a push-pull rod 34, the push-pull rod 34 extends into the piston tube 35, the piston tube 35 is fixedly connected to the bottom of the working chamber 21, the push-pull rod 34 extending into the piston tube 35 is fixedly connected to the piston 36, the piston 36 is slidably connected to the piston tube 35, a telescopic spring 37 is fixedly connected to the piston 36, the other end of the telescopic spring 37 is fixedly connected to the upper wall of the piston tube 35, one side of the piston tube 35 is fixedly connected to an oil outlet tube 38, the other side of the piston tube 35 is fixedly connected to an oil inlet tube 310, the oil outlet tube 38 is fixedly connected to the other side of the piston tube 310, a unidirectional flow guide structure 39 is fixedly connected to the inside the oil inlet tube 310, a blocking block 392 is arranged inside the unidirectional flow guide structure 39, the unidirectional flow guide block 392 is fixedly connected to the oil inlet tube wall of the piston tube 310, the piston tube is fixedly connected to the piston tube 262, the other end of the piston tube is fixedly connected to the oil inlet tube is fixedly to the oil inlet tube wall of the piston tube, and the piston tube is fixedly connected to the oil inlet tube is deformed to the oil reservoir tube by the piston tube, and the piston tube is fixed to the piston tube by the piston tube and the piston tube is fixed to the piston tube and the piston tube by the piston tube and is fixed to the piston; when the first transmission rod 27 is driven by the cloth strip 18, the first transmission rod 27 drives the rotary disc 31 to rotate, the rotary disc 31 drives the T-shaped rod 32 to rotate, the T-shaped rod 32 drives the push-pull rod 34 to move up and down, the push-pull rod 34 drives the piston 36 to slide up and down in the piston tube 35, when the piston 36 slides up, the piston 36 generates suction force to the lower side, at the moment, rubber 391 in the unidirectional flow guiding structure 39 in the oil outlet tube 38 is closely attached to the blocking block 392, at the moment, the oil outlet tube 38 is blocked, at the same time, rubber 391 in the unidirectional flow guiding structure 39 in the oil inlet tube 310 is far away from the blocking block 392, at the moment, the oil inlet tube 310 is opened, the oil inlet tube 310 sucks high-temperature liquid oil in the oil storage chamber 262 into the piston tube 35, when the piston 36 slides down in the piston tube 35, the piston 36 presses the high-temperature liquid oil below, at the moment, the rubber 391 in the unidirectional flow guiding structure 39 in the oil inlet tube 310 is closely attached to the blocking block 392, at the moment, the oil inlet tube 310 is closed, at the moment, the rubber 391 in the unidirectional flow guiding structure 39 in the oil outlet tube 38 is far from the blocking block 392, the oil outlet tube is opened, at the moment, the oil inlet tube is opened, and the high-temperature liquid is discharged from the high-temperature liquid after the high-temperature liquid is extruded out from the oil outlet tube 38.
Specifically, the rolling mechanism 4 includes a fixing leg 41, the fixing leg 41 is fixedly connected to the bottom of the working chamber 21, the fixing leg 41 is fixedly connected to a bracket 410, a fixing block 42 is fixedly connected to the fixing leg 41, a screw hole 44 is formed in the fixing block 42, a rotary screw 43 is screwed to the screw hole 44, the lower end of the rotary screw 43 passes through the fixing block 42 and abuts against a sliding block 45, the sliding block 45 is slidably connected to two sides of an opening 46, the opening 46 is formed in the fixing leg 41, a compression spring 47 is fixedly connected to the lower end of the sliding block 45, the compression spring 47 is fixedly connected to the opening 46, a first roller gate 48 is rotatably connected to the fixing leg 41, a second roller gate 411 and a third roller gate 412 are rotatably connected to the fixing leg 41 below the first roller gate 48, the first roller gate 48 is hinged to a linkage rod 49, and the other end of the linkage rod 49 is hinged to the second transmission shaft 28; the high-temperature liquid oil enters the second roller gate 411 and the third roller gate 412 through the oil outlet pipe 38, the inside of the second roller gate 411 and the third roller gate 412 is of a hollow structure, the second roller gate 411 and the third roller gate 412 are clung to one side of the fixed foot 41, the high-temperature liquid oil enters the second roller gate 411 and the third roller gate 412 through the fixed foot 41 again, meanwhile, a part of liquid oil in the second roller gate 411 and the third roller gate 412 is extruded into the oil return pipe 311, then enters the oil storage chamber 262, the cloth strip 18 is pulled out from the third outlet 210 and clung to the upper surface of the second transmission shaft 28, then the lower surface of the first roller gate 48 is in a hollow structure, a user can twist the rotary screw 43 to extrude the sliding block 45 to slide downwards, the cloth strip 18 on the lower surface of the first roller gate 48 is in contact with the upper surface of the second roller gate 411 and the third roller gate 412, at this time, the compression spring 47 is compressed, when the user needs to turn up the gap between the first roller gate 48 and the second roller gate 411 and the third roller gate 412 to be extruded into the oil return pipe 311, then enters the oil storage chamber 262, the cloth strip 18 is pulled out from the third outlet 210 and then the lower surface of the first roller gate 48 is in a hollow structure, the lower surface of the rotary screw 43 is extruded by the rotary screw 45, the lower surface of the sliding block 45 slides downwards, the cloth strip 18 on the lower surface of the first roller gate 48 is in contact with the upper surface of the second roller gate 411, at this time, the upper surface of the second roller gate 412 is compressed by the upper surface of the second roller gate, the upper surface of the second roller gate is in contact with the upper surface of the second roller gate, and the upper surface of the second roller gate is in the upper surface of the second roller gate is in the second roller gate, and the upper surface of the roller gate, and lower surface of the roller gate is.
Specifically, the ash removing mechanism 5 includes an ash absorbing pipe 51, the ash absorbing pipe 51 is fixedly connected and communicated to an outer wall of the working chamber 21, the ash absorbing pipe 51 is below the singeing structure 26, a fan blade 52 is rotationally connected to the ash absorbing pipe 51, the fan blade 52 is rotationally connected to one end of an ash removing belt 53, the other end of the ash removing belt 53 is rotationally connected to a rotating disc 54, the rotating disc 54 is rotationally connected to a rotating shaft 55, and the rotating shaft 55 is fixedly connected to a rotor of the motor 29; the motor 29 drives the rotating shaft 55 to rotate when rotating, the rotating shaft 55 drives the rotating disc 54 to rotate, the rotating disc 54 drives the ash removing belt 53 to rotate, the ash removing belt 53 drives the fan blades 52 to rotate, the fan blades 52 rapidly rotate in the ash suction pipe 51 to form suction force, and the ash dust after the fluff in the working chamber 21 is burned can be sucked into the ash suction pipe 51, so that the cleaning in the working chamber 21 is ensured, and a user can clean the ash suction pipe 51 regularly.
Specifically, the cloth winding mechanism 6 includes a roller 61, the roller 61 is movably connected with a fixing frame 62, the fixing frame 62 is fixedly connected to the working chamber 21, the roller 61 is rotatably connected with one end of a collecting belt 63, and the other end of the collecting belt 63 is rotatably connected with the rotating disc 54; meanwhile, the rotating shaft 55 drives the collecting belt 63 to rotate when rotating, the collecting belt 63 rotates to drive the roller 61 to rotate, the cloth strips 18 are nested on the roller 61, and the roller 61 rotates to wind the processed cloth strips 18 onto the cloth strips 18, so that collection of the cloth strips 18 is completed.
When the invention is used, a user nests the cloth strip from the first outlet 17 onto the guide structure 16 on the second outlet 23, then nests the cloth strip 18 on the lower surface of the first transmission shaft 27, then passes the cloth strip 18 from the third outlet 210 to be nested on the upper surface of the second transmission shaft 28, then passes the cloth strip 18 between the first roller gate 48 and the second roller gate 411 and the third roller gate 412, finally fixedly nests the cloth strip 18 on the roller 61, then starts the motor 29, the motor 29 works and then drives the second transmission shaft 28 to rotate, the second transmission shaft 28 drives the cloth strip 18 to rotate, at the moment, the cloth strip 18 drives the first transmission shaft 27 to rotate, The cloth strip 18 is nested on the lower surface of the first transmission shaft 27, the cloth strip 18 is pulled into the working chamber 21 from the second outlet 23, a fire hole 261 in a singeing structure 26 above the first transmission shaft 27 is opposite to the upper surface of the cloth strip 18, the flame of the fire hole 261 burns down the fluff on the upper surface of the cloth strip 18, the fire hole 261 in the singeing structure 26 below the first transmission shaft 27 is opposite to the lower surface of the cloth strip 18, the flame of the fire hole 261 burns down the fluff on the lower surface of the cloth strip 18, the temperature of the fire hole 261 is transferred to liquid oil in the oil storage chamber 262, the liquid oil is continuously heated, after the first transmission rod 27 is driven by the cloth strip 18, The first transmission rod 27 drives the turntable 31 to rotate, the turntable 31 drives the T-shaped rod 32 to rotate, the T-shaped rod 32 drives the push-pull rod 34 to move up and down, the push-pull rod 34 drives the piston 36 to slide up and down in the piston tube 35, when the piston 36 slides up, the piston 36 generates suction force to the lower side, at the moment, the rubber ball 391 in the unidirectional flow guiding structure 39 in the oil outlet pipe 38 is tightly attached to the blocking block 392, at the moment, the oil outlet pipe 38 is blocked, at the same time, the rubber ball 391 in the unidirectional flow guiding structure 39 in the oil inlet pipe 310 is far away from the blocking block 392, at the moment, the oil inlet pipe 310 is opened, the oil inlet pipe 310 sucks high-temperature liquid oil in the oil storage chamber 262 into the piston tube 35, when the piston 36 slides downwards in the piston tube 35, the piston 36 extrudes high-temperature liquid oil below, rubber balls 391 in the unidirectional flow guiding structure 39 in the oil inlet tube 310 are clung to the blocking blocks 392, the oil inlet tube 310 is closed at the moment, meanwhile, rubber balls 391 in the unidirectional flow guiding structure 39 in the oil outlet tube 38 are far away from the blocking blocks 392, the oil outlet tube 38 is opened at the moment, the high-temperature liquid oil is extruded and discharged from the oil outlet tube 38, the high-temperature liquid oil enters the second roller gate 411 and the third roller gate 412 through the oil outlet tube 38, hollow structures are arranged in the second roller gate 411 and the third roller gate 412, the second roller gate 411 and the third roller gate 412 are clung to one side of the fixed leg 41, the high temperature liquid oil enters the second roller gate 411 and the third roller gate 412 again through the fixed leg 41, meanwhile, a part of the liquid oil in the second roller gate 411 and the third roller gate 412 is extruded into the oil return pipe 311 and then enters the oil storage chamber 262, the cloth strip 18 is tightly attached to the upper surface of the second transmission shaft 28 after being pulled out from the third outlet 210, then passes through the lower surface of the first roller gate 48, a user can twist the rotary screw 43 to enable the rotary screw 43 to extrude the sliding block 45 to slide downwards, the cloth strip 18 on the lower surface of the first roller gate 48 contacts the upper surfaces of the second roller gate 411 and the third roller gate 412, at the moment, the compression spring 47 is compressed, When a user needs to enlarge the gap between the first roller gate 48 and the second roller gate 411 and the third roller gate 412, the screw rod 43 is rotated reversely, the compression spring 47 can restore deformation to drive the sliding block 45 to slide upwards, the sliding block 45 drives the first roller gate 48 to move upwards, at the moment, the connecting position of the linkage rod 49 and the second transmission shaft 28 needs to be adjusted, the second transmission shaft 28 continuously conveys the cloth 18 when rotating, the linkage rod 49 drives the first roller gate 48 to rotate, the first roller gate 48 rotates to be matched with the second roller gate 411 and the third roller gate 412 to roll the cloth 18, and meanwhile, the heat of high-temperature liquid oil in the second roller gate 411 and the third roller gate 412 can soften the cloth 18, The grinding is smoother, meanwhile, the motor 29 drives the rotating shaft 55 to rotate when rotating, the rotating shaft 55 drives the rotating disc 54 to rotate, the rotating disc 54 drives the dust removing belt 53 to rotate, the dust removing belt 53 drives the fan blade 52 to rotate, the fan blade 52 rapidly rotates to form suction force in the dust suction pipe 51, dust after fluff in the working chamber 21 is burnt can be sucked into the dust suction pipe 51, a user can clean the dust suction pipe 51 regularly, the rotating shaft 55 drives the collecting belt 63 to rotate when rotating, the collecting belt 63 rotates to drive the roller 61 to rotate, cloth strips 18 are nested on the roller 61, the roller 61 rotates to wind the processed cloth strips 18 on the user, The collection of the strips 18 is completed.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the foregoing examples, and that the foregoing description and description are merely illustrative of the principles of this invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.