A cashmere-based felt rolling device for removing impurities

Through ultrasonic vibration and ultraviolet mites removal combined with vacuum cleaner, the servo motor drives the rolling roller and the extruded hinge curtain to achieve uniform thickness rolling and fast drying of the felt, solving the problem of mites separation and felt setting in the existing devices and improving the quality of the felt.

CN117569018BActive Publication Date: 2025-08-15NANTONG YIZHIYUN GARMENT CO LTD
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Patent Information

Application Number
CN202311816337.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-27
Publication Date
2025-08-15
Estimated Expiration
2043-12-27

AI Technical Summary

Technical Problem

The existing devices are not convenient to separate and remove mites and dust mixed with wool fibers during felt processing, and it is difficult to achieve uniform thickness coiling, extrusion and rapid drying of felt.

Method used

Ultrasonic transducer is used to drive the top contact roller and bottom contact roller to vibrate the wool fiber sheet for high frequency, combine the ultraviolet mite removal lamp and the vacuum cleaner to separate the mite dust, and drive the winding roller and the extrusion hinge curtain to cooperate with the servo motor to squeeze and wind, and quickly dry it with an electric heating mesh frame.

Benefits of technology

It realizes effective separation and collection of mites and dust in wool fibers, and the uniform thickness of the felt is curled and shaped and quickly dried, which improves the density and quality of the felt.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a cashmere-based impurity removal and felt rolling device, which relates to the field of textile technology, comprising: a impurity removal frame, wherein an ultraviolet mite removal lamp is fixedly connected to the top inner side of the impurity removal frame; a collecting bucket is provided on the inner side of the bottom of the impurity removal frame through a sliding connection; a support frame is fixedly connected to the inner side of the impurity removal frame, and the number of support frames is set to two groups, and the two groups of support frames are respectively fixedly connected to the front and back sides of the interior of the impurity removal frame; an air suction square tube is fixedly connected to the top of the support frame; by starting the ultrasonic transducer, the top contact roller and the bottom contact roller can drive the wool fiber piece to vibrate at high frequency, so that the mites and dust in the fiber can be separated; by starting the vacuum cleaner, the fallen mite dust can be sucked into the collecting bucket through the air suction square tube, and the mite dust in the wool can be sucked out and collected, which solves the problem that the traditional felt rolling device is inconvenient to separate and remove the mites and dust mixed in the fiber during the felt rolling process.
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Description

Technical Field

[0001] The invention relates to the technical field of textiles, in particular to a cashmere-based impurity removal and felt rolling device. Background Art

[0002] Traditional felt is made of natural wool rolled and extruded, and is made by machine processing and bonding using the shrinkage characteristics of wool. It has good bonding performance, is not easy to loosen, has good thermal insulation performance, has a tight structure, small pores, and is elastic. It is bonded by the shrinkage principle, and the felt can be used to make cold-proof clothing in winter. In the existing felt clothing production process, the existing device is not convenient for separating and removing mites and dust mixed with wool fibers when processing the felt, and the existing device is not convenient for rolling and shaping the felt with uniform thickness. The existing device is not convenient for increasing the wool density. The existing device is not convenient for extruding and shaping the felt when processing the felt, the existing device is not convenient for uniformly extruding the felt, and the existing device is not convenient for rolling and shaping the felt with uniform thickness when processing the felt. The existing device is not convenient for repeatedly rolling and laying out the wool fiber pieces, and the existing device is not convenient for quickly drying the felt after shaping.

[0003] A cashmere-based felt rolling device is currently needed to separate and remove mites and dust mixed in the fibers during the felt rolling process. Summary of the Invention

[0004] In view of this, the present invention provides a cashmere-based impurity removal and felt rolling device. By starting the ultrasonic transducer, the top contact roller and the bottom contact roller can drive the wool fiber sheet to vibrate at high frequency, so that the mites and dust in the fiber can be separated. By starting the vacuum cleaner, the fallen mite dust can be sucked into the collection bucket through the suction square tube, and the mite dust in the wool can be sucked out and collected.

[0005] The invention provides a cashmere-based impurity felt rolling device, which specifically comprises: a load-bearing frame; a cotton popping machine is fixedly connected to the front side of the top of the load-bearing frame; a discharging roller is provided at the rear end of the cotton popping machine through a rotatable connection; the top of the load-bearing frame is fixedly connected to the impurity cleaning frame; the top of the inner top of the impurity cleaning frame is fixedly connected to an ultraviolet mite removal lamp; a collecting bucket is provided at the inner bottom of the impurity cleaning frame through a sliding connection; the inner part of the impurity cleaning frame is fixedly connected to a support frame, and the number of support frames is set as two groups, and the two groups of support frames are fixedly connected to the front and rear sides of the interior of the impurity cleaning frame respectively; the top of the support frame is fixedly connected to an air suction square tube; the front and rear sides of the top of the support frame are fixedly connected, the air suction square tube is located inside the ultrasonic transducer, and the top of the ultrasonic transducer is fixedly connected to the left and right ends of the air suction square tube; the top of the load-bearing frame is fixedly connected

[0006] Optionally, the tops of the two groups of suction square tubes on the front and rear sides of the impurity removal frame are fixedly connected to top contact rollers and bottom contact rollers respectively, the right end of the suction square tube is fixedly connected to a dust collector, and the bottom pipe of the dust collector is located on the top of the collection bucket.

[0007] Optionally, a side reciprocating screw is fixedly connected to the left side of the tilting frame, double-sided slide rails are fixedly connected to the left and right sides of the tilting frame, the right end of the side reciprocating screw ball nut seat is fixedly connected to the reciprocating slide, and the left and right ends of the top of the reciprocating slide are slidably connected to the double-sided slide rails.

[0008] Optionally, a solenoid valve is provided at the bottom of the reciprocating slide through a flange connection, an ultrasonic atomizer is fixedly connected to the bottom end of the solenoid valve, an electric push rod is fixedly connected to the front end of the double-sided slide rails, and a cutting knife is fixedly connected to the bottom end of the telescopic part of the electric push rod.

[0009] Optionally, a material receiving roller is provided on the left side of the inclined frame through a rotating connection, a material cutting anvil is connected to the rear side of the material receiving roller, an inclined receiving plate is fixedly connected to the inner side of the inclined frame, a bottom guide roller is provided on the right end of the inclined receiving plate through a rotating connection, a liquid guide pump is fixedly connected to the left side of the inclined frame, and the liquid guide pump pipeline is connected to the interior of the reciprocating slide.

[0010] Optionally, an X-axis electric slide is fixedly connected to the left side of the material paving bin, a Y-axis electric slide is fixedly connected to the front end of the X-axis electric slide seat, a double-sided slide is fixedly connected to the right side of the Y-axis electric slide, and a supporting slide is fixedly connected to the right end of the material paving bin, and the supporting slide is fixedly connected to the double-sided slide.

[0011] Optionally, the bottom end of the Y-axis electric slide seat is fixedly connected to a vertical frame, a winding roller is provided at the bottom of the vertical frame through a rotating connection, the right end of the winding roller is fixedly connected to a one-way bearing, the right end of the one-way bearing is provided with a reversing gear through a coaxial connection, and the left end of the winding roller is provided with a linkage gear through a coaxial connection.

[0012] Optionally, a servo motor is fixedly connected to the top of the vertical frame, and a transmission gear is coaxially connected to the left end of the servo motor shaft, and the transmission gear is transmitted to the linkage gear through a chain.

[0013] Optionally, a side wedge is fixedly connected to the curved side of the winding roller, a photosensitive sensor is fixedly connected to the top of the side wedge, and an extrusion hinge curtain is provided at the front end of the side wedge through a rotational connection.

[0014] Optionally, a mesh plate is fixedly connected to the inner bottom of the paving bin, an arc-shaped extrusion part is fixedly connected to the front end of the mesh plate, a through groove is opened inside the arc-shaped extrusion part, the front end of the arc-shaped extrusion part is fixedly connected to the rear end of the inclined frame, and a linkage rack is fixedly connected to the top right side of the mesh plate. Beneficial effects

[0015] Compared with the traditional felt rolling device, the felt rolling device according to each embodiment of the present invention inputs the wool raw material into the cotton spinning machine, guides it out through the discharging roller, and then passes the wool fiber piece through the inner side of the impurity removal frame, so that the top and bottom of the fiber piece contact the top contact roller and the bottom contact roller respectively, and then the end of the fiber piece is stuffed into the inner side of the receiving roller, so that the wool fiber piece can be transmitted, and the wool fiber piece can be irradiated with the ultraviolet mite removal lamp to remove the mites and bacteria in the wool. By starting the ultrasonic transducer, the top contact roller and the bottom contact roller can drive the wool fiber piece to vibrate at high frequency, so that the mites and dust in the fiber can be separated. By starting the vacuum cleaner, the fallen mite dust can be sucked into the collection bucket through the suction square tube, and the mite dust in the wool can be sucked out and collected.

[0016] In addition, by setting up an inclined plate and operating the material collecting roller, the wool fiber sheet can be transferred to the inside of the inclined frame, and the rear end of the fiber sheet can be made to droop to the top of the side wedge by gravity. After the fiber sheet covers the light-sensitive sensor on the top of the side wedge, the sensor can control the operation of the electric push rod, and the telescopic part can drive the cutting knife downward to contact the cutting anvil, so that the fiber sheet can be automatically cut off in a quantitative manner on the inside of the inclined frame. At the same time, the control console controls the operation of the liquid guide pump to input water into the inside of the reciprocating slide. By controlling the operation of the side reciprocating screw, it can drive the reciprocating slide to move horizontally above the fiber sheet extruding the hinge curtain surface. By operating the ultrasonic atomizer, the surface of the wool fiber sheet can be evenly sprayed with water, which can increase the wool density and facilitate the extrusion and shaping of the felt.

[0017] In addition, by setting up an arc-shaped extrusion part and controlling the operation of the servo motor through the control console, the transmission gear coaxial with the rotating shaft can be rotated, and the chain transmission can drive the linkage gear to rotate, and the linkage gear can drive the winding roller to rotate, and the winding roller can cooperate with the extrusion hinge curtain to reel in the wool fiber. By controlling the coordinated operation of the X-axis electric slide and the Y-axis electric slide, the winding roller can be driven to extrude the inner arc surface of the arc-shaped extrusion part during rotation, and the felt on the inner side of the extrusion hinge curtain can be evenly extruded, and the felt can be rolled and shaped with uniform thickness.

[0018] In addition, by setting a line roller and controlling the X-axis electric slide to move the winding roller backward, the reversing gear can be contacted with the linkage rack to mesh with it, so that the winding roller can rotate in the opposite direction in a quantitative manner during the horizontal movement, and the extruded hinge curtain can be spread flat on the surface of the mesh plate when the winding roller moves to the rear end of the material paving bin. When the felt sheet is taken out, the one-way bearing at the recovery motor shaft can be used to reduce the rotation resistance of the line roller when the extruded hinge curtain is recovered. When the X-axis electric slide is controlled to move the winding roller forward to the rear side of the inclined support plate, the recovery motor can be controlled to operate through the console, so that the one-way bearing at the shaft can drive the line roller to rotate, and the line roller can drive the winding rope to rotate, and the winding rope can drive the front end of the extruded hinge curtain to move to the front end of the inclined support plate, so that the extruded hinge curtain can be spread flat on the surface of the inclined support plate, which is convenient for repeated winding of the wool fiber sheet.

[0019] In addition, by setting up ventilation slots and controlling the electric slide rail to drive the winding roller to move horizontally during rotation, the rolled-up extruded hinged curtain can be unfolded on the top of the mesh plate. The blower can be controlled by the console to drive high-pressure air through the electric heating mesh frame, blowing air on the surface of the felt and allowing the moisture to flow out through the ventilation slot on the right, so that the shaped felt can be quickly dried. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0021] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0022] In the attached figure:

[0023] Figure 1 A schematic diagram showing a top view of the overall three-dimensional structure of a felt rolling device according to a first embodiment of the present invention is shown;

[0024] Figure 2 A schematic diagram showing the left side three-dimensional structure of the entire felt rolling device according to the first embodiment of the present invention is shown;

[0025] Figure 3 A schematic diagram showing a top-down perspective structure of an inclined frame of a felt rolling device according to a first embodiment of the present invention is shown;

[0026] Figure 4 A schematic diagram showing a side sectional three-dimensional structure of a debris removal frame of a felt rolling device according to a first embodiment of the present invention is shown;

[0027] Figure 5 A schematic diagram showing a three-dimensional disassembled structure of a material laying bin of a felt rolling device according to a first embodiment of the present invention is shown;

[0028] Figure 6A schematic diagram showing a side sectional perspective structure of an inclined frame of a felt rolling device according to a first embodiment of the present invention;

[0029] Figure 7 The embodiment of the present invention is shown Figure 6 A is a schematic diagram of a partial enlargement of the middle part;

[0030] Figure 8 A schematic diagram showing the three-dimensional structure of a wire roller according to a second embodiment of the present invention is shown;

[0031] Figure 9 A schematic diagram showing the three-dimensional structure of the ventilation slots of the felt rolling device according to the third embodiment of the present invention is shown.

[0032] Reference Signs List

[0033] 1. Load-bearing frame;

[0034] 2. Cotton popping machine;

[0035] 201, discharge roller;

[0036] 3. De-cluttering framework;

[0037] 301, ultraviolet mite removal lamp; 302, collection hopper; 303, support frame; 3031, ultrasonic transducer; 3032, suction square tube; 3033, top contact roller; 3034, vacuum cleaner; 3035, bottom contact roller;

[0038] 4. Tilt rack;

[0039] 401, side reciprocating screw; 402, double-sided slide rails; 403, reciprocating slide; 4031, solenoid valve; 4032, ultrasonic atomizer; 404, electric push rod; 4041, cutting knife; 405, receiving roller; 4051, cutting anvil; 406, oblique receiving plate; 4061, bottom guide roller; 4062, line roller; 4063, winding rope; 4064, recovery motor;

[0040] 5. Material silo;

[0041] 501, X-axis electric slide; 502, Y-axis electric slide; 5021, double-sided slide; 5022, support slide; 5023, vertical frame; 503, winding roller; 5031, reversing gear; 5032, linkage gear; 5033, side wedge; 5034, photosensor; 504, extrusion hinge; 505, mesh plate; 5051, arc-shaped extrusion part; 5052, linkage rack; 506, servo motor; 5061, transmission gear; 507, electric heating screen frame; 508, blower; 509, ventilation slot;

[0042] 6. Console. DETAILED DESCRIPTION

[0043] In order to make the purpose, scheme and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.

[0044] Example 1: Please refer to Figures 1 to 7 :

[0045] The present invention proposes a cashmere-based impurity removal and felt rolling device, comprising: a load-bearing frame 1; a cotton-spinning machine 2 is fixedly connected to the front side of the top of the load-bearing frame 1; a discharging roller 201 is provided at the rear end of the cotton-spinning machine 2 through a rotational connection; a cleaning frame 3 is fixedly connected to the top of the load-bearing frame 1; an ultraviolet mite removal lamp 301 is fixedly connected to the top of the inner side of the cleaning frame 3; a collecting bucket 302 is provided on the inner side of the bottom of the cleaning frame 3 through a sliding connection; a support frame 303 is fixedly connected to the inner side of the cleaning frame 3, and the number of the support frames 303 is set to two groups, and the two groups of support frames 303 are respectively fixedly connected to the front and rear sides of the inner side of the cleaning frame 3; an air suction device is fixedly connected to the top of the support frame 303. Tube 3032; the front and rear sides of the top of the support frame 303 are fixedly connected with ultrasonic transducers 3031, the air suction square tube 3032 is located on the inner side of the ultrasonic transducer 3031, and the top of the ultrasonic transducer 3031 is fixedly connected to the left and right ends of the air suction square tube 3032; the top of the load-bearing frame 1 is fixedly connected with a tilting frame 4, the rear end of the tilting frame 4 is tilted downward at forty-five degrees, and the tilting frame 4 is located on the rear side of the impurity removal frame 3; the rear end of the load-bearing frame 1 is fixedly connected with a paving bin 5, the paving bin 5 is arranged on the rear side of the tilting frame 4, and the left side of the tilting frame 4 is fixedly connected with a liquid guide pump, and the liquid guide pump pipeline is connected to the inside of the reciprocating slide 403; the left end of the paving bin 5 is fixedly connected with a control console 6.

[0046] like Figure 4As shown, the tops of the two groups of suction square tubes 3032 on the front and back sides of the interior of the impurity removal frame 3 are fixedly connected to the top contact roller 3033 and the bottom contact roller 3035 respectively, and the right end of the suction square tube 3032 is fixedly connected to the dust collector 3034. The bottom pipe of the dust collector 3034 is located on the top of the collecting bucket 302. After the wool raw material is input into the cotton spinning machine 2 and is guided out through the discharging roller 201, the wool fiber piece passes through the inner side of the impurity removal frame 3, and the top and bottom of the fiber piece are respectively contacted with the top contact roller 3033 and the bottom contact roller 3035, and the end of the fiber piece is stuffed into the collecting bucket 302. The inner side of the material roller 405 can be used to transmit wool fiber pieces. By starting the ultraviolet mite removal lamp 301 to irradiate the fiber pieces, the mites and bacteria in the wool can be removed. By starting the ultrasonic transducer 3031, the top contact roller 3033 and the bottom contact roller 3035 can drive the wool fiber pieces to vibrate at high frequency, which can separate the mites and dust in the fibers. By starting the vacuum cleaner 3034, the fallen mite dust can be sucked into the collection bucket 302 through the suction square tube 3032, and the mite dust in the wool can be sucked out and collected.

[0047] like Figure 3 As shown in the figure, the left side of the tilting frame 4 is fixedly connected to the side reciprocating screw 401, the left and right sides of the tilting frame 4 are fixedly connected to the double-side slide rails 402, the right end of the ball nut seat of the side reciprocating screw 401 is fixedly connected to the reciprocating slide 403, the left and right ends of the top of the reciprocating slide 403 are slidably connected to the double-side slide rails 402, the bottom of the reciprocating slide 403 is provided with a solenoid valve 4031 through a flange connection, the bottom end of the solenoid valve 4031 is fixedly connected to an ultrasonic atomizer 4032, the front end of the double-side slide rails 402 is fixedly connected to an electric push rod 404, the bottom end of the telescopic part of the electric push rod 404 is fixedly connected to a cutting knife 4041, the left side of the tilting frame 4 is provided with a material receiving roller 405 through a rotation connection, the rear side of the material receiving roller 405 is connected to a material cutting anvil 4051, the inside of the tilting frame 4 is fixedly connected to an oblique receiving plate 406, and the right end of the oblique receiving plate 406 is connected through a rotation A bottom guide roller 4061 is provided, and the wool fiber sheet can be transferred to the inside of the inclined frame 4 through the operation of the material receiving roller 405. The rear end of the fiber sheet can be made to droop to the top of the side wedge block 5033 by gravity. After the fiber sheet covers the light-sensitive sensor 5034 on the top of the side wedge block 5033, the sensor can control the operation of the electric push rod 404, and the telescopic part can drive the cutting knife 4041 to contact the cutting anvil 4051 downward, so that the fiber sheet can be automatically cut off in a quantitative manner on the inside of the inclined frame 4. At the same time, the control console 6 controls the operation of the liquid guide pump to input water into the reciprocating slide 403. By controlling the operation of the side reciprocating screw 401, it can drive the reciprocating slide 403 to move horizontally above the fiber sheet extruded on the surface of the hinge curtain 504. By operating the ultrasonic atomizer 4032, water can be sprayed on the surface of the wool fiber sheet, which is convenient for shaping the felt.

[0048] like Figures 1 to 7 As shown, the left side of the paving bin 5 is fixedly connected to an X-axis electric slide 501, the front end of the X-axis electric slide 501 slide is fixedly connected to a Y-axis electric slide 502, the right side of the Y-axis electric slide 502 is fixedly connected to a double-sided slide 5021, the right end of the paving bin 5 is fixedly connected to a supporting slide 5022, the supporting slide 5022 is fixedly connected to the double-sided slide 5021, the bottom end of the Y-axis electric slide 502 slide is fixedly connected to a vertical frame 5023, and a winding roller 503 is provided at the bottom of the vertical frame 5023 through a rotation connection. The winding roller 503 is on the right side. The end is fixedly connected to a one-way bearing, the right end of the one-way bearing is coaxially connected with a reversing gear 5031, the left end of the winding roller 503 is coaxially connected with a linkage gear 5032, the top of the vertical frame 5023 is fixedly connected to a servo motor 506, the left end of the servo motor 506 shaft is coaxially connected with a transmission gear 5061, the transmission gear 5061 is transmitted to the linkage gear 5032 through a chain, the curved side of the winding roller 503 is fixedly connected to a side wedge 5033, and the top of the side wedge 5033 is fixedly connected to a light sensor 5 034, the front end of the side wedge 5033 is provided with an extrusion hinge curtain 504 in a rotating connection, and a mesh plate 505 is fixedly connected to the bottom of the inner side of the paving bin 5. The front end of the mesh plate 505 is fixedly connected to an arc-shaped extrusion part 5051, and a through groove is opened inside the arc-shaped extrusion part 5051. The front end of the arc-shaped extrusion part 5051 is fixedly connected to the rear end of the tilting frame 4. The top right side of the mesh plate 505 is fixedly connected to a linkage rack 5052. The servo motor 506 is controlled by the console 6 to operate, so that the transmission gear 5061 coaxial with the rotating shaft can be rotated. The strip transmission can drive the linkage gear 5032 to rotate, and the linkage gear 5032 can drive the winding roller 503 to rotate, so that the winding roller 503 can cooperate with the extrusion hinge curtain 504 to reel in the wool fiber. By controlling the coordinated operation of the X-axis electric slide 501 and the Y-axis electric slide 502, the winding roller 503 can be driven to rotate and squeeze the inner arc surface of the arc extrusion part 5051 against each other, so that the felt on the inner side of the extrusion hinge curtain 504 can be evenly squeezed, and the felt can be rolled and shaped with uniform thickness.

[0049] Example 2: Figure 8As shown, the right side of the front end of the oblique supporting plate 406 is fixedly connected to a recovery motor 4064, and the end of the rotating shaft of the recovery motor 4064 is fixedly connected to a one-way bearing. The front end of the oblique supporting plate 406 is provided with a wire roller 4062 through a rotation connection, and the one-way bearing at the rotating shaft of the recovery motor 4064 is coaxially connected to the wire roller 4062. The curved side of the wire roller 4062 is fixedly connected with a winding rope 4063. The number of winding ropes 4063 is set to two groups. The front end of the winding rope 4063 is fixedly connected to the front end of the extrusion hinge curtain 504. When the displacement and rotation of the winding roller 503 are controlled, the extrusion hinge curtain 504 on its outer side cooperates with the arc surface of the arc extrusion part 5051 to extrude the rolled wool pile, so that it is squeezed and rolled to shape. By controlling the X-axis electric slide rail 501 to move the winding roller 503 backward, the reversing gear 5031 can contact the linkage rack 5052 and mesh with it, so that the winding roller 503 can be horizontal. When the reel 503 is moved forward to the rear side of the inclined support plate 406 by controlling the recovery motor 4064 to operate, the one-way bearing at the rotating shaft of the recovery motor 4064 can drive the line roller 4062 to rotate, so that the line roller 4062 can drive the reel rope 4063 to rotate, and the reel rope 4063 can drive the front end of the extruded hinge curtain 504 to move to the front end of the inclined support plate 406, so that the extruded hinge curtain 504 can be spread flat on the surface of the inclined support plate 406, making it convenient for the wool fiber sheet to be covered and reeled.

[0050] Example 3: Figure 9 As shown, an electric heating mesh frame 507 is fixedly connected to the left side of the paving bin 5, and a blower 508 is fixedly connected to the left end of the electric heating mesh frame 507. A ventilation slot 509 is horizontally passed through the right end of the paving bin 5. The electric slide rail is controlled to drive the winding roller 503 to move horizontally during the rotation, so that the rolled-up extruded hinge curtain 504 can be unfolded on the top of the mesh plate 505. The blower 508 is controlled to operate through the control console 6, which can drive high-pressure air to pass through the electric heating mesh frame 507, blow air on the surface of the felt, and then let the moisture flow out through the ventilation slot 509 on the right, so that the shaped felt can be quickly dried.

[0051] Specific usage and function of this embodiment: In the present invention, when in use, after the wool raw material is input into the cotton spinning machine 2 and is led out through the discharging roller 201, the wool fiber piece is passed through the inner side of the impurity removing frame 3, so that the top and bottom of the fiber piece contact the top contact roller 3033 and the bottom contact roller 3035 respectively, and then the end of the fiber piece is stuffed into the inner side of the receiving roller 405, so that the wool fiber piece can be transmitted, and by starting the ultraviolet mite removal lamp 301 to irradiate the fiber piece, the mites and bacteria in the wool can be removed, and by starting the ultrasonic transducer 3031, the top contact roller 3033 and the bottom contact roller 3035 can drive the wool fiber piece to vibrate at high frequency, so that the mites and dust in the fiber can be separated, and by starting the vacuum cleaner 3034, the fallen mites can be removed. Dust is sucked into the collecting bucket 302 through the suction square tube 3032, which can suck out and collect mites and dust in the wool. The wool fiber pieces can be transferred to the inside of the inclined frame 4 by the operation of the collecting roller 405. The rear end of the fiber piece can be made to droop to the top of the side wedge 5033 by gravity. After the fiber piece covers the light-sensitive sensor 5034 on the top of the side wedge 5033, the sensor can control the operation of the electric push rod 404, and the telescopic part can drive the cutting knife 4041 downward to contact the cutting anvil 4051, so that the fiber piece can be automatically cut off in a quantitative manner on the inside of the inclined frame 4. At the same time, the control console 6 controls the operation of the liquid guide pump to input moisture into the reciprocating slide 403. By controlling the operation of the side reciprocating screw 401, it can drive the reciprocating slide. 403 is translated above the fiber sheet on the surface of the extrusion hinge curtain 504, and the ultrasonic atomizer 4032 is operated to spray water on the surface of the wool fiber sheet, which is convenient for shaping the felt. The servo motor 506 is controlled to operate by the console 6, and the transmission gear 5061 coaxial with its rotating shaft can be rotated, and the linkage gear 5032 can be driven to rotate by the chain drive, and the linkage gear 5032 can be driven to drive the winding roller 503 to rotate, so that the winding roller 503 and the extrusion hinge curtain 504 can cooperate to rewind the wool fiber. By controlling the X-axis electric slide 501 and the Y-axis electric slide 502 to cooperate in operation, the winding roller 503 can be driven to mutually squeeze the inner arc surface of the arc extrusion part 5051 during the rotation process, which can be The felt inside the extruded hinge curtain 504 is evenly extruded, so that the felt can be rolled up and shaped with uniform thickness. By controlling the X-axis electric slide 501 to move the winding roller 503 backward, the reversing gear 5031 can be brought into contact with the linkage rack 5052 and meshed with it, so that the winding roller 503 can rotate in the reverse direction in a quantitative manner during the horizontal movement, so that when the winding roller 503 moves to the rear end of the material paving bin 5, the extruded hinge curtain 504 can be spread flat on the surface of the mesh plate 505. When the felt sheet is taken out, the one-way bearing at the rotating shaft of the recovery motor 4064 can be used to reduce the rotation resistance of the line roller 4062 coaxial with it when the extruded hinge curtain 504 is recovered. When the X-axis electric slide 501 is controlled to move the winding roller 503 forward to the rear side of the inclined receiving plate 406,The control console 6 controls the operation of the recovery motor 4064, which can drive the one-way bearing at the rotating shaft to drive the line roller 4062 to rotate, so that the line roller 4062 can drive the winding rope 4063 to rotate, and the winding rope 4063 can drive the front end of the extrusion hinge curtain 504 to move to the front end of the inclined receiving plate 406, so that the extrusion hinge curtain 504 can be spread flat on the surface of the inclined receiving plate 406, which is convenient for covering and winding the wool fiber sheet. The electric slide rail is controlled to drive the winding roller 503 to move horizontally during the rotation, so that it can unfold the rolled-up extrusion hinge curtain 504 on the top of the mesh plate 505. Then, the control console 6 controls the operation of the blower 508, which can drive high-pressure air to pass through the electric heating screen frame 507, blowing air on the surface of the felt, and then the moisture flows out through the ventilation slot 509 on the right side, so that the shaped felt can be quickly dried.

[0052] Finally, it should be noted that when describing the positions of various components and the coordination relationships between them, the present invention generally uses a single component or a pair of components as an example. However, those skilled in the art should understand that such positions, coordination relationships, etc. are also applicable to other components or other pairs of components. The above description is merely an exemplary embodiment of the present invention and is not intended to limit the scope of protection of the present invention, which is determined by the appended claims.

Claims

1. A cashmere-based impurity removal felt rolling device, characterized in that: include: The support frame is fixedly connected to the front side of the top of the support frame; the rear end of the support frame is provided with a discharging roller through a rotatable connection; the top of the support frame is fixedly connected to the dust cleaning frame; the top of the inner side of the dust cleaning frame is fixedly connected to the ultraviolet mite removal lamp; the inner side of the bottom of the dust cleaning frame is provided with a collecting bucket through a sliding connection; the inner side of the dust cleaning frame is fixedly connected to the supporting frame, and the number of supporting frames is set as two groups, and the two groups of supporting frames are fixedly connected to the front and rear sides of the inside of the dust cleaning frame respectively; the top of the support frame is fixedly connected to the air suction square tube; the front and rear sides of the top of the support frame are fixedly connected, the air suction square tube is located inside the ultrasonic transducer, and the top of the ultrasonic transducer is fixedly connected to the left and right ends of the air suction square tube; the top of the support frame is fixedly connected The left side of the material paving bin is fixedly connected to the X-axis electric slide, the front end of the X-axis electric slide is fixedly connected to the Y-axis electric slide, the right side of the Y-axis electric slide is fixedly connected to the double-sided slide, the right end of the material paving bin is fixedly connected to the support slide, and the support slide is fixedly connected to the double-sided slide; The bottom end of the Y-axis electric slide is fixedly connected to a vertical frame, the bottom of the vertical frame is provided with a winding roller through a rotatable connection, the right end of the winding roller is fixedly connected to a one-way bearing, the right end of the one-way bearing is provided with a reversing gear through a coaxial connection, and the left end of the winding roller is provided with a linkage gear through a coaxial connection; A servo motor is fixedly connected to the top of the vertical frame, and a transmission gear is coaxially connected to the left end of the servo motor shaft, and the transmission gear is transmitted to the linkage gear through a chain; The curved side of the winding roller is fixedly connected to a side wedge, the top of the side wedge is fixedly connected to a photosensitive sensor, and the front end of the side wedge is provided with an extrusion hinge curtain through a rotation connection; The paving bin is arranged at the rear side of the tilting frame; the left end of the paving bin is fixedly connected with a control console.

2. A cashmere-based felt rolling device for removing impurities according to claim 1, characterized in that: The tops of the two groups of suction square tubes on the front and rear sides of the impurity removal frame are fixedly connected to the top contact roller and the bottom contact roller respectively, the right end of the suction square tube is fixedly connected to the dust collector, and the bottom pipe of the dust collector is located on the top of the collection bucket.

3. A cashmere-based felt rolling device for removing impurities according to claim 1, characterized in that: The left side of the tilting frame is fixedly connected to a side reciprocating screw, the left and right sides of the tilting frame are fixedly connected to double-side slide rails, the right end of the side reciprocating screw ball nut seat is fixedly connected to the reciprocating slide, and the left and right ends of the top of the reciprocating slide are slidably connected to the double-side slide rails.

4. A cashmere-based felt rolling device for removing impurities as claimed in claim 3, characterized in that: The bottom of the reciprocating slide is provided with a solenoid valve through a flange connection, the bottom end of the solenoid valve is fixedly connected to an ultrasonic atomizer, the front end of the double-sided slide rails is fixedly connected to an electric push rod, and the bottom end of the telescopic part of the electric push rod is fixedly connected to a cutting knife.

5. The cashmere-based felt rolling device for removing impurities according to claim 1, characterized in that: A material receiving roller is provided on the left side of the inclined frame through a rotating connection, a material cutting anvil is provided on the rear side of the material receiving roller, an inclined receiving plate is fixedly connected to the inner side of the inclined frame, a bottom guide roller is provided on the right end of the inclined receiving plate through a rotating connection, a liquid guide pump is fixedly connected to the left side of the inclined frame, and the liquid guide pump pipeline is connected to the inside of the reciprocating slide.

6. The cashmere-based felt rolling device for removing impurities according to claim 1, characterized in that: The bottom inner side of the paving bin is fixedly connected with a mesh plate, the front end of the mesh plate is fixedly connected with an arc-shaped extrusion part, a through groove is opened inside the arc-shaped extrusion part, the front end of the arc-shaped extrusion part is fixedly connected to the rear end of the inclined frame, and the top right side of the mesh plate is fixedly connected with a linkage rack.

Citation Information

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