A squeezing dewatering device for cloth processing
By combining the design of the fabric rolling, drying, vibration, and wastewater treatment devices, the problems of deformation and uneven drying during the fabric extrusion and dewatering process are solved, achieving efficient dewatering and environmentally friendly treatment of the fabric.
Patent Information
- Application Number
- CN202311297062.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-09
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2043-10-09
AI Technical Summary
Existing extrusion and dehydration devices used in fabric processing are prone to causing fabric deformation and damage during the extrusion process, and uneven drying can also cause damage.
The device employs a combination design of a fabric rolling device, a drying device, a vibration device, and a wastewater treatment device. The fabric rolling device uses an arc-shaped spring plate to prevent deformation, the drying device uses a uniform heat-conducting component to prevent uneven heating, the vibration device uses rubber column vibration to accelerate dehydration and scrape off lint, and the wastewater treatment device uses an elastic filter plate to prevent contamination.
It effectively prevents fabric from deforming and being damaged during the squeezing process, ensures uniform drying, removes fine lint, and facilitates wastewater treatment, avoiding environmental pollution.
Smart Images

Figure CN117966407B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cloth extrusion dehydration device, in particular to an extrusion dehydration device for cloth processing. BACKGROUND
[0002] The cloth extrusion dehydration device is a device specially used for fabric dehydration, commonly used in the textile, printing and dyeing, clothing and other industries, which removes the excess water in the fabric through extrusion, improves the production efficiency and reduces the dehydration time, and the cloth extrusion dehydration device has the characteristics of high efficiency and energy saving, which can greatly shorten the dehydration time and reduce the consumption of energy and human resources. Since the extrusion method is adopted, the damage to the fabric can be avoided, and the quality and appearance of the fabric can be maintained.
[0003] The patent with the patent announcement number CN217534802U discloses an extrusion dehydration device for cloth processing, which comprises a box body, a winding device fixedly installed on the top rear side of the box body, side plates fixedly connected to the top of the box body on both sides, a first motor fixedly connected to the bottom of the outer side of the side plate. The patent cooperates with the shell, the second motor, the threaded rod, the threaded block, the lifting plate, the lifting column, the adjusting plate, the fixed plate, the upper extrusion roller, the water leakage tank, the first guide plate, the second guide plate, the collection box, the drain pipe, the drain valve, the first rotating shaft, the first bearing, the third bearing, the sliding groove, the sliding block, the second rotating shaft and the second bearing, which has the advantages of dehydrating cloth of different thicknesses. When the cloth is dehydrated, the extrusion dehydration device can be adjusted according to the cloth of different thicknesses, the dehydration efficiency of the extrusion dehydration device is improved, and the actual use requirements can be met.
[0004] However, the extrusion dehydration device for cloth processing has the following problems: when the cloth is extruded and dehydrated by the extrusion dehydration device for cloth processing, the water is removed by mechanical extrusion, and when the squeezed cloth is arranged, the cloth is easily deformed in the process of squeezing and arranging, which causes the problem of deformation and damage of the cloth caused by the extrusion dehydration device for cloth processing. Therefore, we propose an extrusion dehydration device for cloth processing. SUMMARY
[0005] In view of the deficiencies of the prior art, the present application provides an extrusion dehydration device for cloth processing, which solves the problem of deformation and damage of the cloth caused by the extrusion dehydration device for cloth processing due to the mechanical extrusion method for removing water, and the arrangement of the squeezed cloth.
[0006] In order to achieve the above object, the present application is implemented by the following technical scheme: an extrusion dewatering device for cloth processing, comprising a cloth table, a convex shell, two rolling mills and a driving device, the convex shell is fixed on the right side of the top surface of the cloth table, the two rolling mills are penetrated and rotatably installed on the right inner wall of the convex shell, the gears of the two rolling mills are respectively fixed on the front surface of the rotating shaft of the two rolling mills, the outer walls of the gears of the two rolling mills are mutually engaged, the driving device is fixed on the front surface of the gear of the lower rolling mill, further comprising a cloth winding device, a drying device, an amplitude device and a wastewater treatment device, the cloth winding device is arranged on the left side of the top surface of the cloth table, the drying device is arranged on the middle of the top surface of the cloth table, the amplitude device is arranged on the top right side of the drying device, and the wastewater treatment device is arranged on the left side of the bottom surface of the cloth table;
[0007] The cloth winding device comprises an L-shaped frame, a rotating rod, a cloth winding roller, a belt drive device one, a vertical plate and a bottom dragging assembly, the L-shaped frame is fixed on the left side of the top surface of the cloth table, the rotating rod is penetrated and rotatably installed on the top front surface of the L-shaped frame, the cloth winding roller is fixed on the outer wall of the rotating rod, the groove of the cloth winding roller is arranged on the middle of the back surface of the cloth winding roller, the belt drive device one is fixedly installed on the back surface of the rotating rod, one side of the belt drive device one away from the rotating rod is fixedly installed on the back surface of the rotating shaft of the lower rolling mill, the vertical plate is rotatably installed on the bottom front surface of the L-shaped frame, the groove of the vertical plate is arranged on the top front surface of the vertical plate, the rotating rod is located on the movement track of the groove of the vertical plate, and the bottom dragging assembly is arranged on the bottom end of the L-shaped frame.
[0008] Preferably, the bottom dragging assembly comprises an arc-shaped spring plate and an arc plate, the arc-shaped spring plate is fixed on the bottom end of the L-shaped frame, the arc plate is fixed on the top surface of the arc-shaped spring plate, the arc plate is located below the cloth winding roller, the cloth table comprises four supporting columns and four foot pads, the four supporting columns are respectively fixed on the four corners of the bottom surface of the cloth table, the four foot pads are respectively fixed on the bottom surfaces of the four supporting columns, the driving device comprises a motor and a protective shell, the motor is fixed on the middle of the front surface of the gear of the lower rolling mill, the protective shell is fixed on the top surface of the cloth table, the motor is fixedly installed on the bottom end of the inside of the protective shell, the belt drive device one comprises two groove rollers and a belt, the belt is rotatably installed on the inner walls of the two groove rollers, and a torsion spring is arranged between the vertical plate and the L-shaped frame, so that the cloth is prevented from being deformed in the process of extrusion and arrangement, thereby avoiding the problem that the extrusion dewatering device for cloth processing causes the cloth to be deformed and damaged.
[0009] Preferably, the drying device comprises a box body, a plurality of resistance heaters and a uniform heat conduction assembly, the box body is fixedly installed on the middle of the top surface of the cloth table, the plurality of resistance heaters are respectively fixed on the inner walls of the box body, and the uniform heat conduction assembly is arranged on the middle of the front surface and the back surface of the box body. The resistance heaters transfer heat to the extruded cloth, and further dry the cloth.
[0010] Preferably, the uniform heat conduction assembly includes two rectangular plates, a long-axis fan plate, a belt drive device two, the two rectangular plates are respectively fixed in the middle of the front and back of the box body, the long-axis fan plate is rotatably installed on the top of the opposite surface of the two rectangular plates, the outer wall of the long-axis fan plate is respectively fixed with four strip-shaped leaves, the belt drive device two is fixed on the back of the long-axis fan plate shaft, the side away from the long-axis fan plate of the belt drive device two is fixed on the back of the roller shaft fixedly installed above, the belt drive device two includes two groove rollers and a belt, the belt is rotatably installed on the inner wall of the two groove rollers, which prevents uneven heating of the dried cloth, thereby avoiding the problem of damage caused by uneven heating of the dried cloth in the extrusion dehydration device for cloth processing.
[0011] Preferably, the amplitude device includes four strip plates, four arc-shaped elastic plates, four rubber columns and a velvet scraping assembly, the four strip plates are respectively fixed on the right side top of the four strip-shaped leaves of the long-axis fan plate, the four arc-shaped elastic plates are respectively fixed on the right side of the four strip plates, the four rubber columns are respectively fixed on the end away from the four strip plates of the four arc-shaped elastic plates, and the velvet scraping assembly is arranged on the right side of the arc-shaped elastic plate. The column vibrates and knocks the cloth, so that the moisture on the cloth is quickly discharged and the cloth is dehydrated.
[0012] Preferably, the velvet scraping assembly includes four semi-arc clamping groove rods and four arc-shaped scraping plates, the four semi-arc clamping groove rods are respectively fixed on the right side of the four arc-shaped elastic plates, and the four arc-shaped scraping plates are respectively embedded in the grooves of the four semi-arc clamping groove rods, which prevents fine lint from adhering to the cloth, thereby avoiding the problem that fine lint on the cloth is not easy to remove after the cloth is dehydrated in the extrusion dehydration device for cloth processing.
[0013] Preferably, the wastewater treatment device includes two L-shaped slide rods, a wastewater tank, an elastic filter plate and a ramming net assembly, the two L-shaped slide rods are respectively fixed on the left side of the bottom surface of the cloth table, and the front and back top of the wastewater tank is respectively provided with a clamping strip; the clamping strip of the wastewater tank is slidably installed in the interior of the two L-shaped slide rods, the elastic filter plate is fixed on the inner wall top of the wastewater tank, and the ramming net assembly is arranged in the inner bottom end of the wastewater tank. The elastic filter plate in the wastewater tank filters impurities in the wastewater, the clamping strip on the wastewater tank slides in the L-shaped slide rod by pulling the wastewater tank to the right, so that the wastewater in the wastewater tank can be conveniently treated.
[0014] Preferably, the ramming net assembly includes an electric telescopic rod and a circular top plate, the electric telescopic rod is fixed on the inner bottom end of the wastewater tank, and the circular top plate is fixed on the top surface of the telescopic end of the electric telescopic rod. The elastic filter plate is on the motion track of the circular top plate, which prevents the elastic filter plate from being blocked to cause poor filtering effect, thereby avoiding the problem of environmental pollution caused by inconvenience in treating wastewater in the extrusion dehydration device for cloth processing.
[0015] The application provides an extrusion dehydration device for cloth processing.
[0016] (1) The setting of the cloth winding device drives the belt transmission device I to rotate in the positive direction through the rotation shaft of the rolling roller, the rotating rod in the L-shaped frame starts to rotate in the positive direction, the rotating rod drives the cloth winding roller to rotate in the positive direction, the cloth winding roller rotates in the positive direction to roll and squeeze the cloth, the left rotating vertical plate takes out the rolled cloth, reduces the cloth arrangement time, and under the elastic force of the arc-shaped spring plate, the arc plate on the arc-shaped spring plate tightly abuts against the squeezed cloth, the squeezed cloth on the cloth winding roller will not be deformed, the cloth deformation in the squeezing and arrangement process is prevented, and thus the problem that the extrusion dehydration device for cloth processing causes cloth deformation and damage is avoided.
[0017] (2) The setting of the drying device drives the resistance heater in the box body to start to heat, the resistance heater transmits heat to the squeezed cloth, further dries the cloth, and the strip-shaped fan blades on the long-axis fan plate uniformly fan the heat transmitted by the resistance heater, the cloth drying is prevented from being unevenly heated, and thus the problem that the extrusion dehydration device for cloth processing causes damage due to uneven heating of the dried cloth is avoided.
[0018] (3) The setting of the amplitude device drives the strip plate, the arc-shaped elastic plate, the rubber column, the half-arc clamping slot rod and the arc-shaped scraper to vibrate under the elastic force of the arc-shaped elastic plate, the rubber column on the arc-shaped elastic plate vibrates to knock the cloth, the moisture on the cloth is more quickly discharged, the cloth dehydration is accelerated, and under the elastic force of the arc-shaped elastic plate, the arc-shaped elastic plate vibrates, the vibration is transmitted to the half-arc clamping slot rod, the vibration is transmitted to the arc-shaped scraper, the arc-shaped scraper vibrates to scrape the fine fluff on the cloth, the fine fluff on the cloth is prevented from being attached to the cloth, and thus the problem that the fine fluff on the cloth is not easy to remove after the cloth is dehydrated by the extrusion dehydration device for cloth processing is avoided.
[0019] (4) The setting of the wastewater treatment device drives the L-shaped sliding rod, the wastewater tank, the elastic filter plate, the electric telescopic rod and the circular top plate, the elastic filter plate in the wastewater tank filters the impurities in the wastewater, the wastewater tank is pulled to the right, the clamping strip on the wastewater tank slides in the L-shaped sliding rod, the wastewater in the wastewater tank is conveniently treated, and the circular top plate reciprocatingly jacks up the elastic filter plate, the elastic filter plate is locally protruded under the elastic force of the elastic filter plate, the accumulated impurities are prevented from blocking the elastic filter plate, the poor filtering effect caused by the blocking of the elastic filter plate is prevented, and thus the problem that the extrusion dehydration device for cloth processing inconveniently treats the wastewater and causes environmental pollution is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a schematic view of the back of the entire application;
[0021] Figure 2 is a schematic view of the back of the entire application;
[0022] Figure 3 is a schematic view of the back of the entire application;
[0023] Figure 4 is a schematic view of the back of the entire application;
[0024] Figure 5 is a schematic view of the back of the entire application;
[0025] Figure 6 is a schematic view of the back of the entire application;
[0026] Figure 7 is a schematic view of the back of the entire application.
[0027] In the figure: 1, cloth table; 2, convex shell; 3, rolling roller; 4, driving device; 5, cloth rolling device; 500, bottom dragging assembly; 6, drying device; 600, uniform heat conducting assembly; 7, amplitude device; 700, napping assembly; 8, wastewater treatment device; 800, beating-up assembly; 51, L-shaped frame; 52, rotating rod; 53, cloth rolling roller; 54, belt transmission device one; 55, vertical plate; 56, arc spring plate; 57, arc plate; 61, box body; 62, resistance heater; 63, rectangular plate; 64, long-axis fan plate; 65, belt transmission device two; 71, strip plate; 72, arc spring plate; 73, rubber column; 74, semi-arc clamping slot rod; 75, arc-shaped scraping plate; 81, L-shaped sliding rod; 82, wastewater tank; 83, elastic filter plate; 84, electric telescopic rod; 85, circular top plate. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application.
[0029] Embodiment 1
[0030] Please refer to Figures 1-5The embodiment provides a technical scheme, an extrusion dehydration device for cloth processing, which comprises a cloth table 1, a convex shell 2, two rolling mills 3 and a driving device 4, the convex shell 2 is fixed on the right top surface of the cloth table 1, the two rolling mills 3 are penetrated and rotatably installed on the right inner wall of the convex shell 2, the gears of the two rolling mills 3 are respectively fixed on the front surfaces of the rotating shafts of the two rolling mills 3, the outer walls of the gears of the two rolling mills 3 are mutually meshed, the driving device 4 is fixed on the front middle of the gear of the lower rolling mill 3, and the extrusion dehydration device further comprises a cloth winding device 5 and a drying device 6, wherein the cloth winding device 5 is arranged on the left top surface of the cloth table 1, the cloth winding device 5 comprises an L-shaped frame 51, a rotating rod 52, a cloth winding roller 53, a belt transmission device one 54, a vertical plate 55 and a bottom dragging assembly 500, the L-shaped frame 51 is fixed on the left top surface of the cloth table 1, the rotating rod 52 is penetrated and rotatably installed on the front top of the L-shaped frame 51, the cloth winding roller 53 is fixed on the outer middle wall of the rotating rod 52, the groove of the cloth winding roller 53 is arranged on the back middle of the cloth winding roller 53, the belt transmission device one 54 is fixedly installed on the back of the rotating rod 52, one side of the belt transmission device one 54 away from the rotating rod 52 is fixedly installed on the back of the rotating shaft of the lower rolling mill 3, the vertical plate 55 is rotatably installed on the front bottom of the L-shaped frame 51, the groove of the vertical plate 55 is arranged on the front top of the vertical plate 55, the rotating rod 52 is located on the movement track of the groove of the vertical plate 55, the rotating shaft of the rolling mill 3 drives the belt transmission device one 54 to rotate forward, the rotating rod 52 in the L-shaped frame 51 starts to rotate forward, the rotating rod 52 drives the cloth winding roller 53 to rotate forward, the cloth winding roller 53 rotates forward to roll and squeeze the cloth, the staff rotates the vertical plate 55 to the left to take out the rolled cloth, the time for the staff to arrange the cloth is reduced, the bottom dragging assembly 500 is arranged on the inner bottom end of the L-shaped frame 51, the bottom dragging assembly 500 comprises an arc-shaped spring plate 56 and an arc plate 57, the arc-shaped spring plate 56 is fixed on the inner bottom end of the L-shaped frame 51, the arc plate 57 is fixed on the top surface of the arc-shaped spring plate 56, the arc plate 57 is located below the cloth winding roller 53, the cloth table 1 comprises four supporting columns and four foot pads, the four supporting columns are respectively fixed on the four corners of the bottom surface of the cloth table 1, the four foot pads are respectively fixed on the bottom surfaces of the four supporting columns, the driving device 4 comprises a motor and a protective shell, the motor is fixed on the front middle of the gear of the lower rolling mill 3, the protective shell is fixed on the top surface of the cloth table 1, the motor is fixedly installed on the inner bottom end of the protective shell, the belt transmission device one 54 comprises two groove rollers and a belt, the belt is rotatably installed on the inner walls of the two groove rollers, a torsion spring is arranged between the vertical plate 55 and the L-shaped frame 51, the cloth wound on the cloth winding roller 53 is more and more, under the elastic force of the arc-shaped spring plate 56, the arc plate 57 on the arc-shaped spring plate 56 tightly abuts against the squeezed cloth, the squeezed cloth on the cloth winding roller 53 will not be deformed, the cloth is prevented from being deformed in the process of squeezing and arranging, so that the problem that the extrusion dehydration device for cloth processing causes the cloth to be deformed and damaged is avoided.
[0031] The drying device 6 is arranged in the middle of the top surface of the cloth table 1. The drying device 6 comprises a box body 61, a plurality of resistance heaters 62 and a uniform heat conduction assembly 600. The box body 61 is fixedly installed in the middle of the top surface of the cloth table 1. The plurality of resistance heaters 62 are respectively fixed on the inner wall of the box body 61. The resistance heaters 62 in the box body 61 start to heat. The resistance heaters 62 transfer heat to the squeezed cloth, further drying the cloth. The uniform heat conduction assembly 600 is arranged in the middle of the front and back surfaces of the box body 61. The uniform heat conduction assembly 600 comprises two rectangular plates 63, a long-axis fan plate 64 and a belt drive device two 65. The two rectangular plates 63 are respectively fixed in the middle of the front and back surfaces of the box body 61. The long-axis fan plate 64 is rotatably installed in the top of the opposite surfaces of the two rectangular plates 63. Four strip-shaped fan blades are respectively fixed on the outer wall of the long-axis fan plate 64. The belt drive device two 65 is fixed on the back surface of the rotating shaft of the long-axis fan plate 64. The side of the belt drive device two 65 away from the long-axis fan plate 64 is fixed on the back surface of the rotating shaft of the rolling roller 3 fixedly installed above. The belt drive device two 65 comprises two groove rollers and a belt. The belt is rotatably installed on the inner wall of the two groove rollers. The rotating shaft of the rolling roller 3 drives the belt drive device two 65 to rotate forward, drives the belt drive device two 65 to drive the long-axis fan plate 64 to rotate forward. The long-axis fan plate 64 on the rectangular plate 63 starts to rotate. The strip-shaped fan blades on the long-axis fan plate 64 fan the air flow. The strip-shaped fan blades on the long-axis fan plate 64 uniformly fan the heat transferred by the resistance heaters 62, preventing the cloth from being unevenly heated during drying, thereby avoiding the problem that the squeezed dewatering device for cloth processing is damaged due to uneven heating of the cloth during drying.
[0032] In use, the staff will put the wet cloth into the convex shell 2 on the cloth table 1, and then put the wet cloth between the two rolling rollers 3 in the convex shell 2. The staff starts the driving device 4 through the wire. The motor shaft in the driving device 4 starts to rotate in the positive direction, which drives the lower gear to rotate in the positive direction, and then drives the upper gear to rotate in the positive direction. The lower gear drives the lower rolling roller 3 to rotate in the positive direction, and the upper gear drives the upper rolling roller 3 to rotate in the positive direction. The two rolling rollers 3 rotate to extrude the wet cloth, and the water in the wet cloth is squeezed out. The staff puts the one end of the squeezed dry cloth into the groove of the cloth roller 53. At the same time, the rolling roller 3 shaft drives the groove roller on the belt drive device one 54 to rotate in the positive direction, which drives the belt to rotate in the positive direction, and then drives the other groove roller to rotate in the positive direction. The other groove roller drives the rotating rod 52 to rotate in the positive direction, and the rotating rod 52 in the L-shaped frame 51 starts to rotate in the positive direction. The rotating rod 52 drives the cloth roller 53 to rotate in the positive direction, and the cloth roller 53 rotates to roll the squeezed cloth. When the wet cloth is squeezed dry, the staff turns the vertical plate 55 to the left to take out the rolled cloth, which reduces the time of the staff to arrange the cloth. At the same time, the cloth roller 53 rotates to roll the squeezed cloth, and the cloth rolled on the cloth roller 53 becomes more and more. Under the action of the elastic force of the arc-shaped spring plate 56, the arc plate 57 on the arc-shaped spring plate 56 tightly abuts against the squeezed cloth, so that the squeezed cloth on the cloth roller 53 will not be deformed, which prevents the cloth from being deformed in the process of squeezing and arranging, thereby avoiding the problem that the squeezed and dehydrated device for cloth processing causes damage to the cloth.
[0033] At the same time, the two rolling rollers 3 rotate to extrude the wet cloth, and the staff starts the resistance heater 62 through the wire. The resistance heater 62 in the box body 61 starts to heat up, and the resistance heater 62 transfers heat to the squeezed cloth, which further dries the cloth. At the same time, the upper gear drives the upper rolling roller 3 to rotate in the positive direction, and the rolling roller 3 shaft drives the groove roller on the belt drive device two 65 to rotate in the positive direction, which drives the belt to rotate in the positive direction, and then drives the other groove roller to rotate in the positive direction. The other groove roller drives the long shaft fan plate 64 to rotate in the positive direction, and the long shaft fan plate 64 on the rectangular plate 63 starts to rotate. The strip-shaped fan blades on the long shaft fan plate 64 fan the air flow, so that the strip-shaped fan blades on the long shaft fan plate 64 evenly fan the heat transferred by the resistance heater 62, which prevents the cloth from being unevenly heated during drying, thereby avoiding the problem that the squeezed and dehydrated device for cloth processing causes damage to the cloth due to uneven heating during drying.
[0034] Embodiment 2
[0035] Please refer to Figures 1-7, based on the basis of example 1, the embodiment also includes amplitude device 7 and wastewater treatment device 8, wherein the amplitude device 7 is arranged at the right top of the drying device 6, the amplitude device 7 includes four strip plates 71, four arc-shaped elastic plates 72, four rubber columns 73 and a scraping component 700, the four strip plates 71 are respectively fixed at the right top of the four strip-shaped fan blades of the long shaft fan plate 64, the four arc-shaped elastic plates 72 are respectively fixed at the right side of the four strip plates 71, the four rubber columns 73 are respectively fixed at the end of the four arc-shaped elastic plates 72 away from the four strip plates 71, the strip-shaped fan blades on the long shaft fan plate 64 drive the strip plates 71 to rotate forward, the strip plates 71 drive the arc-shaped elastic plates 72 to rotate forward, the arc-shaped elastic plates 72 drive the rubber columns 73 to rotate forward, the rubber columns 73 on the arc-shaped elastic plates 72 rotate forward to knock the cloth, under the elastic force of the arc-shaped elastic plates 72, the rubber columns 73 on the arc-shaped elastic plates 72 vibrate, the rubber columns 73 vibrate to knock the cloth, so that the moisture on the cloth is discharged faster, and the cloth is accelerated to be dehydrated, the scraping component 700 is arranged at the right side of the arc-shaped elastic plates 72, the scraping component 700 includes four half-arc clamping groove rods 74 and four arc-shaped scraping plates 75, the four half-arc clamping groove rods 74 are respectively fixed at the right side of the four arc-shaped elastic plates 72, the four arc-shaped scraping plates 75 are respectively embedded in the grooves of the four half-arc clamping groove rods 74, the arc-shaped elastic plates 72 drive the half-arc clamping groove rods 74 to rotate forward, the half-arc clamping groove rods 74 drive the arc-shaped scraping plates 75 to rotate forward, under the elastic force of the arc-shaped elastic plates 72, the arc-shaped elastic plates 72 vibrate, the arc-shaped elastic plates 72 transmit the vibration to the half-arc clamping groove rods 74, the half-arc clamping groove rods 74 transmit the vibration to the arc-shaped scraping plates 75, the arc-shaped scraping plates 75 vibrate to remove the fine fluff on the cloth, so that the fine fluff is prevented from adhering to the cloth, thereby avoiding the problem that the fine fluff on the cloth is not easy to remove after the cloth is dehydrated by the extrusion dehydration device for cloth processing.
[0036] The wastewater treatment device 8 is arranged on the left bottom surface of the cloth table 1, and the wastewater treatment device 8 comprises two L-shaped slide rods 81, a wastewater tank 82, an elastic filter plate 83 and a beating net assembly 800. The two L-shaped slide rods 81 are fixed on the left bottom surface of the cloth table 1 respectively. The wastewater tank 82 is provided with clamping strips on the front surface and the back surface top respectively. The clamping strips of the wastewater tank 82 are slidably arranged in the L-shaped slide rods 81. The elastic filter plate 83 is fixed on the inner wall top of the wastewater tank 82. The elastic filter plate 83 in the wastewater tank 82 can filter the impurities in the wastewater. The staff member can conveniently treat the wastewater in the wastewater tank 82 by pulling the wastewater tank 82 to the right. The clamping strips on the wastewater tank 82 slide in the L-shaped slide rods 81. The beating net assembly 800 is arranged at the bottom end in the wastewater tank 82. The beating net assembly 800 comprises an electric telescopic rod 84 and a circular top plate 85. The electric telescopic rod 84 is fixed at the bottom end in the wastewater tank 82. The circular top plate 85 is fixed on the telescopic end top surface of the electric telescopic rod 84. The elastic filter plate 83 is located on the movement track of the circular top plate 85. The telescopic end of the electric telescopic rod 84 reciprocates up and down. The telescopic end of the electric telescopic rod 84 drives the circular top plate 85 to reciprocate up and down. The circular top plate 85 reciprocates up and down to lift the elastic filter plate 83. Under the elastic force of the elastic filter plate 83, the elastic filter plate 83 is partially protruded. The accumulated impurities cannot block the elastic filter plate 83. The elastic filter plate 83 is prevented from being blocked to cause poor filtering effect. Thus, the problem that the wastewater treatment of the extrusion dehydration device for cloth processing is inconvenient to cause environmental pollution is avoided.
[0037] When the long-axis fan plate 64 on the rectangular plate 63 starts to rotate, the strip-shaped fan blades on the long-axis fan plate 64 drive the strip plate 71 to rotate forward. The strip plate 71 drives the arc-shaped elastic plate 72 to rotate forward. The arc-shaped elastic plate 72 drives the rubber column 73 to rotate forward. The rubber column 73 on the arc-shaped elastic plate 72 knocks the cloth. Under the elastic force of the arc-shaped elastic plate 72, the rubber column 73 on the arc-shaped elastic plate 72 vibrates. The rubber column 73 vibrates to knock the cloth. The moisture on the cloth is discharged more quickly. The cloth is accelerated to be dehydrated. When the strip plate 71 drives the arc-shaped elastic plate 72 to rotate forward, the arc-shaped elastic plate 72 drives the semi-arc clamping groove rod 74 to rotate forward. The semi-arc clamping groove rod 74 drives the arc-shaped scraper 75 to rotate forward. Under the elastic force of the arc-shaped elastic plate 72, the arc-shaped elastic plate 72 vibrates. The arc-shaped elastic plate 72 transmits the vibration to the semi-arc clamping groove rod 74. The semi-arc clamping groove rod 74 transmits the vibration to the arc-shaped scraper 75. The arc-shaped scraper 75 vibrates to scrape the fine fluff on the cloth. The fine fluff is prevented from adhering to the cloth. Thus, the problem that the fine fluff on the cloth is not easy to remove after the cloth is dehydrated by the extrusion dehydration device for cloth processing is avoided.
[0038] When the two rolling rollers 3 rotate to extrude the wet cloth, the extruded wet cloth extrudes waste water, the waste water flows into the convex shell 2, the waste water in the convex shell 2 flows into the waste water tank 82, the elastic filter plate 83 in the waste water tank 82 filters impurities in the waste water, when the waste water needs to be treated, the staff pulls the waste water tank 82 to the right, the clamping strip on the waste water tank 82 slides in the L-shaped slide rod 81, the staff can conveniently treat the waste water in the waste water tank 82, when the waste water in the convex shell 2 flows into the waste water tank 82, the staff starts the electric telescopic rod 84 through the wire, the telescopic end of the electric telescopic rod 84 reciprocates up and down, the telescopic end of the electric telescopic rod 84 drives the circular top plate 85 to reciprocate up and down, the circular top plate 85 reciprocates up and down to lift the elastic filter plate 83, under the elastic force of the elastic filter plate 83, the elastic filter plate 83 is locally convex, so that the accumulated impurities cannot block the elastic filter plate 83, preventing the elastic filter plate 83 from being blocked to cause poor filtering effect, thereby avoiding the problem that the waste water treatment of the extrusion dehydration device for cloth processing is inconvenient to cause environmental pollution.
[0039] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0040] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not used to limit the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A fabric processing extrusion and dewatering device, comprising a fabric table (1), a convex shell (2), two pressing rollers (3), and a driving device (4), wherein the convex shell (2) is fixed to the right side of the top surface of the fabric table (1), the two pressing rollers (3) are rotatably mounted through and on the right side of the inner wall of the convex shell (2), the gears of the two pressing rollers (3) are respectively fixed to the front of the rotating shaft of the two pressing rollers (3), the outer walls of the gears of the two pressing rollers (3) mesh with each other, and the driving device (4) is fixed in the middle of the front of the gear of the lower pressing roller (3), characterized in that: It also includes a cloth rolling device (5), a drying device (6), an amplitude device (7), and a wastewater treatment device (8). The cloth rolling device (5) is located on the left side of the top surface of the cloth table (1), the drying device (6) is located in the middle of the top surface of the cloth table (1), the amplitude device (7) is located on the top right side of the drying device (6), and the wastewater treatment device (8) is located on the left side of the bottom surface of the cloth table (1). The fabric rolling device (5) includes an L-shaped frame (51), a rotating rod (52), a fabric rolling roller (53), a belt drive device (54), a vertical plate (55), and a bottom support assembly (500). The L-shaped frame (51) is fixed to the left side of the top surface of the fabric table (1). The rotating rod (52) is installed through and rotatably on the top front of the L-shaped frame (51). The fabric rolling roller (53) is fixed in the middle of the outer wall of the rotating rod (52). The groove of the fabric rolling roller (53) is opened in the middle of the back side of the fabric rolling roller (53). A belt drive device (54) is fixedly installed on the back of the rotating rod (52). The side of the belt drive device (54) away from the rotating rod (52) is fixedly installed on the back of the rotating shaft of the lower roller (3). The vertical plate (55) is rotatably installed on the bottom front of the L-shaped frame (51). The groove of the vertical plate (55) is opened on the top front of the vertical plate (55). The rotating rod (52) is on the movement trajectory of the groove of the vertical plate (55). The bottom support assembly (500) is set at the bottom inside the L-shaped frame (51). The amplitude device (7) includes four strips (71), four arc-shaped spring plates (72), four rubber columns (73), and a scraping assembly (700). The four strips (71) are respectively fixed to the top right side of the four strip-shaped fan blades of the long shaft fan plate (64). The four arc-shaped spring plates (72) are respectively fixed to the middle right side of the four strips (71). The four rubber columns (73) are respectively fixed to the end of the four arc-shaped spring plates (72) away from the four strips (71). The scraping assembly (700) is located in the middle right side of the arc-shaped spring plates (72). The scraping assembly (700) includes four semi-arc slot rods (74) and four arc-shaped scrapers (75). The four semi-arc slot rods (74) are respectively fixed to the middle right side of the four arc-shaped spring plates (72). The four arc-shaped scrapers (75) are respectively embedded in the grooves of the four semi-arc slot rods (74).
2. The extrusion and dewatering device for fabric processing according to claim 1, characterized in that: The bottom-draping assembly (500) includes an arc-shaped spring plate (56) and an arc plate (57). The arc-shaped spring plate (56) is fixed inside the bottom of the L-shaped frame (51), and the arc plate (57) is fixed on the top surface of the arc-shaped spring plate (56). The arc plate (57) is located below the fabric roller (53). The fabric table (1) includes four support columns and four foot pads. The four support columns are fixed at the four corners of the bottom surface of the fabric table (1), and the four foot pads are fixed on the bottom surface of the four support columns. The driving device (4) includes a motor and a protective shell. The motor is fixed in the middle of the front of the gear of the lower rolling roller (3). The protective shell is fixed on the top surface of the fabric table (1). The motor is fixedly installed inside the bottom of the protective shell. The belt drive device (54) includes two grooved rollers and a belt. The belt is rotatably installed on the inner wall of the two grooved rollers. A torsion spring is provided between the vertical plate (55) and the L-shaped frame (51).
3. The extrusion and dewatering device for fabric processing according to claim 1, characterized in that: The drying device (6) includes a box body (61), a plurality of resistance heaters (62) and a uniform heat conduction component (600). The box body (61) is fixedly installed in the middle of the top surface of the table (1). The plurality of resistance heaters (62) are respectively fixed on the inner wall of the box body (61). The uniform heat conduction component (600) is arranged in the middle of the front and back sides of the box body (61).
4. The extrusion and dewatering device for fabric processing according to claim 3, characterized in that: The uniform heat conduction component (600) includes two rectangular plates (63), a long-shaft fan plate (64), and a second belt drive device (65). The two rectangular plates (63) are respectively fixed in the middle of the front and back of the box body (61). The long-shaft fan plate (64) is rotatably mounted on the top of the opposite side of the two rectangular plates (63). Four strip-shaped fan blades are fixed on the outer wall of the long-shaft fan plate (64). The second belt drive device (65) is fixed on the back of the rotating shaft of the long-shaft fan plate (64). The side of the second belt drive device (65) away from the long-shaft fan plate (64) is fixed on the back of the rotating shaft of the rolling roller (3) fixed above. The second belt drive device (65) includes two grooved rollers and a belt. The belt is rotatably mounted on the inner wall of the two grooved rollers.
5. The extrusion and dewatering device for fabric processing according to claim 1, characterized in that: The wastewater treatment device (8) includes two L-shaped slide bars (81), a wastewater tank (82), an elastic filter plate (83), and a tamping net assembly (800). The two L-shaped slide bars (81) are fixed to the left side of the bottom surface of the table (1). The wastewater tank (82) has a locking strip on the top of the front and back sides. The locking strip of the wastewater tank (82) is slidably installed inside the two L-shaped slide bars (81). The elastic filter plate (83) is fixed to the top of the inner wall of the wastewater tank (82). The tamping net assembly (800) is located at the bottom of the inside of the wastewater tank (82).
6. The extrusion and dewatering device for fabric processing according to claim 5, characterized in that: The tamping net assembly (800) includes an electric telescopic rod (84) and a circular top plate (85). The electric telescopic rod (84) is fixed inside the bottom of the wastewater tank (82), and the circular top plate (85) is fixed on the top surface of the telescopic end of the electric telescopic rod (84). The elastic filter plate (83) is located on the movement trajectory of the circular top plate (85).
Citation Information
Patent Citations
Extrusion dehydration device for cloth processing
CN217534802U
Processing equipment and processing method of high-color-fastness textile fabric
CN114214825A
Extrusion dehydration device for textile fabric dyeing and finishing assembly line
CN216409543U