CN218132842U - Water repellent agent spraying device for one-way moisture-conducting fabric - Google Patents

Water repellent agent spraying device for one-way moisture-conducting fabric Download PDF

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Publication number
CN218132842U
CN218132842U CN202222589509.7U CN202222589509U CN218132842U CN 218132842 U CN218132842 U CN 218132842U CN 202222589509 U CN202222589509 U CN 202222589509U CN 218132842 U CN218132842 U CN 218132842U
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receiving
feeding
receive
slide bar
frame
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CN202222589509.7U
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Chinese (zh)
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顾亮
李俐
邱卫国
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Nantong Weihe Textile Technology Co ltd
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Nantong Weihe Textile Technology Co ltd
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Abstract

The utility model discloses a water repellent agent sprinkler for one-way wet fabric that leads, including the frame and along the spraying mechanism, drying mechanism and the receiving agencies of first horizontal direction setting in proper order in the frame, the receiving agencies includes the receipt locating lever, receives the material slide bar, receive the material location pivot, receive the material slip pivot, receive the material roller, receive material slide bar fixed part and receive the material drive division, receive the material locating lever to fix in the frame, receive the material slide bar and receive the material locating lever along second horizontal direction relative setting and receive the material slide bar slidable mounting in the frame and receive the material location pivot rotationally install on receiving the material slide bar, receive the rotatable installation of material slide pivot on receiving the material slide bar, receive the both ends of material roller respectively with location pivot and slip pivot joint, receive the output shaft and the material location pivot fixed connection of material drive division; the utility model discloses a water repellent agent sprinkler for one-way wet surface fabric that leads has realized the one-way automatic spraying and the stoving of leading the water repellent finish of wet surface fabric.

Description

Water repellent agent spraying device for one-way moisture-conducting fabric
Technical Field
The utility model relates to a lead wet surface fabric technical field, in particular to water repellent agent sprinkler for one-way moisture guide surface fabric.
Background
The unidirectional moisture-conducting fabric has the following characteristics: after the human body sweats, the sweat is not spread on the inner surface of the fabric (close to the skin side), but is directly absorbed and spread and evaporated to the outer layer of the fabric, so that the dry and comfortable skin is kept. In order to enable the fabric to have a one-way moisture-conducting function, one side of the fabric is kept hydrophilic, and the other side of the fabric is kept hydrophobic, so that the fabric has the directional moisture-conducting capability. The processing of the unidirectional moisture-conducting fabric is generally to dip the basic fabric into the hydrophilic auxiliary agent, fishing and drying the basic fabric, and then spray-coating the water-repellent finishing agent on the surface of the fabric dipped with the hydrophilic auxiliary agent, so that the fabric has the unidirectional moisture-conducting effect.
Most of the conventional devices for the unidirectional moisture-conducting fabric manually brush the water-repellent finishing agent, so that the time and labor are wasted, and the efficiency is low; meanwhile, the processed fabrics are subjected to material receiving and finishing by the material receiving rollers which lack adaptation to the fabrics of different specifications.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome foretell not enough, the utility model provides a water repellent agent sprinkler for one-way wet surface fabric that leads has realized the automatic spraying and the stoving of water repellent finishing agent of one-way wet surface fabric that leads.
The utility model provides a pair of water repellent agent sprinkler for one-way wet surface fabric that leads, including the frame and set gradually the spraying mechanism in the frame along first horizontal direction, drying mechanism and receiving agencies, receiving agencies is including receiving the material locating lever, receive the material slide bar, receive material location pivot, receive material slip pivot, receive the material roller, receive material slide bar fixed part and receive the material drive division, receive the material locating lever to fix in the frame, receive the material slide bar and receive the material locating lever and set up relatively along the second horizontal direction and receive the material slide bar and follow second horizontal direction slidable mounting in the frame, the first horizontal direction of second horizontal direction perpendicular to, receive the material location pivot and rotationally install on receiving the material slide bar, receive rotatable the installing on receiving the material slide bar of material slide bar pivot, the both ends of receiving the material roller respectively with receive material location pivot and slip pivot joint, the slide bar fixed part is used for fixing in the frame with receiving the material slide bar, drive division fixed mounting is on receiving the material locating lever and its output shaft and receive the coaxial fixed connection of material location pivot.
Furthermore, the receiving slide bar fixing part comprises a receiving slide rail formed on the rack, a receiving nut seat slidably mounted on the receiving slide rail, a receiving screw rod rotatably mounted in the receiving slide rail and in threaded connection with the receiving nut seat, and a first motor fixedly connected with one end of the output end of the receiving screw rod extending out of the receiving slide rail, and the lower end of the receiving slide bar is fixedly mounted on the receiving nut seat.
Further, still include feed mechanism, spraying mechanism, stoving mechanism and receiving agencies set gradually along first horizontal direction, feed mechanism includes the feeding locating lever, the feeding slide bar, feeding location pivot, feeding slip pivot, feeding roller and feeding slide bar fixed part, the feeding locating lever is fixed in the frame, the feeding slide bar sets up and the feeding slide bar along second horizontal direction slidable mounting in the frame along the second horizontal direction with the feeding locating lever relatively, feeding location pivot is rotationally installed on the feeding slide bar, rotatable the installing on the feeding slide bar of feeding slip pivot, the both ends of feeding roller respectively with location pivot and slip pivot joint, feeding slide bar fixed part is used for fixing the feeding slide bar in the frame.
Furthermore, the feeding slide bar fixing part comprises a feeding slide rail formed on the rack, a feeding nut seat slidably mounted on the feeding slide rail, a feeding screw rod rotatably mounted in the feeding slide rail and in threaded connection with the feeding nut seat, and a feeding slide bar fixing unit fixedly connected with one end of the output end of the feeding screw rod extending out of the feeding slide rail, and the lower end of the feeding slide bar is fixedly mounted on the feeding nut seat.
Further, receive material slide bar fixed part including forming the receipts material slide rail in the frame, slidable mounting is receiving on receiving the material slide rail and expects the nut seat, rotationally install in receiving the material slide rail and receive the material lead screw and the output with receive material lead screw threaded connection and receive the first gear motor that the one end fixed connection who receives the material slide rail stretches out, receive the lower extreme fixed mounting of material slide bar and receive the material nut seat on, feeding slide bar fixed unit is including coaxial fixation at the driving pulley who receives on the material lead screw, coaxial fixed mounting is at the driven pulleys on the feeding lead screw and the hold-in range of synchronous connection driving pulley and driven pulleys.
Furthermore, the spraying mechanism comprises a spraying box, a spraying support and a water repellent agent spray head, the spraying support is fixedly installed on the rack, and the water repellent agent spray head is fixed at the lower end of the spraying support and is connected and communicated with the spraying box through a liquid driving source.
Further, stoving mechanism includes stoving casing, hot air interface, hot air duct, nozzle portion, and the stoving casing is fixed to be set up in the frame, and its both sides have the opening respectively around along first horizontal direction, and the hot air interface is installed at the outer wall of stoving casing, and hot air duct forms in the stoving casing and communicates with hot air interface, and nozzle portion installs on the interior roof of stoving casing and communicates with hot air duct.
Further, the nozzle part comprises a plurality of drying nozzles distributed in a rectangular array.
Furthermore, a material receiving clamping groove is formed at each of two ends of the material receiving roller, and a material receiving clamping block clamped with the material receiving clamping groove is formed at each of one end, facing the material receiving roller, of the material receiving positioning rod and one end, facing the material receiving sliding rod.
The beneficial effects of the utility model are that: the utility model discloses a water repellent agent sprinkler for one-way moisture-conducting fabric, which realizes the automatic spraying and drying of the water repellent finishing agent of the one-way moisture-conducting fabric, and has high efficiency; simultaneously, through receiving the setting of material locating lever and feeding locating lever, can be applicable to the spraying of multiple specification surface fabric, and receive material roller, feed roller loading and unloading convenience.
Drawings
Fig. 1 is a schematic structural view of a water repellent agent spraying device for a one-way moisture-guiding fabric according to an embodiment of the present invention;
fig. 2 is a front view of a water repellent spraying device for a one-way moisture-conducting fabric according to an embodiment of the present invention;
fig. 3 isbase:Sub>A cross-sectional view ofbase:Sub>A water repellent spraying device forbase:Sub>A one-way moisture-conductive fabric along the linebase:Sub>A-base:Sub>A in fig. 2 according to an embodiment of the present invention;
fig. 4 is a cross-sectional view of a water repellent agent spraying device for a one-way moisture-conducting fabric along the line B-B in fig. 2 according to an embodiment of the present invention.
In the figure, 1 is a frame, 2 is a feeding positioning rod, 3 is a feeding sliding rod, 4 is a feeding positioning rotating shaft, 5 is a feeding sliding rotating shaft, 6 is a feeding roller, 7 is a feeding limiting ring, 8 is a feeding clamping block, 9 is a feeding sliding rail, 10 is a feeding nut seat, 11 is a feeding screw rod, 12 is a driving belt wheel, 13 is a driven belt wheel, 14 is a synchronous belt, 15 is a spraying bracket, 16 is a water repellent sprayer, 17 is a drying shell, 18 is a hot air interface, 19 is a hot air channel, 20 is a drying nozzle, 21 is a material receiving sliding rod, 22 is a material receiving sliding rotating shaft, 23 is a material receiving driving part, 24 is a first speed reducing motor, 25 is a fabric, 26 is a material receiving clamping block, 27 is a material receiving limiting ring, and 28 is a material receiving sliding rail.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Fig. 1 is a schematic structural view of a water repellent spraying device for a unidirectional moisture-guiding fabric in an embodiment of the present invention. Fig. 2 is a front view of a water repellent spraying device for a one-way moisture-conducting fabric according to an embodiment of the present invention.
As shown in fig. 1 and fig. 2, the water repellent spraying device for the unidirectional moisture-guiding fabric in the embodiment includes a frame 1, and a feeding mechanism, a spraying mechanism, a drying mechanism, and a material receiving mechanism, which are sequentially arranged on the frame 1 along a first horizontal direction.
Fig. 3 isbase:Sub>A cross-sectional view ofbase:Sub>A water repellent spraying device forbase:Sub>A one-way moisture-conducting fabric along the linebase:Sub>A-base:Sub>A in fig. 2 according to an embodiment of the present invention.
As shown in fig. 1 to 3, the feeding mechanism includes a feeding positioning rod 2, a feeding sliding rod 3, a feeding positioning rotating shaft 4, a feeding sliding rotating shaft 5, a feeding roller 6, and a feeding sliding rod fixing portion.
The feeding positioning rod 2 is fixed on the frame 1.
Feeding slide bar 3 sets up along the second horizontal direction with feeding locating lever 2 relatively, and feeding slide bar 3 along second horizontal direction slidable mounting on frame 1. The second horizontal direction is parallel to the first horizontal direction.
The feeding positioning rotating shaft 4 is rotatably installed on the feeding sliding rod 3.
The feeding sliding rotating shaft 5 is rotatably arranged on the feeding sliding rod 3.
Two ends of the feed roller 6 are respectively fixed with a feed limit ring 7. The distance between the two feeding limiting rings 7 is matched with the width specification of the fabric 25. Two ends of the feeding roller 6 are respectively clamped with the positioning rotating shaft and the sliding rotating shaft. Specifically, feeding clamping grooves are formed at two ends of the feeding roller 6 respectively, and feeding clamping blocks 8 clamped with the feeding clamping grooves are formed at one ends, facing the feeding roller 6, of the feeding positioning rod 2 and the feeding sliding rod 3 respectively.
The feeding slide bar fixing part is used for fixing the feeding slide bar 3 on the rack 1, and comprises a feeding slide rail 9 formed on the rack 1, a feeding nut seat 10 slidably mounted on the feeding slide rail 9, a feeding screw rod 11 rotatably mounted in the feeding slide rail 9 and in threaded connection with the feeding nut seat 10, and a feeding slide bar fixing unit with an output end fixedly connected with one end of the feeding screw rod 11 extending out of the feeding slide rail 9, wherein the lower end of the feeding slide bar 3 is fixedly mounted on the feeding nut seat 10.
The feeding slide bar fixing unit comprises a driving belt wheel 12 coaxially fixed on a material receiving screw rod, a driven belt wheel 13 coaxially and fixedly installed on the feeding screw rod 11 and a synchronous belt 14 synchronously connecting the driving belt wheel 12 and the driven belt wheel 13.
As shown in fig. 1 and 2, the spray mechanism includes a spray tank (not shown), a spray holder 15, and a plurality of water repellent nozzles 16.
The spraying support 15 is in an inverted U shape, and the lower end of the spraying support is fixedly arranged on the frame 1. The painting bracket 15 is composed of a horizontal plate and two vertical plates fixed to the lower end of the horizontal plate. The transverse plate is internally provided with a water repellent agent channel. The water repellent agent channel is connected and communicated with the spraying box through a pipeline. The piping is provided with a hydraulic pump (not shown in the figure).
The plurality of water repellent nozzles 16 are distributed in a linear array along the horizontal second direction and are respectively fixed at the lower end of the spraying bracket 15. The plurality of water repellent nozzles 16 are connected and communicated with the water repellent passage, respectively. The water repellent sprayer 16 is an electrostatic sprayer for spraying the upper surface of the fabric 25.
Fig. 4 is a cross-sectional view of a water repellent agent spraying device for a one-way moisture-guiding fabric along the line B-B in fig. 2 according to an embodiment of the present invention.
As shown in fig. 1, 2 and 4, the drying mechanism includes a drying casing 17, a hot air interface 18, a hot air passage 19, and a nozzle portion.
The drying casing 17 is fixedly arranged on the frame 1, a drying cavity is formed in the drying casing, and openings are respectively arranged on the front side and the rear side of the drying casing along the first horizontal direction.
The hot air interface 18 is installed on the outer top wall of the drying shell 17 and used for introducing heat source air.
A hot air path 19 is formed in the top wall of the drying casing 17 and communicates with the hot air interface 18.
The nozzle portion is installed on the inner ceiling of the drying casing 17 and communicates with the hot air path 19, and includes a plurality of drying nozzles 20 arranged in a rectangular array.
The material receiving mechanism comprises a material receiving positioning rod, a material receiving sliding rod 21, a material receiving positioning rotating shaft, a material receiving sliding rotating shaft 22, a material receiving roller, a material receiving sliding rod fixing part and a material receiving driving part 23.
The material receiving positioning rod is fixed on the frame 1.
The material receiving sliding rod 21 and the material receiving positioning rod are arranged oppositely along the second horizontal direction, and the material receiving sliding rod 21 is installed on the rack 1 in a sliding mode along the second horizontal direction.
The material receiving positioning rotating shaft is rotatably arranged on the material receiving sliding rod 21.
The material receiving sliding rotating shaft 22 is rotatably installed on the material receiving sliding rod 21.
The two end parts of the material receiving roller are respectively fixed with a material receiving limit ring 27. The distance between the two material receiving limiting rings 27 is matched with the width specification of the fabric 25. The two ends of the material receiving roller are respectively clamped with the positioning rotating shaft and the sliding rotating shaft. Specifically, a material receiving engaging groove is formed at each of both ends of the material receiving roller, and a material receiving engaging block 26 engaged with the material receiving engaging groove is formed at each of the material receiving positioning rod and the material receiving sliding rod 21 toward one end of the material receiving roller.
The material receiving slide bar fixing part is used for fixing the material receiving slide bar 21 on the rack 1 and comprises a material receiving slide rail 28 formed on the rack 1, a material receiving nut seat slidably mounted on the material receiving slide rail 28, a material receiving screw rod rotatably mounted in the material receiving slide rail 28 and in threaded connection with the material receiving nut seat, and a first speed reducing motor 24 with an output end fixedly connected with one end of the material receiving screw rod extending out of the material receiving slide rail 28. The lower end of the material receiving sliding rod 21 is fixedly arranged on the material receiving nut seat.
The material receiving driving part 23 is fixedly arranged on the material receiving positioning rod, and an output shaft of the material receiving driving part is coaxially and fixedly connected with the material receiving positioning rotating shaft. The material receiving driving portion 23 includes a second reduction motor.
The water repellent finish sprinkler of this embodiment's theory of use does:
one end of a receiving roller is clamped into a receiving clamping block 26 on a receiving positioning rod, one end of a feeding roller 6 coiled with the fabric 25 to be sprayed is clamped into a feeding clamping block 8 on a feeding positioning rod 2, a receiving clamping groove on the other end of the receiving roller is aligned with the receiving clamping block 26 on a receiving sliding rod 21, a feeding clamping groove on the other end of the feeding roller 6 is aligned with the feeding clamping block 8 on a feeding sliding rod 3, a first speed reducing motor 24 is driven to drive a feeding screw rod 11 and the receiving screw rod to rotate, a receiving nut seat drives the receiving sliding rod 21 to move towards the receiving positioning rod, the other end of the receiving roller is clamped with the receiving sliding rod 21, the feeding nut seat 10 drives the feeding sliding rod 3 to move towards the feeding positioning rod 2, and the other end of the feeding roller 6 is clamped with the feeding sliding rod 3; the first reduction motor 24 is stopped. In the same way, the first speed reducing motor 24 is driven to rotate reversely, and the material receiving roller and the material feeding roller 6 can be taken out.
The other end of the fabric 25 to be sprayed sequentially penetrates through the spraying mechanism and the drying mechanism and then is connected with the material receiving roller, the second speed reducing motor is started, the feeding mechanism unreels, the material receiving mechanism rolls the fabric 25, and the fabric 25 sequentially passes through the spraying mechanism and the drying mechanism. The fabric 25 firstly passes through the spraying mechanism, the electrostatic nozzle sprays the water-repellent finishing agent on the upper surface of the fabric 25, so that the sprayed water-repellent finishing agent is uniformly attached to the upper surface of the fabric 25, and then the fabric 25 passes through the drying mechanism and is dried by the drying nozzle. And the dried fabric 25 is rolled by the material receiving roller.
To sum up, it is the utility model discloses a concrete application example, right the utility model discloses the protection scope does not constitute the restriction, adopts the technical scheme of equivalent replacement all to fall within the utility model discloses within the protection scope.

Claims (9)

1. The utility model provides a water repellent agent sprinkler for one-way wet surface fabric that leads, its characterized in that, include the frame and set gradually along first horizontal direction spraying mechanism, drying mechanism and receiving agencies in the frame, receiving agencies is including receiving the material locating lever, receiving the material slide bar, receiving the material location pivot, receiving the material slip pivot, receiving the material roller, receiving material slide bar fixed part and receiving the material drive division, it fixes to receive the material locating lever in the frame, receive the material slide bar with receive the material locating lever along second horizontal direction relative setting just receive the material slide bar along second horizontal direction slidable mounting in the frame, the second horizontal direction perpendicular to first horizontal direction, it rotationally installs to receive the material location pivot on receiving the material slide bar, receive the rotatable installation of material slip pivot on receiving the material slide bar, receive the material roller both ends respectively with location pivot with slip pivot joint, receive the material slide bar fixed part be used for with receive the material slide bar fix in the frame, receive the material drive division fixed mounting receive on the material locating lever and its output shaft with receive material location pivot coaxial fixed connection.
2. The device as claimed in claim 1, wherein the receiving slide bar fixing portion comprises a receiving slide rail formed on the frame, a receiving nut seat slidably mounted on the receiving slide rail, a receiving screw rotatably mounted in the receiving slide rail and threadedly connected to the receiving nut seat, and a first motor having an output end fixedly connected to an end of the receiving screw extending out of the receiving slide rail, and a lower end of the receiving slide bar is fixedly mounted on the receiving nut seat.
3. The device of claim 1, further comprising a feeding mechanism, wherein the feeding mechanism, the spraying mechanism, the drying mechanism and the receiving mechanism are sequentially arranged along a first horizontal direction, the feeding mechanism comprises a feeding positioning rod, a feeding sliding rod, a feeding positioning rotating shaft, a feeding sliding rotating shaft, a feeding roller and a feeding sliding rod fixing portion, the feeding positioning rod is fixed on the frame, the feeding sliding rod and the feeding positioning rod are oppositely arranged along a second horizontal direction, the feeding sliding rod is slidably mounted on the frame along the second horizontal direction, the feeding positioning rotating shaft is rotatably mounted on the feeding sliding rod, the feeding sliding rotating shaft is rotatably mounted on the feeding sliding rod, two ends of the feeding roller are respectively connected with the positioning rotating shaft and the sliding rotating shaft in a clamping manner, and the feeding sliding rod fixing portion is used for fixing the feeding sliding rod on the frame.
4. The device as claimed in claim 3, wherein the feeding slide bar fixing portion comprises a feeding slide rail formed on the frame, a feeding nut seat slidably mounted on the feeding slide rail, a feeding screw rotatably mounted in the feeding slide rail and in threaded connection with the feeding nut seat, and a feeding slide bar fixing unit having an output end fixedly connected with an end of the feeding screw extending out of the feeding slide rail, and a lower end of the feeding slide bar is fixedly mounted on the feeding nut seat.
5. The apparatus as claimed in claim 4, wherein the receiving slide rod fixing portion comprises a receiving slide rail formed on the frame, a receiving nut seat slidably mounted on the receiving slide rail, a receiving screw rod rotatably mounted in the receiving slide rail and threadedly connected to the receiving nut seat, and a first speed reduction motor having an output end fixedly connected to an end of the receiving screw rod extending out of the receiving slide rail, the receiving slide rod having a lower end fixedly mounted on the receiving nut seat, the feeding slide rod fixing unit comprising a driving pulley coaxially fixed on the receiving screw rod, a driven pulley coaxially fixedly mounted on the feeding screw rod, and a synchronous belt synchronously connecting the driving pulley and the driven pulley.
6. The water repellent spraying device for the unidirectional moisture-guiding fabric as claimed in claim 1, wherein the spraying mechanism comprises a spraying box, a spraying bracket and a water repellent sprayer, the spraying bracket is fixedly mounted on the frame, and the water repellent sprayer is fixed at the lower end of the spraying bracket and is connected and communicated with the spraying box through a liquid driving source.
7. The device of claim 1, wherein the drying mechanism comprises a drying shell, a hot air port, a hot air passage, and a nozzle portion, the drying shell is fixedly disposed on the frame, the drying shell has openings at front and rear sides along a first horizontal direction, the hot air port is mounted on an outer wall of the drying shell, the hot air passage is formed in the drying shell and is communicated with the hot air port, and the nozzle portion is mounted on an inner top wall of the drying shell and is communicated with the hot air passage.
8. The device of claim 7, wherein the nozzle portion comprises a plurality of drying nozzles arranged in a rectangular array.
9. The device as claimed in claim 1, wherein a material receiving engaging groove is formed at each end of the material receiving roller, and a material receiving engaging block is formed at each end of the material receiving positioning rod and the material receiving sliding rod facing the material receiving roller.
CN202222589509.7U 2022-09-29 2022-09-29 Water repellent agent spraying device for one-way moisture-conducting fabric Active CN218132842U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222589509.7U CN218132842U (en) 2022-09-29 2022-09-29 Water repellent agent spraying device for one-way moisture-conducting fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222589509.7U CN218132842U (en) 2022-09-29 2022-09-29 Water repellent agent spraying device for one-way moisture-conducting fabric

Publications (1)

Publication Number Publication Date
CN218132842U true CN218132842U (en) 2022-12-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222589509.7U Active CN218132842U (en) 2022-09-29 2022-09-29 Water repellent agent spraying device for one-way moisture-conducting fabric

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