WO2020164311A1 - 一种电子储纬单喷超宽幅重磅喷水织机技术领域 - Google Patents

一种电子储纬单喷超宽幅重磅喷水织机技术领域 Download PDF

Info

Publication number
WO2020164311A1
WO2020164311A1 PCT/CN2019/127092 CN2019127092W WO2020164311A1 WO 2020164311 A1 WO2020164311 A1 WO 2020164311A1 CN 2019127092 W CN2019127092 W CN 2019127092W WO 2020164311 A1 WO2020164311 A1 WO 2020164311A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
box
fixed
water pump
filter cartridge
Prior art date
Application number
PCT/CN2019/127092
Other languages
English (en)
French (fr)
Inventor
李勇
王安俭
刘井然
邢相虎
Original Assignee
王安俭
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 王安俭 filed Critical 王安俭
Publication of WO2020164311A1 publication Critical patent/WO2020164311A1/zh

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/02Combinations of filters of different kinds
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D47/00Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms
    • D03D47/28Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms wherein the weft itself is projected into the shed
    • D03D47/32Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms wherein the weft itself is projected into the shed by liquid jet

Definitions

  • the invention relates to the field of spraying loom devices, in particular to an electronic weft storage single-jet super-wide heavy-weight water-jet loom.
  • the water jet loom is a shuttleless loom that uses water jets to draw the weft through the shed.
  • the friction traction of the water jet weft insertion on the weft is greater than that of the air jet weft insertion, with less diffusion, suitable for smooth surface synthetic fiber, glass fiber and other filaments.
  • the need for weft insertion can also increase the electrical conductivity of the synthetic fiber and effectively overcome the static electricity in weaving.
  • jetting the weft yarn consumes less energy and has the lowest noise; in the process of water jet loom fabric, the waste edge is located in the fabric reed On the outside, a certain amount of waste edges are interlaced with the weft yarn to hold the head end of the weft yarn, so as to achieve the purpose of tensioning the weft yarn to prevent weft shrinkage and ensure the neat and clean edge of the cloth.
  • Water spray The creel of the loom must not only carry the waste-edge bobbins, but also ensure the orderly conveying of multiple waste-edge yarns.
  • the structure design of high-speed operation and high productivity, high-strength box-shaped car wall will improve
  • the main transmission part is incorporated into the oil sump to ensure high-speed mechanical rotation, and all shafts are equipped with high-load bearings suitable for high-speed rotation and achieve unparalleled high productivity.
  • water jet looms have a series of advantages compared to traditional looms
  • water jet looms also have some major shortcomings. The most serious of these shortcomings is that water jet looms consume a lot of water resources. Moreover, the water resources will be polluted after being used by the water jet loom, and the existing water jet loom does not have the function of collecting and treating waste water. Therefore, the existing water jet loom needs to be improved to make it have The function of wastewater collection and wastewater treatment.
  • the purpose of the present invention is to provide an electronic weft storage single jet ultra-wide heavyweight water jet loom to solve the problems mentioned in the background art.
  • An electronic weft storage single-jet super-wide heavyweight water-jet loom comprising a water-jet loom body, a waste water collection box is fixed at the bottom of the water-jet loom body, and the exterior of the waste water collection box passes through a first
  • a first treatment tank and a second treatment tank are fixed on the connecting plate and the second connecting part
  • a first water pump is fixed on the first connecting plate
  • a first pipe is connected to the water inlet of the first water pump.
  • the pipe is in communication with the waste water collection box at the end far away from the first water pump, and the outlet end of the first water pump is also connected with a second pipe.
  • the second pipe is at the end far away from the first water pump.
  • the first processing tank is connected, a second water pump is fixed on the second connecting plate, and the water inlet end of the second water pump is connected with a third pipe.
  • the third pipe is connected to the second water pump at the end far away from the second water pump.
  • the inside of the first treatment tank is communicated, and the outlet end of the second water pump is also connected to a fourth pipe.
  • the fourth pipe is in communication with the inside of the second treatment tank at an end away from the second water pump.
  • a processing box is provided with a first processing section, and the second processing box is provided with a second processing section.
  • the waste water generated by the water jet loom body is collected by the waste water collection box and then by the first
  • the first processing part in the processing box is processed and the second processing part in the second processing box is processed.
  • the waste water generated during the spinning process of the water jet loom body will be collected by the waste water collection box at the bottom of the water jet loom body, avoiding the waste water generated by the water jet loom from directly falling on the ground On; the waste water flowing into the waste water collection box under the water jet loom body can be pumped by the first water pump through the first pipe and the second pipe into the first treatment tank, and the waste water is pumped into the first treatment tank by the first treatment part in the first treatment tank After pre-treatment, start the second water pump fixed on the second connecting plate.
  • the second water pump pumps the wastewater processed by the first treatment part in the first treatment tank into the second treatment tank through the third and fourth pipes.
  • the waste water pumped into the second treatment tank can be processed by the second treatment part inside the second treatment tank; therefore, the device collects the waste water in the waste water collection box and then passes through the first treatment part and the second treatment part. After that, the pollutants in the wastewater can be treated, avoiding the pollution caused by the original device directly discharging the wastewater, and it is more environmentally friendly.
  • the first treatment part includes a first filter cartridge, a second filter cartridge, a first through hole, a second through hole, sand and a sponge
  • the first filter cartridge and the second filter cartridge are respectively hung Connected to the inside of the first processing box
  • the first filter cartridge is provided with densely distributed first through holes
  • the second filter cartridge is provided with densely distributed second through holes
  • the sand is placed on the In the first filter cartridge
  • the sand and gravel have a mesh number of 40-60 mesh
  • the sponge is placed in the second filter cartridge
  • the sewage in the first treatment tank passes through the first filter cartridge and
  • the second filter cartridge is adsorbed and purified.
  • the sewage after the sewage is pumped into the first treatment part, it will pass through the first filter cartridge and then into the second filter cartridge. After passing through the first filter cartridge, the sewage will be filtered by the sand in the first filter cartridge. The stone filter adsorbs impurities, and then the sewage enters the second filter cartridge and is filtered and adsorbed by the sponge in the second filter cartridge. Therefore, the sewage can absorb most of the impurities in the sewage after being processed by the first treatment unit.
  • the second processing part includes a filter box, a third through hole, a V-shaped opening, activated carbon, a first servo motor, a first fixing rod and a plurality of arc-shaped fan blades, and the filter box is fixed on the Inside the second processing box, the filter box is provided with densely distributed third through holes, the filter box has the V-shaped opening, and the filter box is rotatably connected at the V-shaped opening.
  • the first fixed rod, a plurality of fan blades are also fixed outside the first fixed rod, the first servo motor is fixed outside the second processing box and drives the first fixed rod to rotate, the activated carbon is placed Inside the filter box.
  • the operator can start the first servo motor, and the first servo motor will drive the first fixed rod to rotate, and drive the fan blades outside the first fixed rod to rotate.
  • the water flow will enter the filter box from the V-shaped opening on the filter box, and then the sewage can be adsorbed and filtered by the activated carbon in the filter box.
  • both the first filter cartridge and the second filter cartridge have an L-shaped part, and four hanging plates are fixed inside the first processing box.
  • the first filter cartridge and the second filter cartridge The L-shaped parts on the filter cylinder are all hung above the hanging plate.
  • the first filter cartridge and the second filter cartridge can be hung inside the first processing box by using the cooperation between the L-shaped part and the hanging plate.
  • a second servo motor is fixed outside the first processing box, a second fixed rod is fixed on the motor shaft of the second servo motor, and a plurality of stirring blades are fixed outside the second fixed rod .
  • the second servo motor when the operator starts the second servo motor, the second servo motor will drive the second fixed rod to rotate and drive the stirring blade to rotate, thereby promoting the flow of wastewater in the first treatment tank and facilitating its treatment .
  • a first reducer is arranged between the first servo motor and the first fixed rod, and the input end of the first reducer is connected to the motor shaft of the first servo motor, and the first The output end of a speed reducer is connected with the first fixed rod.
  • the first reducer between the first servo motor and the first fixed rod can reduce the output speed of the first servo motor, so that the first fixed rod rotates more smoothly.
  • a second reducer is provided between the second servo motor and the second fixed rod, and the input end of the second reducer is connected to the motor shaft of the second servo motor, and the first The output end of the second speed reducer is connected with the second fixed rod.
  • the second speed reducer between the second servo motor and the second fixed rod can reduce the output speed of the second servo motor, so that the second fixed rod rotates more smoothly.
  • the second treatment tank is also connected with a drain pipe, and the drain pipe is threadedly connected with a plugging cap at an end away from the second treatment tank.
  • the sewage treated in the second treatment tank can be conveniently discharged by using the drain pipe on the second treatment tank, and the plug at the end of the drain pipe can be used to block the drain pipe to prevent water flow from flowing out of the drain pipe. .
  • the present invention mainly has the following beneficial effects:
  • the waste water generated during the spinning process of the water jet loom body will be collected by the waste water collection box at the bottom of the water jet loom body, avoiding the waste water generated by the water jet loom from directly falling on the ground; flowing into the water jet loom
  • the waste water in the waste water collection box under the loom body can be pumped into the first treatment tank by the first water pump through the first pipe and the second pipe.
  • the waste water is pre-treated by the first treatment part in the first treatment tank before starting A second water pump fixed on the second connecting plate.
  • the second water pump pumps the wastewater processed by the first treatment part in the first treatment tank into the second treatment tank through the third and fourth pipes, and then pumps it into the second treatment tank.
  • the wastewater inside the second treatment tank can be treated by the second treatment part inside the second treatment tank; therefore, after the device collects the wastewater in the waste water collection box, it can be treated by the first treatment part and the second treatment part.
  • the pollutants are treated, avoiding the pollution caused by the direct discharge of wastewater from the original device, and it is more environmentally friendly.
  • Figure 1 is one of the schematic diagrams of the electronic weft storage single-jet ultra-wide heavy water jet loom
  • Figure 2 is an enlarged view of A in Figure 1;
  • Figure 3 is an enlarged view of B in Figure 1;
  • Figure 4 is the second structural diagram of the electronic weft storage single-jet ultra-wide heavy water jet loom
  • Figure 5 is an enlarged view of C in Figure 4.
  • Figure 6 is a structural cross-sectional view of the electronic weft storage single jet ultra-wide heavyweight water jet loom
  • Figure 7 is an enlarged view of D in Figure 6;
  • Figure 8 is an enlarged view of E in Figure 6;
  • Figure 9 is an enlarged view of F in Figure 6;
  • Fig. 10 is an enlarged view of G in Fig. 6.
  • an electronic weft storage single-jet ultra-wide heavyweight water jet loom includes a water jet loom body 1.
  • a waste water collection box 2 is fixed at the bottom of the water jet loom body 1
  • a first treatment box 5 and a second treatment box 6 are fixed on the outside of the waste water collection box 2 through a first connecting plate 3 and a second connecting part, respectively.
  • a first water pump 7 is fixed on the first connecting plate 3, and a first pipe 8 is connected to the water inlet end of the first water pump 7, and the first pipe 8 is connected to the waste water collection box 2 at the end far away from the first water pump 7, while The outlet end of the first water pump 7 is also connected with a second pipe 9, which connects the second pipe 9 at the end far away from the first water pump 7 with the first processing tank 5, and at the same time, a second water pump 10 is fixed on the second connecting plate 4 , The water inlet end of the second water pump 10 is connected with a third pipe 11, and the third pipe 11 is connected to the inside of the first treatment tank 5 at the end far away from the second water pump 10, and the water outlet end of the second water pump 10 is also connected There is a fourth pipe 12, and the fourth pipe 12 communicates with the inside of the second processing tank 6 at the end far away from the second water pump 10, wherein a first processing part 13 is provided inside the first processing tank 5, and the second processing tank 6 is provided with a second treatment unit 14 inside, and the waste water
  • the waste water generated during the spinning process of the water jet loom body 1 will be collected by the waste water collection box 2 at the bottom of the water jet loom body 1, avoiding the waste water generated by the water jet loom body 1 from directly falling on the ground
  • the waste water flowing into the waste water collection box 2 under the water jet loom body 1 can be pumped into the first treatment tank 5 by the first water pump 7 through the first pipe 8 and the second pipe 9, and the waste water is pumped into the first treatment tank 5
  • the second water pump 10 fixed on the second connecting plate 4 is started, and the second water pump 10 passes the wastewater treated by the first treatment unit 13 in the first treatment tank 5 through the third
  • the pipe 11 and the fourth pipe 12 are drawn into the second treatment tank 6, and the waste water drawn into the second treatment tank 6 can be processed by the second treatment part 14 inside the second treatment tank 6; therefore, the device collects the waste water in the After the waste water collection box 2 is processed by the first processing part 13 and the second processing part 14, the pollutants
  • the first processing part 13 includes a first filter cartridge 15, a second filter cartridge 16, a first through hole 18, a second through hole 19, sand 20 and a sponge 24, wherein the first filter cartridge 15 and the second filter cartridge 16 Hung respectively inside the first processing box 5, the first filter cylinder 15 is provided with densely distributed first through holes 18, and the second filter cylinder 16 is provided with densely distributed second through holes 19, in which sand 20 is placed
  • the sand and gravel 20 has a mesh number of 50 meshes
  • the sponge 24 is placed in the second filter cartridge 16, wherein the sewage in the first treatment tank 5 passes through the first filter cartridge 15 and the second filter successively Adsorption purification in the cylinder 16; after the sewage is pumped into the first treatment part 13, it will first pass through the first filter cylinder 15, and then enter the second filter cylinder 16.
  • the sewage is first filtered after passing through the first filter cylinder 15
  • the gravel 20 in the cylinder 15 filters and adsorbs impurities, and then the sewage enters the second filter cylinder 16 and is filtered and adsorbed by the sponge 24 in the second filter cylinder 16 so that the sewage can be adsorbed after being processed by the first treatment unit 13 Most of the impurities inside.
  • the second processing part 14 includes a filter box 25, a third through hole 26, a V-shaped opening 28, an activated carbon 29, a first servo motor 30, a first fixing rod 31 and four arc-shaped fan blades 32, and the filter box 25 is fixed Inside the second processing box 6, a densely distributed third through hole 26 is opened on the filter box 25, wherein the filter box 25 has a V-shaped opening 28, and the filter box 25 is rotatably connected to the first V-shaped opening 28.
  • the fixed rod 31 is also fixed with four fan blades 32 outside the first fixed rod 31.
  • the first servo motor 30 is fixed outside the second processing box 6 and drives the first fixed rod 31 to rotate, and the activated carbon 29 is placed in the filter box.
  • the operator can start the first servo motor 30, the first servo motor 30 will drive the first fixed rod 31 to rotate, and drive the fan blade 32 outside the first fixed rod 31 to rotate, When the fan blade 32 rotates, the water flow will enter the filter box 25 from the V-shaped opening 28 on the filter box 25, and then the sewage can be adsorbed and filtered by the activated carbon 29 in the filter box 25.
  • both the first filter cartridge 15 and the second filter cartridge 16 are provided with an L-shaped portion 33, and four hanging plates 34 are also fixed inside the first processing box 5 , wherein the L-shaped portion 33 on the first filter cartridge 15 and the second filter cartridge 16 are both hung above the hanging plate 34, and the first filter cartridge 15 can be connected to the hanging plate 34 by using the cooperation between the L-shaped portion 33 and the hanging plate 34
  • the second filter cartridge 16 is hung inside the first treatment tank 5; in order to speed up the flow of wastewater in the first treatment tank 5, a second servo motor 35 is also fixed outside the first treatment tank 5, and the second servo motor 35
  • the second fixing rod 36 is fixed on the motor shaft of the second fixing rod 36, and four stirring blades 37 are fixed outside the second fixing rod 36.
  • the second servo motor 35 When the operator starts the second servo motor 35, the second servo motor 35 will drive the second fixing
  • the rod 36 rotates to drive the stirring blade 37 to rotate, thereby promoting the flow of waste water inside the first treatment tank 5 and facilitating its treatment; in order to reduce the output speed of the first servo motor 30, the first servo motor 30 and the first fixed
  • a first speed reducer 38 is arranged between the rods 31, wherein the input end of the first speed reducer 38 is connected to the motor shaft of the first servo motor 30, and the output end of the first speed reducer 38 is connected to the first fixed rod 31.
  • the first reducer 38 between the servo motor 30 and the first fixed rod 31 can reduce the output speed of the first servo motor 30, so that the first fixed rod 31 rotates more smoothly; in order to reduce the output speed of the second servo motor 35, A second reducer 39 is arranged between the second servo motor 35 and the second fixed rod 36, and at the same time, the input end of the second reducer 39 is connected with the motor shaft of the second servo motor 35 to connect the second reducer 39 The output end is connected to the second fixed rod 36.
  • the second reducer 39 between the second servo motor 35 and the second fixed rod 36 can reduce the output speed of the second servo motor 35, so that the second fixed rod 36 rotates more smoothly
  • a drain pipe 40 is also connected to the second treatment tank 6, and at the same time, the drain pipe 40 is threadedly connected with a plug 41 at the end away from the second treatment tank 6,
  • the drain pipe 40 on the second treatment tank 6 can be used to easily discharge the treated sewage in the second treatment tank 6, and the plug 41 at the end of the drain pipe 40 can be used to block the drain pipe 40 to prevent water from flowing from the drain pipe 40. Outflow.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Auxiliary Weaving Apparatuses, Weavers' Tools, And Shuttles (AREA)
  • Looms (AREA)

Abstract

一种电子储纬单喷超宽幅重磅喷水织机,包括喷水织机本体(1),所述喷水织机本体(1)的底部固定有废水收集盒(2),所述废水收集盒(2)的外部分别通过第一连接板(3)和第二连接板(4)固定有第一处理箱(5)和第二处理箱(6),所述第一连接板(3)上固定有第一水泵(10),所述第一水泵(10)的入水端连通有第一管道(8),所述第一管道(8)在远离所述第一水泵(10)的一端与所述废水收集盒(2)连通,所述第一水泵(10)的出水端还连通有第二管道(9),所述第二管道(9)在远离所述第一水泵(10)的一端与所述第一处理箱(5)连通,装置将废水收集在废水收集盒(2)之后,再经过第一处理部(13)和第二处理部(14)的处理之后,能够将废水中的污染物处理掉,避免了原有装置直接排放废水产生的污染,绿色环保。

Description

一种电子储纬单喷超宽幅重磅喷水织机技术领域
本发明涉及喷洒织机装置领域,特别涉及一种电子储纬单喷超宽幅重磅喷水织机。
背景技术
喷水织机是采用喷射水柱牵引纬纱穿越梭口的无梭织机,喷水引纬对纬纱的摩擦牵引力比喷气引纬大,扩散性小,适应表面光滑的合成纤维、玻璃纤维等长丝引纬的需要,同时可以增加合纤的导电性能,有效地克服织造中的静电,此外喷射纬纱消耗的能量较少,噪音最低;在喷水织机织物过程中,废边位于织物筘幅的外侧,通过一定数量的废边与纬纱交织,从而将纬纱头端握持,达到张紧纬纱防止产生纬缩、保证布边整齐光洁的目的。喷水 织机筒子架不仅要承载废边筒子,还要保证多根废边纱有条不紊的输送。
喷水织机相比于传统织机具有一系列优点:一、易于维修,为提高电气元件在使用中的可靠性,织机使用了有效积极的电路,凡是任何电气故障均可在由发光二极体所构成的监测系统中体现;二、高经济性,电子机械剪纬节省了电力,纬入装置畅输送纬纱,测长系统合乎气流原理,使能源消耗降到最低;三、具耐久性,本机各金属零件尽量采用不锈钢、塑胶及合金铸件部分予以烤漆,以保持零件完整,机器正常运行,延长使用寿命;四、高速运转和高生产力,高强度箱形车壁的结构设计,将主传动部分纳入油池中,可确保机械高速动转,且所有的轴心均采用高负载之轴承适合高速动转并达到无比的高生产力。
技术问题
虽然喷水织机相比于传统织机具有一系列的优点,但是喷水织机还具有一些较大的缺点,在这些缺点中最严重的一点就是喷水织机需要消耗大量的水资源,且水资源被喷水织机利用过之后会被污染,而现有的喷水织机不具有收集废水和处理废水的功能,所以需要对现有的喷水织机进行改进,以使得其具有废水收集和废水处理的功能。
技术解决方案
针对背景技术中提到的问题,本发明的目的是提供一种电子储纬单喷超宽幅重磅喷水织机,以解决背景技术中提到的问题。
本发明的上述技术目的是通过以下技术方案得以实现的:
一种电子储纬单喷超宽幅重磅喷水织机,包括喷水织机本体,所述喷水织机本体的底部固定有废水收集盒,所述废水收集盒的外部分别通过第一连接板和第二连接部固定有第一处理箱和第二处理箱,所述第一连接板上固定有第一水泵,所述第一水泵的入水端连通有第一管道,所述第一管道在远离所述第一水泵的一端与所述废水收集盒连通,所述第一水泵的出水端还连通有第二管道,所述第二管道在远离所述第一水泵的一端与所述第一处理箱连通,所述第二连接板上固定有第二水泵,所述第二水泵的进水端连通有第三管道,所述第三管道在远离所述第二水泵的一端与所述第一处理箱内部连通,所述第二水泵的出水端还连通有第四管道,所述第四管道在远离所述第二水泵的一端与所述第二处理箱内部连通,所述第一处理箱内部设置有第一处理部,所述第二处理箱内部设置有第二处理部,所述喷水织机本体产生的废水被所述废水收集盒收集,之后再被所述第一处理箱内的第一处理部处理和所述第二处理箱内的第二处理部处理。
通过采用上述技术方案,当装置在使用时,喷水织机本体纺织过程产生的废水将会被喷水织机本体底部的废水收集盒收集,避免了喷水织机产生的废水直接落在地面上;流入到喷水织机本体下方废水收集盒内的废水可以被第一水泵经过第一管道和第二管道抽入到第一处理箱内,废水被第一处理箱内的第一处理部预先处理之后,再启动第二连接板上固定的第二水泵,第二水泵将经过第一处理箱内第一处理部处理后的废水经过第三管道和第四管道抽入到第二处理箱内部,抽入到第二处理箱内部的废水能够被第二处理箱内部的第二处理部处理;故装置将废水收集在废水收集盒之后,再经过第一处理部和第二处理部的处理之后,能够将废水中的污染物处理掉,避免了原有装置直接排放废水产生的污染,较为绿色环保。
较佳的,所述第一处理部包括第一过滤筒、第二过滤筒、第一通孔、第二通孔、砂石和海绵,所述第一过滤筒和所述第二过滤筒分别挂接在所述第一处理箱内部,所述第一过滤筒上开设有密布的第一通孔,所述第二过滤筒上开设有密布的第二通孔,所述砂石放置在所述第一过滤筒内,所述砂石的目数为40-60目,所述海绵放置在所述第二过滤筒内,所述第一处理箱内的污水先后通过所述第一过滤筒和所述第二过滤筒内吸附净化。
通过采用上述技术方案,污水被抽入到第一处理部之后,先会经过第一过滤筒,之后再进入到第二过滤筒,污水在经过第一过滤筒之后被第一过滤筒内的砂石过滤吸附杂质,之后污水进入到第二过滤筒,被第二过滤筒内的海绵过滤吸附杂质,故污水在经过第一处理部处理之后能够吸附掉污水内大部分的杂质。
较佳的,所述第二处理部包括过滤盒、第三通孔、V形开口、活性炭、第一伺服电机、第一固定杆和若干个弧形的扇叶,所述过滤盒固定在所述第二处理箱内部,所述过滤盒上开设有密布的所述第三通孔,所述过滤盒上具有所述V形开口,所述过滤盒在所述V形开口处转动连接有所述第一固定杆,所述第一固定杆外部还固定有若干个扇叶,所述第一伺服电机固定在所述第二处理箱外部并驱动所述第一固定杆转动,所述活性炭放置在所述过滤盒内部。
通过采用上述技术方案,污水进入到第二处理箱后,操作者可以启动第一伺服电机,第一伺服电机将带动第一固定杆转动,带动第一固定杆外部的扇叶转动,当扇叶转动时将带动水流从过滤盒上的V形开口进入到过滤盒内,之后污水能被过滤盒内的活性炭吸附过滤。
较佳的,所述第一过滤筒和所述第二过滤筒上均具有L形部,所述第一处理箱内部还固定有四个挂板,所述第一过滤筒与所述第二过滤筒上的所述L形部均挂接在所述挂板上方。
通过采用上述技术方案,通过利用L形部和挂板之间的配合能够将第一过滤筒和第二过滤筒挂接在第一处理箱内部。
较佳的,所述第一处理箱外部还固定有第二伺服电机,所述第二伺服电机的电机轴上固定有第二固定杆,所述第二固定杆外部固定有若干个搅拌桨叶。
通过采用上述技术方案,当操作者启动第二伺服电机时,第二伺服电机将带动第二固定杆转动,带动搅拌桨叶转动,从而促进第一处理箱内部废水的流动,方便对其进行处理。
较佳的,所述第一伺服电机与所述第一固定杆之间设置有第一减速器,所述第一减速器的输入端与所述第一伺服电机的电机轴连接,所述第一减速器的输出端与所述第一固定杆连接。
通过采用上述技术方案,第一伺服电机和第一固定杆之间的第一减速器能够降低第一伺服电机的输出速度,使得第一固定杆转动的更加平缓。
较佳的,所述第二伺服电机与所述第二固定杆之间设置有第二减速器,所述第二减速器的输入端与所述第二伺服电机的电机轴连接,所述第二减速器的输出端与所述第二固定杆连接。
通过采用上述技术方案,第二伺服电机和第二固定杆之间的第二减速器能够降低第二伺服电机的输出速度,使得第二固定杆转动的更加平缓。
较佳的,所述第二处理箱上还连通有排水管,所述排水管在远离所述第二处理箱的一端螺纹连接有堵盖。
通过采用上述技术方案,通过利用第二处理箱上的排水管能够方便排出第二处理箱内部处理后的污水,排水管端部的堵盖能够用来堵住排水管,防止水流从排水管流出。
有益效果
[综上所述,本发明主要具有以下有益效果:
当装置在使用时,喷水织机本体纺织过程产生的废水将会被喷水织机本体底部的废水收集盒收集,避免了喷水织机产生的废水直接落在地面上;流入到喷水织机本体下方废水收集盒内的废水可以被第一水泵经过第一管道和第二管道抽入到第一处理箱内,废水被第一处理箱内的第一处理部预先处理之后,再启动第二连接板上固定的第二水泵,第二水泵将经过第一处理箱内第一处理部处理后的废水经过第三管道和第四管道抽入到第二处理箱内部,抽入到第二处理箱内部的废水能够被第二处理箱内部的第二处理部处理;故装置将废水收集在废水收集盒之后,再经过第一处理部和第二处理部的处理之后,能够将废水中的污染物处理掉,避免了原有装置直接排放废水产生的污染,较为绿色环保。
附图说明
图1是电子储纬单喷超宽幅重磅喷水织机的结构示意图之一;
图2是图1中的A处放大图;
图3是图1中的B处放大图;
图4是电子储纬单喷超宽幅重磅喷水织机的结构示意图之二;
图5是图4中的C处放大图;
图6是电子储纬单喷超宽幅重磅喷水织机的结构剖视图;
图7是图6中的D处放大图;
图8是图6中的E处放大图;
图9是图6中的F处放大图;
图10是图6中的G处放大图。
附图标记:1、喷水织机本体;2、废水收集盒;3、第一连接板;4、第二连接板;5、第一处理箱;6、第二处理箱;7、第一水泵;8、第一管道;9、第二管道;10、第二水泵;11、第三管道;12、第四管道;13、第一处理部;14、第二处理部;15、第一过滤筒;16、第二过滤筒;18、第一通孔;19、第二通孔;20、砂石;24、海绵;25、过滤盒;26、第三通孔;28、V形开口;29、活性炭;30、第一伺服电机;31、第一固定杆;32、扇叶;33、L形部;34、挂板;35、第二伺服电机;36、第二固定杆;37、搅拌桨叶;38、第一减速器;39、第二减速器;40、排水管;41、堵盖。
本发明的实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
如图1至图10所示,一种电子储纬单喷超宽幅重磅喷水织机,包括喷水织机本体1,为了对使用喷水织机本体1产生的废水进行处理,在喷水织机本体1的底部固定有废水收集盒2,在废水收集盒2的外部分别通过第一连接板3和第二连接部固定有第一处理箱5和第二处理箱6,其中在第一连接板3上固定有第一水泵7,在第一水泵7的入水端连通有第一管道8,将第一管道8在远离第一水泵7的一端与废水收集盒2连通,同时在第一水泵7的出水端还连通有第二管道9,将第二管道9在远离第一水泵7的一端与第一处理箱5连通,同时将第二连接板4上固定有第二水泵10,在第二水泵10的进水端连通有第三管道11,将第三管道11在远离第二水泵10的一端与第一处理箱5内部连通,同时将第二水泵10的出水端还连通有第四管道12,并将第四管道12在远离第二水泵10的一端与第二处理箱6内部连通,其中在第一处理箱5内部设置有第一处理部13,在第二处理箱6内部设置有第二处理部14,喷水织机本体1产生的废水被废水收集盒2收集,之后再被第一处理箱5内的第一处理部13处理和第二处理箱6内的第二处理部14处理;
当装置在使用时,喷水织机本体1纺织过程产生的废水将会被喷水织机本体1底部的废水收集盒2收集,避免了喷水织机本体1产生的废水直接落在地面上;流入到喷水织机本体1下方废水收集盒2内的废水可以被第一水泵7经过第一管道8和第二管道9抽入到第一处理箱5内,废水被第一处理箱5内的第一处理部13预先处理之后,再启动第二连接板4上固定的第二水泵10,第二水泵10将经过第一处理箱5内第一处理部13处理后的废水经过第三管道11和第四管道12抽入到第二处理箱6内部,抽入到第二处理箱6内部的废水能够被第二处理箱6内部的第二处理部14处理;故装置将废水收集在废水收集盒2之后,再经过第一处理部13和第二处理部14的处理之后,能够将废水中的污染物处理掉,避免了原有装置直接排放废水产生的污染,较为绿色环保。
其中第一处理部13包括第一过滤筒15、第二过滤筒16、第一通孔18、第二通孔19、砂石20和海绵24,其中第一过滤筒15和第二过滤筒16分别挂接在第一处理箱5内部,在第一过滤筒15上开设有密布的第一通孔18,在第二过滤筒16上开设有密布的第二通孔19,其中砂石20放置在第一过滤筒15内,砂石20的目数为50目,将海绵24放置在第二过滤筒16内,其中第一处理箱5内的污水先后通过第一过滤筒15和第二过滤筒16内吸附净化;污水被抽入到第一处理部13之后,先会经过第一过滤筒15,之后再进入到第二过滤筒16,污水在经过第一过滤筒15之后被第一过滤筒15内的砂石20过滤吸附杂质,之后污水进入到第二过滤筒16,被第二过滤筒16内的海绵24过滤吸附杂质,故污水在经过第一处理部13处理之后能够吸附掉污水内大部分的杂质。
其中第二处理部14包括过滤盒25、第三通孔26、V形开口28、活性炭29、第一伺服电机30、第一固定杆31和四个弧形的扇叶32,过滤盒25固定在第二处理箱6内部,在过滤盒25上开设有密布的第三通孔26,其中在过滤盒25上具有V形开口28,同时过滤盒25在V形开口28处转动连接有第一固定杆31,同时在第一固定杆31外部还固定有四个扇叶32,第一伺服电机30固定在第二处理箱6外部并驱动第一固定杆31转动,将活性炭29放置在过滤盒25内部;污水进入到第二处理箱6后,操作者可以启动第一伺服电机30,第一伺服电机30将带动第一固定杆31转动,带动第一固定杆31外部的扇叶32转动,当扇叶32转动时将带动水流从过滤盒25上的V形开口28进入到过滤盒25内,之后污水能被过滤盒25内的活性炭29吸附过滤。
为了方便固定第一过滤筒15和第二过滤筒16,在第一过滤筒15和第二过滤筒16上均具有L形部33,在第一处理箱5内部还固定有四个挂板34,其中第一过滤筒15与第二过滤筒16上的L形部33均挂接在挂板34上方,通过利用L形部33和挂板34之间的配合能够将第一过滤筒15和第二过滤筒16挂接在第一处理箱5内部;为了加快第一处理箱5内废水的流动速度,在第一处理箱5外部还固定有第二伺服电机35,在第二伺服电机35的电机轴上固定有第二固定杆36,同时在第二固定杆36外部固定有四个搅拌桨叶37,当操作者启动第二伺服电机35时,第二伺服电机35将带动第二固定杆36转动,带动搅拌桨叶37转动,从而促进第一处理箱5内部废水的流动,方便对其进行处理;为了降低第一伺服电机30的输出速度,在第一伺服电机30与第一固定杆31之间设置有第一减速器38,其中第一减速器38的输入端与第一伺服电机30的电机轴连接,第一减速器38的输出端与第一固定杆31连接,第一伺服电机30和第一固定杆31之间的第一减速器38能够降低第一伺服电机30的输出速度,使得第一固定杆31转动的更加平缓;为了降低第二伺服电机35的输出速度,将第二伺服电机35与第二固定杆36之间设置有第二减速器39,同时将第二减速器39的输入端与第二伺服电机35的电机轴连接,将第二减速器39的输出端与第二固定杆36连接,第二伺服电机35和第二固定杆36之间的第二减速器39能够降低第二伺服电机35的输出速度,使得第二固定杆36转动的更加平缓;为了方便排出第二处理箱6内部处理过的污水,在第二处理箱6上还连通有排水管40,同时将排水管40在远离第二处理箱6的一端螺纹连接有堵盖41,通过利用第二处理箱6上的排水管40能够方便排出第二处理箱6内部处理后的污水,排水管40端部的堵盖41能够用来堵住排水管40,防止水流从排水管40流出。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (8)

  1. 一种电子储纬单喷超宽幅重磅喷水织机,包括喷水织机本体(1),其特征在于:所述喷水织机本体(1)的底部固定有废水收集盒(2),所述废水收集盒(2)的外部分别通过第一连接板(3)和第二连接部固定有第一处理箱(5)和第二处理箱(6),所述第一连接板(3)上固定有第一水泵(7),所述第一水泵(7)的入水端连通有第一管道(8),所述第一管道(8)在远离所述第一水泵(7)的一端与所述废水收集盒(2)连通,所述第一水泵(7)的出水端还连通有第二管道(9),所述第二管道(9)在远离所述第一水泵(7)的一端与所述第一处理箱(5)连通,所述第二连接板(4)上固定有第二水泵(10),所述第二水泵(10)的进水端连通有第三管道(11),所述第三管道(11)在远离所述第二水泵(10)的一端与所述第一处理箱(5)内部连通,所述第二水泵(10)的出水端还连通有第四管道(12),所述第四管道(12)在远离所述第二水泵(10)的一端与所述第二处理箱(6)内部连通,所述第一处理箱(5)内部设置有第一处理部(13),所述第二处理箱(6)内部设置有第二处理部(14),所述喷水织机本体(1)产生的废水被所述废水收集盒(2)收集,之后再被所述第一处理箱(5)内的第一处理部(13)处理和所述第二处理箱(6)内的第二处理部(14)处理。
  2. 根据权利要求1所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第一处理部(13)包括第一过滤筒(15)、第二过滤筒(16)、第一通孔(18)、第二通孔(19)、砂石(20)和海绵(24),所述第一过滤筒(15)和所述第二过滤筒(16)分别挂接在所述第一处理箱(5)内部,所述第一过滤筒(15)上开设有密布的第一通孔(18),所述第二过滤筒(16)上开设有密布的第二通孔(19),所述砂石(20)放置在所述第一过滤筒(15)内,所述砂石(20)的目数为40-60目,所述海绵(24)放置在所述第二过滤筒(16)内,所述第一处理箱(5)内的废水先后通过所述第一过滤筒(15)和所述第二过滤筒(16)内净化。
  3. 根据权利要求1所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第二处理部(14)包括过滤盒(25)、第三通孔(26)、V形开口(28)、活性炭(29)、第一伺服电机(30)、第一固定杆(31)和若干个弧形的扇叶(32),所述过滤盒(25)固定在所述第二处理箱(6)内部,所述过滤盒(25)上开设有密布的所述第三通孔(26),所述过滤盒(25)上具有所述V形开口(28),所述过滤盒(25)在所述V形开口(28)处转动连接有所述第一固定杆(31),所述第一固定杆(31)外部还固定有若干个扇叶(32),所述第一伺服电机(30)固定在所述第二处理箱(6)外部并驱动所述第一固定杆(31)转动,所述活性炭(29)放置在所述过滤盒(25)内部。
  4. 根据权利要求2所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第一过滤筒(15)和所述第二过滤筒(16)上均具有L形部(33),所述第一处理箱(5)内部还固定有四个挂板(34),所述第一过滤筒(15)与所述第二过滤筒(16)上的所述L形部(33)均挂接在所述挂板(34)上方。
  5. 根据权利要求2所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第一处理箱(5)外部还固定有第二伺服电机(35),所述第二伺服电机(35)的电机轴上固定有第二固定杆(36),所述第二固定杆(36)外部固定有若干个搅拌桨叶(37)。
  6. 根据权利要求3所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第一伺服电机(30)与所述第一固定杆(31)之间设置有第一减速器(38),所述第一减速器(38)的输入端与所述第一伺服电机(30)的电机轴连接,所述第一减速器(38)的输出端与所述第一固定杆(31)连接。
  7. 根据权利要求5所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第二伺服电机(35)与所述第二固定杆(36)之间设置有第二减速器(39),所述第二减速器(39)的输入端与所述第二伺服电机(35)的电机轴连接,所述第二减速器(39)的输出端与所述第二固定杆(36)连接。
  8. 根据权利要求1所述的一种电子储纬单喷超宽幅重磅喷水织机,其特征在于:所述第二处理箱(6)上还连通有排水管(40),所述排水管(40)在远离所述第二处理箱(6)的一端螺纹连接有堵盖(41)。
PCT/CN2019/127092 2019-02-15 2019-12-20 一种电子储纬单喷超宽幅重磅喷水织机技术领域 WO2020164311A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201910118125.7A CN109778395A (zh) 2019-02-15 2019-02-15 一种电子储纬单喷超宽幅重磅喷水织机
CN201910118125.7 2019-02-15

Publications (1)

Publication Number Publication Date
WO2020164311A1 true WO2020164311A1 (zh) 2020-08-20

Family

ID=66503408

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/127092 WO2020164311A1 (zh) 2019-02-15 2019-12-20 一种电子储纬单喷超宽幅重磅喷水织机技术领域

Country Status (2)

Country Link
CN (1) CN109778395A (zh)
WO (1) WO2020164311A1 (zh)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109778395A (zh) * 2019-02-15 2019-05-21 王安俭 一种电子储纬单喷超宽幅重磅喷水织机
CN110258006A (zh) * 2019-06-20 2019-09-20 苏州欧尼迪纺织科技有限公司 喷水织机防溅收水装置
CN113332785A (zh) * 2021-07-01 2021-09-03 青岛铠硕机械科技有限公司 一种喷水织机的水循环净化装置

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1070538A (en) * 1963-12-12 1967-06-01 Hydromation Engineering Compan Improvements in or relating to filters for liquids
US4519904A (en) * 1984-02-10 1985-05-28 Helmick Timothy A Continuous filtering system for cooking oil
CN202227036U (zh) * 2011-08-24 2012-05-23 华懋(厦门)新材料科技股份有限公司 一种织布水回收利用装置
CN206188986U (zh) * 2016-10-31 2017-05-24 浙江诚鑫织造有限公司 一种织机喷水回收装置
CN107338559A (zh) * 2017-07-12 2017-11-10 上海神源电气有限公司 闭环水循环的喷水织机及其装置和方法
CN206666250U (zh) * 2017-03-21 2017-11-24 青岛海佳机械有限公司 一种喷水织机的水循环装置
CN208406326U (zh) * 2018-04-27 2019-01-22 上海界龙艺术印刷有限公司 一种胶印机废水过滤装置
CN109778395A (zh) * 2019-02-15 2019-05-21 王安俭 一种电子储纬单喷超宽幅重磅喷水织机

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20000024287A (ko) * 2000-02-02 2000-05-06 이영상 열 펌프를 이용한 매립장 포집가스 수분제거장치.
KR20010090683A (ko) * 2000-04-10 2001-10-19 김덕룡 워터제트직기의 분사수 재활용장치
CN103319025A (zh) * 2013-06-08 2013-09-25 浙江鑫涛轻纺有限公司 喷水织机废水回用系统
CN204753008U (zh) * 2015-06-02 2015-11-11 浙江慧德新材料有限公司 一种组合式织机
CN207062082U (zh) * 2017-03-21 2018-03-02 青岛海佳机械有限公司 一种喷水织机的废水净化装置
CN207552567U (zh) * 2017-07-12 2018-06-29 上海神源电气有限公司 闭环水循环的喷水织机及适用于喷水织机闭环水循环的装置
CN108314277A (zh) * 2018-04-26 2018-07-24 陈启发 一种无污水排放喷水织机

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1070538A (en) * 1963-12-12 1967-06-01 Hydromation Engineering Compan Improvements in or relating to filters for liquids
US4519904A (en) * 1984-02-10 1985-05-28 Helmick Timothy A Continuous filtering system for cooking oil
CN202227036U (zh) * 2011-08-24 2012-05-23 华懋(厦门)新材料科技股份有限公司 一种织布水回收利用装置
CN206188986U (zh) * 2016-10-31 2017-05-24 浙江诚鑫织造有限公司 一种织机喷水回收装置
CN206666250U (zh) * 2017-03-21 2017-11-24 青岛海佳机械有限公司 一种喷水织机的水循环装置
CN107338559A (zh) * 2017-07-12 2017-11-10 上海神源电气有限公司 闭环水循环的喷水织机及其装置和方法
CN208406326U (zh) * 2018-04-27 2019-01-22 上海界龙艺术印刷有限公司 一种胶印机废水过滤装置
CN109778395A (zh) * 2019-02-15 2019-05-21 王安俭 一种电子储纬单喷超宽幅重磅喷水织机

Also Published As

Publication number Publication date
CN109778395A (zh) 2019-05-21

Similar Documents

Publication Publication Date Title
WO2020164311A1 (zh) 一种电子储纬单喷超宽幅重磅喷水织机技术领域
CN208378456U (zh) 一种纺织品印染加工用污水处理装置
CN202925241U (zh) 喷水织机供水净化结构
CN109395452A (zh) 一种浆槽浆液过滤装置
CN215137965U (zh) 一种纺织车间用除尘机构
CN207891485U (zh) 一种可移动的纺纱机吸尘装置
CN209178631U (zh) 一种纱线染色环保清洗装置
CN214075736U (zh) 一种飞灰计量仓快速卸料换气和车间除尘装置
CN216191647U (zh) 一种喷水织机的废水回收净化装置
CN213569821U (zh) 一种纺织布料印染用的废水处理装置
CN214597729U (zh) 一种基于大数据技术的纺织印染用污水处理装置
CN214400852U (zh) 一种具有防尘功能的倍捻机
CN213253691U (zh) 一种棉纱生产车间废料收集装置
CN212041604U (zh) 一种纺织机械清洁设备
CN209451434U (zh) 一种浆槽浆液过滤装置
CN216320252U (zh) 用于环保型喷水织机的废水回收装置
CN113215697A (zh) 一种具有高效除尘功能的纺纱机
CN211935921U (zh) 一种环保型喷水织机水循环装置
CN210561182U (zh) 一种网格布清洗烘干装置
CN219526919U (zh) 一种浮毛吸附加弹机
CN217202389U (zh) 一种环保节能的喷水织机
CN213357881U (zh) 一种具有净水功能的喷水织布机
CN219032491U (zh) 一种方便清理的梳棉机滤尘机组
CN215310650U (zh) 一种无动力转鼓过滤器
CN218339151U (zh) 一种喷水织机的废水回收装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19915557

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19915557

Country of ref document: EP

Kind code of ref document: A1