CN204849211U - Air jet loom air feeder and air jet loom - Google Patents

Air jet loom air feeder and air jet loom Download PDF

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Publication number
CN204849211U
CN204849211U CN201520460651.9U CN201520460651U CN204849211U CN 204849211 U CN204849211 U CN 204849211U CN 201520460651 U CN201520460651 U CN 201520460651U CN 204849211 U CN204849211 U CN 204849211U
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CN
China
Prior art keywords
air
jet loom
cooler
feeder
pump
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Fee Related
Application number
CN201520460651.9U
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Chinese (zh)
Inventor
王焕强
刘培德
纪竹青
赵付斌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hongqi Textile Machinery Co Ltd Tianyi Group Qingdao
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Hongqi Textile Machinery Co Ltd Tianyi Group Qingdao
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Priority to CN201520460651.9U priority Critical patent/CN204849211U/en
Application granted granted Critical
Publication of CN204849211U publication Critical patent/CN204849211U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an air jet loom air feeder and air jet loom. Air feeder includes air pump, cooler, secondary filter and gas bag, the air pump is used for the outdoor air compression after filtering and turns into compressed air, the cooler is used for cooling down to the compressed air that the air pump produced, the secondary filter is used for carrying on the compressed air after the cooling that impurity filters and moisture is got rid of, the gas bag is used for carrying out the steady voltage to the compressed air after getting rid of through cooling, impurity filtration and moisture. Through above each partial structure, make the utility model provides a gas device can produce normal atmospheric temperature, cleanness and stable compressed air, satisfies air jet loom self wefting insertion needs, protects the good operation of air jet loom wefting insertion system. The utility model discloses the air jet loom who addresses includes loom owner motor and above -mentioned air jet loom air feeder, take offence pump operation of hold -in range when loom owner motor drive loom operates, and then produce meet the conditions's compressed air, atmospheric pressure is stable, tolerance is sufficient, has guaranteed the air feed ability.

Description

Air-jet loom feeder and air-jet loom
Technical field
The utility model relates to a kind of air-jet loom feeder and has the air-jet loom of described air-jet loom feeder.
Background technology
At present, air-jet loom needs to configure powerful air compressor unit provides compressed air for it, and multiple stage air-jet loom adopts concentrated compressed air source air feed.Because the distance between every platform air-jet loom and source of the gas is different, most air-jet loom needs remote air feed, capital produces line loss in various degree, and whole supply air line needs higher supply gas pressure, and require high to supply air line, the needs of jet loom for drawing weft yarn could be met, which increase energy resource consumption; In addition, buy air compressor and also want more fund input, and the position of installing air compressor need be reserved separately in workshop.
Market carries the air-jet loom of piston type air compressor, although the energy consumption between pipeline can be saved, but often there are the following problems in actual applications: (1), owing to there is no effective voltage stabilizing and cooling provision, unstable and the secondary spray of supply gas pressure can not control jet time, cause compressed-air actuated waste, the efficiency of loom is not high, only can weave low-grade gauze by low speed, other kind can not realize weaving, and range of application is very narrow; (2) due to air compressing process generates heat, air pump long time running, air pump itself is rapidly heated with the compressed air produced, and high heat can damage the part that is associated, larger on air supply system impact; (3) compressed air produced is affected by environment very large, does not carry out filtration minute dust and enters gas circuit and can damage the precision parts such as electromagnetic valve; (4) do not dewater, pipeline is moist, and main jet, secondary spray can spray water, water stainly affects fabric quality.
As can be seen here, air-jet loom feeder of the prior art and air-jet loom all need to improve.
Utility model content
The purpose of this utility model is to propose a kind of air-jet loom feeder, can need to provide qualified compressed air for air-jet loom self wefting insertion by this feeder, the good operation of protection jet loom weft insertion system.
To achieve these goals, the utility model adopts following technical scheme:
Air-jet loom feeder, comprises air pump, cooler and fine filter; Air pump is used for the outdoor air after by filtration and compresses and be converted into compressed air; Cooler is connected to air pump rear, lowers the temperature for the compressed air produced air pump; Fine filter is connected to cooler rear, for carrying out contaminant filter and moisture removal to the compressed air after cooling.
Further, described air-jet loom feeder also comprises the filter being connected to air pump front, filters before entering air pump at outdoor air to described outdoor air.
Further, described air-jet loom feeder also comprises the gas bag being connected to fine filter rear, for carrying out voltage stabilizing to the compressed air after cooling, contaminant filter and moisture removal.
Further, described air pump comprises air inlet, gas outlet, water inlet, delivery port and cooling water channel; Water inlet and delivery port lay respectively at one end of cooling water channel.
Further, described cooling water channel is bending water channel.
Further, described cooler comprises air inlet, gas outlet, water inlet, delivery port, cooler air chamber and cooler pipeline; Air inlet, gas outlet are communicated with cooler air chamber respectively; Cooler pipeline is positioned at cooler air chamber, and water inlet and delivery port lay respectively at one end of cooler pipeline.
Further, described cooler pipeline is provided with multiple fin, for increasing the heat exchange area between cooler pipeline and cooler air chamber.
Further, described fine filter adopts the float fine filter with automatic drainage function.
In addition, the utility model also proposed a kind of air-jet loom, and it adopts following technical scheme:
Air-jet loom, comprises loom mair motor and feeder; Feeder adopts above-mentioned air-jet loom feeder; Loom mair motor is connected with described air pump by drive disk assembly.
The utility model tool has the following advantages:
The air-jet loom feeder that the utility model is addressed comprises air pump, cooler and fine filter, is coordinated by three, and this feeder can be made to produce normal temperature and clean compressed air; In addition, this feeder also comprises the gas bag for carrying out voltage stabilizing to the compressed air after cooling, contaminant filter and moisture removal; By above Each part, can need to provide qualified compressed air for air-jet loom self wefting insertion, the good operation of protection jet loom weft insertion system.The air-jet loom that the utility model is addressed comprises loom mair motor and above-mentioned air-jet loom feeder, loom mair motor drive loom running time Timing Belt take offence pump running, and then producing qualified compressed air, stable gas pressure, tolerance are sufficient, ensure that gas supply capacity.
Accompanying drawing explanation
Fig. 1 is the structural representation of air-jet loom feeder in the utility model embodiment 1;
Fig. 2 is the side structural representation of air pump in Fig. 1;
Fig. 3 is the opposite side structural representation of air pump in Fig. 1;
Fig. 4 is the structural representation of cooler in Fig. 1;
Fig. 5 is the structural representation of fine filter in Fig. 1;
Wherein, 1-air pump, 2-cooler, 3-fine filter, 101-pump cover, the 102-pump housing, 103-pump barrel, 104-pump seat, 105-water inlet, 106-delivery port, 107-air inlet, 108-gas outlet, 201-air inlet, 202-gas outlet, 203-water inlet, 204-delivery port, 301-filter body, 302-float draining valve.
Detailed description of the invention
Below in conjunction with accompanying drawing and detailed description of the invention, the utility model is described in further detail:
Embodiment 1
Shown in composition graphs 1, air-jet loom feeder, comprises air pump 1, cooler 2 and fine filter 3.Wherein,
Air pump 1 is for compressing the outdoor air after filtration and be converted into compressed air;
Cooler 2 is connected to air pump 1 rear, lowers the temperature for the compressed air produced air pump 1;
Fine filter 3 is connected to cooler 2 rear, for carrying out contaminant filter and moisture removal to the compressed air after cooling.
By the synergy of above-mentioned three parts, normal temperature and clean compressed air can be produced.
In addition, air-jet loom feeder also comprises the filter (not shown) being connected to air pump front.Can be filtered before outdoor air enters air pump 1 by this filter.
Shown in composition graphs 2 and Fig. 3, air pump 1 adopts reciprocating air pump.Concrete, air pump 1 comprises pump cover 101, the pump housing 102, pump barrel 103 and pump seat 104.
All be designed with cooling water channel at pump cover 101 with pump barrel 103 place and be communicated with.
Pump cover 101 and the pump housing 102 are provided with water inlet 105 and delivery port 106, and water inlet 105 and delivery port 106 lay respectively at one end of cooling water channel.
Be beneficial to by above-mentioned cooling water channel and realize cooling to the pump housing 102, improve the service life of air pump 1.
In addition, above-mentioned cooling water channel design also has certain cooling-down effect to the compressed air that air pump 1 produces.
Preferably, above-mentioned cooling water channel is bending water channel, is beneficial to the film-cooled heat increasing cooling water channel.
As shown in Figure 2, recirculated water enters from water inlet 105, fully contacts exchange heat through above-mentioned cooling water channel with the pump housing 102, lowers the temperature to the pump housing 102, and current flow out from delivery port 106.
In addition, air pump 1 also comprises air inlet 107 and gas outlet 108, as shown in Figure 3.
Enter from air inlet 107 through the preliminary outdoor air filtered, after overcompression, become compressed air discharge from gas outlet 108.Now, compressed air temperature is higher and humidity is larger.
As shown in Figure 4, cooler 2 comprises air inlet 201, gas outlet 202, water inlet 203, delivery port 204, cooler air chamber and cooler pipeline.Air inlet 201, gas outlet 202 are communicated with cooler air chamber respectively.
Be connected by pipeline between air inlet 201 with gas outlet 108.
Cooler pipeline is positioned at cooler air chamber, and compressed air higher to temperature in cooler air chamber is lowered the temperature.
Water inlet 203 and delivery port 204 lay respectively at one end of cooler pipeline.
Cooling water enters cooler pipeline from water inlet 203, and the water after heat exchange takes away heat, then flows out by from delivery port 204.The compressed air that the temperature of coming from air pump 1 is higher enters cooler air chamber from air inlet 201, carries out heat exchange, enter fine filter 3 from gas outlet 202 in cooler air chamber with cooler pipeline contact.
The compressed air with certain humidity, after subcooler 2 is lowered the temperature, can be separated out certain moisture, also have some dusts simultaneously, and therefore, gas outlet 202 compressed air out needs to dry dedusting through fine filter 3.
Preferably, cooler pipeline is provided with multiple fin, for increasing the heat exchange area between cooler pipeline and cooler air chamber.
As shown in Figure 5, fine filter 3 adopts the float fine filter with automatic drainage function, and this float fine filter can use for reference the float fine filter existed in prior art.Float fine filter comprises filter body 301 and float draining valve 302.
Utilize compressed-air actuated high speed centrifugation effect, the moisture in compressed air is separated out in filter body 301, and automatically flow to bottom; Float draining valve 302 is contained in bottom fine filter 3, according to water level inside height Auto-drainage and closedown; Have filter core in fine filter 3, compressed air enters gas path pipe after filter element filtering impurity.
In addition, air-jet loom feeder also comprises gas bag (not shown), and gas bag is connected to fine filter 3 rear, for carrying out voltage stabilizing to the compressed air after cooling, contaminant filter and moisture removal.
By technique scheme, make the utility model feeder can provide normal temperature, clean and stable compressed air.
Embodiment 2
Air-jet loom in the present embodiment 2 comprises loom mair motor and feeder.Feeder adopts the air-jet loom feeder in above-described embodiment 1; Loom mair motor is connected with described air pump 1 by drive disk assembly.
Every platform air-jet loom is all equipped with independently air pump 1, while loom mair motor drives loom running, drives air pump 1 to operate by drive disk assembly.Air pump air inlet 107 air-breathing outdoor, outdoor air enters air pump 1 after filtering, and air compressing is converted to compressed air by air pump 1.The compressed air that air pump 1 produces is first through subcooler 2, then enter fine filter 3 impurity screening and moisture, obtain the normal temperature compressed air cleaned, compressed air enters gas bag voltage stabilizing, for weft insertion system continues the compressed air that provides quality good, to meet wefting insertion needs.
The recirculated water cooled through cooling tower or satisfactory water at low temperature distribute to every platform loom air pump 1 after water inlet manifold shunting, the heat of the air pump pump housing 102 is taken away, reaches the object that the pump housing 102 cools.
The cooling water adopted can be introduced into cooler 2, and then enters air pump 1, and namely cooler pipeline and cooling water channel serial connection, also can adopt cooling water to be divided into multiple branch road, the mode of each branch road throttling parallel connection.
Certainly; more than illustrate and be only preferred embodiment of the present utility model; the utility model is not limited to enumerate above-described embodiment; should be noted that; any those of ordinary skill in the art are under the instruction of this description; made all equivalently to substitute, obvious variant, within the essential scope all dropping on this description, protection of the present utility model ought to be subject to.

Claims (9)

1. air-jet loom feeder, is characterized in that, comprises air pump, cooler and fine filter; Air pump is used for the outdoor air after by filtration and compresses and be converted into compressed air; Cooler is connected to air pump rear, lowers the temperature for the compressed air produced air pump; Fine filter is connected to cooler rear, for carrying out contaminant filter and moisture removal to the compressed air after cooling.
2. air-jet loom feeder according to claim 1, is characterized in that, described air-jet loom feeder also comprises the filter being connected to air pump front, filters before entering air pump at outdoor air to described outdoor air.
3. air-jet loom feeder according to claim 1, is characterized in that, described air-jet loom feeder also comprises the gas bag being connected to fine filter rear, for carrying out voltage stabilizing to the compressed air after cooling, contaminant filter and moisture removal.
4. air-jet loom feeder according to claim 1, is characterized in that, described air pump comprises air inlet, gas outlet, water inlet, delivery port and cooling water channel; Water inlet and delivery port lay respectively at one end of cooling water channel.
5. air-jet loom feeder according to claim 4, is characterized in that, described cooling water channel is bending water channel.
6. air-jet loom feeder according to claim 1, is characterized in that, described cooler comprises air inlet, gas outlet, water inlet, delivery port, cooler air chamber and cooler pipeline; Air inlet, gas outlet are communicated with cooler air chamber respectively; Cooler pipeline is positioned at cooler air chamber, and water inlet and delivery port lay respectively at one end of cooler pipeline.
7. air-jet loom feeder according to claim 6, is characterized in that, described cooler pipeline is provided with multiple fin, for increasing the heat exchange area between cooler pipeline and cooler air chamber.
8. air-jet loom feeder according to claim 1, is characterized in that, described fine filter adopts the float fine filter with automatic drainage function.
9. air-jet loom, comprises loom mair motor and feeder; It is characterized in that, described feeder adopts the air-jet loom feeder as described in any one of claim 1 to 8; Loom mair motor is connected with described air pump by drive disk assembly.
CN201520460651.9U 2015-07-01 2015-07-01 Air jet loom air feeder and air jet loom Expired - Fee Related CN204849211U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520460651.9U CN204849211U (en) 2015-07-01 2015-07-01 Air jet loom air feeder and air jet loom

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520460651.9U CN204849211U (en) 2015-07-01 2015-07-01 Air jet loom air feeder and air jet loom

Publications (1)

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CN204849211U true CN204849211U (en) 2015-12-09

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757394A (en) * 2018-07-18 2018-11-06 江苏华佳丝绸股份有限公司 Silk loom compressed air heat sink and method
CN108977997A (en) * 2018-08-24 2018-12-11 浙江星耀纺织机械有限公司 Used in jet loom fixes main burner
CN110592781A (en) * 2019-10-15 2019-12-20 长兴超特纺织有限公司 Air supply mechanism of air jet loom
CN110923910A (en) * 2019-12-25 2020-03-27 常州市群丰玻纤制品有限公司 Independent air supply device for air jet loom

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757394A (en) * 2018-07-18 2018-11-06 江苏华佳丝绸股份有限公司 Silk loom compressed air heat sink and method
CN108977997A (en) * 2018-08-24 2018-12-11 浙江星耀纺织机械有限公司 Used in jet loom fixes main burner
CN110592781A (en) * 2019-10-15 2019-12-20 长兴超特纺织有限公司 Air supply mechanism of air jet loom
CN110923910A (en) * 2019-12-25 2020-03-27 常州市群丰玻纤制品有限公司 Independent air supply device for air jet loom

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151209

Termination date: 20170701