CN205127521U - Automatic wash cutting fluid filter equipment - Google Patents

Automatic wash cutting fluid filter equipment Download PDF

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Publication number
CN205127521U
CN205127521U CN201520844751.1U CN201520844751U CN205127521U CN 205127521 U CN205127521 U CN 205127521U CN 201520844751 U CN201520844751 U CN 201520844751U CN 205127521 U CN205127521 U CN 205127521U
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CN
China
Prior art keywords
core
cutting fluid
guide duct
urceolus
filter vat
Prior art date
Application number
CN201520844751.1U
Other languages
Chinese (zh)
Inventor
冯坚
Original Assignee
东莞市循美环保科技有限公司
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Publication date
Application filed by 东莞市循美环保科技有限公司 filed Critical 东莞市循美环保科技有限公司
Priority to CN201520844751.1U priority Critical patent/CN205127521U/en
Application granted granted Critical
Publication of CN205127521U publication Critical patent/CN205127521U/en

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Abstract

The utility model discloses an automatic wash cutting fluid filter equipment, it includes filter vat, a drive arrangement, recovery unit and first guide duct, the filter vat is provided with inner tube and urceolus, the inner tube is fixed to be set up inside the urceolus, a drive arrangement is provided with first pivot, first pivot is passed the urceolus and is fixed in inner tube one end, a plurality of filtration pores have been seted up on the inner tube lateral wall, the inner tube is kept away from first pivot one end and is equipped with the opening, recovery unit passes the fixed setting of opening in the inner tube, first guide duct is fixed to be set up the filter vat upper end, the wind guide tank has been seted up to first guide duct one side, the wind guide tank faces the inner tube lateral wall. The utility model discloses automatic wash cutting fluid filter equipment is through setting up first guide duct in the filter vat, the air current that utilizes the wind guide tank to come out blows off the adnexed smear metal of inner tube lateral wall in recovery unit, the automatic cleaning work of accomplishing the inner tube lateral wall, greatly reduced the cost of labor, promoted work efficiency.

Description

Automatic cleaning device for filtering cutting fluid

Technical field

The utility model relates to machining center technical field, especially relates to one and automatically cleans device for filtering cutting fluid.

Background technology

Metal cutting process liquid (abbreviation cutting fluid) plays cooling, cleaning, antirust and lubrication in working angles.Cutting fluid not only can reduce the surface temperature of process tool, rake face and chip, friction between rear knife face and machined surface can also be reduced, forming section lubricating film, thus reduce cutting force, friction and power consumption, reduce cutter and workpiece blank to rub the surface temperature at position and tool wear, improve the machinability of workpiece material.Due in concrete production process, the cost of cutting fluid is not low, needs to recycle, and recycles and just need to purify cutting fluid.In current factory, the purification for cutting fluid mostly adopts strainer filtering just to send back in the circulatory system with suction pump once.The pressed powder deriving from workpiece and cutter in cutting fluid after such use a period of time can cause following harm: (1) particle be suspended in cooling fluid damages the sealing of pump, and increase tool wear, the skin of infringement people, affects crudy; (2) solids of sedimentation is bottom oil sump, coalescent with organic matter, and form the beds of precipitation that one deck has a large amount of pore, for microbial reproduction provides advantage, and the filament of mould more stabilizes the solid of precipitation; (3) metal dust in cutting fluid has very high chemism, and some composition in cutting fluid can be made to lose efficacy.Fungi pollution makes cutting fluid become sour decomposition, and the breeding of mould produces dope, causes pipeline and spray nozzle clogging.

And because the cutting fluid circulatory system on general Digit Control Machine Tool follows chip treatment system to be two independently systems, some tiny chips are easily caused to fall into the cutting fluid circulatory system, the filtration system of the cutting fluid circulatory system is piled up, the compartment time carries out artificial treatment with regard to needing to the chip in filtration system, chip removed in filtration system, this must have influence on the normal work of the cutting fluid circulatory system.

Utility model content

Based on this, be necessary for the deficiencies in the prior art, provide one automatically to clean device for filtering cutting fluid, effectively can remove the chip in cutting fluid soiling solution, reduce the inconvenience in labor cleaning's chip, promote chip treatment effeciency in cutting fluid.

For solving the problems of the technologies described above, the technical scheme that the utility model adopts is: one cleans device for filtering cutting fluid automatically, it comprises filter vat, the first drive unit, retracting device and the first guide duct, described filter vat is provided with inner core and urceolus, described inner core is fixedly installed on outer barrel, described first drive unit is provided with the first rotating shaft, and described first rotating shaft is fixed on inner core one end through urceolus; Described inner core sidewall offers some filter openings, described inner core is provided with opening away from first rotating shaft one end, described retracting device is fixedly installed in inner core through opening, described first guide duct is fixedly installed on described filter vat upper end, described first guide duct side offers wind guide tank, and described wind guide tank faces inner core sidewall.

Wherein in an embodiment, described retracting device comprises the second drive unit, helical-blade and accumulator tank, described second drive unit is provided with the second rotating shaft, described helical-blade winding is in described second rotating shaft, described second rotating shaft drives helical-blade to rotate, and described accumulator tank is arranged on below described helical-blade.

Wherein in an embodiment, be fixedly connected with the second guide duct outside described filter vat, described second guide duct is arranged in described inner core through opening, spaced apartly below described second guide duct is provided with some air holes, and described air holes faces helical-blade and arranges.

Wherein in an embodiment, described first guide duct is arranged between described inner core and urceolus, and described wind guide tank is arranged vertically downward.

Wherein in an embodiment, described first guide duct is arranged in inner core, and described wind guide tank diagonal upward direction is arranged.

Wherein in an embodiment, described filter vat is prone configuration.

Wherein in an embodiment, below described urceolus, be provided with leakage fluid dram.

In sum, the utility model cleans device for filtering cutting fluid automatically by arranging the first guide duct in filter vat, wind guide tank air-flow is out utilized to blow off in retracting device by the chip that inner core sidewall adheres to, automatically the cleaning work to inner core sidewall is completed, greatly reduce cost of labor, improve operating efficiency.

Accompanying drawing explanation

Fig. 1 is the structural representation that the utility model cleans device for filtering cutting fluid automatically;

Fig. 2 be the utility model automatically clean device for filtering cutting fluid hide urceolus after structural representation;

Fig. 3 is the structural representation of the utility model urceolus;

Fig. 4 is the structural representation of the utility model second guide duct;

Fig. 5 is the structural representation of the utility model first guide duct.

Detailed description of the invention

For feature of the present utility model, technological means and the specific purposes reached, function can be understood further, below in conjunction with accompanying drawing and detailed description of the invention, the utility model is described in further detail.

As shown in Figures 1 to 5, the utility model automatically cleans device for filtering cutting fluid and comprises filter vat 10, first drive unit 20, retracting device 30 and the first guide duct 40, described filter vat 10 is prone configuration, described filter vat 10 is provided with inner core 11 and urceolus 12, it is inner that described inner core 11 is fixedly installed on urceolus 12, described first drive unit 20 is provided with the first rotating shaft 21, described first rotating shaft 21 is fixed on inner core 11 one end through urceolus 12, described inner core 11 cycle rotation under the drive of the first rotating shaft 21, also and then overturn to make the chip that inner core 11 sidewall adheres to.

Described inner core 11 sidewall offers some filter openings 111, and the chip in cutting fluid soiling solution can stop by described filter opening 111, prevents chip from entering urceolus 12 pairs of subsequent techniques with cutting fluid and impacts; Described inner core 11 is provided with opening 112 away from first rotating shaft 21 one end, described retracting device 30 is fixedly installed in inner core 11 through opening 112, described retracting device 30, in order to the chip remained on inner core 11 sidewall to be carried out collection process, avoids the inconvenience in manual operation; Be provided with leakage fluid dram 121 below described urceolus 12, described leakage fluid dram 121 recycles in order to the cutting fluid from inner core 11 inner filtration to be reclaimed, and effectively reduces cost recovery.

Described retracting device 30 comprises the second drive unit 31, helical-blade 32 and accumulator tank 33, described second drive unit 31 is provided with the second rotating shaft 311, the winding of described helical-blade 32 is in described second rotating shaft 311, described second rotating shaft 311 drives helical-blade 32 to rotate, described accumulator tank 33 is arranged on below described helical-blade 32, in inner core 11 rotary course, chip can be dropped on helical-blade 32, and be progressively transplanted on outside opening 112 along with the rotation of helical-blade 32, chip on helical-blade 32 can be dropped to fall in collected outside device on accumulator tank 33 and along accumulator tank 33 and be processed.

Described first guide duct 40 is fixedly installed on described filter vat 10 upper end, described first guide duct 40 side offers wind guide tank 41, described wind guide tank 41 faces inner core 11 sidewall, outer gas stream is introduced in filter vat 10 by described first guide duct 40, air-flow is exerted pressure by wind guide tank 41 pairs of inner core 11 sidewalls, and the chip that inner core 11 sidewall adheres to is fallen downwards on helical-blade 32 under airflow function.

Particularly, described first guide duct 40 is arranged between described inner core 11 and urceolus 12, and described wind guide tank 41 is arranged vertically downward, efficient chip is blown off from inner core 11 sidewall to have more.

Wherein in an embodiment, described first guide duct 40 also can be arranged in inner core 11, and described wind guide tank 41 diagonal upward direction is arranged, and efficient chip is blown off from inner core 11 sidewall to have more.

The second guide duct 50 is fixedly connected with outside described filter vat 10, described second guide duct 50 is arranged in described inner core 11 through opening 112, spaced apartly below described second guide duct 50 be provided with some air holes 51, described air holes 51 faces helical-blade 32 and arranges, and the part chips of close attachment on helical-blade 32 blows off through air holes 51 by air-flow.

During utility model works, extraneous cutting fluid soiling solution is pumped in the inner core 11 of filter vat 10, first drive unit 20 drives the first rotating shaft 21 to rotate with certain speed, simultaneously, inner core 11 can overturn along with the rotation of the first rotating shaft 21, now, part chips in cutting fluid soiling solution can be separated with cutting fluid under the obstruct of filter opening 111, chip overturns along with the upset of inner core 11, cutting fluid is entered in urceolus 12 by inner core 11, and by leakage fluid dram 121 by cutting fluid water conservancy diversion to exterior storage to recycle, air-flow in first guide duct 40 is out exerted pressure to inner core 11 sidewall afterwards via wind guide tank 41, the chip being now attached to inner core 11 sidewall under airflow function by the helical-blade 32 of below of blowing off and accumulator tank 33, because inner core 11 is in circulation rollover states, the chip be then attached in cutting fluid soiling solution on inner core 11 sidewall is constantly blown off by the first guide duct 40 air-flow out, make chip that inner core 11 sidewall adheres to less, filter opening 111 can not be lived because of the accumulated plugging of chip and affect filter effect to cutting fluid soiling solution, automatically the cleaning work to inner core 11 sidewall is completed, greatly reduce cost of labor, improve operating efficiency, simultaneously, second drive unit 31 drives the second rotating shaft 311 to rotate, the helical-blade 32 be fixed in the second rotating shaft 311 also and then rotates, the chip of dropping on helical-blade 32 is progressively moved to inner core 11 opening 112 outside portion along with the rotation of helical-blade 32, and then disengaging helical-blade 32 falls on accumulator tank 33, the chip fallen on accumulator tank 33 processes along with accumulator tank 33 track is shifted into external device (ED).

In sum, the utility model cleans device for filtering cutting fluid automatically by arranging the first guide duct 40 in filter vat 10, wind guide tank 41 air-flow is out utilized to blow off in retracting device 30 by the chip that inner core 11 sidewall adheres to, automatically the cleaning work to inner core 11 sidewall is completed, greatly reduce cost of labor, improve operating efficiency.

The above embodiment only have expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the utility model scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with claims.

Claims (7)

1. one kind is cleaned device for filtering cutting fluid automatically, it is characterized in that: comprise filter vat (10), the first drive unit (20), retracting device (30) and the first guide duct (40), described filter vat (10) is provided with inner core (11) and urceolus (12), it is inner that described inner core (11) is fixedly installed on urceolus (12), described first drive unit (20) is provided with the first rotating shaft (21), and described first rotating shaft (21) is fixed on inner core (11) one end through urceolus (12); Described inner core (11) sidewall offers some filter openings (111), described inner core (11) is provided with opening (112) away from the first rotating shaft (21) one end, described retracting device (30) is fixedly installed in inner core (11) through opening (112), described first guide duct (40) is fixedly installed on described filter vat (10) upper end, described first guide duct (40) side offers wind guide tank (41), and described wind guide tank (41) faces inner core (11) sidewall.
2. automatic cleaning device for filtering cutting fluid according to claim 1, it is characterized in that: described retracting device (30) comprises the second drive unit (31), helical-blade (32) and accumulator tank (33), described second drive unit (31) is provided with the second rotating shaft (311), described helical-blade (32) winding is on described second rotating shaft (311), described second rotating shaft (311) drives helical-blade (32) to rotate, and described accumulator tank (33) is arranged on described helical-blade (32) below.
3. automatic cleaning device for filtering cutting fluid according to claim 2, it is characterized in that: described filter vat (10) outside is fixedly connected with the second guide duct (50), described second guide duct (50) is arranged in described inner core (11) through opening (112), described second guide duct (50) below is spaced apart is provided with some air holes (51), and described air holes (51) faces helical-blade (32) and arranges.
4. automatic cleaning device for filtering cutting fluid according to claim 1 and 2, it is characterized in that: described first guide duct (40) is arranged between described inner core (11) and urceolus (12), and described wind guide tank (41) is arranged vertically downward.
5. automatic cleaning device for filtering cutting fluid according to claim 1 and 2, is characterized in that: described first guide duct (40) is arranged in inner core (11), and described wind guide tank (41) diagonal upward direction is arranged.
6. automatic cleaning device for filtering cutting fluid according to claim 1 and 2, is characterized in that: described filter vat (10) is prone configuration.
7. automatic cleaning device for filtering cutting fluid according to claim 1 and 2, is characterized in that: described urceolus (12) below is provided with leakage fluid dram (121).
CN201520844751.1U 2015-10-27 2015-10-27 Automatic wash cutting fluid filter equipment CN205127521U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520844751.1U CN205127521U (en) 2015-10-27 2015-10-27 Automatic wash cutting fluid filter equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520844751.1U CN205127521U (en) 2015-10-27 2015-10-27 Automatic wash cutting fluid filter equipment

Publications (1)

Publication Number Publication Date
CN205127521U true CN205127521U (en) 2016-04-06

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Family Applications (1)

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CN201520844751.1U CN205127521U (en) 2015-10-27 2015-10-27 Automatic wash cutting fluid filter equipment

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105855987A (en) * 2016-06-17 2016-08-17 高元琴 Cooling liquid recycling device for machining
CN105999817A (en) * 2016-07-27 2016-10-12 宁夏共享机床辅机有限公司 Centrifugal wedge-shaped net self-cleaning filtering device for grinding machine
CN106041632A (en) * 2016-08-23 2016-10-26 张驰 Device and method for recovering cooling liquid for machining
CN108654181A (en) * 2018-04-27 2018-10-16 宁夏共享机床辅机有限公司 A kind of debris formula rotary filter

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105855987A (en) * 2016-06-17 2016-08-17 高元琴 Cooling liquid recycling device for machining
CN105999817A (en) * 2016-07-27 2016-10-12 宁夏共享机床辅机有限公司 Centrifugal wedge-shaped net self-cleaning filtering device for grinding machine
CN106041632A (en) * 2016-08-23 2016-10-26 张驰 Device and method for recovering cooling liquid for machining
CN108654181A (en) * 2018-04-27 2018-10-16 宁夏共享机床辅机有限公司 A kind of debris formula rotary filter

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CP03 Change of name, title or address

Address after: Room 1217, Building 1, No. 1, Kehui Road, Songshan Lake Park, Dongguan City, Guangdong Province

Patentee after: Zhongke Xunmei (Guangdong) Intelligent Technology Co., Ltd.

Address before: 523199 Guangdong province Dongguan wangniudunzhen Wang Village Industrial Zone Wenchang Road

Patentee before: DONGGUAN CITY GIM-TECH ENVIRONMENTAL PROTECTION TECHNOLOGY CO., LTD.

CP03 Change of name, title or address