CN202506522U - Equipment for removing oil and scrap iron after tapping of nut - Google Patents

Equipment for removing oil and scrap iron after tapping of nut Download PDF

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Publication number
CN202506522U
CN202506522U CN2011205782543U CN201120578254U CN202506522U CN 202506522 U CN202506522 U CN 202506522U CN 2011205782543 U CN2011205782543 U CN 2011205782543U CN 201120578254 U CN201120578254 U CN 201120578254U CN 202506522 U CN202506522 U CN 202506522U
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CN
China
Prior art keywords
oiling
hopper
communicated
elevator
centrifugal
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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 - Lifetime
Application number
CN2011205782543U
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Chinese (zh)
Inventor
倪晓军
谢思杰
宗渝安
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NINGBO ZHONGJING ELECTRICAL TECHNOLOGY CO LTD
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NINGBO ZHONGJING ELECTRICAL TECHNOLOGY CO LTD
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Priority to CN2011205782543U priority Critical patent/CN202506522U/en
Application granted granted Critical
Publication of CN202506522U publication Critical patent/CN202506522U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model discloses equipment for removing oil and scrap iron after tapping of a nut. The equipment for removing the oil and the scrap iron after tapping of the nut comprises a first feeding device, a centrifugal oil removing cylinder, a second feeding device and a vibrating screen; a discharge port of the first feeding device is communicated with a feed port of the centrifugal oil removing cylinder; a discharge port of the centrifugal oil removing cylinder is communicated with a feed port of the second feeding device; and a discharge port of the second feeding device is communicated with a feed port of the vibrating screen. The equipment for removing the oil and the scrap iron after tapping of the nut has the advantages that the oil and the scrap iron are removed after the nut is tapped by a machine, so that the oil consumption is reduced, and the scrap iron can be gathered to be recycled.

Description

De-oiling debris removal equipment behind a kind of tap
(1) technical field
The utility model relates to de-oiling debris removal equipment behind a kind of tap.
(2) background technology
In the nut manufacturing process, the processing of internal thread adopts screw tap that the endoporus of moulding is in advance carried out cut, makes internal thread, and this operation is called tapping.Tapping procedures is brought two problems: 1, during tapping; Adopt the higher mineral oil of viscosity as cooling agent and lubricant; This causes the more oil in processing back attached to being pulled away on the nut, has not only increased oily consumption, and has increased the de-oiling cost before the postorder surface-coated.2, cut the iron filings that get off by screw tap and be the fine particle shape, stick to interior threaded surface easily, influence the cooperation of bolts and nuts during use.
(3) summary of the invention
In order to overcome nut meeting viscous mineral oil and iron filings in the existing nut manufacturing process, increase oil consumption cost and the deficiency that influences thread quality, it is a kind of to carrying out the machine of de-oiling debris removal operation behind the tap that the utility model provides.
The technical scheme that the utility model solves its technical problem is: de-oiling debris removal equipment behind a kind of tap, and de-oiling debris removal equipment comprises first pay-off, centrifugal de-oiling cylinder, second pay-off, vibratory sieve behind the said tap; The said first pay-off discharging opening is communicated to centrifugal de-oiling cylinder charging aperture, and said centrifugation de-oiling cylinder discharging opening is communicated to the second pay-off charging aperture, and the said second pay-off discharging opening is communicated to the vibratory sieve charging aperture.Described pay-off is responsible for being transported to centrifugal de-oiling cylinder to the nut material, and is transported to vibratory sieve from centrifugal de-oiling cylinder, can adopt conveyer belt, elevator, runner, the mode that pipeline etc. or a few person combine; Described centrifugal de-oiling cylinder can be common turning barrel formula centrifugal dehydration cylinder, and said vibratory sieve is responsible under the nut material shakes, sifting out iron filings.
A kind of implementation; Described first pay-off comprises first elevator that has hopper; The hopper mouth place that the described first elevator top has after hopper switching mechanism and the upset is provided with first storage bin hopper, and the described first storage bin hopper discharging opening directly is communicated to centrifugal de-oiling cylinder or is communicated to centrifugal de-oiling cylinder through feeding channel; Described second pay-off comprises second elevator that has hopper; The hopper mouth place that the described second elevator top has after hopper switching mechanism and the upset is provided with second storage bin hopper, and the described second storage bin hopper discharging opening directly is communicated to vibratory sieve or is communicated to vibratory sieve through feeding channel; Said centrifugal de-oiling cylinder discharging opening directly is communicated to the hopper of second elevator or is communicated to the hopper of second elevator through feeding channel.First, second pay-off adopts the elevator that has automatic Turnover bunker, and adopts storage bin hopper, can effectively transport nut material to centrifugal de-oiling cylinder and vibratory sieve.The natural overturn structure that described hopper switching mechanism can mechanical mechanism adopts the connecting rod chute to form also can be the switching mechanism that adopts electric driving.
Further, described first elevator, second elevator connection hopper place also respectively are provided with the power inductor.Said power inductor in order in the induction hopper whether material loading whether upset puts in place with hopper, give elevator lifting, stop, descending provides signal, to cooperate automatic control or manual control.
Further, the said first storage bin hopper discharging opening is provided with the first discharging valve, and the said second storage bin hopper discharging opening is provided with the second discharging valve; Described centrifugal de-oiling cylinder discharging opening is provided with a de-oiling cylinder discharging valve.Be provided with the discharging valve, make can be orderly in the whole machinery generation batch, be unlikely to the old and new's nut and mix.
Further, the said first discharging valve, the second discharging valve, de-oiling cylinder discharging valve all include the pneumatic structure of controllable valve door switch, and said pneumatic structure receives solenoid control.Adopt solenoid control, the controlled valve operation of pneumatic actuation is easier, and is convenient to The Automation Design.
Further, described vibratory sieve is a linear vibrating screen.Adopt linear vibrating screen, it is orderly anti-dandruff to make that nut can continue, on straight line, form batch and can new lot and old batch mix and the nut of crossing complete anti-dandruff flow process shake vibratory sieve down automatically.
De-oiling debris removal equipment can also comprise a control circuit and respective electric structure behind the said tap; To control above-mentioned first elevator, second elevator, centrifugal de-oiling cylinder, vibratory sieve and the first discharging valve, the second discharging valve, de-oiling cylinder discharging valve, to play the effect that replaces automation mechanized operation.
The utility model in use; Establish the iron filings container at the vibratory sieve underlay; Centrifugal de-oiling cylinder hydraulic fluid port be communicated with oil vessel, start complete machine in energising and will treat that the anti-dandruff nut of de-oiling carries out de-oiling through the centrifugal de-oiling cylinder that first pay-off transports, centrifugal the throwing away of oil residues imports in the oil vessel; Be transported to vibratory sieve through second pay-off after de-oiling finishes and remove iron filings, iron filings spill entering iron filings container from the bottom of vibratory sieve.
Oil and the recyclable utilization of iron filings in oil vessel and the iron filings container.
The beneficial effect of the utility model is: adopt machinery to carrying out the operation of de-oiling debris removal behind the tap, reduce oil consumption, also make iron filings put together recyclable utilization.
(4) description of drawings
Fig. 1 is the front elevational schematic of an embodiment of the utility model.
Fig. 2 is the schematic three dimensional views of an embodiment of the utility model.
(5) specific embodiment
Below in conjunction with the accompanying drawing and the specific embodiment the utility model is done further explain.
In conjunction with attaching Fig. 1 and 2, de-oiling debris removal equipment behind a kind of tap, de-oiling debris removal equipment comprises first pay-off 1, centrifugal de-oiling cylinder 2, second pay-off 3, vibratory sieve 4 behind the said tap; Said first pay-off, 1 discharging opening is communicated to centrifugal de-oiling cylinder 2 charging apertures, and said centrifugation de-oiling cylinder 2 discharging openings are communicated to second pay-off, 3 charging apertures, and said second pay-off, 3 discharging openings are communicated to vibratory sieve 4 charging apertures.
Described centrifugal de-oiling cylinder adopts common straight barrel type centrifugal cylinder, and top offers charging aperture, and the bottom offers discharging opening.
Described vibratory sieve is a linear vibrating screen, and head end is a charging aperture, and end is a discharging opening, and material jumps to discharging opening at leisure from charging aperture.Adopt linear vibrating screen, it is orderly anti-dandruff to make that nut can continue, on straight line, form batch and can new lot and old batch mix and the nut of crossing complete anti-dandruff flow process shake vibratory sieve down automatically.
Described first pay-off 1 comprises first elevator 6 that has hopper 5; The hopper mouth place that described first elevator 6 tops have after hopper switching mechanism 7 and the upset is provided with first storage bin hopper 8, and described first storage bin hopper, 8 discharging openings are communicated to centrifugal de-oiling cylinder 2 through a feeding channel;
Described second pay-off 3 comprises second elevator 9 that has hopper 5; The hopper mouth place that described second elevator 9 tops have after hopper switching mechanism 7 and the upset is provided with second storage bin hopper 10, and described second storage bin hopper, 10 discharging openings directly are registered to the charging aperture of vibratory sieve 4; Said centrifugal de-oiling cylinder discharging opening is communicated to the hopper of second elevator through a feeding channel; Described first elevator 6, second elevator 9 connect the hopper places and also are provided with power inductor 11.Said power inductor in order in the induction hopper whether material loading whether upset puts in place with hopper, to the lifting of elevator, stop, descending provides signal.
The said first storage bin hopper discharging opening is provided with the first discharging valve 12, and the said second storage bin hopper discharging opening is provided with the second discharging valve 13; Described centrifugal de-oiling cylinder discharging opening is provided with a de-oiling cylinder discharging valve 14; The said first discharging valve, the second discharging valve, de-oiling cylinder discharging valve all include the pneumatic structure 15 of controllable valve door switch, and said pneumatic structure receives solenoid control.Adopt solenoid control, the controlled valve operation of pneumatic actuation is easier, and is convenient to The Automation Design.
De-oiling debris removal equipment also can comprise a control circuit behind the said tap; The described control circuit and first elevator, second elevator, centrifugal de-oiling cylinder, vibratory sieve, the relay inductor that is electrically connected, described control circuit is electrically connected with the magnetic valve of the pneumatic structure of the first discharging valve, the second discharging valve, de-oiling cylinder discharging valve; Described control circuit also includes control button.Adopt design of automatic control, easy to operate, safe in utilization, efficient is high, can reduce artificial amount.
Present embodiment is established iron filings container 16 at vibratory sieve 4 underlays in use, centrifugal de-oiling cylinder hydraulic fluid port be communicated with oil vessel; After energising starts under automatic mode; The nut material is poured in the hopper of first elevator 6, hopper rises, behind the hopper switching mechanism at arrival top; The Turnover bunker discharging is in first storage bin hopper 8, and hopper returns original position; After treating that nut in first storage bin hopper 8 is expected an amount, the first discharging valve 12 is opened, and the nut material is connected to centrifugal de-oiling cylinder 3 through a connection channel and carries out de-oiling, and centrifugal the throwing away of oil residues imports in the oil vessel; De-oiling cylinder discharging valve 14 was opened after de-oiling finished, and the nut material is fallen in the hopper of second elevator 9 along interface channel, and hopper rises, and behind the hopper switching mechanism at arrival top, the Turnover bunker discharging is in second storage bin hopper 10, and hopper returns original position; After treating that nut in second storage bin hopper 10 is expected an amount; The second discharging valve 13 is opened; Material drops to vibratory sieve 4 charging apertures, and vibratory sieve 4 drives nut material limit vibration furfur limit and moves toward discharging opening, and iron filings spill entering iron filings container 16 from the bottom of vibratory sieve; The nut that the de-oiling debris removal finishes comes out from discharging opening, places a collection container and can collect smoothly.
The operation of carrying out the de-oiling debris removal after adopting automation to tap in the present embodiment has been saved manual work on the one hand, and oil and the recyclable utilization of iron filings in oil vessel and the iron filings container is beneficial to sustainable development on the one hand.
Present embodiment is an embodiment of the utility model, includes but are not limited to this.

Claims (6)

1. de-oiling debris removal equipment behind the tap, it is characterized in that: de-oiling debris removal equipment comprises first pay-off, centrifugal de-oiling cylinder, second pay-off, vibratory sieve behind the said tap; The said first pay-off discharging opening is communicated to centrifugal de-oiling cylinder charging aperture, and said centrifugation de-oiling cylinder discharging opening is communicated to the second pay-off charging aperture, and the said second pay-off discharging opening is communicated to the vibratory sieve charging aperture.
2. de-oiling debris removal equipment behind the tap according to claim 1; It is characterized in that: described first pay-off comprises first elevator that has hopper; The hopper mouth place that the described first elevator top has after hopper switching mechanism and the upset is provided with first storage bin hopper, and the described first storage bin hopper discharging opening directly is communicated to centrifugal de-oiling cylinder or is communicated to centrifugal de-oiling cylinder through feeding channel;
Described second pay-off comprises second elevator that has hopper; The hopper mouth place that the described second elevator top has after hopper switching mechanism and the upset is provided with second storage bin hopper, and the described second storage bin hopper discharging opening directly is communicated to vibratory sieve or is communicated to vibratory sieve through feeding channel;
Said centrifugal de-oiling cylinder discharging opening directly is communicated to the hopper of second elevator or is communicated to the hopper of second elevator through feeding channel.
3. de-oiling debris removal equipment behind the tap according to claim 2 is characterized in that: described first elevator, second elevator connect the hopper place and also respectively are provided with the power inductor.
4. de-oiling debris removal equipment behind the tap according to claim 2 is characterized in that: the said first storage bin hopper discharging opening is provided with the first discharging valve, and the said second storage bin hopper discharging opening is provided with the second discharging valve; Described centrifugal de-oiling cylinder discharging opening is provided with a de-oiling cylinder discharging valve.
5. de-oiling debris removal equipment behind the tap according to claim 4 is characterized in that: the said first discharging valve, the second discharging valve, de-oiling cylinder discharging valve all include the pneumatic structure of controllable valve door switch.
6. de-oiling debris removal equipment behind the tap according to claim 1 is characterized in that: described vibratory sieve is a linear vibrating screen.
CN2011205782543U 2011-12-31 2011-12-31 Equipment for removing oil and scrap iron after tapping of nut Expired - Lifetime CN202506522U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011205782543U CN202506522U (en) 2011-12-31 2011-12-31 Equipment for removing oil and scrap iron after tapping of nut

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011205782543U CN202506522U (en) 2011-12-31 2011-12-31 Equipment for removing oil and scrap iron after tapping of nut

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103192142A (en) * 2013-04-24 2013-07-10 广州市毅峰汽配制造有限公司 Tapping and oil-throwing system
CN104289326A (en) * 2014-09-11 2015-01-21 上海大学 Rotary tray device of filter flange deoiling machine
CN106112136A (en) * 2016-08-09 2016-11-16 大同齿轮(昆山)有限公司 High-efficiency environment friendly gear teeth processing pipeline
CN104289325B (en) * 2014-09-11 2017-03-15 上海大学 Cleaner ring flange oil remover
CN110834061A (en) * 2019-12-09 2020-02-25 平湖市高嘉机械有限公司 Multifunctional automatic oil removal online device
CN110961871A (en) * 2019-12-23 2020-04-07 温州市瑞泰紧固件有限公司 Nut machining process

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103192142A (en) * 2013-04-24 2013-07-10 广州市毅峰汽配制造有限公司 Tapping and oil-throwing system
CN103192142B (en) * 2013-04-24 2015-04-08 广州市毅峰汽配制造有限公司 Tapping and oil-throwing system
CN104289326A (en) * 2014-09-11 2015-01-21 上海大学 Rotary tray device of filter flange deoiling machine
CN104289325B (en) * 2014-09-11 2017-03-15 上海大学 Cleaner ring flange oil remover
CN104289326B (en) * 2014-09-11 2017-03-15 上海大学 The device for rotating trays of cleaner ring flange oil remover
CN106112136A (en) * 2016-08-09 2016-11-16 大同齿轮(昆山)有限公司 High-efficiency environment friendly gear teeth processing pipeline
CN106112136B (en) * 2016-08-09 2018-07-13 大同齿轮(昆山)有限公司 Gear teeth processes pipeline
CN110834061A (en) * 2019-12-09 2020-02-25 平湖市高嘉机械有限公司 Multifunctional automatic oil removal online device
CN110961871A (en) * 2019-12-23 2020-04-07 温州市瑞泰紧固件有限公司 Nut machining process

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Granted publication date: 20121031