CN202410916U - Bearing static-state antirust oiling machine - Google Patents
Bearing static-state antirust oiling machine Download PDFInfo
- Publication number
- CN202410916U CN202410916U CN2012200184459U CN201220018445U CN202410916U CN 202410916 U CN202410916 U CN 202410916U CN 2012200184459 U CN2012200184459 U CN 2012200184459U CN 201220018445 U CN201220018445 U CN 201220018445U CN 202410916 U CN202410916 U CN 202410916U
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- bearing
- static
- oil
- antirust
- oil pocket
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Abstract
A bearing static-state antirust oiling machine comprises a box body internally provided with an oil chamber. The bearing static-state antirust oiling machine further comprises a bearing guide rail internally provided with a bearing guide chamber. Two ends of the bearing guide chamber are transversely arranged above the oil chamber, the middle portion of the bearing guide chamber droops to form a drooping section to penetrate through the oil chamber, the right end of the bearing guide chamber is a feeding section, the left end of the bearing guide chamber is a discharge section, and the feeding section slightly deflects downwards from right to left. The bearing static-state antirust oiling machine further comprises an auxiliary guide rail, and a pulling and pushing body driven by a reciprocating motion driving unit is arranged in the auxiliary guide rail. The bearing static-state antirust oiling machine further comprises a control circuit which is electrically connected with the reciprocating motion driving unit. The bearing static-state antirust oiling machine has the advantages that a bearing can be oiled in a static state, a problem that oil is easy to oxidize and deteriorate in a regular antirust oiling mode is solved, automatic production can be achieved, and the bearing static-state antirust oiling machine can be conveniently connected with assembly lines.
Description
(1) technical field
The utility model relates to a kind of bearing equipment that oils.
(2) background technology
In the Production of bearing industry; Automaticity has greatly improved in recent years; Each Production of bearing unit all drops into the transformation and the renewal of equipment automatization energetically; But it is antirust that the automation equipment that does not also have a kind of maturation at present is used for the inside of bearing, can only use the machinery spray, soak or manual mode of soaking.Residual cleaning agent and waste heat that machinery spray mode is brought into because of the bearing preceding working procedure, and the additional working method that sprays, soaks of mechanical cycles can make the concentration of antirust oil and non-oxidizability reduce, and make antirust oil shift to an earlier date oxidation deterioration; And manual immersion is huge because of workload, can't implement batch jobs.
(3) summary of the invention
Dynamically smear under the spray pattern antirust oil deficiency of oxidation deterioration in advance easily in order to overcome existing bearing machinery antirust oil, the utility model provides a kind of bearing static antirust oiler.
The technical scheme that the utility model solves its technical problem is: the static antirust oiler of a kind of bearing, establish the casing of oil pocket in including, and said oil pocket upper end has hydraulic fluid port; Establish the bearing guide of bearing guide cavity in the static antirust oiler of said bearing also includes, have the extraneous oil impregnate passage that leads to the bearing guide cavity on the said bearing guide; The two ends of said bearing guide cavity horizontal above oil pocket and the sagging formation drooping section in said bearing guide cavity middle part pass said oil pocket; The right-hand member of said bearing guide cavity is a feed zone; The left end of said bearing guide cavity is a discharging section, and said feed zone is turned left from the right side and omited downwards; Said drooping section and the feed zone intersection drooping section of postponing up also is communicated with auxiliary guide rail; Be provided with in the described auxiliary guide rail and moved back and forth dialling of drive unit drives and push away body; Described group push away that body will probe between a segment distance in the drooping section and blocking-up feed zone and drooping section in the time of the most following, being communicated with between feed zone and auxiliary guide rail, said group pushes away body retraction and block auxiliary guide rail during point on; The static antirust oiler of said bearing also comprises a control circuit, and described control circuit is electrically connected with the reciprocating motion driver element.
Hydraulic fluid port on the said casing can be the big opening that the no cover on the no top box forms, and also can be other tubular inlets or other shapes, and can be along son with cover.Described bearing guide cavity becomes the strip of a bending, and shape of cross section is more bigger than the bearing radially projecting of standing; Said bearing guide can be that two panels clip the filling plate that has dug the bearing guide cavity and combine; Also can be the metal frame that several bonding jumpers, sheet metal bending are welded, described oil impregnate passage be finedraw or the space on the metal frame between the filling plate or be arranged on the breach on the guide rail.Described drooping section can become semicircle, V-arrangement, also can become U type or W type.Described reciprocating motion driver element can be piston-cylinder unit or hydraulic cylinder unit or linear servo-actuator unit; Also can be that slider-crank mechanism dress of conventional driven by motor changes and next reciprocating motion driver element, said control circuit be electrically connected with control with reciprocating motion driver element control end and moves back and forth the driver element operation.
A kind of selection, described reciprocating motion driver element are the piston-cylinder units of band piston, the piston of said piston-cylinder unit with group push away body and be connected.
Further, be provided with liquid level sensor, following liquid level sensor on the described oil pocket sidewall one on the other, said upward liquid level sensor, following liquid level sensor are electrically connected with control circuit; Also be provided with an oil ga(u)ge that can observe on the described casing upper oil cavitie sidewall.Said go up liquid level sensor, down liquid level sensor, oil ga(u)ge between the high point of the corresponding drooping section of fuel tank, low spot in that section altitude range in order to control what of antirust oil mass, oil ga(u)ge is in order to observe the antirust oil oil mass.
Further, said discharging section place is provided with a sensor, and said sensor is electrically connected with control circuit.Said sensor can be that light sensor also can be a magnetic induction sensor, in order to survey whether the bearing material is arranged.
Further, the oil pocket downside also is provided with sedimentation basin in the said casing, and described oil pocket is communicated to sedimentation basin through gate gurgle valve, and described sedimentation basin bottom is provided with oil exit pipe, and said sedimentation basin also is communicated with oil return pipe.Described gate gurgle valve is used for being discharged into the antirust oil of the long-term use of oil pocket in the sedimentation basin, and sedimentation basin is used for precipitating antirust oil, and said oil return pipe is used for the recovery carrying out of the antirust oil in sedimentation basin filtering.Said oil exit pipe is used for discharging and is deposited in undermost heavy antirust oil.
Can be connected on the streamline before and after the described bearing guide, said control circuit can be incorporated on the streamline, to carry out further automation.
The utility model injects antirust oil in use in oil pocket, the start-up control circuit; The bearing material that is standing that the streamline that front end is ined succession ships is turned left along feed zone and is moved, and after the bearing material gets into drooping section, moves back and forth drive unit drives and dials and push away body one and stretch one and contract the impeller-hub bearing material toward sinciput; Dialling when pushing away body and extending forward, dialling and push away the bearing material that body heads on the drooping section of below and in a row move forward, dialling when pushing away the body withdrawal along the bearing guide cavity; Because the relation of antirust oil viscosity; By slow by the bearing return of entering, make the bearing of feed zone to fall into to fill out behind the drooping section and dial the space that stays when pushing away the body withdrawal, move back and forth drive unit drives and dial and push away multiple this step of body weight; What thereby the bearing material can be continuous moves to drooping section from feed zone; Soak antirust oil, move to discharging section, get into streamline then and get into next flow process from drooping section.
The beneficial effect of the utility model is: the utility model can make bearing static state oil, and exempts conventional problem of smearing the easy oxidation deterioration of antirust oil mode oil, and automated production, can conveniently be connected into streamline.
(4) description of drawings
Fig. 1 is the front view of an embodiment of the utility model.
Fig. 2 is the vertical view of the utility model embodiment.
(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, the static antirust oiler of a kind of bearing comprises the casing 2 of establishing oil pocket 1 in one, and said oil pocket open upper end forms a hydraulic fluid port 3, and said hydraulic fluid port is provided with lid; Establish the bearing guide 5 of bearing guide cavity 4 in the static antirust oiler of said bearing also includes, have the extraneous oil impregnate passage that leads to the bearing guide cavity on the said bearing guide 5; The two ends of said bearing guide cavity 4 horizontal above oil pocket 1 and the sagging formation in said bearing guide cavity 4 middle parts U type drooping section 6 pass said oil pocket 1; The right-hand member of said bearing guide cavity is a feed zone 7; The left end of said bearing guide cavity is a discharging section 8, and said feed zone 7 is turned left from the right side and omited downwards; Said drooping section 6 and the feed zone 7 intersections drooping section 6 of postponing up also is communicated with auxiliary guide rail 9; Be provided with in the described auxiliary guide rail 9 and moved back and forth dialling that driver element 10 drives and push away body 11; Described group pushes away that body 11 will probe in the drooping section 6 segment distance in the time of the most following and blocking-up feed zone 7 is communicated with 9 of auxiliary guide rails with 6 of drooping sections, feed zone 7, and said group of retraction when pushing away body 11 and on, putting also blocked auxiliary guide rail 9; Described reciprocating motion driver element 10 is piston-cylinder units of band piston, the piston of said piston-cylinder unit with group push away body and be connected; Said discharging section place is provided with a sensor 12, and said sensor can be that light sensor also can be a magnetic induction sensor; 4 one-tenth one crooked strip and shape of cross sections of described bearing guide cavity are more bigger than the bearing radially projecting of standing; Said bearing guide 5 is that two panels clip the filling plate that has dug bearing guide cavity 4 and combine, and the slit of said oil impregnate passage between can clamping plate forms naturally, also can further on clamping plate, dig breach.
Described oil pocket side is provided with liquid level sensor 13, following liquid level sensor 14 one on the other; Described casing upper oil cavitie side also is provided with an oil ga(u)ge that can observe 15.Described oil ga(u)ge 15 makes operating personnel can see the oil mass of antirust oil in the oil pocket.
The static antirust oiler of said bearing also comprises a control circuit, and described control circuit is the control end of piston-cylinder unit with reciprocating motion driver element 10 respectively, upward liquid level sensor 13, following liquid level sensor 14, sensor 12 are electrically connected.Said upward liquid level sensor 13, following liquid level sensor 14 are used to control the oil mass of antirust oil, and said sensor 12 is that feed zone does not have the bearing material in order to detection, in case oil mass is unusual or feed zone does not have material, then moves back and forth driver element 10 and quit work.When in the oil pocket during antirust oil low on fuel, antirust oil injected in the oil pocket from hydraulic fluid port get final product.
The oil pocket downside is provided with sedimentation basin 16 in the said casing, and described oil pocket 1 is communicated to sedimentation basin 16 through gate gurgle valve 17, and described sedimentation basin 16 bottoms are provided with oil exit pipe 18, and said sedimentation basin 16 also is communicated with oil return pipe 19.Described gate gurgle valve 17 is used for being discharged into the antirust oil of the long-term use of oil pocket 1 in the sedimentation basin 16, and sedimentation basin is used for precipitating antirust oil, and said oil return pipe 19 is used for the antirust oil in the sedimentation basin 16 are reclaimed and filters.Said oil exit pipe 18 is used for discharging and is deposited in undermost heavy antirust oil.
Can be made on the streamline by front and back connection drier before and after the described bearing guide, thereby further realize automation, said control circuit can be incorporated in the whole streamline control circuit.
Present embodiment injects antirust oil in use in oil pocket 1, liquid level sensor 13 on the said antirust oil oil mass, down between the liquid level sensor 14; The bearing material that is standing that the streamline that start-up control circuit, feed zone are ined succession ships is turned left along feed zone 7 and is moved, after the bearing material gets into drooping section 6; Move back and forth driver element 10 and drive to dial and push away body 11 1 and stretch one and contract the impeller-hub bearing material, dialling when pushing away body 11 and extending forward, dial and push away the bearing material that body 11 heads on the drooping section 6 of below and in a row move forward along bearing guide cavity 4 toward sinciput; Dialling when pushing away body 11 withdrawals, because the relation of antirust oil viscosity, by slow by the bearing return of entering; Make the bearing of feed zone 7 to fall into to fill out behind the drooping section 6 and dial the space that stays when pushing away the body withdrawal; Move back and forth drive unit drives and dial and push away multiple this step of body weight, thereby the bearing material can be continuous moves to drooping section from feed zone, soaks antirust oil; Move to discharging section from drooping section, get into streamline then and get into next flow process.
Present embodiment oils for bearing static state, exempts the conventional antirust oil mode oil of smearing and is prone to the problem of oxidation deterioration, and can adapt to automated production, conveniently is connected into streamline.
Claims (5)
1. the static antirust oiler of bearing is characterized in that: establish the casing of oil pocket in including, have hydraulic fluid port on the said oil pocket; Establish the bearing guide of bearing guide cavity in the static antirust oiler of said bearing also includes, have the extraneous oil impregnate passage that leads to the bearing guide cavity on the said bearing guide; The two ends of said bearing guide cavity horizontal above oil pocket and the sagging formation drooping section in said bearing guide cavity middle part pass said oil pocket; The right-hand member of said bearing guide cavity is a feed zone; The left end of said bearing guide cavity is a discharging section, and said feed zone is turned left from the right side and omited downwards; Said drooping section and the feed zone intersection drooping section of postponing up also is communicated with auxiliary guide rail; Be provided with in the described auxiliary guide rail and moved back and forth dialling of drive unit drives and push away body; Described group push away that body will probe between a segment distance in the drooping section and blocking-up feed zone and drooping section in the time of the most following, being communicated with between feed zone and auxiliary guide rail, said group pushes away body retraction and block auxiliary guide rail during point on; The static antirust oiler of said bearing also comprises a control circuit, and described control circuit is electrically connected with the reciprocating motion driver element.
2. the static antirust oiler of bearing according to claim 1 is characterized in that: described reciprocating motion driver element is the piston-cylinder unit of band piston, the piston of said piston-cylinder unit with group push away body and be connected.
3. the static antirust oiler of bearing according to claim 1 is characterized in that: be provided with liquid level sensor, following liquid level sensor on the described oil pocket sidewall one on the other, said upward liquid level sensor, following liquid level sensor are electrically connected with control circuit; Embed the oil pocket sidewall on the described casing and also be provided with the oil ga(u)ge that can observe.
4. the static antirust oiler of bearing according to claim 1, it is characterized in that: said discharging section place is provided with sensor, and said sensor is electrically connected with control circuit.
5. according to the static antirust oiler of any described bearing of claim 1 to 4; It is characterized in that: the oil pocket downside also is provided with sedimentation basin in the said casing; Described oil pocket is communicated to sedimentation basin through gate gurgle valve; Described sedimentation basin bottom is provided with oil exit pipe, and said sedimentation basin also is communicated with oil return pipe.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2012200184459U CN202410916U (en) | 2012-01-16 | 2012-01-16 | Bearing static-state antirust oiling machine |
Applications Claiming Priority (1)
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CN2012200184459U CN202410916U (en) | 2012-01-16 | 2012-01-16 | Bearing static-state antirust oiling machine |
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CN2012200184459U Expired - Fee Related CN202410916U (en) | 2012-01-16 | 2012-01-16 | Bearing static-state antirust oiling machine |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104525436A (en) * | 2014-12-16 | 2015-04-22 | 黄石哈特贝尔精密锻造有限公司 | Soaking type automatic anti-rusting machine for bearing ring |
CN105396750A (en) * | 2015-12-16 | 2016-03-16 | 芜湖普威技研有限公司 | Oil immersion device for automobile main bearing |
CN112974132A (en) * | 2021-02-23 | 2021-06-18 | 邵智远 | Machining device that oils |
CN115254523A (en) * | 2022-09-27 | 2022-11-01 | 常州工利精机科技有限公司 | Motor iron core rust prevention treatment device and treatment process |
-
2012
- 2012-01-16 CN CN2012200184459U patent/CN202410916U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104525436A (en) * | 2014-12-16 | 2015-04-22 | 黄石哈特贝尔精密锻造有限公司 | Soaking type automatic anti-rusting machine for bearing ring |
CN104525436B (en) * | 2014-12-16 | 2017-02-22 | 黄石哈特贝尔精密锻造有限公司 | Soaking type automatic anti-rusting machine for bearing ring |
CN105396750A (en) * | 2015-12-16 | 2016-03-16 | 芜湖普威技研有限公司 | Oil immersion device for automobile main bearing |
CN112974132A (en) * | 2021-02-23 | 2021-06-18 | 邵智远 | Machining device that oils |
CN115254523A (en) * | 2022-09-27 | 2022-11-01 | 常州工利精机科技有限公司 | Motor iron core rust prevention treatment device and treatment process |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20120905 Termination date: 20150116 |
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EXPY | Termination of patent right or utility model |