CN114289593A - Automatic oiling subassembly of tensile oil of automobile parts processing feeder - Google Patents

Automatic oiling subassembly of tensile oil of automobile parts processing feeder Download PDF

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Publication number
CN114289593A
CN114289593A CN202210082520.6A CN202210082520A CN114289593A CN 114289593 A CN114289593 A CN 114289593A CN 202210082520 A CN202210082520 A CN 202210082520A CN 114289593 A CN114289593 A CN 114289593A
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CN
China
Prior art keywords
fixedly connected
oil
permanent magnet
cavity
face
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Pending
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CN202210082520.6A
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Chinese (zh)
Inventor
王建国
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Jiangsu Chengkai Auto Parts Co ltd
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Jiangsu Chengkai Auto Parts Co ltd
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Priority to CN202210082520.6A priority Critical patent/CN114289593A/en
Publication of CN114289593A publication Critical patent/CN114289593A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an automatic lubricating component for tensile oil of an automobile part machining feeder, which comprises a mounting plate, wherein a driving motor is fixedly mounted on the lower end face of the mounting plate, an output shaft of the driving motor is vertically and coaxially and fixedly connected with a rotating rod, a rotating disc is sleeved on the rotating rod through a one-way bearing in a rotating manner, a plurality of horizontal grooves, liquid storage grooves and control grooves are respectively and symmetrically formed in the rotating disc, the horizontal grooves, the liquid storage grooves and the control grooves are sequentially arranged from top to bottom, and a sliding block is horizontally, hermetically and slidably connected in each control groove. According to the invention, through arranging the first cavity and the second cavity, the outside air can be periodically driven to circularly flow by utilizing the magnetic force between the permanent magnet ring and the third permanent magnet, so that impurities on automobile parts are removed, the coating quality of subsequent stretching oil can be improved, and the air in the elastic air bag can be synchronously pressurized, so that the subsequent stretching oil is discharged, and the energy is further saved.

Description

Automatic oiling subassembly of tensile oil of automobile parts processing feeder
Technical Field
The invention relates to the technical field of oiling devices, in particular to an automatic stretching oil oiling component of an automobile part machining feeder.
Background
The metal drawing oil is suitable for drawing, stamping, punching and other processes of metal products such as stainless steel, alloy steel, titanium alloy and the like, plays a role in lubrication and cooling, can improve the smoothness of workpieces, and effectively prolongs the service life of a stamping die, so that the drawing oil is required to be coated before various automobile parts are machined.
Traditional auto parts drawing oil oiling station is through the shower nozzle direct to the automobile parts spraying, during drawing oil sputtering, not only can cause drawing oil's waste, still can lead to drawing oil to paint inhomogeneous phenomenon, simultaneously, for ensureing the punching press, tensile effect, other debris such as metal piece, line hair are sneak into in the prohibition when drawing oil is paintd, nevertheless under current mechanical technology, the auto parts surface often can adsorb there is more impurity to influence drawing oil to the protecting effect of automobile parts.
Disclosure of Invention
The invention aims to solve the problems that stretching oil is wasted and the stretching oil is not uniformly coated in the process of coating the traditional automobile part stretching oil in the prior art, and provides an automatic stretching oil coating assembly of an automobile part processing feeder.
In order to achieve the purpose, the invention adopts the following technical scheme:
the automatic tensile oil oiling component comprises a mounting plate, a driving motor is fixedly mounted on the lower end face of the mounting plate, an output shaft of the driving motor is vertically and coaxially fixedly connected with a rotating rod, a rotary disc is sleeved on the rotating rod through a one-way bearing in a rotating mode, a plurality of horizontal grooves, liquid storage tanks and control tanks are symmetrically arranged in the rotary disc respectively, the horizontal grooves, the liquid storage tanks and the control tanks are sequentially arranged from top to bottom, each control tank is internally and horizontally connected with a sliding block in a sealing and sliding mode, a plurality of circulation holes are vertically formed in each sliding block in a penetrating mode, a plurality of first through holes corresponding to the circulation holes are vertically formed between the top wall and the liquid storage tank in each control tank, a plurality of second through holes corresponding to the circulation holes are vertically formed between the bottom wall of each control tank and the lower end face of the rotary disc, and an oil suction block corresponding to the plurality of second through holes is fixedly connected to the lower end face of the rotary disc, every all be equipped with in the control tank with correspond slider complex control mechanism, every equal horizontal seal sliding connection has the piston board in the horizontal groove, and every piston board all separates the horizontal groove that corresponds for first cavity and second cavity, every equal level is equipped with the third spring between piston board and the corresponding horizontal groove cell wall, every equal fixedly connected with third permanent magnetism piece on the side that the piston board is relative with the bull stick, fixed cover is equipped with the permanent magnetism ring that corresponds with the third permanent magnetism piece on the bull stick, every all be equipped with in the reservoir and correspond first cavity complex high pressure mechanism.
Further, every control mechanism all includes slider lateral wall fixed connection's first permanent magnetism piece, every equal level is equipped with first spring between first permanent magnetism piece and the corresponding control groove cell wall, carousel lateral wall symmetry sliding connection has the L shaped plate, every equal fixedly connected with of L shaped plate lateral wall has the second permanent magnetism piece that corresponds with first permanent magnetism piece.
Further, a plurality of electric telescopic handle of the vertical fixedly connected with of mounting panel up end symmetry, it is a plurality of the common horizontal fixedly connected with fixed plate in electric telescopic handle upper end, a plurality of elastic components of the vertical fixedly connected with of fixed plate down end symmetry, every the output of elastic component all with the L shaped plate upper end fixed connection who corresponds.
Further, every the elastic component all includes vertical fixed connection's a vertical section of thick bamboo on the fixed plate lower extreme, every equal vertical sliding connection has the stopper in the vertical section of thick bamboo, every the equal vertical fixedly connected with montant of stopper lower extreme, every the montant lower extreme all extend to outside the vertical section of thick bamboo and with the L shaped plate upper end fixed connection who corresponds, every equal vertical second spring that is equipped with between terminal surface and the corresponding vertical section of thick bamboo interior diapire under the stopper.
Further, every high pressure mechanism all includes the elasticity gasbag that sets up in the reservoir, every all communicate between elasticity gasbag and the corresponding first cavity and be equipped with first blast pipe, every all communicate between first cavity and the external world and be equipped with first intake pipe, and install first check valve, second check valve in every first intake pipe, the first blast pipe respectively.
Furthermore, each elastic air bag is communicated with the outside to be provided with a pressure relief pipe, and each liquid storage tank is communicated with an outside oil supply mechanism to be provided with an oil delivery pipe.
Further, every it is equipped with second intake pipe and second blast pipe to equally divide respectively to communicate between second cavity and the external world, and equally divide in every second intake pipe, the second blast pipe and do not install third check valve, fourth check valve, every the equal mouth of pipe of one end that corresponds the second cavity was kept away from to the second blast pipe all sets up terminal surface department under the carousel.
The invention has the advantages that:
1: according to the invention, through arranging the first cavity and the second cavity, the outside air can be periodically driven to circularly flow by utilizing the magnetic force between the permanent magnet ring and the third permanent magnet, so that impurities on automobile parts are removed, the coating quality of subsequent stretching oil can be improved, and the air in the elastic air bag can be synchronously pressurized, so that the subsequent stretching oil is discharged, and the energy is further saved.
2: according to the invention, by arranging the sliding block and the oil absorption block, the second through hole serving as the oil discharge hole can be quickly plugged and opened, quantitative oil supply can be realized, and the oil absorption block can adsorb tensile oil, so that the waste of the tensile oil is avoided.
3: according to the automobile spare and accessory part cleaning and oiling mechanism, the one-way bearing is arranged, so that the functions of the automobile spare and accessory part cleaning and oiling mechanism can be integrally installed, the functions of the automobile spare and accessory part cleaning and oiling mechanism are not interfered with each other, the structure is compact, the occupied space is small, the operation is simple, and the using effect is good.
Drawings
FIG. 1 is a schematic view of an appearance structure of an automatic lubricating component for tensile oil of an automobile parts processing feeder according to the present invention;
FIG. 2 is a schematic view of an internal structure of a turntable in an automatic lubricating module for tensile oil of the automobile parts processing feeder according to the present invention;
FIG. 3 is an enlarged view taken at A in FIG. 2;
FIG. 4 is an enlarged view at B in FIG. 2;
FIG. 5 is a schematic view of a bottom view of a turntable in an automatic lubricating module for tensile oil of the auto parts machining feeder according to the present invention;
fig. 6 is a schematic structural diagram of an elastic member in an automatic lubricating component for tensile oil of the automobile parts machining feeder according to the present invention.
In the figure: the device comprises a mounting plate 1, an electric telescopic rod 2, a fixing plate 3, a driving motor 4, a one-way bearing 5, a rotary table 6, a rotary rod 7, a horizontal groove 8, a liquid storage groove 9, a control groove 10, a sliding block 11, a first through hole 12, a flow hole 13, a second through hole 14, an oil suction block 15, a first permanent magnet 16, a first spring 17, a vertical cylinder 18, a limiting block 19, a vertical rod 20, a second spring 21, a L-shaped plate 22, a second permanent magnet 23, a piston plate 24, a third permanent magnet 25, a third spring 26, an elastic air bag 27, a first air inlet pipe 28, a first air outlet pipe 29, a second air inlet pipe 30, a second air outlet pipe 31, an oil delivery pipe 32 and a permanent magnet ring 33.
Detailed Description
Referring to fig. 1-6, an automatic drawing oil oiling component of an automobile part processing feeder comprises a mounting plate 1, a driving motor 4 is fixedly mounted on the lower end face of the mounting plate 1, an output shaft of the driving motor 4 is vertically and coaxially fixedly connected with a rotating rod 7, the rotating rod 7 is rotatably sleeved with a rotating disc 6 through a one-way bearing 5, a plurality of horizontal grooves 8, liquid storage grooves 9 and control grooves 10 are respectively and symmetrically arranged in the rotating disc 6, the horizontal grooves 8, the liquid storage grooves 9 and the control grooves 10 are sequentially arranged from top to bottom, a sliding block 11 is horizontally and hermetically connected in each control groove 10 in a sliding manner, a plurality of circulation holes 13 are vertically penetrated through each sliding block 11, a plurality of first through holes 12 corresponding to the circulation holes 13 are vertically arranged between the top wall and the liquid storage groove 9 in each control groove 10, a plurality of second through holes 14 corresponding to the circulation holes 13 are vertically arranged between the bottom wall in each control groove 10 and the lower end face of the rotating disc 6, the lower end face of the rotary table 6 is fixedly connected with an oil suction block 15 corresponding to the second through holes 14, a control mechanism matched with the corresponding sliding block 11 is arranged in each control groove 10, a piston plate 24 is horizontally, hermetically and slidably connected in each horizontal groove 8, each piston plate 24 divides the corresponding horizontal groove 8 into a first cavity and a second cavity, a third spring 26 is horizontally arranged between each piston plate 24 and the wall of the corresponding horizontal groove 8, a third permanent magnet 25 is fixedly connected on the side face of each piston plate 24 opposite to the rotary rod 7, a permanent magnet ring 33 corresponding to the third permanent magnet 25 is fixedly sleeved on the rotary rod 7, two magnetic poles of the third permanent magnet 25 and the permanent magnet ring 33 are distributed along the horizontal direction, and a high-pressure mechanism matched with the corresponding first cavity is arranged in each liquid storage tank 9.
Each control mechanism comprises first permanent magnets 16 fixedly connected with the side walls of the sliding blocks 11, a first spring 17 is horizontally arranged between each first permanent magnet 16 and the corresponding control groove 10, the side walls of the rotary table 6 are symmetrically and slidably connected with L-shaped plates 22, the side walls of each L-shaped plate 22 are fixedly connected with second permanent magnets 23 corresponding to the first permanent magnets 16, and the opposite side surfaces of the first permanent magnets 16 and the second permanent magnets 23 are opposite in homopolar mode.
The vertical fixedly connected with a plurality of electric telescopic handle 2 of mounting panel 1 up end symmetry, the common horizontal fixedly connected with fixed plate 3 in 2 upper ends of a plurality of electric telescopic handle, a plurality of elastic components of the vertical fixedly connected with of end plane symmetry under the fixed plate 3, the output of every elastic component all with the L shaped plate 22 upper end fixed connection that corresponds.
Every elastic component all includes vertical fixed connection's vertical section of thick bamboo 18 on the fixed plate 3 lower terminal surface, equal vertical sliding connection has stopper 19 in every vertical section of thick bamboo 18, the equal vertical fixedly connected with montant 20 of every stopper 19 lower extreme, every montant 20 lower extreme all extend to outside the vertical section of thick bamboo 18 and with the L shaped plate 22 upper end fixed connection that corresponds, every stopper 19 lower terminal surface and correspond all vertically between the bottom wall in the vertical section of thick bamboo 18 and be equipped with second spring 21.
Each high-pressure mechanism comprises an elastic air bag 27 arranged in the liquid storage tank 9, a first exhaust pipe 29 is communicated between each elastic air bag 27 and the corresponding first cavity, a first air inlet pipe 28 is communicated between each first cavity and the outside, a first one-way valve and a second one-way valve are respectively arranged in each first air inlet pipe 28 and each first exhaust pipe 29, the first one-way valve only allows outside air or liquid to enter the first cavity through the first air inlet pipe 28, the second one-way valve only allows the air or liquid in the first cavity to enter the corresponding elastic air bag 27 through the first exhaust pipe 29, a pressure relief pipe is communicated between each elastic air bag 27 and the outside, when the air pressure in the corresponding elastic air bag 27 is overlarge, the pressure relief pipe is opened, redundant air in the elastic air bag 27 can be freely discharged, an oil delivery pipe 32 is communicated between each liquid storage tank 9 and the outside oil supply mechanism, every defeated oil pipe 32 is interior all to be equipped with the fifth check valve, and the fifth check valve only allows the inside tensile oil of external fuel feeding mechanism to get into reservoir 9 through defeated oil pipe 32 to avoid the inside tensile oil backward flow of reservoir 9.
Equally divide between every second cavity and the external world and do not communicate respectively and be equipped with second intake pipe 30 and second blast pipe 31, and every second intake pipe 30, equally divide in the second blast pipe 31 and do not install the third check valve, the fourth check valve, the third check valve only allows external gas or liquid to get into the second cavity through second intake pipe 30, the fourth check valve only allows the inside gas of second cavity or liquid to arrange to the external world through second blast pipe 31, every second blast pipe 31 is kept away from the equal mouth of pipe of one end that corresponds the second cavity and all sets up terminal surface department under carousel 6.
In the invention, initially, as shown in fig. 2 and 3, each sliding block 11 is abutted against the groove wall of the corresponding control groove 10 under the action of the magnetic repulsion force between the corresponding first permanent magnet 16 and the corresponding second permanent magnet 23, each first spring 17 is in a stretched state, the circulation hole 13 on each sliding block 11 is dislocated with the corresponding first through hole 12 and the corresponding second through hole 14, and each L-shaped plate 22 is always abutted against the lower end face of the rotating disc 6 under the action of the elastic force of the corresponding second spring 21;
when the automobile oil sucking device works, the electric telescopic rods 2 are opened, the electric telescopic rods 2 drive the mounting plate 1, the driving motor 4 and the rotary table 6 to move downwards to a certain height, the oil sucking block 15 is not contacted with automobile accessories, meanwhile, the rotary table 6 compresses the second spring 21 through the vertical rod 20 and the limiting block 19, then the driving motor 4 is started in the forward direction, the driving motor 4 drives the rotary rod 7 to rotate in the forward direction, the rotary table 6 keeps still under the action of the one-way bearing 5, the rotary rod 7 drives the permanent magnet rings 33 to rotate synchronously, magnetic repulsion force and magnetic attraction force alternately occur between the third permanent magnets 25 and the permanent magnet rings 33, the third permanent magnets 25 drive the corresponding piston plates 24 to reciprocate in the horizontal direction in the horizontal groove 8, high pressure and negative pressure are periodically generated in the first cavity and the second cavity, then external air is periodically discharged into the corresponding elastic air bags 27 through the first cavity, so that the air in the elastic air bags 27 can be pressurized, meanwhile, the outside air is continuously blown to the lower part of the rotating disc 6 through the second chamber, so that the automobile parts below the rotating disc 6 can be blown, impurities on the surfaces of the automobile parts are removed, the coating quality of subsequent stretching oil is improved, after the automobile parts are cleaned, the electric telescopic rod 2 is opened, the oil suction block 15 on the lower end face of the rotating disc 6 is abutted against the automobile parts, the driving motor 4 is reversely opened, the driving motor 4 drives the rotating bar 7 to reversely rotate, the rotating bar 7 drives the rotating disc 6 to synchronously rotate under the action of the one-way bearing 5, the rotating disc 6 slides between the L-shaped plate 22, the first permanent magnet 16 and the second permanent magnet 23 are periodically close to and far away, when the first permanent magnet 16 and the second permanent magnet 23 are far away, the sliding block 11 moves towards the direction corresponding to the first spring 17 under the elastic force of the first spring 17, the circulation hole 13 on the sliding block 11 is connected with the first through hole 12, The second through hole 14 is just to conducting, under the pressure effect of elasticity gasbag 27 in reservoir 9, the tensile oil in the reservoir 9 discharges fast to on the oil absorption piece 15, and along with the rotation of carousel 6, thereby can carry out the fat liquoring to automobile spare and accessory part, when first permanent-magnet piece 16 is close to second permanent-magnet piece 23, under the effect of magnetic repulsion between first permanent-magnet piece 16 and second permanent-magnet piece 23, slider 11 resets, so reciprocal, thereby accomplish automobile spare and accessory part's fat liquoring work, and during the actual use, can shelter from or the shutoff to a plurality of second through holes 14 as required, thereby change and scribble the oil volume and scribble the oil area, the suitability is strong.

Claims (7)

1. Automatic oiling subassembly of tensile oil of automobile parts processing feeder, including mounting panel (1), its characterized in that, terminal surface fixed mounting has driving motor (4) under mounting panel (1), the vertical coaxial fixedly connected with bull stick (7) of output shaft of driving motor (4), it is equipped with carousel (6) to rotate the cover through one-way bearing (5) on bull stick (7), a plurality of horizontal groove (8), reservoir (9) and control tank (10) have been seted up to symmetry respectively in carousel (6), and horizontal groove (8), reservoir (9) and control tank (10) arrange in proper order from top to bottom, every equal horizontal sealed sliding connection has slider (11) in control tank (10), every all vertically run through on slider (11) and seted up a plurality of circulation hole (13), every equal vertical set up a plurality of first through-hole (12) that correspond with circulation hole (13) between roof and reservoir (9) in control tank (10), a plurality of second through holes (14) corresponding to the circulation holes (13) are vertically formed between the bottom wall in each control groove (10) and the lower end face of the rotary table (6), oil suction blocks (15) corresponding to the second through holes (14) are fixedly connected to the lower end face of the rotary table (6), a control mechanism matched with the corresponding sliding block (11) is arranged in each control groove (10), a piston plate (24) is horizontally and hermetically connected in each horizontal groove (8) in a sliding manner, each piston plate (24) divides the corresponding horizontal groove (8) into a first cavity and a second cavity, a third spring (26) is horizontally arranged between each piston plate (24) and the corresponding horizontal groove (8) wall, a third permanent magnet (25) is fixedly connected to the side face, opposite to the rotary rod (7), of each piston plate (24), and a permanent magnet ring (33) corresponding to the third permanent magnet (25) are fixedly sleeved on the rotary rod (7), and a high-pressure mechanism matched with the corresponding first chamber is arranged in each liquid storage tank (9).
2. The automatic tensile oil coating assembly of the automobile parts machining feeder according to claim 1, wherein each control mechanism comprises a first permanent magnet (16) fixedly connected with the side wall of the sliding block (11), a first spring (17) is horizontally arranged between each first permanent magnet (16) and the corresponding control groove (10), the side wall of the rotating disc (6) is symmetrically and slidably connected with an L-shaped plate (22), and the side wall of each L-shaped plate (22) is fixedly connected with a second permanent magnet (23) corresponding to the first permanent magnet (16).
3. The automatic tensile oil oiling assembly of the automobile part machining feeder according to claim 2 is characterized in that a plurality of electric telescopic rods (2) are symmetrically and vertically fixedly connected to the upper end face of the mounting plate (1), a fixing plate (3) is horizontally and fixedly connected to the upper ends of the plurality of electric telescopic rods (2) together, a plurality of elastic pieces are symmetrically and vertically fixedly connected to the lower end face of the fixing plate (3), and the output end of each elastic piece is fixedly connected to the upper end of the corresponding L-shaped plate (22).
4. The automatic oiling component for tensile oil of the automobile part machining feeder according to claim 3, wherein each elastic component comprises a vertical cylinder (18) which is fixedly connected vertically on the lower end face of the fixing plate (3), each vertical cylinder (18) is internally and vertically connected with a limiting block (19) in a sliding manner, each limiting block (19) is fixedly connected with a vertical rod (20) vertically at the lower end of the limiting block (19), each vertical rod (20) lower end extends out of the vertical cylinder (18) and is fixedly connected with the upper end of a corresponding L-shaped plate (22), and a second spring (21) is vertically arranged between the lower end face of the limiting block (19) and the inner bottom wall of the corresponding vertical cylinder (18).
5. The automatic tensile oil oiling assembly of the automobile part machining feeder according to claim 1 is characterized in that each high-pressure mechanism comprises an elastic air bag (27) arranged in a liquid storage tank (9), a first exhaust pipe (29) is communicated between each elastic air bag (27) and the corresponding first cavity, a first air inlet pipe (28) is communicated between each first cavity and the outside, and a first check valve and a second check valve are respectively installed in each first air inlet pipe (28) and each first exhaust pipe (29).
6. The automatic tensile oil coating assembly of the automobile parts machining feeder according to claim 5, wherein a pressure relief pipe is communicated between each elastic air bag (27) and the outside, and an oil delivery pipe (32) is communicated between each liquid storage tank (9) and an outside oil supply mechanism.
7. The automatic tensile oil oiling assembly of the automobile part machining feeder according to claim 1 is characterized in that a second air inlet pipe (30) and a second air outlet pipe (31) are respectively communicated between each second cavity and the outside, a third check valve and a fourth check valve are respectively installed in each second air inlet pipe (30) and each second air outlet pipe (31), and an equal pipe orifice at one end, far away from the corresponding second cavity, of each second air outlet pipe (31) is arranged on the lower end face of the rotary disc (6).
CN202210082520.6A 2022-01-24 2022-01-24 Automatic oiling subassembly of tensile oil of automobile parts processing feeder Pending CN114289593A (en)

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Application Number Priority Date Filing Date Title
CN202210082520.6A CN114289593A (en) 2022-01-24 2022-01-24 Automatic oiling subassembly of tensile oil of automobile parts processing feeder

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Application Number Priority Date Filing Date Title
CN202210082520.6A CN114289593A (en) 2022-01-24 2022-01-24 Automatic oiling subassembly of tensile oil of automobile parts processing feeder

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116511311A (en) * 2023-04-11 2023-08-01 苏州伍联户外用品有限公司 Blade production punching machine capable of automatically blanking
CN116818169A (en) * 2023-08-29 2023-09-29 武汉江腾铁路工程有限责任公司 Railway special line track stress measuring equipment

Citations (5)

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Publication number Priority date Publication date Assignee Title
US20110056877A1 (en) * 2008-04-29 2011-03-10 Puradyn Filter Technologies, Inc. Lubricant purification system
CN106424416A (en) * 2016-10-28 2017-02-22 山西斯普瑞机械制造股份有限公司 Automatic separating and oil applying method and equipment for material sheets and method for manufacturing water cup inner container
CN109653987A (en) * 2018-12-07 2019-04-19 天津探峰科技有限公司 A kind of Linearkompressor with fueller
CN109806992A (en) * 2019-02-01 2019-05-28 苏章镇 One kind become a useful person production line and stretch liquid spray equipment
CN111686994A (en) * 2020-06-30 2020-09-22 丽水中影机械科技有限公司 Surface smearing device for metal stamping

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110056877A1 (en) * 2008-04-29 2011-03-10 Puradyn Filter Technologies, Inc. Lubricant purification system
CN106424416A (en) * 2016-10-28 2017-02-22 山西斯普瑞机械制造股份有限公司 Automatic separating and oil applying method and equipment for material sheets and method for manufacturing water cup inner container
CN109653987A (en) * 2018-12-07 2019-04-19 天津探峰科技有限公司 A kind of Linearkompressor with fueller
CN109806992A (en) * 2019-02-01 2019-05-28 苏章镇 One kind become a useful person production line and stretch liquid spray equipment
CN111686994A (en) * 2020-06-30 2020-09-22 丽水中影机械科技有限公司 Surface smearing device for metal stamping

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116511311A (en) * 2023-04-11 2023-08-01 苏州伍联户外用品有限公司 Blade production punching machine capable of automatically blanking
CN116511311B (en) * 2023-04-11 2024-01-30 苏州伍联户外用品有限公司 Blade production punching machine capable of automatically blanking
CN116818169A (en) * 2023-08-29 2023-09-29 武汉江腾铁路工程有限责任公司 Railway special line track stress measuring equipment
CN116818169B (en) * 2023-08-29 2024-01-09 武汉江腾铁路工程有限责任公司 Railway special line track stress measuring equipment

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Application publication date: 20220408