CN113813693A - Used oil collection device with filtering capability - Google Patents

Used oil collection device with filtering capability Download PDF

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Publication number
CN113813693A
CN113813693A CN202111042086.0A CN202111042086A CN113813693A CN 113813693 A CN113813693 A CN 113813693A CN 202111042086 A CN202111042086 A CN 202111042086A CN 113813693 A CN113813693 A CN 113813693A
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China
Prior art keywords
limiting
pipe
side wall
bottom end
groove
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Granted
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CN202111042086.0A
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Chinese (zh)
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CN113813693B (en
Inventor
时洪忠
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Shanghai Minjia Automobile Technical Service Co ltd
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Shanghai Minjia Automobile Technical Service Co ltd
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Publication of CN113813693A publication Critical patent/CN113813693A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/02Combinations of filters of different kinds
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/74Recovery of fats, fatty oils, fatty acids or other fatty substances, e.g. lanolin or waxes

Abstract

The invention relates to the field of engine oil collection, in particular to a waste engine oil collecting device with a filtering function, which comprises a collecting pipe and a collecting tank arranged at the bottom end of the collecting pipe, wherein a lifting mechanism and a rotating mechanism are respectively arranged on two sides of the collecting pipe, an installation plate is arranged at the bottom end of the collecting tank, a flow regulating mechanism is arranged in the collecting tank, and a first filtering mechanism and a second filtering mechanism are respectively arranged on the upper side and the lower side of the flow regulating mechanism. When the lifting mechanism is used, the lifting mechanism and the rotating mechanism are limited through the turntable and the limiting block, so that intermittent limiting can be realized, and the proper height and the proper angle can be conveniently adjusted; when using, used oil passes through first filtering mechanism, flow control mechanism and second filtering mechanism in proper order, then collects from the bottom of mounting panel again, through observing the filtration degree, can adjust the interval between the isosceles triangle piece in the flow control mechanism, and adjustment opening size prevents that used oil from piling up, is convenient for adjust, has improved the filter effect.

Description

Used oil collection device with filtering capability
Technical Field
The invention relates to the field of engine oil collection, in particular to a waste engine oil collecting device with a filtering function.
Background
Harmful substances of the used oil are base oil, additives, moisture and impurities. When the engine oil is used, impurities such as moisture, dust, other miscellaneous oil and metal powder generated by machine member abrasion are mixed, so that the color is blackened, and the viscosity is increased. In reality, the used oil can be recycled, the low-end lubricating oil can be extracted again, and industrial raw materials such as asphalt can also be extracted.
Need collect used oil when car machine oil is changed, in prior art, collect the collection of used oil through funnel connection collecting vessel, be connected with the collecting pipe between funnel and the collecting vessel, the mode that the collecting pipe adopted to stretch out and draw back from top to bottom carries out altitude mixture control and angle modulation, the operation of being convenient for, but does not have stop gear when altitude mixture control and angle modulation, leads to the high gyration of reciprocating or angle easily, leads to the operation inconvenient. Meanwhile, the waste engine oil is required to be filtered after being collected and then is subjected to secondary processing, so that the working efficiency is reduced.
Disclosure of Invention
In order to solve the above-mentioned drawbacks of the background art, an object of the present invention is to provide a used oil collecting device having a filtering function.
The purpose of the invention can be realized by the following technical scheme:
a used oil collecting device with a filtering function comprises a collecting pipe and a collecting tank arranged at the bottom end of the collecting pipe, and is used for collecting used oil in the collecting tank through the collecting pipe;
the two sides of the collecting pipe are respectively provided with a lifting mechanism and a rotating mechanism which are used for lengthening, lifting and rotating the collecting pipe body by an angle;
the bottom of collection tank is provided with the mounting panel, and the inside of collection tank is provided with flow control mechanism, and flow control mechanism's upper and lower both sides are provided with first filtering mechanism and second filtering mechanism respectively.
Furthermore, the collecting pipe comprises a collecting funnel arranged at the top end, the eccentric position of the bottom end of the collecting funnel is communicated with a first lifting pipe, the bottom end of the first lifting pipe is communicated with a second lifting pipe, the bottom end of the second lifting pipe is hermetically sleeved with a movable pipe, the bottom end of the movable pipe is provided with a communicated connecting pipe, and the side wall of the movable pipe close to the bottom end is provided with a sliding block;
the bottom of movable tube is provided with position sleeve, and position sleeve's bottom intercommunication has the stay tube, the bottom and the holding vessel intercommunication of stay tube, and the supporting seat is installed to the lateral wall of stay tube.
Furthermore, a first cavity and a second cavity are formed in the inner wall of the positioning sleeve from top to bottom, the diameter of the second cavity is larger than that of the first cavity, a spring in a compressed state is fixed on the bottom wall of the second cavity, a through hole is formed in the bottom of the positioning sleeve, and the connecting pipe penetrates through the through hole and is arranged in a sealing mode with the supporting pipe;
the lateral wall of first cavity from the top down opens the first spacing groove that has the array to distribute, and the lateral wall of first cavity from the bottom up opens the second spacing groove that has the array to distribute, and second spacing groove and first spacing groove cross arrangement and the two structure is the same, and second spacing groove, first spacing groove and sliding block all slide and set up.
Further, elevating system is including setting up the first supporting seat in position sleeve side, open one side upper end of first supporting seat has and position sleeve lateral wall fixed mounting's first connecting hole, the both sides of first connecting hole are opened respectively and are had first groove of dodging and the second groove of dodging, the upper end both sides of first supporting seat all are provided with the backup pad, it is connected with first pivot pole to rotate between the backup pad, the one end of first pivot pole is provided with the first in command, the lateral wall of first pivot pole is fixed with first carousel, the first recess that has the array distribution is opened to the lateral wall of first carousel, all set to circular-arcly between the first recess, the below of first carousel is provided with first stopper, the upper end and the first recess spacing cooperation of first stopper, the bottom of first stopper slides and sets up in first supporting seat and the bottom of first stopper passes through first spring and the inside spacing connection of first supporting seat.
Furthermore, a first gear is fixed at the middle position of the side wall of the first rotating rod, a rack which is in vertical sliding fit with the first avoidance groove is meshed on the side of the first gear, a bearing plate is fixed on the side wall of the top end of the rack, and a bearing hole formed in the upper end of the bearing plate is rotatably connected with the side wall of the first lifting pipe through a bearing.
Furthermore, the rotating mechanism comprises a second supporting seat arranged on the side of the positioning sleeve, a second connecting hole fixedly mounted with the side wall of the positioning sleeve is formed in the upper end of one side of the second supporting seat, a second rotating rod is rotatably connected to the second supporting seat, a second handle is arranged at the bottom end of the second rotating rod, a second rotating disc is fixed on the side wall of the second rotating rod, second grooves distributed in an array mode are formed in the side wall of the second rotating disc, circular arcs are formed among the second grooves, a second limiting block is arranged on the side of the second rotating disc, the side end of the second limiting block is slidably arranged in the second avoiding groove, and the side end of the second limiting block is in limit connection with the inner wall of the second avoiding groove through a second spring;
the upper end of second dwang is provided with the third dwang, and the bottom of third dwang is provided with the polygon post, and the polygon that polygon post activity was seted up at second dwang top is downthehole, and the top of third dwang is fixed with the second gear, and the side meshing of second gear has the third gear of fixing on first fall way, and the upper and lower both sides of third gear all are provided with fixes the spacing dish on first fall way, and the second gear setting is between spacing dish.
Further, the lateral wall of collection tank is opened has first arc to lead to the groove, and the apron is installed through the connected mode of card post draw-in groove to the upper end of collection tank, and the eccentric position of apron is opened there is the through hole, and the bottom intercommunication of through hole and stay tube, supporting seat are installed on the apron.
Furthermore, the flow regulating mechanism comprises a circular frame body fixed on the inner wall of the collecting tank, the upper end of the circular frame body is provided with a first blanking hole, the outer side of the first blanking hole is provided with U-shaped grooves distributed in an array manner, the bottom ends of the first blanking hole and the U-shaped grooves are provided with limiting cavities, the side wall of each limiting cavity is provided with a second arc-shaped through groove with the same arc shape as the first arc-shaped through groove, and the side wall of the bottom end of each limiting cavity is provided with an annular baffle;
the upper end of the circular frame body is provided with a circular truncated cone funnel, an upper end opening of the circular truncated cone funnel is tangent to the inner wall of the collecting tank and is sealed, and a lower end opening of the circular truncated cone funnel and the first blanking hole are concentrically sealed.
Furthermore, a rotating plate which is rotatably arranged on the inner wall of the limiting cavity is arranged at the upper end of the annular baffle plate, a polygonal groove and a second blanking hole are formed in the middle of the rotating plate, the second blanking hole is formed in the polygonal groove, a third handle is arranged on the side wall of the rotating plate, and the third handle is slidably arranged in the first arc-shaped through groove and the second arc-shaped through groove;
the upper end of the rotating plate is provided with limiting plates distributed in an array mode, the end portions of the limiting plates are provided with isosceles triangular blocks, limiting columns arranged in a sliding mode with the U-shaped grooves are arranged at the upper ends of the limiting plates, rectangular blocks in sliding fit with the polygonal grooves are arranged at the bottom ends of the limiting plates, and the upper ends of the limiting plates are in sealing fit with the inner top walls of the limiting cavities.
Furthermore, the first filtering mechanism comprises a first activated carbon layer which is hermetically arranged on the inner wall of the collecting tank, a first filtering net is arranged at the bottom end of the first activated carbon layer, and the first filtering net is arranged at the upper end of the circular truncated cone funnel;
the second filtering mechanism comprises a second activated carbon layer arranged on the inner wall of the collecting tank, a second filter screen is arranged at the bottom end of the second activated carbon layer, and the second activated carbon layer and the second filter screen are both arranged below the flow regulating mechanism;
the mesh number of the first filter screen is 150-220 meshes, and the mesh number of the second filter screen is 720-850 meshes.
The invention has the beneficial effects that:
1. the invention is provided with the lifting mechanism and the rotating mechanism, the lifting mechanism is meshed through the gear and the rack, the rotating mechanism is meshed through the gear and the pinion, when in use, the lifting mechanism and the rotating mechanism are limited through the turntable and the limiting block, so that intermittent limiting can be realized, and the proper height and the proper angle can be conveniently adjusted;
2. the waste engine oil passes through the first filtering mechanism, the flow adjusting mechanism and the second filtering mechanism in sequence and is collected from the bottom of the mounting plate, the distance between the isosceles triangular blocks in the flow adjusting mechanism can be adjusted by observing the filtering degree, the opening size is adjusted, the waste engine oil is prevented from being accumulated, the adjustment is convenient, and the filtering effect is improved.
Drawings
In order to more clearly illustrate the embodiments or technical solutions in the prior art of the present invention, the drawings used in the description of the embodiments or prior art will be briefly described below, and it is obvious for those skilled in the art to obtain other drawings without creative efforts;
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the collection tube of the present invention in its entirety;
FIG. 3 is a schematic view of the upper half of the collection tube of the present invention;
FIG. 4 is a schematic view of the lower half of the header pipe of the present invention;
FIG. 5 is a schematic view of the positioning sleeve of the present invention;
FIG. 6 is a schematic cross-sectional view of the alignment sleeve of the present invention;
FIG. 7 is a schematic view of the lift mechanism of the present invention;
FIG. 8 is a schematic view of the turning mechanism of the present invention;
FIG. 9 is a schematic view of the collection tank and mounting plate configuration of the present invention;
FIG. 10 is a schematic view of the internal structure of the collection tank of the present invention;
FIG. 11 is a schematic view of a first state of the flow adjustment mechanism of the present invention;
FIG. 12 is a schematic view of a second state of the flow adjustment mechanism of the present invention;
FIG. 13 is an exploded view of the components of the flow adjustment mechanism of the present invention;
FIG. 14 is a schematic cross-sectional view of a circular frame of the present invention;
fig. 15 is a schematic view of a limiting plate of the invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1, a used oil collecting device with a filtering function comprises a collecting pipe 1 and a collecting tank 4 arranged at the bottom end of the collecting pipe 1, and is used for collecting used oil in the collecting tank 4 through the collecting pipe 1, and an observation window is arranged on the side edge of the collecting tank 4, so that the internal filtering condition can be observed conveniently;
elevating system 2 and slewing mechanism 3 are installed respectively to the both sides of collecting pipe 1 for carry out extension rising and turned angle to the collecting pipe 1 body, the bottom of collection tank 4 is provided with mounting panel 5, and the truckle is installed to mounting panel 5 bottom, and the inside of collection tank 4 is provided with flow control mechanism 6, and the upper and lower both sides of flow control mechanism 6 are provided with first filtering mechanism 7 and second filtering mechanism 8 respectively.
As shown in fig. 2 and 3, the collecting pipe 1 includes the collecting funnel 11 disposed at the top end, the bottom eccentric position of the collecting funnel 11 is communicated with the first lifting pipe 12, the bottom end of the first lifting pipe 12 is communicated with the second lifting pipe 121, the bottom end of the second lifting pipe 121 is sealed and sleeved with the movable pipe 13, the depth of the second lifting pipe 121 penetrating into the movable pipe 13 is adjusted, the overall height of the collecting pipe 1 can be adjusted, the bottom end of the movable pipe 13 is provided with the connecting pipe 131 for communication, and the side wall of the movable pipe 13 close to the bottom end is provided with the sliding block 132.
The bottom end of the movable pipe 13 is provided with a positioning sleeve 14, the bottom end of the positioning sleeve 14 is communicated with a supporting pipe 16, the bottom end of the supporting pipe 16 is communicated with the collecting tank 4, and the side wall of the supporting pipe 16 is provided with a supporting seat 17.
As shown in fig. 4-6, the inner wall of the positioning sleeve 14 is provided with a first cavity 141 and a second cavity 142 from top to bottom, the diameter of the second cavity 142 is larger than that of the first cavity 141, the bottom wall of the second cavity 142 is fixed with a spring 15 in a compressed state, the bottom of the positioning sleeve 14 is provided with a through hole 143, and the connecting pipe 131 penetrates through the through hole 143 and the supporting pipe 16 and is arranged in a sealing manner;
the side wall of the first cavity 141 is provided with first limiting grooves 1411 distributed in an array from top to bottom, the side wall of the first cavity 141 is provided with second limiting grooves 1412 distributed in an array from bottom to top, the second limiting grooves 1412 and the first limiting grooves 1411 are arranged in a crossed manner and have the same structure, and the second limiting grooves 1412, the first limiting grooves 1411 and the sliding block 132 are arranged in a sliding manner.
When the sliding block 132 is used, the sliding block 132 and the first limit groove 1411 are in sliding fit from top to bottom until the sliding block 132 completely penetrates through the first limit groove 1411, at this time, the spring 15 is further compressed, the movable tube 13 is rotated to enable the sliding block 132 to be matched with the second limit groove 1412, at this time, the spring 15 is restored to an initial compression state, the position of the movable tube 13 is fixed, and when the movable tube 13 is disassembled and cleaned, only three steps of pressing, rotating and sliding are needed.
As shown in fig. 7, the lifting mechanism 2 includes a first supporting seat 21 disposed at a side of the positioning sleeve 14, a first connecting hole 211 fixedly mounted on a side wall of the positioning sleeve 14 is formed at an upper end of one side of the first supporting seat 21, and a first avoiding groove 212 and a second avoiding groove 213 are respectively formed at two sides of the first connecting hole 211. The upper end both sides of first supporting seat 21 all are provided with backup pad 22, it is connected with first carousel 23 to rotate between the backup pad 22, the one end of first carousel 23 is provided with the first in command 231, the lateral wall of first carousel 23 is fixed with first carousel 24, the first recess 241 that has the array distribution is opened to the lateral wall of first carousel 24, all set to circular-arcly between the first recess 241, the below of first carousel 24 is provided with first stopper 25, the upper end and the spacing cooperation of first recess 241 of first stopper 25, when first carousel 24 rotates, can realize intermittent type spacing, be convenient for adjust suitable height. The bottom of first stopper 25 slides and sets up in first supporting seat 21 and the bottom of first stopper 25 has guaranteed the up-and-down motion through first spring and the inside spacing connection of first supporting seat 21.
A first gear 26 is fixed in the middle of the side wall of the first rotating rod 23, a rack 27 which is in vertical sliding fit with the first avoiding groove 212 is meshed on the side of the first gear 26, a bearing plate 28 is fixed on the side wall of the top end of the rack 27, a bearing hole 281 formed in the upper end of the bearing plate 28 is rotatably connected with the side wall of the first lifting pipe 12 through a bearing, and the first lifting pipe 12 is in interference fit with an inner ring of the bearing, so that the first lifting pipe 12 can be driven to move up and down.
As shown in fig. 8, the rotating mechanism 3 includes a second supporting seat 31 disposed at the side of the positioning sleeve 14, a second connecting hole 311 fixedly mounted on the side wall of the positioning sleeve 14 is formed at the upper end of one side of the second supporting seat 31, a second rotating rod 32 is rotatably connected to the second supporting seat 31, a second handle 321 is disposed at the bottom end of the second rotating rod 32, a second rotating disk 33 is fixed on the side wall of the second rotating rod 32, second grooves 331 distributed in an array are formed in the side wall of the second rotating disk 33, the second grooves 331 are all disposed in an arc shape, a second limiting block 34 is disposed at the side of the second rotating disk 33, the side end of the second limiting block 34 is slidably disposed in the second avoiding groove 213, and the side end of the second limiting block 34 is connected to the inner wall of the second avoiding groove 213 in a limiting manner through a second spring, so as to ensure left and right movement; when the second rotary table 33 rotates, intermittent limiting can be realized, and a proper angle can be conveniently adjusted.
The upper end of second dwang 32 is provided with third dwang 35, and the bottom of third dwang 35 is provided with polygon post 351, and the polygon that polygon post 351 activity was seted up at second dwang 32 top is downthehole, and third dwang 35 can reciprocate. The top of the third rotating rod 35 is fixed with a second gear 36, the side end of the second gear 36 is engaged with a third gear 37 fixed on the first lifting pipe 12, the upper and lower sides of the third gear 37 are both provided with a limiting disc 38 fixed on the first lifting pipe 12, the second gear 36 is arranged between the limiting discs 38, and the limiting disc 38 is convenient to drive the second gear 36 to move up and down together when moving.
When the lifting device is used, the first handle 231 is rotated, the first gear 26 is meshed with the rack 27, the first lifting pipe 12 and the collecting hopper 11 can be driven to move up and down, the height is adjusted, and meanwhile, the first groove 241 and the first limiting block 25 play a limiting role in preventing the first gear 26 from rotating.
When the second handle 321 is rotated, the second gear 36 is engaged with the third gear 37, so that the first lifting pipe 12 and the collecting funnel 11 can be driven to rotate left and right to adjust the circumferential position, and meanwhile, the second groove 331 and the second limiting block 34 play a role in limiting, so that the second gear 36 is prevented from rotating.
As shown in fig. 9 and 10, the side wall of the collecting tank 4 is provided with a first arc-shaped through groove 40, the upper end of the collecting tank 4 is provided with a cover plate 41 by a connection mode of a clamping column clamping groove, the eccentric position of the cover plate 41 is provided with a through hole 411, the through hole 411 is communicated with the bottom end of the supporting tube 16, and the supporting seat 17 is arranged on the cover plate 41.
As shown in fig. 11 to 15, the flow regulating mechanism 6 includes a circular frame 61 fixed on the inner wall of the collecting tank 4, a first blanking hole 611 is formed at the upper end of the circular frame 61, U-shaped grooves 612 distributed in an array are formed at the outer side of the first blanking hole 611, a limiting cavity 613 is formed at the bottom ends of the first blanking hole 611 and the U-shaped grooves 612, a second arc-shaped through groove 6131 having the same arc shape as the first arc-shaped through groove 40 is formed in the side wall of the limiting cavity 613, and an annular baffle 614 is disposed on the side wall at the bottom end of the limiting cavity 613;
the upper end of the circular frame body 61 is provided with a circular truncated cone funnel 65, the upper end opening of the circular truncated cone funnel 65 is tangent to the inner wall of the collecting tank 4 and is sealed, and the lower end opening of the circular truncated cone funnel 65 is concentric with the first blanking hole 611.
The upper end of the annular baffle 614 is provided with a rotating plate 62 which is rotatably arranged with the inner wall of the limiting cavity 613, the middle position of the rotating plate 62 is provided with a polygonal groove 621 and a second blanking hole 622, the second blanking hole 622 is arranged in the polygonal groove 621, the side wall of the rotating plate 62 is provided with a third handle 623, and the third handle 623 is slidably arranged in the first arc-shaped through groove 40 and the second arc-shaped through groove 6131;
the upper end of the rotating plate 62 is provided with limiting plates 64 distributed in an array manner, the end of each limiting plate 64 is provided with an isosceles triangle block 641, the number of the vertex angles of the isosceles triangle blocks 641 multiplied by the number of the isosceles triangle blocks 641 is equal to 360 degrees, in the invention, the vertex angles of the isosceles triangle blocks 641 are 60 degrees, and the number of the isosceles triangle blocks 641 is six.
The upper end of the limit plate 64 is provided with a limit post 642 slidably arranged with the U-shaped groove 612, the bottom end of the limit plate 64 is provided with a rectangular block 643 slidably matched with the polygonal groove 621, and the upper end of the limit plate 64 is in sealing fit with the inner top wall of the limit cavity 613.
In use, by rotating the third handle 623, the position-limiting plate 64 moves in the position-limiting cavity 613, as shown in fig. 11 and 12, the distance between the isosceles triangular blocks 641 can be adjusted, and the size of the opening can be adjusted.
As shown in fig. 10, the first filtering mechanism 7 includes a first activated carbon layer 71 hermetically disposed on the inner wall of the collecting tank 4, a first filter 72 is disposed at the bottom end of the first activated carbon layer 71, and the first filter 72 is disposed at the upper end of the circular truncated cone funnel 65;
the second filtering mechanism 8 comprises a second activated carbon layer 81 arranged on the inner wall of the collecting tank 4, a second filtering net 82 is arranged at the bottom end of the second activated carbon layer 81, and the second activated carbon layer 81 and the second filtering net 82 are both arranged below the flow regulating mechanism 6;
the mesh number of the first filter 72 is 150-220 meshes, and the mesh number of the second filter 82 is 720-850 meshes. The activated carbon is used to adsorb impurities, the first filter 72 is a preliminary filter, and the second filter 82 is a fine filter.
The used engine oil firstly passes through the collecting pipe 1 after flowing out, enters the collecting tank 4, passes through the first filtering mechanism 7, the flow regulating mechanism 6 and the second filtering mechanism 8, and is collected from the bottom of the mounting plate 5. Through observing the filtration degree, can adjust the interior isosceles triangle piece 641 interval between the flow adjustment mechanism 6, the adjustment opening size prevents that waste engine oil from piling up, is convenient for adjust, improves the filter effect.
During actual operation, according to the position or the height of the automobile chassis, the integral device is moved through the caster, and then the proper angle and the proper height are adjusted according to the position of the waste engine oil outlet, so that the operation is facilitated.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed.

Claims (10)

1. The used oil collecting device with the filtering function is characterized by comprising a collecting pipe (1) and a collecting tank (4) arranged at the bottom end of the collecting pipe (1), wherein the collecting tank (4) is used for collecting the used oil in the collecting tank (4) through the collecting pipe (1);
the lifting mechanism (2) and the rotating mechanism (3) are respectively arranged on two sides of the collecting pipe (1) and are used for lengthening, lifting and rotating the body of the collecting pipe (1);
the bottom of collection tank (4) is provided with mounting panel (5), and the inside of collection tank (4) is provided with flow control mechanism (6), and the upper and lower both sides of flow control mechanism (6) are provided with first filter mechanism (7) and second filter mechanism (8) respectively.
2. The used oil collecting device with the filtering function of claim 1, wherein the collecting pipe (1) comprises a collecting funnel (11) arranged at the top end, a first lifting pipe (12) is communicated with the eccentric position at the bottom end of the collecting funnel (11), a second lifting pipe (121) is communicated with the bottom end of the first lifting pipe (12), a movable pipe (13) is hermetically sleeved at the bottom end of the second lifting pipe (121), a connecting pipe (131) is communicated with the bottom end of the movable pipe (13), and a sliding block (132) is arranged on the side wall, close to the bottom end, of the movable pipe (13);
the bottom end of the movable pipe (13) is provided with a positioning sleeve (14), the bottom end of the positioning sleeve (14) is communicated with a supporting pipe (16), the bottom end of the supporting pipe (16) is communicated with the collecting tank (4), and a supporting seat (17) is installed on the side wall of the supporting pipe (16).
3. The used oil collecting device with the filtering function of claim 2, wherein the inner wall of the positioning sleeve (14) is provided with a first cavity (141) and a second cavity (142) from top to bottom, the diameter of the second cavity (142) is larger than that of the first cavity (141), the bottom wall of the second cavity (142) is fixed with a spring (15) in a compressed state, the bottom of the positioning sleeve (14) is provided with a through hole (143), and the connecting pipe (131) penetrates through the through hole (143) and the supporting pipe (16) to be sealed;
the side wall of the first cavity (141) is provided with first limiting grooves (1411) distributed in an array from top to bottom, the side wall of the first cavity (141) is provided with second limiting grooves (1412) distributed in an array from bottom to top, the second limiting grooves (1412) and the first limiting grooves (1411) are arranged in a crossed mode and have the same structure, and the second limiting grooves (1412), the first limiting grooves (1411) and the sliding blocks (132) are arranged in a sliding mode.
4. The used oil collecting device with the filtering function according to claim 1, wherein the lifting mechanism (2) comprises a first supporting seat (21) disposed at a side of the positioning sleeve (14), a first connecting hole (211) fixedly mounted with a side wall of the positioning sleeve (14) is formed at an upper end of one side of the first supporting seat (21), a first avoiding groove (212) and a second avoiding groove (213) are respectively formed at two sides of the first connecting hole (211), supporting plates (22) are respectively disposed at two sides of an upper end of the first supporting seat (21), a first rotating rod (23) is rotatably connected between the supporting plates (22), a first handle (231) is disposed at one end of the first rotating rod (23), a first rotating disc (24) is fixed at a side wall of the first rotating rod (23), first grooves (241) distributed in an array are formed at a side wall of the first rotating disc (24), and circular arcs are respectively disposed between the first grooves (241), a first limiting block (25) is arranged below the first rotary disc (24), the upper end of the first limiting block (25) is in limiting fit with the first groove (241), the bottom end of the first limiting block (25) is arranged in the first supporting seat (21) in a sliding mode, and the bottom end of the first limiting block (25) is in internal limiting connection with the first supporting seat (21) through a first spring.
5. The used oil collecting device with the filtering function as claimed in claim 4, wherein a first gear (26) is fixed at the middle position of the side wall of the first rotating rod (23), a rack (27) which is in up-and-down sliding fit with the first avoiding groove (212) is engaged with the side of the first gear (26), a receiving plate (28) is fixed on the side wall of the top end of the rack (27), and a receiving hole (281) formed at the upper end of the receiving plate (28) is rotatably connected with the side wall of the first lifting pipe (12) through a bearing.
6. The used oil collecting device with the filtering function according to claim 1, wherein the rotating mechanism (3) includes a second supporting seat (31) disposed at a side of the positioning sleeve (14), a second connecting hole (311) fixedly mounted with a side wall of the positioning sleeve (14) is formed at an upper end of one side of the second supporting seat (31), a second rotating rod (32) is rotatably connected to the second supporting seat (31), a second handle (321) is disposed at a bottom end of the second rotating rod (32), a second rotating disk (33) is fixed to a side wall of the second rotating rod (32), second grooves (331) distributed in an array are formed in a side wall of the second rotating disk (33), the second grooves (331) are all disposed in an arc shape, a second limiting block (34) is disposed at a side of the second rotating disk (33), a side end of the second limiting block (34) is slidably disposed in the second avoiding groove (213), and a side end of the second limiting block (34) passes through the second spring and the second avoiding groove (3), (b) and the second avoiding groove (b) is (b) disposed in (b) and b) disposed in (b) in a (b) in a (b) in (b) the form (b) in (b) the shape (b) in (b 213) The inner wall is in limit connection;
the upper end of second dwang (32) is provided with third dwang (35), the bottom of third dwang (35) is provided with polygon post (351), polygon post (351) activity is spacing to be set up in the polygon hole that second dwang (32) top was seted up, the top of third dwang (35) is fixed with second gear (36), the side meshing of second gear (36) has third gear (37) of fixing on first fall way (12), the upper and lower both sides of third gear (37) all are provided with fixes spacing dish (38) on first fall way (12), second gear (36) set up between spacing dish (38).
7. The used oil collecting device with the filtering function as claimed in claim 1, wherein the side wall of the collecting tank (4) is provided with a first arc-shaped through groove (40), the upper end of the collecting tank (4) is provided with a cover plate (41) by a connection mode of a clamping column clamping groove, a through hole (411) is formed in an eccentric position of the cover plate (41), the through hole (411) is communicated with the bottom end of the supporting tube (16), and the supporting seat (17) is arranged on the cover plate (41).
8. The used oil collecting device with the filtering function of claim 1, wherein the flow regulating mechanism (6) comprises a circular frame body (61) fixed on the inner wall of the collecting tank (4), the upper end of the circular frame body (61) is provided with a first blanking hole (611), the outer side of the first blanking hole (611) is provided with U-shaped grooves (612) distributed in an array manner, the bottom ends of the first blanking hole (611) and the U-shaped grooves (612) are provided with a limiting cavity (613), the side wall of the limiting cavity (613) is provided with a second arc-shaped through groove (6131) with the same arc shape as the first arc-shaped through groove (40), and the side wall of the bottom end of the limiting cavity (613) is provided with an annular baffle (614);
the upper end of the circular frame body (61) is provided with a circular truncated cone funnel (65), the upper end opening of the circular truncated cone funnel (65) is tangentially sealed with the inner wall of the collecting tank (4), and the lower end opening of the circular truncated cone funnel (65) is concentrically sealed with the first blanking hole (611).
9. The used oil collecting device with the filtering function as claimed in claim 8, wherein the upper end of the ring-shaped baffle (614) is provided with a rotating plate (62) which is rotatably arranged with the inner wall of the limiting cavity (613), the middle position of the rotating plate (62) is provided with a polygonal groove (621) and a second discharging hole (622), the second discharging hole (622) is arranged in the polygonal groove (621), the side wall of the rotating plate (62) is provided with a third handle (623), and the third handle (623) is slidably arranged in the first arc-shaped through groove (40) and the second arc-shaped through groove (6131);
the upper end of the rotating plate (62) is provided with limiting plates (64) distributed in an array mode, the end portions of the limiting plates (64) are provided with isosceles triangular blocks (641), the upper end of each limiting plate (64) is provided with a limiting column (642) arranged in a sliding mode with the U-shaped groove (612), the bottom end of each limiting plate (64) is provided with a rectangular block (643) in sliding fit with the polygonal groove (621), and the upper end of each limiting plate (64) is in sealing fit with the inner top wall of the limiting cavity (613).
10. The used oil collecting device with the filtering function according to claim 1, wherein the first filtering mechanism (7) comprises a first activated carbon layer (71) which is hermetically arranged on the inner wall of the collecting tank (4), a first filter screen (72) is arranged at the bottom end of the first activated carbon layer (71), and the first filter screen (72) is arranged at the upper end of the circular truncated cone funnel (65);
the second filtering mechanism (8) comprises a second activated carbon layer (81) arranged on the inner wall of the collecting tank (4), a second filter screen (82) is arranged at the bottom end of the second activated carbon layer (81), and the second activated carbon layer (81) and the second filter screen (82) are both arranged below the flow regulating mechanism (6);
the mesh number of the first filter screen (72) is 150-220 meshes, and the mesh number of the second filter screen (82) is 720-850 meshes.
CN202111042086.0A 2021-09-07 2021-09-07 Used oil collection device with filtering capability Active CN113813693B (en)

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