CN110812936A - Full-automatic viscous material biofilter - Google Patents

Full-automatic viscous material biofilter Download PDF

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Publication number
CN110812936A
CN110812936A CN201911080750.3A CN201911080750A CN110812936A CN 110812936 A CN110812936 A CN 110812936A CN 201911080750 A CN201911080750 A CN 201911080750A CN 110812936 A CN110812936 A CN 110812936A
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China
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filter screen
filter
arm
thick
pile
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CN201911080750.3A
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Chinese (zh)
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曾小媚
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Individual
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Priority to CN201911080750.3A priority Critical patent/CN110812936A/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

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filtering Materials (AREA)

Abstract

The invention discloses a full-automatic viscous material biofilter, which comprises a three-fork frame, a distiller, a distilling cylinder, a thick filter cylinder, a first inlet pipe and a second inlet pipe, wherein the second inlet pipe is vertically and spirally connected to the left side of the thick filter cylinder, and can touch an extrusion pad when the filter screen slides after being subjected to larger pressure, so that the extrusion pad applies force to a liquid guide cavity to push out a collision pile, the collision pile tightly abuts against the rear part of the filter screen, a steel wire roller ejects a curved elastic arm in a wedge-shaped pile, the curved elastic arm abuts against the middle part of the filter screen, the filter screen can be protected when more viscous mixed liquid is input, the phenomena of breakage or displacement and the like are not easy to occur, the blocking arm can be screwed out by starting a hinged shaft when the viscous mixture is accumulated, the accumulated mixture is pushed out by the blocking arm, the accumulation problem is temporarily solved, hollow handles at two ends form a round pipe type structure, the speed of the subsequent mixture can be limited, and the filter screen is prevented from being blocked again.

Description

Full-automatic viscous material biofilter
Technical Field
The invention relates to a biological filter device, in particular to a full-automatic biological filter for sticky materials.
Background
Biological filtration is a method for filtering organic mixtures in general, and the essence of the biological filtration is removed from dregs of the organic mixtures, so that the organic mixtures can be purified, the organic mixtures have higher density and are more viscous, and the movement speed is slower due to larger individuals among molecules, so that the prior art has incomplete consideration and the following disadvantages:
the speed that the comparatively thick organic mixture of prior art removed when filterable is slower, piles up near the filter screen on a large scale easily when the filter screen, not only causes the pressure to the filter screen easily and forces its damage to influence biological filterable speed greatly, let holistic process receive the influence.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a full-automatic biological filter for sticky materials, which solves the problems that the movement speed of sticky organic mixtures in the prior art is low, the sticky organic mixtures are easy to accumulate nearby a filter screen in a large scale when passing through the filter screen, the filter screen is easy to be pressed to be damaged, the biological filtering speed is greatly influenced, and the whole process is influenced.
In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides a full-automatic glutinous thick material biofilter, its structure includes that three troubles put up, distiller, distillation column, thick matter cartridge filter, first advance the pipe, the second advances the left side of the perpendicular threaded connection of pipe at thick matter cartridge filter, first advance the top of the perpendicular threaded connection of pipe at thick matter cartridge filter, the distillation column electric welding is on the right side of thick matter cartridge filter, the distiller passes through rivet locking in the bottom of distillation column, three troubles put up the below of threaded connection at thick matter cartridge filter.
In order to optimize the technical scheme, the method further comprises the following steps:
according to one can implement mode, thick matter cartridge filter by a feeding section of thick bamboo, separate the frame, divide thick roller, touch the movable arm, support the structure after, move the filter screen and constitute, a feeding section of thick bamboo nestification is in the left side of distillation column, separate the frame and pass through the upper and lower end of buckle lock at a feeding section of thick bamboo, move filter screen sliding connection in the centre of separating the frame, the back supports the structure and is equipped with two and swing joint moves the left side of filter screen, divide thick roller activity laminating on the right side of moving the filter screen, touch the arm and be equipped with two and lie in the inside of separating the frame and with the back support structure mechanical connection together.
According to one can implement mode, it comprises separation head, slip separation head, filter screen steelframe, sunken filter element to move the filter screen, the separation head is located the inside of separation frame and the electric welding is on the right side that touches the arm, the first welding of slip separation is at both ends about the filter screen steelframe, filter screen steelframe sliding connection is in the centre of separation frame, sunken filter element is glued and is connected in the inside of filter screen steelframe.
According to one possible embodiment, the rear support structure comprises a curved elastic arm, two abutting piles, a drainage cavity, a squeezing pad, a steel wire roller and a wedge-shaped pile, wherein the abutting piles are movably attached to the right side inside the wedge-shaped pile, the drainage cavity is welded to the left side of the abutting pile and penetrates through the abutting piles, the squeezing pad is movably connected to the upper side of the wedge-shaped pile and is mechanically connected with the touch arm, the steel wire roller is slidably connected to the lower side of the squeezing pad, and the curved elastic arm is mechanically connected to the lower side of the wedge-shaped pile.
According to one implementation mode, the thickening separating roller comprises a hollow handle, an inner shaft plate, a shaft connecting pile, a hinge shaft and a blocking arm, wherein the shaft connecting pile is connected inside the separating frame in a nailing mode, the hinge shaft is rotatably connected to the inner side of the shaft connecting pile, the blocking arm is welded to the inner side of the hinge shaft, the inner shaft plate is movably attached to the left side of the inner portion of the blocking arm, and the hollow handle is welded to the inner side of the blocking arm.
According to one possible embodiment, the inner shaft plate is composed of a patch plate, a straight spring rod and a flow dividing head, the patch plate is welded with the blocking arm, the straight spring rod is mechanically connected to the left side of the patch plate, and the flow dividing head is buckled to the left side of the straight spring rod through a buckle.
According to an embodiment, the diverter head is composed of a side punch, a flat disc and a straight punch, the flat disc is buckled on the left side of the straight elastic rod through a buckle, the side punch is provided with more than two parts and is in threaded connection with the outer surface of the flat disc, and the straight punch is in vertical threaded connection with the lower surface of the flat disc.
Advantageous effects
The full-automatic viscous material biofilter provided by the invention is reasonable in design and strong in functionality, and has the following beneficial effects:
according to the invention, through the rear supporting structure, the extrusion pad can be touched when the filter screen slides backwards under a larger pressure, the extrusion pad applies force to the liquid guide cavity to push out the abutting pile, the abutting pile tightly abuts against the rear part of the filter screen, the steel wire roller can eject the bent elastic arm in the wedge-shaped pile to abut against the middle part of the filter screen, so that the filter screen can be protected when more viscous mixed liquid is input, and the phenomena of damage or displacement and the like are not easy to occur.
According to the invention, through the arrangement of the thickening separating roller, a relatively viscous mixture can be accumulated, the hinge shaft is started to screw out the stopping arm, so that the stopping arm pushes out the accumulated mixture, the accumulation problem is temporarily solved, and the hollow handles at the two ends form the circular tube type structure, so that the accumulation speed of the next mixture can be limited, and the filter screen is prevented from being blocked again.
Drawings
Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of the embodiments of the invention when taken in conjunction with the accompanying drawings, in which:
fig. 1 is a schematic structural view of a full-automatic biological filter for viscous materials according to the present invention.
Fig. 2 is a detailed structural diagram of a thick filter cartridge of a full-automatic viscous material biofilter according to the present invention.
Fig. 3 is a schematic structural diagram of a full-automatic viscous material bio-filter thick filter cartridge according to the present invention.
FIG. 4 is a schematic structural diagram of a fully automatic back-supporting structure of a biological filter for viscous materials according to the present invention.
Fig. 5 is a detailed structural schematic diagram of a full-automatic biological filter thick material separating roller for the thick material of the invention.
FIG. 6 is a schematic view showing the structure of the inner axial plate of the automatic biological filter for viscous materials according to the present invention.
Fig. 7 is a structural schematic diagram of a flow divider of a full-automatic viscous material biofilter viewed from the right.
Description of reference numerals: the device comprises a three-branch frame 0, a distiller 1, a distilling barrel 2, a thick filtering barrel 3, a first inlet pipe 4, a second inlet pipe 5, a feeding barrel 30, a separating frame 31, a thickening separating roller 32, a contact arm 33, a rear abutting structure 34, a movable filtering screen 35, a blocking head 350, a sliding blocking head 351, a filtering screen steel frame 352, a concave filtering sheet 353, a curved elastic arm 340, an abutting pile 341, a liquid guide cavity 342, a squeezing pad 343, a steel wire roller 344, a wedge-shaped pile 345, a hollow handle 320, an inner shaft plate 321, a shaft connecting pile 322, a hinge shaft 323, a blocking arm 324, a pasting plate 210, a straight elastic rod 211, a dividing head 212, a side punch 120, an oblate slice 121 and a straight punch 122.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Referring to fig. 1, the present invention provides a full-automatic biological filter for viscous materials: its structure includes that three trouble framves 0, distiller 1, distillation barrel 2, thick matter cartridge filter 3, first advance pipe 4, second and advance pipe 5, the second advances the left side of pipe 5 perpendicular threaded connection at thick matter cartridge filter 3, first advance the top of the perpendicular threaded connection of pipe 4 at thick matter cartridge filter 3, distillation barrel 2 electric welding is on the right side of thick matter cartridge filter 3, distiller 1 passes through rivet locking in the bottom of distillation barrel 2, three trouble framves 0 threaded connection is in the below of thick matter cartridge filter 3.
Referring to fig. 2, the thick filter cartridge 3 is composed of a feeding cylinder 30, a separating frame 31, a thick separating roller 32, a touch arm 33, a rear support structure 34 and a movable filter screen 35, wherein the feeding cylinder 30 is nested on the left side of the distillation cylinder 2, the separating frame 31 is fastened to the upper end and the lower end of the feeding cylinder 30 through a buckle, the movable filter screen 35 is slidably connected to the middle of the separating frame 31, the rear support structure 34 is provided with two thick separating rollers and movably connected to the left side of the movable filter screen 35, the thick separating roller 32 is movably attached to the right side of the movable filter screen 35, the touch arm 33 is provided with two thick separating frames 31 and mechanically connected to the rear support structure 34, and the touch arm 33 can be automatically triggered after the movable filter screen 35 is pushed to automatically protect the movable filter screen 35.
Referring to fig. 3, the movable filter screen 35 is composed of a blocking head 350, a sliding blocking head 351, a filter screen steel frame 352 and a concave filter piece 353, the blocking head 350 is located inside the separation frame 31 and is electrically welded to the right side of the touch arm 33, the sliding blocking head 351 is welded to the left end and the right end of the filter screen steel frame 352, the filter screen steel frame 352 is slidably connected to the middle of the separation frame 31, the concave filter piece 353 is connected to the inside of the filter screen steel frame 352 in an adhesive manner, the filter screen steel frame 352 is of a stainless steel structure, the filter screen steel frame 352 is smooth and does not retain raw materials, the overall resistance to a mixture can be improved, the blocking head 350 at the front end can restrain the filter screen steel frame 352 in one area, the filter screen steel frame 352 can be automatically pulled back after sliding.
Referring to fig. 4, the rear supporting structure 34 includes a curved spring arm 340, two abutting piles 341, a liquid guiding cavity 342, a pressing pad 343, a steel wire roller 344, and a wedge-shaped pile 345, where the abutting piles 341 are movably attached to the right side inside the wedge-shaped pile 345, the liquid guiding cavity 342 is welded to the left side of the abutting pile 341 and is communicated with each other, the pressing pad 343 is movably connected to the upper side of the wedge-shaped pile 345 and is mechanically connected to the abutting arm 33, the steel wire roller 344 is slidably connected to the lower side of the pressing pad 343, the curved spring arm 340 is mechanically connected to the lower side of the wedge-shaped pile 345, the curved spring arm 340 can support the middle section of the concave filter 353 to prevent the concave filter from sinking inwards, and the abutting piles 341 can tightly abut against the two ends of the concave filter 353 to prevent the whole concave filter from causing the translocation of the device backwards, thereby improving the protection capability.
Referring to fig. 5, the thickening separating roller 32 is composed of a hollow handle 320, an inner shaft plate 321, a shaft connecting pile 322, a hinge shaft 323 and a blocking arm 324, the shaft connecting pile 322 is nailed inside the separating frame 31, the hinge shaft 323 is rotatably connected to the inner side of the shaft connecting pile 322, the blocking arm 324 is welded to the inner side of the hinge shaft 323, the inner shaft plate 321 is movably attached to the left side of the inner side of the blocking arm 324, the hollow handle 320 is welded to the inner side of the blocking arm 324, the hollow handles 320 at two ends can form a thick tubular structure to block flowing viscous liquid, so that the viscous liquid cannot flow into the thick tubular structure any more, the blocking arm 324 can push out the accumulated viscous liquid when rotating, and the phenomenon that the accumulation in a short period cannot be solved to affect the input of the mixed liquid at the back is prevented.
Referring to fig. 6, the inner shaft plate 321 is composed of a pasting plate 210, a straight elastic rod 211 and a flow dividing head 212, the pasting plate 210 is welded with a blocking arm 324, the straight elastic rod 211 is mechanically connected to the left side of the pasting plate 210, the flow dividing head 212 is fastened to the left side of the straight elastic rod 211 through a buckle, the straight elastic rod 211 can be ejected until the straight elastic rod 211 touches the viscous liquid and then stops, self-adjustment is performed according to the specific depth of the viscous liquid, and the flow dividing head 212 can disperse the viscous liquid without contacting the viscous liquid, so that the viscous liquid is prevented from being bonded by the flow dividing head 212.
Referring to fig. 7, the flow dividing head 212 is composed of a side punch 120, a flat circular piece 121 and a straight punch 122, the flat circular piece 121 is buckled on the left side of the straight elastic rod 211 through a buckle, the side punch 120 is provided with more than two pieces and is in threaded connection with the outer surface of the flat circular piece 121, the straight punch 122 is in threaded connection with the lower surface of the flat circular piece 121 vertically, and the radiation range of the side punch 120 and the straight punch 122 can form a circle, so that the dip dyeing effect of the viscous liquid on the side punch 120 and the straight punch 122 can be prevented, and the partially accumulated viscous liquid can be dispersed, and can pass through a filter screen more smoothly and quickly.
The sticky organic mixed liquid to be filtered is introduced through the first inlet pipe 4 and the second inlet pipe 5, and enters the feeding cylinder 30 to be filtered through the filter screen steel frame 352 and the concave filter piece 353, and as the filtering time continues, part of the sticky liquid cannot be filtered in time and is accumulated on the concave filter piece 353, and as the accumulation increases, the sliding partition 351 on the filter screen steel frame 352 slides backwards, and touches the touch arm 33, so that the touch arm 33 starts the extrusion pad 343, the extrusion pad 343 simultaneously exerts pressure on the liquid guide cavity 342 and the wire roller 344, the wire roller 344 ejects the bending elastic arm 340 to support the middle section of the concave filter piece 353, the liquid in the liquid guide cavity 342 exerts pressure on the abutting pile 341, the pile 341 tightly abuts against the two ends of the concave filter piece 353, so that the whole concave filter piece 353 is completely protected from the influence of the weight, and the hinge shaft 323 can press the inner shaft plate 321, the concave filter piece 353 and the concave filter piece 353 The stopping arm 324 extends out, most of the accumulated viscous liquid in front of the concave filter piece 353 is pushed out, the local heavy pressure effect is relieved, the hollow handle 320 forms a small round tube hole, the subsequent viscous liquid can be temporarily stopped outside the stopping arm 324, the viscous liquid slowly permeates through the hollow handle 320, the straight elastic rod 211 can also extend out, the side punch 120 and the straight punch 122 on the flow dividing head 212 can be in butt joint with the viscous liquid entering downwards to cause the differentiation effect, the distance between molecules is increased, the filtering net is allowed to pass through more agreeably, and the integral filtering effect is improved and accelerated.
According to the invention, through the combination of the above components, when the filter screen slips after being subjected to a larger pressure, the extrusion pad 343 is touched, the extrusion pad 343 applies force to the liquid guide cavity 342 to push out the abutting piles 341, the abutting piles 341 tightly abut against the rear part of the filter screen, and the steel wire roller 344 ejects the curved elastic arms 340 in the wedge-shaped piles 345 to allow the curved elastic arms 340 to abut against the middle part of the filter screen, so that the filter screen can be protected when being subjected to more viscous mixed liquid input, and phenomena such as breakage or displacement are not easy to occur, and the phenomenon that the viscous mixture is accumulated can be avoided, the hinge shaft 323 is started to rotate the blocking arms 324 out, so that the accumulated mixture is pushed out by the blocking arms 324, thereby temporarily solving the accumulation problem, and the hollow handles 320 at the two ends form a circular tube type structure, so that the accumulation speed of the subsequent mixture can be limited, and the filter screen can be prevented from being blocked again.
The specific embodiments described herein are merely illustrative of the invention. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the scope of the invention or exceeding the scope of the claims appended hereto.

Claims (7)

1. The utility model provides a full-automatic glutinous thick material biofilter, its structure includes fork frame (0), distiller (1), distillation column (2), thick matter cartridge filter (3), first advance tub (4), the second advances tub (5), its characterized in that:
the second advances pipe (5) vertical fixation in the left side of thick matter cartridge filter (3), first advance pipe (4) vertical fixation in the top of thick matter cartridge filter (3), install the right side at thick matter cartridge filter (3) in distillation cylinder (2), distiller (1) is located the bottom of distillation cylinder (2), three fork frame (0) fastening is in the below of thick matter cartridge filter (3).
2. The full-automatic biological filter for viscous materials of claim 1, which comprises: thick matter cartridge filter (3) by a feeding section of thick bamboo (30), separate frame (31), divide thick roller (32), touch arm (33), after support structure (34), move filter screen (35) and constitute, a feeding section of thick bamboo (30) nestification is in the left side of distillation section of thick bamboo (2), separate frame (31) lock at the upper and lower end of a feeding section of thick bamboo (30), move filter screen (35) and locate the centre of separating frame (31), after support structure (34) and be equipped with two and install the left side of moving filter screen (35), divide thick roller (32) laminating on the right side of moving filter screen (35), it is equipped with two and is located the inside of separating frame (31) and links together with structure (34) is supported to the back to touch movable arm (33).
3. The full-automatic biological filter for viscous materials of claim 2, which comprises: move filter screen (35) and constitute by separation head (350), slip separation head (351), filter screen steelframe (352), sunken filter disc (353), separation head (350) are located the inside of separating frame (31) and install the right side that touches movable arm (33), slip separation head (351) set firmly at the left and right sides both ends of filter screen steelframe (352), filter screen steelframe (352) are inserted and are inlayed in the centre of separating frame (31), sunken filter disc (353) fasten in the inside of filter screen steelframe (352).
4. The full-automatic biological filter for viscous materials of claim 2, which comprises: the rear support structure (34) comprises a bent elastic arm (340), a contact pile (341), two liquid guide cavities (342), a pressing pad (343), a steel wire roller (344) and a wedge-shaped pile (345), the contact pile (341) is provided with two liquid guide cavities (342) and tightly attached to the right side inside the wedge-shaped pile (345), the liquid guide cavities (342) are installed on the left side of the contact pile (341), the pressing pad (343) is tightly attached to the upper side of the wedge-shaped pile (345) and connected with the contact arm (33), the steel wire roller (344) is installed below the pressing pad (343), and the bent elastic arm (340) is installed below the wedge-shaped pile (345).
5. The full-automatic biological filter for viscous materials of claim 2, which comprises: the thickening separating roller (32) is composed of a hollow handle (320), an inner shaft plate (321), a shaft connecting pile (322), a hinge shaft (323) and a blocking arm (324), the shaft connecting pile (322) is embedded in the separating frame (31), the hinge shaft (323) is arranged on the inner side of the shaft connecting pile (322), the blocking arm (324) is connected to the inner side of the hinge shaft (323), the inner shaft plate (321) is attached to the left side of the inner portion of the blocking arm (324), and the hollow handle (320) and the inner side of the blocking arm (324) are fixed together.
6. The full-automatic biological filter for viscous materials of claim 5, which comprises: interior beam panel (321) comprises flitch (210), straight bullet pole (211), reposition of redundant personnel head (212), flitch (210) and stopping arm (324) set firmly together, the left side at flitch (210) is installed in straight bullet pole (211), reposition of redundant personnel head (212) lock is in the left side of straight bullet pole (211).
7. The full-automatic biological filter for viscous materials of claim 6, which comprises: the flow dividing head (212) is composed of a side punch (120), flat round pieces (121) and straight punches (122), the flat round pieces (121) are buckled on the left side of the straight elastic rod (211), the side punch (120) is provided with more than two and is inserted and embedded on the outer surfaces of the flat round pieces (121), and the straight punch (122) is vertically inserted and embedded on the lower surfaces of the flat round pieces (121).
CN201911080750.3A 2019-11-07 2019-11-07 Full-automatic viscous material biofilter Pending CN110812936A (en)

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Application Number Priority Date Filing Date Title
CN201911080750.3A CN110812936A (en) 2019-11-07 2019-11-07 Full-automatic viscous material biofilter

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Application Number Priority Date Filing Date Title
CN201911080750.3A CN110812936A (en) 2019-11-07 2019-11-07 Full-automatic viscous material biofilter

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CN110812936A true CN110812936A (en) 2020-02-21

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114392402A (en) * 2021-12-27 2022-04-26 首都医科大学附属北京天坛医院 Drainage device of adjustable flowing back velocity of flow of neurosurgery back skull distraction intelligence

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CN207412860U (en) * 2017-10-20 2018-05-29 厦门安耐伟业新材料有限公司 A kind of high viscosity liquid filter device
CN108815907A (en) * 2018-06-29 2018-11-16 河南可研企业管理咨询有限公司 Hydraulic engineering filter device
CN109126236A (en) * 2018-08-09 2019-01-04 李超杰 A kind of anti-blockage method of geother-mal power generation device
CN110252004A (en) * 2019-07-11 2019-09-20 福州海汇生物科技实业有限公司 A kind of full-automatic viscous and dense material filter and control method
CN209530874U (en) * 2019-01-31 2019-10-25 疏科纳米疏水科技(嘉兴)有限公司 A kind of filter device in super-hydrophobic lotion heating tank

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2142281B1 (en) * 2007-02-06 2012-06-20 Deutsche Transalpine Oelleitung Gmbh Liquid separator and tank system having a liquid separator
CN207412860U (en) * 2017-10-20 2018-05-29 厦门安耐伟业新材料有限公司 A kind of high viscosity liquid filter device
CN108815907A (en) * 2018-06-29 2018-11-16 河南可研企业管理咨询有限公司 Hydraulic engineering filter device
CN109126236A (en) * 2018-08-09 2019-01-04 李超杰 A kind of anti-blockage method of geother-mal power generation device
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114392402A (en) * 2021-12-27 2022-04-26 首都医科大学附属北京天坛医院 Drainage device of adjustable flowing back velocity of flow of neurosurgery back skull distraction intelligence
CN114392402B (en) * 2021-12-27 2023-04-25 首都医科大学附属北京天坛医院 Intelligent drainage device capable of draining liquid at adjustable flow speed after neurosurgery and cranium opening

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