CN106833726A - Crude oil dehydrating system - Google Patents
Crude oil dehydrating system Download PDFInfo
- Publication number
- CN106833726A CN106833726A CN201610346526.4A CN201610346526A CN106833726A CN 106833726 A CN106833726 A CN 106833726A CN 201610346526 A CN201610346526 A CN 201610346526A CN 106833726 A CN106833726 A CN 106833726A
- Authority
- CN
- China
- Prior art keywords
- drainpipe
- water tank
- roller
- crude oil
- water
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
-
- C—CHEMISTRY; METALLURGY
- C10—PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
- C10G—CRACKING HYDROCARBON OILS; PRODUCTION OF LIQUID HYDROCARBON MIXTURES, e.g. BY DESTRUCTIVE HYDROGENATION, OLIGOMERISATION, POLYMERISATION; RECOVERY OF HYDROCARBON OILS FROM OIL-SHALE, OIL-SAND, OR GASES; REFINING MIXTURES MAINLY CONSISTING OF HYDROCARBONS; REFORMING OF NAPHTHA; MINERAL WAXES
- C10G33/00—Dewatering or demulsification of hydrocarbon oils
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D17/00—Separation of liquids, not provided for elsewhere, e.g. by thermal diffusion
- B01D17/02—Separation of non-miscible liquids
- B01D17/0208—Separation of non-miscible liquids by sedimentation
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D17/00—Separation of liquids, not provided for elsewhere, e.g. by thermal diffusion
- B01D17/12—Auxiliary equipment particularly adapted for use with liquid-separating apparatus, e.g. control circuits
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- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Engineering & Computer Science (AREA)
- General Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Tires In General (AREA)
Abstract
Equipment is taken off the present invention relates to crude oil.A kind of crude oil dehydrating system, including water tank and alarm, the water tank is provided with drainpipe and suspension ring, suspension ring are provided with protection tooth, the drainpipe is provided with draining valve, the water drainage coiled pipe connected with the drainpipe is provided with the water tank, the water drainage coiled pipe is in horizontal state, the water drainage coiled pipe is provided with inlet opening, the drainpipe is only connected by the inlet opening with the inner space of the water tank, the drainpipe is additionally provided with printing opacity section, and printing opacity section is provided with when having in printing opacity section that crude stream is out-of-date to make the photoelectric detection switch of the alarm equipment alarm.The present invention has the advantages that lifting is convenient, oil-water interfaces can smoothly decline, can automatically know whether water is drained, and whether oil-water interfaces decline is unstable, big to disturbing for oil reservoir when solving the problems, such as existing drain sump draining, need manual detection water drained and lifting inconvenience.
Description
Technical field
The present invention relates to crude oil dehydration equipment, more particularly to a kind of crude oil dehydrating system.
Background technology
There can not be water in the oil storage tank of oil refining enterprise, so drain sump can be set in oil storage tank disk, the water in oil storage tank be guided in drain sump, the oil in water is discharged by water after automatic oil water stratification in drain sump from the drainpipe of drain sump lower end.Such as a kind of existing dewatering system has been switched in Chinese Patent Application No. is the 2009200321539, patent document of entitled " overflow deposition dehydrating tank ".It is to be discharged in the way of opening wide through the inner of drainpipe during existing drain sump draining, disturbance can be caused during draining to oil reservoir above, causing oil-water interfaces can not smoothly decline, and oil-water interfaces decline is unstable, and oil can be produced to be mixed into water again and discharge;Operator is difficult to judge whether water is drained when carrying out draining, therefore need often water to be picked out, look at whether oil is arrived, this mode for judging whether water is drained is not only troublesome but also easily releases more crude oil, is also easy to cause the perils such as fire, also pollutes environment.Also there is the deficiency of lifting inconvenience in other existing drain sump.
The content of the invention
The invention provides a kind of lifting it is convenient, whether oil-water interfaces can smoothly decline, can automatically know the drained crude oil dehydrating system of water, when solving the problems, such as existing drain sump draining oil-water interfaces decline it is unstable, big to the disturbance of oil reservoir, need manual detection water whether drained and lifting inconvenience.
Above technical problem is solved by following technical proposal:A kind of crude oil dehydrating system, including water tank, the water tank is provided with drainpipe, the drainpipe is provided with draining valve, it is characterized in that, also include alarm, the water drainage coiled pipe connected with the drainpipe is provided with the water tank, the water drainage coiled pipe is in horizontal state, the water drainage coiled pipe is provided with inlet opening, the drainpipe is only connected by the inlet opening with the inner space of the water tank, the drainpipe is additionally provided with printing opacity section, printing opacity section is provided with when having in printing opacity section that crude stream is out-of-date to make the photoelectric detection switch of the alarm equipment alarm, the water tank is externally provided with a pair of suspension ring, the inner peripheral surface of the suspension ring is provided with least two anti-slop serrations, the anti-slop serrations are detachably connected with the suspension ring, the anti-slop serrations are distributed along the bearing of trend of suspension ring.Draining is carried out by setting water drainage coiled pipe, in the case where drainpipe outlet area is certain, the inflow that each inlet opening undertakes is smaller and inlet area disperses, so as to the disturbance to oil reservoir is small, oil-water interfaces smooth decreasing.When water is by printing opacity section, the light that photoelectric detection switch sends will not be blocked, when water is drained and oil starts to flow to printing opacity section, oil can block the light that photoelectric detection switch sends, now photoelectric detection switch feeds back information to warning device, warning device alarmed and so that operation whether be readily able to easily or know water drained.During the lifting present invention, being hooked in suspension ring by suspension hook is carried out.Anti-slop serrations are set in the inner peripheral surface of suspension ring, anti-skidding effect can be played so that be not easy to slide during lifting.Anti-slop serrations are detachably connected between suspension ring, can be according to using needing selectivity to install anti-slop serrations, so that the present invention disclosure satisfy that and different use needs.
As preferred, the water drainage coiled pipe is included along the circular outer pipe of circumferentially extending of water tank and some along the circumferentially distributed straight tube for radially extending of circular outer pipe, one end of the straight tube links together with circular outer pipe, the other end links together with the inner of the drainpipe, the straight tube is located in the space that the circular outer pipe is surrounded, and the inlet opening is designed with the straight tube and circular outer pipe.Stationarity when can more effectively ensure that oil-water interfaces decline.
Preferably, between inlet opening along water tank radially adjoining, the aperture area of near inlet opening is less than the inner aperture area apart from remote inlet opening of drainpipe with a distance from drainpipe the inner.Stationarity when can more effectively ensure that oil-water interfaces decline.
Preferably, the inlet opening is open in the horizontal direction.Stationarity when can either effectively ensure that oil-water interfaces decline, have and be prevented from picking up the greasy of water tank bottom surface.
Present invention additionally comprises removable bindiny mechanism, the anti-slop serrations are detachably connected by the removable bindiny mechanism with the suspension ring, and the removable bindiny mechanism includes the driving spring for being arranged at the jack of the suspension ring, being movably connected on the inserted block of the anti-slop serrations and drive inserted block to be inserted into the jack.Convenience during installing/dismounting anti-slop serrations is good.
Preferably, the inserted block is spherical, the inserted block is mating spherical surfaces between the coupler body.Convenience during installing/dismounting anti-slop serrations can further be improved.
Preferably, the removable bindiny mechanism also includes support bowl, the driving spring is abutted together by the support bowl with the inserted block, is mating spherical surfaces between the support bowl and the inserted block.Patency when reliability and inserted block when can improve Spring driving inserted block are rotated.
Preferably, the face of the support inserted block of the support bowl is provided with specular layer.Patency when inserted block is rotated is good.
Preferably, the anti-slop serrations are provided with power-assisted hole.During the lower protection tooth of dismounting, by by the body of rod(Such as inner hexagon spanner)Cat-in resisting force hole China and foreign countries draw anti-slop serrations to be exerted oneself, and convenience during dismounting anti-slop serrations is good.
Preferably, the power-assisted hole position is on the end face in anti-slop serrations facewidth direction.Convenience when the insertion body of rod is in resistance hole is good.
As preferred, the water tank is provided with road wheel and road wheel is lifted away from the hydraulic supporting feet on ground, the road wheel includes spoke, it is connected to the wheel rim of spoke, it is connected to the inflation tyre and anti-tie mechanism for tire of wheel rim, the anti-tie mechanism for tire includes roller, air reservoir, the screw mandrel for wearing and being rotationally connected with roller and the thread bush being threaded on screw mandrel, the roller is coaxially fixed together with the wheel rim, inflation piston of the axis with the diameter parallel of the wheel rim is provided with the air reservoir, the air reservoir is isolated annular seal space by the inflation piston, the annular seal space is connected with the tire, the inflation piston is linked together by push rod with the thread bush, the roller be additionally provided with the prevention thread bush with the screw mandrel be axle relative to the spline structure that the roller is rotated;The road wheel can by change the tire pressure of inflation tyre come when tire tyre surface along wheel rim radially beyond or less than the roller side face.The present invention is supported by road wheel, is hooked in suspension ring and is drawn when being dragged.The present invention is supported by hydraulic supporting feet when using.Existing road wheel has the following disadvantages:When the section with sharp objects of passing through(Hereinafter referred to as prick tire section)Shi Rongyi is produced and is rolled tire phenomenon, and when country perform stage be it is interim build it is outdoor, can often run into and prick tire section.The technical program solves the problem.When pricking tire section when to pass through, rotary screw rod, screw mandrel drives thread bush translation, and thread bush drives piston to be moved towards the direction for increasing annular seal space by push rod so that the gas in tire is flowed into annular seal space and causes the reduction of tire tire pressure.Piston particular location is:Piston is moved to tire pressure and is reduced to when tire is contacted with ground and flat can be supported by then passing through roller to the position being supported to vehicle by roller, so that tire will not be poked by sharp objects.When cross prick tire section after, rotate backward screw mandrel so that thread bush by push rod drive piston towards when the place that reduces of annular seal space it is mobile so that the gas in annular seal space is punched into tire again, and tire pressure is raised so that road wheel is supported again through tire.
Preferably, the spline structure is the strip hole axially extending along wheel rim for being arranged at the roller, the push rod is arranged in the strip hole.Simple structure.
As preferred, the road wheel also includes making the box of tricks for producing speed discrepancy between the roller and screw mandrel, the screw mandrel includes input section and deferent segment, the input section and deferent segment are linked together by force-limiting device, the thread bush line is connected to the deferent segment, the box of tricks include being connected to the ring gear of roller, be connected to the input section and the external toothing in ring gear and the clutch gear that can be arranged to plug between ring gear and external toothing.When to drive inflation piston to move by screw mandrel, change-speed gearing is inserted between ring gear and external toothing and interior external toothing is meshed together, change-speed gearing is fixed on vehicle frame and prevents from being rotated with road wheel.Now difference mechanism enables to screw mandrel and thread bush to produce the rotating speed of speed discrepancy and screw mandrel higher than the rotating speed of thread bush, so as to realize the translation of thread bush.Tire inflation/deflation can be carried out by the rotation of gear, laborsaving convenience during inflation/deflation.When piston moves to extreme position, the moment of torsion of screw mandrel can increase, and then produced between input section and deferent segment when increasing above the force-limiting device amount to be driven and rotate and cause to continue to obtain piston movement and realization is automatically stopped driving.
As preferred, the force-limiting device includes being connected to the first friction plate of the input section and is connected to the second friction plate of the deferent segment, first friction plate and the second friction plate are pushed against together, and the input section and deferent segment transmit power by the rubbing action between first friction plate and the second friction plate.
Present invention tool has the advantage that:It is oil-water interfaces smooth decreasing during draining, small to the disturbance of oil reservoir;Easily or can know whether water is drained;Lifting is convenient.
Brief description of the drawings
Fig. 1 is the schematic top plan view of the embodiment of the present invention one.
Fig. 2 is the schematic cross-sectional view of the junction of suspension ring and anti-slop serrations.
Fig. 3 is the close-up schematic view at the B of Fig. 2.
Fig. 4 is the schematic elevation view of the embodiment of the present invention two.
Fig. 5 is the section view enlarged diagram of the road wheel in Fig. 4, the state that can only be supported by roller for tyre pressure is inadequate in the figure.
Fig. 6 is the A close-up schematic views of Fig. 5.
Fig. 7 is the section view enlarged diagram of the road wheel in Fig. 4, and the state that inflation tyre is supported is passed through for tyre pressure is enough in the figure.
In figure:Water tank 1,Drainpipe 11,Draining valve 12,Printing opacity section 13,Photoelectric detection switch 14,Alarm 15,Hydraulic supporting feet 16,Road wheel 2,Wheel rim 21,Spoke 22,Inflation tyre 23,Anti-tie mechanism for tire 29,Roller 291,Spline structure 2911,Air reservoir 292,Inflation piston 2921,Annular seal space 2922,Push rod 2923,Air flue 2924,Thread bush 293,Screw mandrel 294,Input section 2941,Force-limiting device 2942,First friction plate 29421,Second friction plate 29422,Coupling mechanism force regulating bolt 29423,Deferent segment 2943,Box of tricks 295,Ring gear 2951,External toothing 2952,Clutch gear 2953,Connecting shaft 2954,Suspension ring 4,Anti-slop serrations 41,Power-assisted hole 411,The end face 412 in anti-slop serrations facewidth direction,Removable bindiny mechanism 42,Jack 421,Inserted block 422,Driving spring 423,Support bowl 424,Specular layer 425,Water drainage coiled pipe 5,Circular outer pipe 51,Straight tube 52,Collecting ring 53,Inlet opening 54.
Specific embodiment
The present invention is further illustrated with embodiment below in conjunction with the accompanying drawings.
Embodiment one, referring to Fig. 1, a kind of crude oil dehydrating system, including water tank 1 and alarm 15.Water tank 1 is externally provided with a pair of suspension ring 4.The inner peripheral surface of suspension ring 4 is provided with least two anti-slop serrations 41.Anti-slop serrations 41 are distributed along the bearing of trend of suspension ring 4.Anti-slop serrations 41 are detachably connected with suspension ring 4.The lower end of water tank 1 is provided with drainpipe 11.The outer end of drainpipe is provided with draining valve 12 and printing opacity section 13.Draining valve 12 is motor-driven valve.Printing opacity section 13 is glass structure.Printing opacity section 13 is provided with photoelectric detection switch 14.Drain valve 12, photoelectric detection switch 14 and alarm 15 are electrically connected.
The water drainage coiled pipe 5 connected with the drainpipe is provided with water tank 1.Water drainage coiled pipe 5 is in horizontal state.Water drainage coiled pipe 5 includes circular outer pipe 51 and straight tube 52.Circular outer pipe 51 is along the circumferentially extending of water tank.Straight tube 52 is located in the space that circular outer pipe 51 is surrounded.Straight tube 52 at least three, is 6 in the present embodiment.Straight tube 52 is radially extended along circular outer pipe is circumferentially distributed.One end of all of straight tube 52 is linked together by collecting ring 53, the other end links together with circular outer pipe 51.The inner of drainpipe 11 also links together with collecting ring 53.Inlet opening 54 is designed with circular outer pipe 51 and straight tube 52.Drainpipe is only connected by the inlet opening with the inner space of the water tank.The opening of inlet opening 54 is in the horizontal direction(Only to facilitate illustrating in figure, and the opening of inlet opening is depicted as upward).Between inlet opening along water tank radially adjoining, apart from the aperture area of remote inlet opening namely inlet opening, more near then aperture area is smaller with a distance from collecting ring less than drainpipe the inner for the aperture area of near inlet opening with a distance from drainpipe the inner.
Referring to Fig. 2, suspension ring 4 are additionally provided with can formula bindiny mechanism 42.Anti-slop serrations 41 are provided with power-assisted hole 411.Power-assisted hole 411 is located on the end face 412 in anti-slop serrations facewidth direction.Anti-slop serrations 41 are detachably connected by removable bindiny mechanism 82 with suspension ring 4.Removable bindiny mechanism 82 includes jack 421, inserted block 422, driving spring 423 and support bowl 424.Jack 421 is arranged at suspension ring 4.Inserted block 422 is spherical.Inserted block 422 is located in anti-slop serrations 41.Driving spring 423 is located in anti-slop serrations 41.Support bowl 424 is located in anti-slop serrations 41.Driving spring 423 is abutted together by supporting bowl 424 with inserted block 422.It is mating spherical surfaces between support bowl 424 and inserted block 422.
Referring to Fig. 3, inserted block 422 is mating spherical surfaces between suspension ring 4.The face of the support inserted block of bowl 424 is supported to be provided with specular layer 425.
Referring to Fig. 2 to Fig. 3, realize removing anti-slop serrations 41 from suspension ring 4 by the way that the body of rod is inserted in into the China and foreign countries of power-assisted hole 411 drawing anti-slop serrations 41 when using, be directly inserted into during installation.
Referring to Fig. 1, the process that the present invention carries out draining is:Open draining valve 12, water in water tank 1 enters draining circular outer pipe 51 and straight tube 52 through inlet opening 54, then flow to collecting ring 53, finally flow to drainpipe 11 after discharged through draining valve 12.When water is by printing opacity section 13, draining not terminal.When water is drained and oil flows through printing opacity section 13, the light that photoelectric detection switch 14 sends is blocked, and the signal is fed back to alarm 15 by photoelectric detection switch 14, and alarm 15 is alarmed and controls draining valve 12 to close.
Embodiment two, the difference with embodiment one is:
Referring to Fig. 4, water tank 1 is provided with road wheel 2 and road wheel is lifted away from the hydraulic supporting feet 16 on ground.Road wheel 2 includes spoke 22, is connected to the wheel rim 21 of spoke and is connected to the inflation tyre 23 of wheel rim.
Referring to Fig. 5, road wheel 2 also includes anti-tie mechanism for tire 29.Anti-tie mechanism for tire 29 includes roller 291, air reservoir 292, thread bush 293, screw mandrel 294 and box of tricks 295.Wheel rim 21 is provided with inflation tyre 23.Roller 291 is coaxially fixed together with wheel rim 21.Roller 291 and wheel rim 21 are distributed along the axial direction of wheel rim 21.Roller 291 is provided with spline structure 2911.Spline structure 2911 is the strip hole axially extending along wheel rim for being arranged at roller 291.Air reservoir 292 is arranged in the barrel of roller 291.Air reservoir 292 is the annular cylinder coaxial with roller 291.Inflation piston 2921 is provided with air reservoir 292.The axis of piston 2921 is inflated with the diameter parallel of wheel rim 21.Air reservoir 292 is isolated annular seal space 2922 by inflation piston 2921.Annular seal space 2922 is connected by air flue 2924 with inflation tyre 23.Inflation piston 2921 is linked together by least two push rods 2923 with thread bush 293.Push rod 2923 is circumferentially distributed along roller 291.Push rod 2923 is correspondingly through the strip hole for constituting spline structure 2911.Screw mandrel 294 is arranged in roller 291.Screw mandrel 294 includes input section 2941, force-limiting device 2942 and deferent segment 2943.One end of deferent segment 2943 is rotatably connected with roller 291, the end also be also axially connected together i.e. screw mandrel 294 along roller 291 between roller 291 can not be along the axial movement of roller 291.The other end of deferent segment 2943 is linked together by force-limiting device 2942 with deferent segment 2943.The screw thread of thread bush 94 is set on deferent segment 2943.Box of tricks 295 includes ring gear 2951, external toothing 2952 and clutch gear 2953.Ring gear 2951 is connected on the inner peripheral surface of roller 291.External toothing 2952 is connected to input section 2941.It is that the two is located at approximately the same plane that external toothing 2952 is located in ring gear 2951.Clutch gear 2953 is provided with connecting shaft 2954.
Referring to Fig. 6, force-limiting device 2942 includes the first friction plate 29421 and the second friction plate 29422 and coupling mechanism force regulating bolt 29423.First friction plate 29421 is connected to input section 2941.Second friction plate 29422 is connected to deferent segment 2943.First friction plate 29421 and the second friction plate 29422 coupling mechanism force regulating bolt 29423 hold out against effect under push against together with and power is transmitted by rubbing action.Can also be adjusted by rotation lock clamp force regulating bolt 29423 between first friction plate 29421 and the second friction plate 29422 friction come come make it possible to transmission power size.
Referring to Fig. 7, when road wheel is connected, spoke 22 links together with water tank 1.Inflation tyre 23 causes that tire pressure is inadequate due to gas flow in annular seal space 2922 when inflation piston 2921 is in the position, it is now mounting platform to be supported by roller 291 and realizes walking, inflation tyre 23 is punctured when pricking tire section so as to avoid passing through.
When to recover normal tire pressure and walked by inflation tyre support, clutch gear 2953 is inserted between ring gear 2951 and external toothing 2952 and so that ring gear 2951 is meshed together with external toothing 2952 by clutch gear 2953.Clutch gear 2953 is also fixed together by connecting shaft 2954 with power buggy 3.Then rotate forward road wheel, the rotating speed of screw mandrel 294 produces translation to the right higher than the rotating speed of thread bush 293, thread bush 293 also relative to screw mandrel 294 in the presence of box of tricks 295, the structure of translation is to drive inflation piston 2921 to move to right to cause the gas compression in annular seal space 2922 in inflation tyre 23 so that road wheel is supported by inflation tyre 23 and walked.When inflating piston 2921 and being shifted to the right to same roller 291 and abut together, the moment of torsion of screw mandrel 294 can increase, so that force-limiting device 2942 skids, so as to be automatically obtained rotation.Similarly, when have realize being supported by roller 291 to the gas of pneumatic tire 23 when, invert road wheel, the result of reversion is that screw mandrel drives inflation piston 2921 to move to left, so that the gas in inflation tyre 23 is flowed into annular seal space 2922 so that inflation tyre 23 flat can pass through roller 291 and be supported down.
When not needing inflation/deflation, clutch gear 2953 is extracted between the first friction plate 29421 and the second friction plate 29422.
Claims (10)
1. a kind of crude oil dehydrating system, including water tank, the water tank is provided with drainpipe, the drainpipe is provided with draining valve, it is characterized in that, also include alarm, the water drainage coiled pipe connected with the drainpipe is provided with the water tank, the water drainage coiled pipe is in horizontal state, the water drainage coiled pipe is provided with inlet opening, the drainpipe is only connected by the inlet opening with the inner space of the water tank, the drainpipe is additionally provided with printing opacity section, printing opacity section is provided with when having in printing opacity section that crude stream is out-of-date to make the photoelectric detection switch of the alarm equipment alarm, the water tank is externally provided with a pair of suspension ring, the inner peripheral surface of the suspension ring is provided with least two anti-slop serrations, the anti-slop serrations are detachably connected with the suspension ring, the anti-slop serrations are distributed along the bearing of trend of suspension ring.
2. crude oil dehydrating system according to claim 1, it is characterized in that, the water drainage coiled pipe is included along the circular outer pipe of circumferentially extending of water tank and some along the circumferentially distributed straight tube for radially extending of circular outer pipe, one end of the straight tube links together with circular outer pipe, the other end links together with the inner of the drainpipe, the straight tube is located in the space that the circular outer pipe is surrounded, and the inlet opening is designed with the straight tube and circular outer pipe.
3. crude oil dehydrating system according to claim 2, it is characterised in that between the inlet opening along water tank radially adjoining, the aperture area of near inlet opening is less than the inner aperture area apart from remote inlet opening of drainpipe with a distance from drainpipe the inner.
4. the crude oil dehydrating system according to claim 1 or 2 or 3, it is characterised in that the inlet opening is open in the horizontal direction.
5. the crude oil dehydrating system according to claim 1 or 2 or 3, it is characterized in that, also include removable bindiny mechanism, the anti-slop serrations are detachably connected by the removable bindiny mechanism with the suspension ring, and the removable bindiny mechanism includes the driving spring for being arranged at the jack of the suspension ring, being movably connected on the inserted block of the anti-slop serrations and drive inserted block to be inserted into the jack.
6. crude oil dehydrating system according to claim 5, it is characterised in that the inserted block is spherical, and the inserted block is with being mating spherical surfaces between the coupler body.
7. the crude oil dehydrating system according to claim 1 or 2 or 3,It is characterized in that,The water tank is provided with road wheel and road wheel is lifted away from the hydraulic supporting feet on ground,The road wheel includes spoke,It is connected to the wheel rim of spoke,It is connected to the inflation tyre and anti-tie mechanism for tire of wheel rim,The anti-tie mechanism for tire includes roller,Air reservoir,The screw mandrel for wearing and being rotationally connected with roller and the thread bush being threaded on screw mandrel,The roller is coaxially fixed together with the wheel rim,Inflation piston of the axis with the diameter parallel of the wheel rim is provided with the air reservoir,The air reservoir is isolated annular seal space by the inflation piston,The annular seal space is connected with the tire,The inflation piston is linked together by push rod with the thread bush,The roller be additionally provided with the prevention thread bush with the screw mandrel be axle relative to the spline structure that the roller is rotated;The road wheel can by change the tire pressure of inflation tyre come when tire tyre surface along wheel rim radially beyond or less than the roller side face.
8. crude oil dehydrating system according to claim 7, it is characterised in that the spline structure is the strip hole axially extending along wheel rim for being arranged at the roller, and the push rod is arranged in the strip hole.
9. crude oil dehydrating system according to claim 7, it is characterized in that, the road wheel also includes making the box of tricks for producing speed discrepancy between the roller and screw mandrel, the screw mandrel includes input section and deferent segment, the input section and deferent segment are linked together by force-limiting device, the thread bush line is connected to the deferent segment, the box of tricks include being connected to the ring gear of roller, be connected to the input section and the external toothing in ring gear and the clutch gear that can be arranged to plug between ring gear and external toothing.
10. crude oil dehydrating system according to claim 9, it is characterized in that, the force-limiting device includes being connected to the first friction plate of the input section and is connected to the second friction plate of the deferent segment, first friction plate and the second friction plate are pushed against together, and the input section and deferent segment transmit power by the rubbing action between first friction plate and the second friction plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201610346526.4A CN106833726A (en) | 2016-05-24 | 2016-05-24 | Crude oil dehydrating system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201610346526.4A CN106833726A (en) | 2016-05-24 | 2016-05-24 | Crude oil dehydrating system |
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CN106833726A true CN106833726A (en) | 2017-06-13 |
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Family Applications (1)
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CN201610346526.4A Pending CN106833726A (en) | 2016-05-24 | 2016-05-24 | Crude oil dehydrating system |
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104150546A (en) * | 2014-08-27 | 2014-11-19 | 苏州清然环保科技有限公司 | Regulation pot |
CN105586071A (en) * | 2016-01-19 | 2016-05-18 | 浙江海洋学院 | Anti-shock type crude oil dehydration tank |
CN105583269A (en) * | 2016-01-26 | 2016-05-18 | 浙江沪新不锈钢制造有限公司 | Steel pipe bending machine |
-
2016
- 2016-05-24 CN CN201610346526.4A patent/CN106833726A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104150546A (en) * | 2014-08-27 | 2014-11-19 | 苏州清然环保科技有限公司 | Regulation pot |
CN105586071A (en) * | 2016-01-19 | 2016-05-18 | 浙江海洋学院 | Anti-shock type crude oil dehydration tank |
CN105583269A (en) * | 2016-01-26 | 2016-05-18 | 浙江沪新不锈钢制造有限公司 | Steel pipe bending machine |
Non-Patent Citations (1)
Title |
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龚佳龙: "《架子起重 初级工》", 30 September 1992, 中国建筑工业出版社 * |
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Application publication date: 20170613 |