CN212246201U - Novel oil filling riser - Google Patents

Novel oil filling riser Download PDF

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Publication number
CN212246201U
CN212246201U CN202020445626.4U CN202020445626U CN212246201U CN 212246201 U CN212246201 U CN 212246201U CN 202020445626 U CN202020445626 U CN 202020445626U CN 212246201 U CN212246201 U CN 212246201U
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CN
China
Prior art keywords
output pipeline
magnet ring
groove
controller
output
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Expired - Fee Related
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CN202020445626.4U
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Chinese (zh)
Inventor
魏小平
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Guangdong Shuangta New Materials Co ltd
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Guangdong Shuangta New Materials Co ltd
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Priority to CN202020445626.4U priority Critical patent/CN212246201U/en
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Publication of CN212246201U publication Critical patent/CN212246201U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a novel oil filling riser, when the internal through-flow body material of conveyer pipe, slide on the casing under the magnetic force effect of first magnet ring, when the first magnet ring of the recess bottom of the casing that slides is connected with the contact of tongue bottom, the edge of round hole and the external diameter in close contact with of ball valve, output pipeline can reach encapsulated situation, and when the internal fluid material of jar of tank car was filled with, the liquid level gave the kickboard buoyancy, under the combined action of buoyancy and magnetic force, slide the casing and move up, the bottom of the casing that slides is equipped with can upwards float under the buoyancy, and the first magnet ring of the recess bottom of the casing that slides resumes with the tongue bottom, and output pipeline can reach encapsulated situation, effectively prevents the phenomenon that overflows when the fluid is full of jar body, has improved the working effect of oil filling riser.

Description

Novel oil filling riser
Technical Field
The utility model belongs to the technical field of relate to fluid material handling device, concretely relates to novel oil filling riser.
Background
Along with the rapid development of road construction, the demand of fluid materials for road construction, such as asphalt, is increasing day by day, the traditional technology is that a hose is manually put into a liquid conveying hole above a tank body of a tank truck, and the fluid materials, such as asphalt, and the like are conveyed into the tank truck, the mode is inconvenient to operate and slow in efficiency, various crane pipes for loading and unloading the fluid materials, also called fluid material loading and unloading arms, are arranged on the market, the crane pipes are connected with a rigid pipeline and an elbow through a rotary joint to realize the loading and unloading of the fluid materials of the tank truck so as to replace the old hose connection, the crane pipes have higher convenience and efficiency, but the crane pipes in the prior art still have various problems, such as when the tank body is filled with the fluid materials during the conveying of the fluid materials into the tank body, the valve on the conveying pipeline cannot be automatically closed, and the fluid materials overflow of the tank body often occurs, the output quality still needs to be improved.
SUMMERY OF THE UTILITY MODEL
Therefore, in order to overcome the above technical problems, the present invention provides a novel loading arm, comprising an output pipeline, a controller, a sliding housing and a ball valve, wherein the ball valve is arranged at the output end of the output pipeline, the ball valve is connected to the inner wall of the output pipeline through a linear material, the inner diameter of the sliding housing is consistent with the outer diameter of the output pipeline, the inner wall of the sliding housing is provided with a groove, the outer wall of the output pipeline is provided with a convex groove mutually matched with the groove, the length of the groove is greater than that of the convex groove, the sliding housing and the output pipeline are slidably connected with the groove through the mutually matched convex groove, the bottom end of the groove is provided with a first magnet ring capable of sucking the bottom of the convex groove, the inner diameter of the first magnet ring is not less than the outer diameter of the output pipeline, the bottom end of the sliding housing is provided with a floating body capable of floating upward under the, and make the gliding kickboard of slip casing gliding upwards, the bottom of slip casing is equipped with the baffle, the middle part of baffle is equipped with the diameter and the diameter of ball valve is unanimous round hole, when the first magnet ring of the recess bottom of slip casing and tongue bottom contact were connected, the outside diameter in close contact with of round hole and ball valve, output pipeline reached sealed condition.
Further, the material of kickboard is the EVA foam, and EVA foam buoyancy is high, has further guaranteed that the kickboard can promote the slip casing under the buoyancy effect and rise when the fluid material fills up in the tank wagon, has guaranteed first magnet ring and tongue bottom precision joint, and the external diameter of ball valve and the round hole edge precision joint of baffle have further guaranteed sealed effect.
Further, the material of slip casing is the aluminum alloy, and the light in weight of aluminum alloy has further guaranteed that the kickboard can promote the slip casing under the buoyancy effect and rise when fluid material fills up in the tank wagon, has guaranteed first magnet ring and tongue bottom precision joint, and the external diameter of ball valve and the round hole edge precision joint of baffle have further guaranteed sealed effect.
Furthermore, a second magnet ring magnetically connected with the first magnet ring is arranged at the bottom end of the convex groove. The magnet ring that two magnetism are connected can further guarantee the connection effect, avoids single magnet ring magnetic force not enough.
Furthermore, the output pipeline is sequentially provided with a heat insulation layer and an outer shell layer from inside to outside, a cavity capable of containing heat conduction oil is arranged inside the heat insulation layer, a temperature sensor and an electric heating tube are arranged inside the heat insulation layer, the temperature sensor is electrically connected with the input end of the controller, and the output end of the controller is electrically connected with the electric heating tube. The heat preservation can avoid the output end of output pipeline to block up that the fluid material condensation leads to in the output pipeline, has guaranteed the mobility of fluid material in the output pipeline.
Further, the hydraulic cylinder is provided with a push rod, the upper end of the push rod is connected with the hydraulic cylinder in a sliding mode, and the lower end of the push rod is connected with the top end of the sliding shell. When the actual flow of the fluid material in the output pipeline measured by the flowmeter is larger than the preset flow, the hydraulic cylinder shrinks through the control push rod, and the edge of the round hole of the baffle and the outer diameter of the ball valve are reduced, so that the throughput of the fluid material is reduced, the actual flow of the fluid material in the output pipeline is reduced, and the conveying quality of the fluid material is further improved.
Further, including the pump body, the pump body is located output pipeline's input, the pump body with the output electric connection of controller. When the fluid material in tank car's the internal jar was filled up, first magnet ring and second magnet ring resume to be connected, the fluid in the pipeline no longer flows this moment, when the flow of the mobile material that level sensor detected was less than the preset flow value of controller, the pump body was opened and is made the interior fluid material of remaining of pipeline inhale back, make the oil filling riser accomplish fluid material transportation work after, the kickboard is because of leaving the liquid level when avoiding retrieving, the buoyancy is lost to the slip casing, the gravity of the remaining liquid in the pipeline makes the slip casing slide down once more and leads to remaining liquid to flow out, the working effect of oil filling riser has further been improved.
Further, the linear material is a steel wire.
The utility model discloses the beneficial effect who produces is: when the fluid material is not flowed through the pipeline in vivo, slide the casing up-slide under the magnetic force of the first magnet ring, when the first magnet ring of the groove bottom of the sliding housing contacts with bottom of the tongue, the edge of the round hole contacts with external diameter of the ball valve closely, the output pipeline can reach the sealed condition, when the fluid material in the tank body of the tank car is full of, the liquid level gives the buoyancy of the kickboard, under the combined action of buoyancy and magnetic force, the sliding housing moves up, the bottom of the sliding housing is equipped with and can float upwards under the buoyancy, the first magnet ring of the groove bottom of the sliding housing resumes to be connected with bottom of the tongue, the output pipeline can reach the sealed condition, prevent the phenomenon of spilling over effectively when the fluid is full of the tank body, has improved the working effect of the oil filling riser.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of an output end of the present invention;
wherein, 1, outputting a pipeline; 2. a sliding housing; 3. a ball valve; 4. a linear material; 5. a hydraulic cylinder; 6. a flow meter; 7. a pump body; 11. a heat-insulating layer; 12. an outer shell layer; 111. a temperature sensor; 112 electric heating tubes; 21. a groove; 211. a first magnet ring; 22. a convex groove; 221. a second magnetic ring; 23. a floating plate; 24. a baffle plate; 241. a circular hole; 51. a push rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below, and it should be apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The following description of the embodiments of the present invention will be made with reference to the accompanying drawings.
Fig. 1-2 show a new type of loading arm provided by the present invention, which comprises an output pipeline 1, a controller, a sliding casing 2 and a ball valve 3, wherein the ball valve 3 is arranged at the output end of the output pipeline 1, the ball valve 3 is connected to the inner wall of the output pipeline 1 through a linear material 4, the inner diameter of the sliding casing 2 is consistent with the outer diameter of the output pipeline 1, the inner wall of the sliding casing 2 is provided with a groove 21, the outer wall of the output pipeline 1 is provided with a convex groove 22 mutually matched with the groove 21, the length of the groove 21 is greater than that of the convex groove 22, the sliding casing 2 and the output pipeline 1 are slidably connected with the groove 21 through the mutually matched convex groove 22, the bottom end of the groove 21 is provided with a first magnet ring 211 capable of sucking the bottom of the convex groove 22, the inner diameter of the first magnet ring 211 is not lower than the outer diameter of the output pipeline 1, the bottom end of the sliding casing 2 is provided with a floating plate 23 capable, the bottom of the sliding shell 2 is provided with a baffle 24, the middle part of the baffle 24 is provided with a round hole 241 with the diameter consistent with that of the ball valve 3, when the first magnet ring 211 at the bottom of the groove 21 of the sliding shell 2 is in contact connection with the bottom of the convex groove 22, the edge of the round hole 241 is in close contact with the outer diameter of the ball valve 3, and the output pipeline 1 reaches a sealing state.
The material of kickboard 23 is the EVA foam, and EVA foam buoyancy is high, has further guaranteed that kickboard 23 can promote the slip casing 2 and rise under the buoyancy effect when the fluid material fills up in the tank wagon, has guaranteed first magnet ring 211 and tongue 22 bottom be accurate connection, and the external diameter of ball valve 3 and the round hole 241 edge accurate connection of baffle 24 have further guaranteed sealed effect.
The material of slip casing 2 is the aluminum alloy, and the light in weight of aluminum alloy has further guaranteed that floating plate 23 can promote slip casing 2 and rise under the buoyancy when the fluid material fills up in the tank wagon, has guaranteed first magnet ring 211 and tongue 22 bottom be the precision joint, and the external diameter of ball valve 3 and the round hole 241 edge precision joint of baffle 24 have further guaranteed sealed effect.
The bottom of the groove 22 is provided with a second magnet ring 221 for magnetically coupling with the first magnet ring 211. The magnet ring that two magnetism are connected can further guarantee the connection effect, avoids single magnet ring magnetic force not enough.
The output pipeline 1 is sequentially provided with a heat insulation layer 11 and an outer shell layer 12 from inside to outside, a cavity capable of containing heat conduction oil is arranged inside the heat insulation layer 11, a temperature sensor 111 and an electric heating tube 112 are arranged inside the heat insulation layer 11, the temperature sensor 111 is electrically connected with the input end of the controller, and the output end of the controller is electrically connected with the electric heating tube 112. The heat preservation layer 11 can prevent the output end of the output pipeline 1 from being blocked due to the condensation of the fluid material in the output pipeline 1, and the fluidity of the fluid material in the output pipeline 1 is ensured.
Including pneumatic cylinder 5 and flowmeter 6, flowmeter 6 and the input electric connection of controller, the output electric connection of pneumatic cylinder 5 and controller, pneumatic cylinder 5 are equipped with push rod 51, push rod 51's upper end and pneumatic cylinder 5 sliding connection, and push rod 51's lower extreme is connected with the top of slip casing 2. When the actual flow rate of the fluid material in the output pipeline 1 measured by the flowmeter 6 is greater than the preset flow rate, the hydraulic cylinder 5 is contracted by controlling the push rod 51, and the edge of the circular hole 241 of the baffle plate 24 and the outer diameter of the ball valve 3 are reduced, so that the throughput of the fluid material is reduced, the actual flow rate of the fluid material in the output pipeline 1 is reduced, and the conveying quality of the fluid material is further improved.
Including the pump body 7, the input of output pipeline 1 is located to the pump body 7, and the output electric connection of pump body 7 and controller. When the fluid material in the tank body of the tank car is full, the first magnet ring 211 and the second magnet ring 221 are restored to be connected, at the moment, the fluid in the conveying pipeline does not flow any more, when the flow of the flowing material detected by the liquid level sensor is lower than the preset flow value of the controller, the pump body 7 is opened and the residual fluid material in the conveying pipeline is sucked back, so that after the fluid material conveying work of the loading arm is finished, the floating plate 23 is prevented from leaving the liquid level when the fluid material is recovered, the sliding shell 2 loses buoyancy, the gravity of the residual liquid in the conveying pipeline enables the sliding shell 2 to slide downwards again to cause the residual liquid to flow out, and the working effect of the loading arm is further improved.
The wire-like material 4 is a steel wire.
The working principle is as follows: when fluid materials do not flow through the conveying pipe, the first magnet ring 211 at the bottom end of the groove 21 of the sliding shell 2 is connected with the second magnet ring 221 at the bottom end of the convex groove 22 under the action of magnetic force, at the moment, the edge of the circular hole 241 is in close contact with the outer diameter of the ball valve 3, the output pipeline 1 is in a sealed state, when the fluid materials are introduced into the conveying pipe, the fluid materials flow through the conveying pipe, when the weight of the fluid materials borne by the baffle plate 24 is larger than the magnetic force between the first magnet ring 211 and the second magnet ring 221, the sliding shell 2 slides downwards under the action of gravity, the edge of the circular hole 241 is separated from the outer diameter of the ball valve 3, and the fluid materials flow out of the conveying pipe through the circular hole 241 and flow into the; the liquid level of the fluid material in the tank body gradually rises, the liquid level gives buoyancy to the floating plate 23, the sliding shell 2 moves upwards under the combined action of the buoyancy and the magnetic force, the first magnet ring 211 and the second magnet ring 221 are connected again, the fluid in the conveying pipeline does not flow any more at the moment, and when the flow rate of the flowing material detected by the liquid level sensor is lower than the preset flow rate value of the controller, the pump body 7 is opened and the residual fluid material in the conveying pipeline is sucked back.
In the working process of the oil filling riser, the temperature sensor 111 in the heat insulation layer 11 detects the temperature of the heat conduction oil, when the measured temperature is lower than the preset temperature of the controller, the controller controls the electric heating tube 112, and the temperature of the electric heating tube 112 is increased to heat the heat conduction oil; when the actual flow rate of the fluid material in the output pipeline 1 measured by the flowmeter 6 is greater than the preset flow rate, the hydraulic cylinder 5 is contracted by controlling the push rod 51, and the edge of the circular hole 241 of the baffle plate 24 and the outer diameter of the ball valve 3 are reduced, so that the throughput of the fluid material is reduced, and the actual flow rate of the fluid material in the output pipeline 1 is reduced.
The utility model discloses the beneficial effect who produces is: when the fluid material is not flowed through the pipeline in vivo, slide the casing up-slide under the magnetic force of the first magnet ring, when the first magnet ring of the groove bottom of the sliding housing contacts with bottom of the tongue, the edge of the round hole contacts with external diameter of the ball valve closely, the output pipeline can reach the sealed condition, when the fluid material in the tank body of the tank car is full of, the liquid level gives the buoyancy of the kickboard, under the combined action of buoyancy and magnetic force, the sliding housing moves up, the bottom of the sliding housing is equipped with and can float upwards under the buoyancy, the first magnet ring of the groove bottom of the sliding housing resumes to be connected with bottom of the tongue, the output pipeline can reach the sealed condition, prevent the phenomenon of spilling over effectively when the fluid is full of the tank body, has improved the working effect of the oil filling riser.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "above," "below," and the like are used herein for illustrative purposes only.
The foregoing is a more detailed description of the present invention, taken in conjunction with the specific preferred embodiments thereof, and it is not intended that the invention be limited to the specific embodiments shown and described. To the utility model belongs to the technical field of ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement, all should regard as belonging to the utility model discloses a protection scope.

Claims (8)

1. A novel oil filling riser comprises an output pipeline and a controller, and is characterized by comprising a sliding shell and a ball valve, wherein the ball valve is arranged at the output end of the output pipeline, the ball valve is connected to the inner wall of the output pipeline through a linear material, the inner diameter of the sliding shell is consistent with the outer diameter of the output pipeline, the inner wall of the sliding shell is provided with a groove, the outer wall of the output pipeline is provided with a convex groove matched with the groove, the length of the groove is greater than that of the convex groove, the sliding shell and the output pipeline are in sliding connection with the groove through the convex groove matched with each other, the bottom end of the groove is provided with a first magnet ring capable of sucking the bottom of the convex groove, the inner diameter of the first magnet ring is not less than the outer diameter of the output pipeline, the bottom end of the sliding shell is provided with a floating plate capable of floating upwards under the action of buoyancy and enabling the sliding shell to slide upwards, the bottom of the sliding shell is provided with a baffle, and the middle of the baffle is provided with a round hole with the diameter consistent with that of the ball valve.
2. The new crane tube of claim 1, wherein: the floating plate is made of EVA foam.
3. The new crane tube of claim 1, wherein: the sliding shell is made of aluminum alloy.
4. The new crane tube of claim 1, wherein: and a second magnet ring which is magnetically connected with the first magnet ring is arranged at the bottom end of the convex groove.
5. The new crane tube of claim 1, wherein: the heat-insulating layer and the outer shell layer are sequentially arranged on the output pipeline from inside to outside, a cavity capable of containing heat-conducting oil is arranged inside the heat-insulating layer, a temperature sensor and an electric heating tube are arranged inside the heat-insulating layer, the temperature sensor is electrically connected with the input end of the controller, and the output end of the controller is electrically connected with the electric heating tube.
6. The new crane tube of claim 1, wherein: including pneumatic cylinder and flowmeter, the flowmeter with the input electric connection of controller, the pneumatic cylinder with the output electric connection of controller, the pneumatic cylinder is equipped with the push rod, the upper end of push rod with pneumatic cylinder sliding connection, the lower extreme of push rod with the top of slip casing is connected.
7. The new crane tube of claim 6, wherein: the pump body is arranged at the input end of the output pipeline and electrically connected with the output end of the controller.
8. The new crane tube of claim 1, wherein: the linear material is steel wire.
CN202020445626.4U 2020-03-31 2020-03-31 Novel oil filling riser Expired - Fee Related CN212246201U (en)

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CN202020445626.4U CN212246201U (en) 2020-03-31 2020-03-31 Novel oil filling riser

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Application Number Priority Date Filing Date Title
CN202020445626.4U CN212246201U (en) 2020-03-31 2020-03-31 Novel oil filling riser

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CN212246201U true CN212246201U (en) 2020-12-29

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CN202020445626.4U Expired - Fee Related CN212246201U (en) 2020-03-31 2020-03-31 Novel oil filling riser

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112810307A (en) * 2021-01-17 2021-05-18 雷俊 PVC decoration membrane processing is with control by temperature change type lithography apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112810307A (en) * 2021-01-17 2021-05-18 雷俊 PVC decoration membrane processing is with control by temperature change type lithography apparatus

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Granted publication date: 20201229

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