CN111674930B - A commodity circulation capsule for utilizing novel secret logistics system of water conservancy pipeline - Google Patents

A commodity circulation capsule for utilizing novel secret logistics system of water conservancy pipeline Download PDF

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Publication number
CN111674930B
CN111674930B CN202010536214.6A CN202010536214A CN111674930B CN 111674930 B CN111674930 B CN 111674930B CN 202010536214 A CN202010536214 A CN 202010536214A CN 111674930 B CN111674930 B CN 111674930B
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logistics
capsule
cavity
wall
shell
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CN111674930A (en
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请求不公布姓名
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Xuzhou Xinluda Distribution Service Co ltd
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Xuzhou Xinluda Distribution Service Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G51/00Conveying articles through pipes or tubes by fluid flow or pressure; Conveying articles over a flat surface, e.g. the base of a trough, by jets located in the surface
    • B65G51/04Conveying the articles in carriers having a cross-section approximating that of the pipe or tube; Tube mail systems
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G51/00Conveying articles through pipes or tubes by fluid flow or pressure; Conveying articles over a flat surface, e.g. the base of a trough, by jets located in the surface
    • B65G51/01Hydraulic transport of articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G51/00Conveying articles through pipes or tubes by fluid flow or pressure; Conveying articles over a flat surface, e.g. the base of a trough, by jets located in the surface
    • B65G51/04Conveying the articles in carriers having a cross-section approximating that of the pipe or tube; Tube mail systems
    • B65G51/18Adaptations of pipes or tubes; Pipe or tube joints

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • Pipeline Systems (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention discloses a logistics capsule for a novel underground logistics system utilizing a water conservancy pipeline, which is good in waterproof sealing performance, and is a logistics capsule for buffering and protecting a package through an inner rubber column and an outer rubber column.

Description

A commodity circulation capsule for utilizing novel secret logistics system of water conservancy pipeline
Technical Field
The invention discloses a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines, relates to a logistics capsule used on the novel underground logistics system for the water conservancy pipelines, and belongs to the field of logistics equipment. In particular to a logistics capsule which has good waterproof and sealing performance and carries out buffering protection on the package through an inner rubber column and an outer rubber column.
Background
The underground logistics system is a transportation and supply system with a brand new concept, which is used for conveying solid goods by using carrying tools such as an automatic guide vehicle, a dual-purpose truck and the like through transportation channels such as large-diameter underground pipelines, tunnels and the like, is a logistics mode with innovation significance, has the advantages of high speed, high accuracy and the like, is an important effective way for solving urban traffic jam, reducing environmental pollution and improving accessibility and quality of urban goods transportation, and can meet the development mode of circular economy, but the tunnel establishment of the underground logistics system is a complex and huge project, the project amount and the project period are huge, and the tunnel establishment and the use are difficult to carry out in a short time.
The applicant is for solving the novel secret logistics system who utilizes water conservancy pipeline of above-mentioned problem design, including the oil pump, the pneumatic cylinder, the control box, a commodity circulation basic point, the hatch door, the conveyer pipe, no. two commodity circulation basic points, keep off the net, spherical door, commodity circulation capsule isotructure, but because whole logistics system is the transport of going on through rivers in water conservancy pipeline, the commodity circulation capsule of taking need guarantee good waterproof sealing effect, simple waterproof bag parcel is not enough to satisfy the waterproof demand of commodity circulation parcel, simultaneously because rivers pipe-line system is crooked vertically and horizontally, the parcel avoids meeting the collision phenomenon in carrying, though there is the water to cushion, still cause great damage easily, consequently, for solving above-mentioned problem, design a special use this water conservancy secret logistics system amount commodity circulation capsule.
Disclosure of Invention
In order to improve the situation, the logistics capsule for the novel underground logistics system utilizing the water conservancy pipeline, disclosed by the invention, has good waterproof and sealing performance, and the package is buffered and protected by the inner rubber column and the outer rubber column.
The invention relates to a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines, which is realized by the following steps: the invention relates to a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines, which consists of a lock hook, a main rubber capsule body, outer rubber columns, two-dimensional codes, an auxiliary capsule body, a lock catch, an air cavity, a screw joint sleeve, a sealing strip, an inner rubber column, a GPS (global positioning system) positioner and a waterproof layer, wherein the main rubber capsule body is sleeved on the auxiliary capsule body, the screw joint sleeve is arranged on the main rubber capsule body, the screw joint sleeve is arranged on the auxiliary capsule body, the two screw joint sleeves are in screw joint, the main rubber capsule body and the auxiliary capsule body are connected and provided with the sealing strip, the lock hook is arranged on the main rubber capsule body, the lock catch is arranged on the auxiliary capsule body, the lock hook is clamped on the lock catch, the air cavity is formed in the wall of the main rubber capsule body, the air cavity is formed in the wall of the auxiliary capsule body, the outer walls of the main rubber capsule body are provided with a plurality of outer rubber columns, the rubber sealing device comprises a main rubber bag body, a plurality of auxiliary rubber bags, a plurality of waterproof layers, a GPS (global positioning system) positioner, a sealing strip, a light-emitting surface, a two-dimensional code, a balancing weight and two-dimensional codes, wherein the inner rubber columns are arranged on the inner wall of the main rubber bag body, the outer rubber columns are arranged on the outer wall of the auxiliary rubber bag body, the inner rubber columns are arranged on the inner wall of the auxiliary rubber bag body, the diameters of the outer rubber columns gradually decrease from the root to the end, the diameters of the inner rubber columns gradually decrease from the root to the end, the waterproof layers are arranged on the inner wall of the main rubber bag body, the waterproof layers are arranged on the inner wall of the auxiliary rubber bag body, the GPS positioner is arranged on the main rubber bag body, the sealing strip is a rubber strip, the light-emitting surface is arranged at the connecting position of the main rubber bag body and the auxiliary rubber bag body, the two-dimensional code is arranged on the light-emitting surface, the main rubber bag body is provided with the balancing weight, and the two-dimensional code are symmetrical about the main rubber bag body and the auxiliary rubber bag body.
The invention also relates to a novel underground logistics system utilizing the water conservancy pipeline, which is characterized in that: the device comprises a conveying pipe, material flow capsules and material flow base points, wherein the conveying pipe is provided with a plurality of material flow base points, the material flow base points are communicated with the conveying pipe, and the material flow capsules are arranged in the conveying pipe;
the logistics basic point is composed of an oil pump, a hydraulic cylinder, a control box, a logistics shell, a cabin door, a transparent window, an electromagnetic valve, a sealing sleeve, a blocking net, a spherical door, an output cavity, a sealing ring, a hydraulic rod, a receiving cavity and a pull rod, the hydraulic cylinder is arranged on one end of the logistics shell, the other end of the logistics shell is an arc-shaped surface, the oil pump is arranged on the logistics shell, the oil pump is connected with the hydraulic cylinder through an oil pipe, the control box is arranged on the logistics shell, one end of the hydraulic rod is sleeved in the hydraulic cylinder, the other end of the hydraulic rod extends downwards, the spherical door is arranged on the other end of the hydraulic rod, the blocking net is arranged in the spherical door, the blocking net divides the spherical cavity into two parts, one cavity is the receiving cavity, the other cavity is the output cavity, the output cavity is a circular table cavity, one end of the pull rod is connected with the blocking net, the other end of the pull rod extends in the receiving cavity, the other end of the pull rod is provided with a pull ring, a through hole is formed in the side wall of the logistics shell, a two-dimensional code scanner is arranged at the through hole, the cabin door is arranged in the sealing sleeve, the logistics shell, the side wall of the logistics shell is hinged with the electromagnetic valve, the sealing sleeve, the transparent window, the logistics shell and the logistics shell, the transparent window, the logistics shell and the sealing sleeve are arranged between the logistics shell and the window, and the hydraulic rod, and the window, and the logistics shell are arranged between the logistics shell, and the logistics shell.
The control box is internally provided with a wireless signal transceiver, a data processor and a controller, the wireless signal transceiver is in signal connection with the data processor through a data transmission line, the controller is in signal connection with the data processor through a data transmission line, and the controller is in signal connection with the hydraulic rod through a data transmission line;
the logistics capsule is provided with a balancing weight, the outer wall of the logistics capsule is provided with a two-dimensional code, the two-dimensional code and the balancing weight are symmetrical about the logistics capsule, and the top in the conveying pipe is provided with a two-dimensional code scanner;
the wireless signal transceiver carries out information interaction with an external logistics control system;
the data processor and the wireless signal transceiver carry out information interaction, a computer program is stored in the data processor, and when the computer program is executed, the following steps are realized:
receiving and processing the action signal transmitted by the wireless signal transceiver;
the controller and the data processor carry out information interaction, and the controller executes instructions sent by the data processor and can control the work of the hydraulic rod.
Has the beneficial effects.
1. The waterproof bag has good waterproof sealing performance, and ensures the safe transportation of the bag wrapped in the water body.
2. Inside and outside two-way rubber post can be when the pipeline internal impact takes place, carries out various multiple spot buffering with the oscillating force, improves the security of commodity circulation transportation, guarantees that transported substance article can not damaged.
Drawings
FIG. 1 is a perspective view of a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines of the present invention;
FIG. 2 is a perspective view of a sliding rod of a logistics capsule for a novel underground logistics system using water conservancy pipelines according to the present invention;
FIG. 3 is a schematic view showing the structure of a distribution capsule used in a novel underground distribution system using water conservancy pipelines according to the present invention;
FIG. 4 is a schematic diagram of the structure of the logistics capsule elastic sheet of the novel underground logistics system utilizing water conservancy pipelines;
FIG. 5 is a perspective view of a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines of the present invention;
fig. 6 is a schematic view showing the structure of a material flow capsule used in a novel underground material flow system using water conservancy pipelines according to the present invention.
In the attached drawings
Wherein the following steps are as follows: oil pump (1), pneumatic cylinder (2), control box (3), commodity circulation casing (4), hatch door (5), conveyer pipe (6), pull rod (7), transparent window (8), solenoid valve (9), seal cover (10), keep off net (11), spherical door (12), output chamber (13), sealing washer (14), hydraulic stem (15), accept chamber (16), commodity circulation capsule (17), supplementary capsule body (18), latch hook (19), main rubber utricule (20), outer rubber column (21), two-dimensional code (22), hasp (23), air cavity (24), spiro union cover (25), sealing strip (26), interior rubber column (27), GPS locator (28), waterproof layer (29).
The specific implementation mode is as follows:
the invention relates to a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines, which is realized by the following steps: the invention relates to a logistics capsule for a novel underground logistics system utilizing water conservancy pipelines, which comprises a lock hook (19), a main rubber capsule body (20), outer rubber columns (21), two-dimensional codes (22), auxiliary capsule bodies (18), lock catches (23), air cavities (24), a screw sleeve (25), sealing strips (26), inner rubber columns (27), a GPS (global positioning system) positioner (28) and a waterproof layer (29), wherein the main rubber capsule body (20) is sleeved on the auxiliary capsule bodies (18), the main rubber capsule body (20) is provided with the screw sleeve (25), the auxiliary capsule bodies (18) are provided with the screw sleeve (25), the two screw sleeves (25) are in screw connection, the main rubber capsule body (20) and the auxiliary capsule bodies (18) are connected and disposed with the sealing strips (26), the lock hook (19) is disposed on the main rubber capsule body (20), the lock hook (23) is disposed on the auxiliary capsule bodies (18), the lock hook (19) is clamped on the lock catch (23), the wall of the main rubber capsule body (20) is provided with the air cavities (24), the outer walls of the auxiliary rubber columns (18) are disposed on the outer walls (18), a plurality of the rubber columns (21) are disposed on the inner walls of the main rubber cavities (18), a plurality of inner rubber columns (27) are arranged on the inner wall of the auxiliary capsule body (18), the diameter of each outer rubber column (21) is gradually reduced from the root to the end, the diameter of each inner rubber column (27) is gradually reduced from the root to the end, a waterproof layer (29) is arranged on the inner wall of the main capsule, a waterproof layer (29) is arranged on the inner wall of the auxiliary capsule, a GPS (global positioning system) positioner (28) is arranged on the main capsule body (20), a sealing strip (26) is a rubber strip, a light-emitting surface is arranged at the connecting position of the main capsule body (20) and the auxiliary capsule body (18), a two-dimensional code (22) is arranged on the light-emitting surface, a balancing weight is arranged on the main capsule body (20), a balancing weight is arranged on the auxiliary capsule body (18), and the balancing weight and the two-dimensional code (22) are symmetrical with respect to the main capsule body (20) and the auxiliary capsule body (18);
when the water conservancy pipeline is used, a person firstly takes the lock hook (19) out of the lock catch (23), unscrews the main capsule body (20) and the auxiliary capsule body (18), packs logistics into an internal cavity formed by the main capsule body (20) and the auxiliary capsule body (18), connects the main capsule body (20) and the auxiliary capsule body (18) through screwing, enables the package to be pressed and clamped by the inner rubber column (27), and then completely locks the main capsule body and the auxiliary capsule body (18) through the lock catch (23) to finish connection and locking, when the water conservancy pipeline is transported, the waterproof layer (29) is matched with the sealing strip (26) to seal the inside of the capsule, the waterproof effect is good, the outer rubber strip is in direct contact with the inner wall of the water pipe to buffer and protect the capsule, the package is prevented from being collided and damaged, and the transportation safety is high;
the design of the internal air cavity (24) is used for improving the buoyancy of the capsule body and facilitating the floating flow in water flow;
the waterproof layer (29) is designed, so that articles in the waterproof layer can be protected from water, and damage is avoided;
the diameter of the outer rubber column (21) is gradually reduced from the root to the end, and the diameter of the inner rubber column (27) is gradually reduced from the root to the end, so that the connection between the outer rubber column (21) and the inner rubber column (27) is stable, the buffering force is gradually increased during water collision prevention, and the buffering effect is good;
the waterproof layer (29) and the sealing strip (26) are matched, so that the logistics capsule (17) is good in sealing performance and waterproof performance;
the inner rubber column (27) and the outer rubber column (21) are matched, so that when the pipeline is collided, the vibration force can be buffered at various points, the safety of logistics transportation is improved, and the transported objects are prevented from being damaged;
the inner rubber column is used for carrying out direct contact design on the package mortgage, the outer rubber column and the inner wall of the pipeline, the capsule is buffered and protected, package collision damage is avoided, and the transportation safety is high;
the purposes of good waterproof and sealing performance, buffering and protection on the package through the inner rubber column (27) and the outer rubber column (21) and good conveying effect are achieved.
The invention also relates to a novel underground logistics system utilizing the water conservancy pipeline, which is characterized in that: the device comprises a conveying pipe (6), material flow capsules (17) and material flow base points, wherein the conveying pipe (6) is provided with a plurality of material flow base points, the material flow base points are communicated with the conveying pipe (6), and the material flow capsules (17) are arranged in the conveying pipe (6);
the logistics basic point is composed of an oil pump (1), a hydraulic cylinder (2), a control box (3), a logistics shell (4), a cabin door (5), a transparent window (8), an electromagnetic valve (9), a sealing sleeve (10), a blocking net (11), a spherical door (12), an output cavity (13), a sealing ring (14), a hydraulic rod (15), a receiving cavity (16) and a pull rod (7), the hydraulic cylinder (2) is arranged at one end of the logistics shell (4), the other end of the logistics shell (4) is an arc-shaped surface, the oil pump (1) is arranged on the logistics shell (4), the oil pump (1) is connected with the hydraulic cylinder (2) through an oil pipe, the control box (3) is arranged on the logistics shell (4), one end of the hydraulic rod (15) is sleeved in the hydraulic cylinder (2), the other end of the hydraulic rod (15) extends downwards, the spherical door (12) is arranged at the other end of the hydraulic rod (15), the blocking net (11) is arranged in the spherical door (12), the cavity in the spherical blocking net (11) is divided into two parts, one cavity is the receiving cavity, the other end of the other cavity is the receiving cavity (13), the other cavity (7) is connected with the pull rod (7), the other end of pull rod (7) has been put the pull ring, it has the through-hole to open on commodity circulation casing (4) the lateral wall, through-hole department sets up two-dimensional code (22) scanner, and in the through-hole was arranged in to hatch door (5), hatch door (5) and commodity circulation casing (4) outer wall articulated mutually, solenoid valve (9) have been put to hatch door (5) bottom, commodity circulation casing (4) lateral wall is overhead has transparent window (8), transparent window (8) are relative with hatch door (5), be provided with sealing washer (14) between hydraulic stem (15) and commodity circulation casing (4), be provided with seal cover (10) between spherical door (12) and commodity circulation casing (4).
A wireless signal transceiver, a data processor and a controller are arranged in the control box (3), the wireless signal transceiver is in signal connection with the data processor through a data transmission line, the controller is in signal connection with the data processor through a data transmission line, and the controller is in signal connection with the hydraulic rod (15) through a data transmission line;
the logistics capsule (17) is provided with a balancing weight, the outer wall of the logistics capsule (17) is provided with a two-dimensional code (22), the two-dimensional code (22) and the balancing weight are symmetrical relative to the logistics capsule (17), and the top in the conveying pipe (6) is provided with a two-dimensional code (22) scanner;
the wireless signal transceiver carries out information interaction with an external logistics control system;
the data processor and the wireless signal transceiver carry out information interaction, a computer program is stored in the data processor, and when the computer program is executed, the following steps are realized:
receiving and processing the action signal transmitted by the wireless signal transceiver;
the controller and the data processor carry out information interaction, and the controller executes an instruction sent by the data processor and can control the work of the hydraulic rod (15);
when the device is used, a conveying pipe (6) is built underground, a plurality of logistics base points are arranged on the conveying pipe (6), a control box (3) is in signal connection with an external logistics control system through a wireless signal transceiver, a logistics shell (4) is connected with the conveying pipe (6), a spherical door (12) is communicated with the interior of the conveying pipe (6), an output cavity (13) of the spherical door (12) is located at the downstream of a receiving cavity (16) of the spherical door, the water flow speed in the conveying pipe (6) is controlled through a water pump and a pressurizing device, and a two-dimensional code (22) scanner is arranged at the top of the conveying pipe (6) at a distance from the upstream of the logistics base points by personnel;
when logistics packages of an upstream base point need to be sent to a downstream base point, a person controls a hydraulic rod (15) to shrink through a control box (3) so that a spherical door (12) at the bottom is lifted, then a mechanical arm opens a cabin door (5), a pull rod (7) is pulled to draw out a blocking net (11), express packages are packaged through logistics capsules (17), the express packages are thrown to one side of an output cavity (13) of the spherical door (12), when the express packages are thrown, a two-dimensional code (22) scanner at a through hole records and activates information of the logistics capsules (17), the mechanical arm puts the blocking net (11) into and closes the cabin door (5), an electromagnetic valve (9) closes and controls the hydraulic rod (15) to extend, the spherical door (12) is put down to the bottom again, at the moment, the spherical door (12) is communicated with a pipeline, water flow scans the logistics capsules (17) in the output cavity (13), the logistics capsules (17) keep an angle under the action of a balancing weight, the two-dimensional code (22) faces upwards, the water flow flows to the downstream, and the logistics packages are scanned along the two-dimensional code (17) on the upstream base point;
when the logistics capsule (17) passes through a logistics base point which does not need to stop, the two-dimensional code (22) on the logistics capsule (17) is scanned, the detected data of the two-dimensional code (22) is transmitted to the data processor, the data processor processes and judges the data, the numerical value is different from the preset value, the controller does not work, the hydraulic rod (15) contracts at the moment, the spherical door (12) is accommodated in the logistics shell (4), and the passing logistics capsule (17) is prevented from being blocked;
when a logistics capsule (17) is conveyed to a target logistics base point, a two-dimensional code (22) scanner at the upstream of the target logistics base point scans the two-dimensional code (22) on the logistics capsule (17), the detected data of the two-dimensional code (22) is transmitted to a data processor, the data processor processes and judges the data, the numerical value and the preset value are the same, the data processor controls a hydraulic rod (15) to work through a controller, so that a spherical door (12) at the corresponding base point descends and stays for a period of time, when the logistics capsule (17) reaches the spherical door (12) of a logistics shell (4), the logistics capsule is blocked by a blocking net (11) in the logistics capsule and stays in a receiving cavity, after a period of time, a control box (3) controls the hydraulic rod (15) in the logistics shell (4) to contract again, so that the spherical door (12) is lifted, a mechanical arm opens a cabin door (5) to take out the logistics capsule (17) in the receiving cavity, the two-dimensional code (22) scanner at a through hole records the information of the logistics capsule (17), the logistics capsule is conveyed by water conservancy, the logistics pipeline, the logistics capsule can be conveniently used in short-time engineering and can be used in short-time engineering, and can be conveniently used in a short time;
the other end of the logistics shell (4) is designed to be an arc-shaped surface and can be attached to the arc-shaped surface of the spherical door (12);
the other end of the pull rod (7) is provided with a pull ring, so that the pull rod (7) is convenient to pull by personnel and use;
a sealing ring (14) is arranged between the hydraulic rod (15) and the logistics shell (4) to seal the hydraulic rod (15) and the logistics shell (4) so as to avoid oil leakage;
a sealing sleeve (10) is arranged between the spherical door (12) and the logistics shell (4), so that sealing is formed between the spherical door (12) and the logistics shell (4), and the influence of water permeation in a water pipe on the normal use of the device is avoided;
the side wall of the logistics shell (4) is provided with a transparent window (8), so that the capsule condition can be conveniently observed by personnel, and the use is convenient;
the logistics capsule (17) is provided with the counterweight, so that the two-dimensional code (22) on the logistics capsule (17) can be ensured to be always upward, and a scanner of the two-dimensional code (22) can scan the logistics capsule conveniently;
the logistics base point is matched with the conveying pipe (6) to carry out water flow transportation, an automatic transport trolley is not needed, and the construction engineering amount and the cost are small;
due to the design that the logistics base points are matched with the logistics capsules (17), the express can be conveyed in a waterproof mode, and the conveying efficiency is high;
due to the matched design of the spherical door (12) and the logistics shell (4), express can be taken while normal logistics conveying is not hindered, and the express taking device is convenient to use;
the invention can directly construct and lay point-to-point underground pipelines or circulating underground pipelines at a plurality of points according to urban requirements, utilizes the cooperation of a water pump to increase the flow velocity of water flow by a pressurizing device and increase the thrust of the water flow, can quickly realize point-to-point logistics transportation, has lower construction difficulty, heavier engineering load and lower cost than the two schemes of constructing underground pipelines of carrying tools such as an automatic guide vehicle, a dual-purpose truck and the like,
due to the design that the hydraulic rod (15) is contracted and the spherical door (12) at the bottom is lifted, a person can open the cabin door (5) to package express parcels through a logistics capsule (17) with GPS positioning;
the electromagnetic valve (9) is closed, the hydraulic rod (15) is designed to be extended, the spherical door (12) can be put down to the bottom again, and the spherical door (12) is communicated with the pipeline, so that the water flow takes away the logistics capsule (17) in the output cavity (13);
the purposes of conveying by using water flow as a tool, avoiding the need of adopting an automatic conveying trolley and reducing the construction engineering quantity and cost are achieved.
The above embodiments are preferred embodiments of the present invention, and are not intended to limit the scope of the present invention. It will be appreciated by those skilled in the art that various modifications may be made without departing from the scope of the invention, and it is intended to cover all such modifications as fall within the true scope of the invention.

Claims (8)

1. The utility model provides a commodity circulation capsule for utilizing novel secret logistics system of water conservancy pipeline, characterized by: the GPS positioning device comprises a lock hook, a main rubber bag body, outer rubber columns, two-dimensional codes, an auxiliary capsule body, a lock catch, an air cavity, a screw joint sleeve, a sealing strip, inner rubber columns, a GPS positioning device and a waterproof layer, wherein the main rubber bag body is sleeved on the auxiliary capsule body, the screw joint sleeve is arranged on the main rubber bag body, the screw joint sleeve is arranged on the auxiliary capsule body, the two screw joint sleeves are in screw joint, the main rubber bag body and the auxiliary capsule body are connected and disposed with the sealing strip, the lock hook is arranged on the main rubber bag body, the lock catch is arranged on the auxiliary capsule body, the lock catch is clamped on the lock catch, the air cavity is formed in the wall of the main rubber bag body, the air cavity is formed in the wall of the auxiliary capsule body, the air cavity is formed in the wall of the main rubber bag body, the outer rubber columns are arranged on the inner wall of the main rubber bag body, the outer rubber columns are arranged on the outer wall of the auxiliary capsule body, the inner rubber columns are arranged on the inner wall of the auxiliary capsule body, the main rubber bag body, the GPS positioning device is arranged on the two-dimensional codes.
2. The logistics capsule of claim 1, wherein the diameter of the outer rubber column is gradually reduced from the root to the end, and the diameter of the inner rubber column is gradually reduced from the root to the end.
3. The logistics capsule of claim 1, wherein the inner wall of the main capsule is provided with a waterproof layer, and the inner wall of the auxiliary capsule is provided with a waterproof layer.
4. The logistics capsule of claim 1, wherein the main capsule body is provided with a weight block, the auxiliary capsule body is provided with a weight block, and the weight block and the two-dimensional code are symmetrical with respect to the main capsule body and the auxiliary capsule body.
5. The logistics capsule of claim 1, wherein the novel underground logistics system comprises a conveying pipe, a logistics capsule and logistics base points, wherein the conveying pipe is provided with a plurality of logistics base points, the logistics base points are communicated with the conveying pipe, the plurality of logistics capsules are placed in the conveying pipe, water flow is used as tool transportation power, and the logistics base points comprise an oil pump, a hydraulic cylinder, a control box, a logistics shell, a cabin door, a transparent window, an electromagnetic valve, a sealing sleeve, a blocking net, a spherical door, an output cavity, a sealing ring, a hydraulic rod, a receiving cavity and a pull rod.
6. The logistics capsule of claim 5, wherein the logistics base point comprises an oil pump, a hydraulic cylinder, a control box, a logistics shell, a cabin door, a transparent window, an electromagnetic valve, a sealing sleeve, a baffle net, a spherical door, an output cavity, a sealing ring, a hydraulic rod, a receiving cavity and a pull rod, the hydraulic cylinder is arranged at one end of the logistics shell, the other end of the logistics shell is an arc-shaped surface, the oil pump is arranged on the logistics shell, the oil pump is connected with the hydraulic cylinder through an oil pipe, the control box is arranged on the logistics shell, one end of the hydraulic rod is sleeved in the hydraulic cylinder, and the other end of the hydraulic rod extends downwards, the spherical door is arranged at the other end of the hydraulic rod, the blocking net is arranged in the spherical door, the blocking net divides the inner cavity of the spherical door into two parts, one of the cavities is a receiving cavity, the other cavity is an output cavity, the output cavity is a circular truncated cone cavity, one end of the pull rod is connected with the blocking net, the other end of the pull rod extends in the receiving cavity, the other end of the pull rod is provided with a pull ring, the side wall of the logistics shell is provided with a through hole, a two-dimensional code scanner is arranged at the through hole, a cabin door is arranged in the through hole and is hinged with the outer wall of the logistics shell, an electromagnetic valve is arranged at the bottom of the cabin door, a transparent window is arranged on the side wall of the logistics shell, and the transparent window is opposite to the cabin door.
7. The logistics capsule of claim 6 wherein the control box is internally provided with a wireless signal transceiver, a data processor and a controller, wherein the wireless signal transceiver is in signal connection with the data processor through a data transmission line, the controller is in signal connection with the data processor through a data transmission line, and the controller is in signal connection with the hydraulic rod through a data transmission line; the logistics capsule is provided with a balancing weight, the outer wall of the logistics capsule is provided with a two-dimensional code, the two-dimensional code and the balancing weight are symmetrical about the logistics capsule, and the top in the conveying pipe is provided with a two-dimensional code scanner;
the wireless signal transceiver carries out information interaction with an external logistics control system; the data processor and the wireless signal transceiver carry out information interaction, a computer program is stored in the data processor, and when the computer program is executed, the following steps are realized: receiving and processing the action signal transmitted by the wireless signal transceiver; the controller and the data processor carry out information interaction, and the controller executes instructions sent by the data processor and can control the work of the hydraulic rod.
8. The logistics capsule of claim 5 wherein a sealing ring is disposed between the hydraulic rod and the logistics housing, and a sealing sleeve is disposed between the spherical door and the logistics housing.
CN202010536214.6A 2020-06-12 2020-06-12 A commodity circulation capsule for utilizing novel secret logistics system of water conservancy pipeline Active CN111674930B (en)

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