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CN101759035B - One is method of reseptance and device easily - Google Patents

One is method of reseptance and device easily Download PDF

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Publication number
CN101759035B
CN101759035B CN200810305083.XA CN200810305083A CN101759035B CN 101759035 B CN101759035 B CN 101759035B CN 200810305083 A CN200810305083 A CN 200810305083A CN 101759035 B CN101759035 B CN 101759035B
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CN
China
Prior art keywords
air
air bag
pipeline
transmitter
bag
Prior art date
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.)
Expired - Fee Related
Application number
CN200810305083.XA
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Chinese (zh)
Other versions
CN101759035A (en
Inventor
陆洪瑞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Yinrong Technology Co Ltd
Original Assignee
Beijing Yinrong Technology Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Beijing Yinrong Technology Co Ltd filed Critical Beijing Yinrong Technology Co Ltd
Priority to CN200810305083.XA priority Critical patent/CN101759035B/en
Priority to CN201510580385.8A priority patent/CN105110009B/en
Priority to CN201310267890.8A priority patent/CN103318650B/en
Publication of CN101759035A publication Critical patent/CN101759035A/en
Application granted granted Critical
Publication of CN101759035B publication Critical patent/CN101759035B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

One is method of reseptance and device easily, belongs to pneumatic pipeline material flow transmission field, the method for reseptance of present pneumatic pipeline transmission, or motor machine controls or manual control, or fault is high, or inconvenient.The present invention, in order to solve the problem, is realize like this.At receiving end, one inflatable pneumatic bag is installed, receives inflation and seal up a door; Time standby, venting is opened the door, and achieves complete gas control.

Description

One is method of reseptance and device easily
Technical field: the invention belongs to pneumatic pipeline material flow transmission field, particularly relates to a kind of method of receiving easily and device.
Background technology: the method for reseptance of present pneumatic pipeline transmission, or motor machine controls or manual control, either fault is high, or inconvenient.
The present invention seeks to solve the problem, is realize like this.
Summary of the invention:
The method received easily,
Install an inflatable pneumatic bag at receiving end, during reception, inflation is sealed up a door; When receiving, venting is opened the door, and time standby, door place opens shape.
Further
Described receiving end is vertical receiving end, and is open ports.
Further
Be spherical when described air bag is heaved.
Further
Described open ports is downward.
Further
Described air bag gas port is connected with fan outlet.
Further
On the vertical duct that described blower fan suction opeing is positioned on the receiving end of transmission pipeline or bend place.
One is receiving device easily
Comprising an inflatable pneumatic bag, be arranged on the receiving port place of workstation, for inflating rear airtight adoptor road junction, after losing heart, opening receiving port; Comprise blower fan, air outlet is connected on air bag, and ventilation inlet is connected on the vertical duct of the receiving end of transmission pipeline, and comprising receiving port is an open ports, is connected on transmission pipeline.
Further
Described air bag is the spherical body of flexible material, time standby, be contracted in together, heave after inflation, if at least one valve is with air suctiton ventilator or claim charging blower to be connected.
Further
When transmitter is to receiving end inflatable pneumatic bag, venting is opened the door or is opened in advance.
Described air bag is free body further; During for inflating, receiving end opening being sealed, narrowing down to after losing heart and receiving port is opened wide, and can transmitter be taken out.
Further
Transmitter is discharged from outlet.
Further
Inflate in receiving station air bag when receiving and heave; When intercepting transmitter, blower fan stops, and air bag deflation heaves withdrawal, takes out transmitter.
Further
Establish interception fluid bag in interception place, be filled with fluid bag and heave; When intercepting transmitter, fluid is filled with machine to be stopped, and fluid bag shrinks gets back to original position, makes this position unimpeded, takes out transmitter.
Further
Transmitter tube wall being arranged elastomeric soft quality material is interceptor.
Further
Described interceptor is hollow cylindrical body or thread like body or column or tabular body or plates or fence or Free Transform body.
Further
Described interceptor leaves transmission pipeline for automatically reseting, under the effect of fluid pressure.
Beneficial effect
By this invention, decrease Mechanical course, decrease wearing and tearing, decrease automatically controlled, and achieve automatic control, save resource, reduce fault; Use more convenient.
Accompanying drawing illustrates:
Fig. 1 is structural representation of the present invention;
Fig. 2 is the enlarged diagram of in Fig. 14;
Fig. 3 is the enlarged diagram of the another kind of example of in Fig. 14.
Fig. 4 is structural representation transmission pipeline being installed air bag.
Fig. 5 is the structural representation that in Fig. 4, air bag ejects closed conduit.
Fig. 6 is that in Fig. 4, air bag ejects the structural representation hindering non-tight pipeline.
Fig. 7 is horizontal station interception schematic diagram.
Fig. 8 is the structural representation that in Fig. 7, air bag ejects.
Fig. 9 is the structural representation of horizontal station interceptor in upside.
Figure 10 is the structural representation that in Fig. 9, air bag ejects.
Figure 11 is the structural representation that elastomeric soft quality material is located on duct wall.
Figure 12 is the structural representation that the soft quality material of Figure 11 Elastic is inhaled into pipeline.
Figure 13 is that elastomeric soft quality material is located at the structural representation being connected with malleation wind outside on duct wall.
Figure 14 is the structural representation that elastomeric soft quality material is located on pipe end.
Figure 15 is the readiness for action of Figure 14.
Be described further in conjunction with example
Embodiment 1
As shown in Figure 1, 2, 3, Pneumatic pipe transmission system by produce air flow power compressed air source unit 18 blower fan, for receiving the workstation 4 of article, central control unit (not shown) that control system is run, the transport vehicle 11 of loaded with articles, transmission pipeline 3 and being located at the reception air bag 33 of transmission pipeline receiving port, composition such as bearing 35 grade.The mouth that sends of transmission pipeline 3 is positioned at transmitting-receiving workstation 2 place.Wherein, receiving and dispatching workstation is for sending or accept the equipment of transporting articles in Pneumatic pipe transmission system.Sending and receiving workstation is by user's direct control; 16 is aspirate tube, and 20 is gas blow pipe.
Working process: when negative-pressure air fan starts, gas blow pipe to air bag qi of chong channel ascending adversely, by receiving port seal, transport vehicle by outer atmospheric pressure action to passage 3 place behind 15 mouthfuls of places, blower fan stops; Transport vehicle falls into outlet 4, presses off air bag, and transport vehicle skids off from outlet 4, thus completes a working cycle.The appendix of air bag is located at the place of non-opening.Opposite side installs air-control device in FIG, can realize two-way reception and transmission.Described air bag is oval.
Embodiment 2
As illustrated in figures 4-5:
1 pipeline, 2 air bags, 3 blower fans, 4 transmitters
This mode is closed conduit internal diameter type, air bag is that shrivelled state is on duct wall in the normal state, transmitter can have free passage, air bag is connected with air blower by a pipeline, when being energized to air blower, due to the air-blowing effect of air blower, air-flow enters in air bag, and air bag expanding volume increases, and blocks whole pipeline gradually, now in pipeline transmitter under the impetus of air-flow, moving ahead along tube wall, when running into the air bag of expansion, bumping against on air bag, because air bag is by whole pathway closure, get off so transmitter is forced to stagnation.
Embodiment 3
As Fig. 4, shown in 6:
1 pipeline, 2 air bags, 3 blower fans, 4 transmitters
This mode is interception internal diameter of the pipeline type, air bag is that shrivelled state is on duct wall in the normal state, as shown in Figure 1, transmitter can have free passage, air bag is connected with air blower by a pipeline, when being energized to air blower, due to the air-blowing effect of air blower, air-flow enters in air bag, air bag expanding volume increases, but whole pipeline can not be blocked, the stroke of transmitter can only be tackled in pipeline, make it not continue through to be stopped, in pipeline, transmitter is under the impetus of air-flow, move ahead along tube wall, when running into the air bag of expansion, bump against on air bag, owing to being subject to the interception function of air bag, get off so transmitter is forced to stagnation, as shown in Figure 6.
Embodiment 4
As Fig. 7, shown in 8, be interception scheme in the horizontal direction, the pipeline connecting fluid machine is positioned on the downside of horizontal pipe wall;
As Fig. 9, shown in 10, be interception scheme in the horizontal direction, the pipeline connecting fluid machine is positioned on the upside of horizontal pipe wall; 5 is transmitter ejection door.Fluid machine or be blower fan or for liquid machine, or use same blower fan with transmitter transveyer.
Its principle is as identical in embodiment 3.
Embodiment 5
As Figure 11, shown in 12
1 pipeline, 2 elastomeric soft quality materials, 3 blower fans, 4 transmitters
Elastomeric soft quality material is abutting in outside duct wall in the normal state, transmitter can have free passage in pipeline, elastomeric soft quality material is connected on pipeline outer wall, when being energized to induced draft fan, due to the getter action of induced draft fan, elastomeric soft quality material is subject to attractive force effect and is inhaled into pipe interior, blocking pipe gradually, now in pipeline transmitter under the impetus of air-flow, move ahead along tube wall, when running into the elastomeric soft quality material be inhaled in pipeline, bump against elastomeric soft quality material, due to elastomeric soft quality clogged with material, therefore passage is closed, get off so transmitter is forced to stagnation, when after blower fan power-off, elastomeric soft quality material is due to the performance of self, restoring force homing, get back to outside pipeline, transmitter can have free passage in pipeline.Also negative-pressure air fan can be arranged on elastomeric soft quality material rear end, as Figure 13.
Embodiment 6
In fig. 14,33 is soft quality elastic body, and 31 is rotating shaft, and 32 is pull bar; 35 is bearing, and other is the same.33 are drawn onto port.
Figure 15 is the readiness for action of Figure 14.33 fall.
Above-mentioned all air bags all can be connected to the malleation exit of the blower fan of transmission system.
Above-mentioned all air bags all can replace with fluid bag, and rear end connects that a fluid pours, namely releasing machine or reversing device extracted out, put back to machine.
Above-mentioned air bag, elastomeric soft quality material or be rubber, or be polyurethane, or be dry goods; Fluid machine or be air pump or be Hydraulic Pump and inflation pump or charging pump; Also can by valve as hydraulic pressure, air lift pump be connected with fluid bag.When described fluid bag is the fluid pouring malleation, bag is heaved, otherwise when getting rid of, bag runs dry.
Described connection is that flexible pipe connects.
Described air bag can adopt multi-stage gasbag or integral weaving bag air bag.Or be the air bag of similar anus around the whole circle of tube wall.
Like this, present invention achieves above-mentioned purpose.
The above; be only preferred embodiments of the present invention, but protection scope of the present invention is not limited thereto, is anyly familiar with those skilled in the art in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection scope of the present invention.As the shape of air bag, material, as long as size etc. can be communicated with gassing pipe or fluid charging device is communicated with, can seal receiving port or transmission pipeline or form interception obstacle when swelling; Also have all air bags all can replace with fluid bag; Therefore, protection scope of the present invention should described be as the criterion with the protection domain of claim.

Claims (10)

1. a method of reseptance easily, is characterized in that: comprise an inflatable pneumatic bag, is arranged on the receiving port place of workstation, and during for receiving, airtight adoptor road junction after inflation, opens receiving port after losing heart when receiving; Comprise blower fan, air outlet is connected on air bag, and ventilation inlet is connected on the vertical duct of the receiving end of transmission pipeline, and comprising receiving port is an open ports, is connected on transmission pipeline.
2. the method for claim 1, is characterized in that: described air bag is the spherical body of flexible material, time standby, be contracted in together, heave after inflation, if at least one valve is with air suctiton ventilator or claim charging blower to be connected.
3. the method for claim 1, is characterized in that: described air bag is free body; During for inflating, receiving end opening being sealed, narrowing down to after losing heart and receiving port is opened wide, and can transmitter be taken out.
4. a method of reseptance easily, is characterized in that:
Establish interception fluid bag in interception place, be filled with fluid bag during reception and heave; When intercepting transmitter, fluid is filled with machine to be stopped, and fluid bag shrinks gets back to original position, makes this position unimpeded, takes out transmitter.
5. a method of reseptance easily, is characterized in that: comprising:
Install an air bag at receiving end, during reception, inflation is sealed up a door; When receiving, venting is opened the door, and time standby, door place opens shape;
Wherein, described method of reseptance is closed conduit internal diameter type, air bag is that shrivelled state is on duct wall in the normal state, transmitter can have free passage, air bag is connected with air blower by a pipeline, when being energized to air blower, due to the air-blowing effect of air blower, air-flow enters in air bag, air bag expanding volume increases, block whole pipeline gradually, now in pipeline, transmitter, under the impetus of air-flow, moves ahead along tube wall, when running into the air bag of expansion, bump against on air bag, because air bag is by whole pathway closure, get off so transmitter is forced to stagnation.
6. a method of reseptance easily, is characterized in that: comprising:
Install an air bag at receiving end, during reception, inflation is sealed up a door; When receiving, venting is opened the door, and time standby, door place opens shape;
Wherein, described method of reseptance is interception internal diameter of the pipeline type, air bag is that shrivelled state is on duct wall in the normal state, transmitter can have free passage, air bag is connected with air blower by a pipeline, when being energized to air blower, due to the air-blowing effect of air blower, air-flow enters in air bag, air bag expanding volume increases, but whole pipeline can not be blocked, the stroke of transmitter can only be tackled in pipeline, make it not continue through to be stopped, in pipeline, transmitter is under the impetus of air-flow, move ahead along tube wall, when running into the air bag of expansion, bump against on air bag, owing to being subject to the interception function of air bag, get off so transmitter is forced to stagnation.
7. a method of reseptance easily, is characterized in that: comprising:
Elastomeric soft quality material is abutting in outside duct wall in the normal state, transmitter can have free passage in pipeline, elastomeric soft quality material is connected on pipeline outer wall, when being energized to induced draft fan, due to the getter action of induced draft fan, elastomeric soft quality material is subject to attractive force effect and is inhaled into pipe interior, blocking pipe gradually, now in pipeline transmitter under the impetus of air-flow, move ahead along tube wall, when running into the elastomeric soft quality material be inhaled in pipeline, bump against elastomeric soft quality material, due to elastomeric soft quality clogged with material, therefore passage is closed, get off so transmitter is forced to stagnation, when after blower fan power-off, elastomeric soft quality material is due to the performance of self, restoring force homing, get back to outside pipeline, transmitter can have free passage in pipeline.
8. method of reseptance easily according to claim 7, is characterized in that: comprising:
Negative-pressure air fan is arranged on elastomeric soft quality material rear end.
9. a method of reseptance easily, is characterized in that: comprising:
Install an air bag at receiving end, during reception, inflation is sealed up a door; When receiving, venting is opened the door, and time standby, door place opens shape;
Air bag can be connected to the malleation exit of the blower fan of transmission system;
Or air bag fluid bag replaces, rear end connects that a fluid pours, namely releasing machine or reversing device extracted out, put back to machine; Fluid pours, releasing machine or for air pump or be Hydraulic Pump and inflation pump or charging pump; Also can by valve as hydraulic pressure, air lift pump be connected with fluid bag.
10. method of reseptance easily according to claim 9, is characterized in that: comprising:
When described fluid bag is the fluid pouring malleation, bag is heaved, otherwise when getting rid of, bag runs dry.
CN200810305083.XA 2008-10-15 2008-10-22 One is method of reseptance and device easily Expired - Fee Related CN101759035B (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN200810305083.XA CN101759035B (en) 2008-10-15 2008-10-22 One is method of reseptance and device easily
CN201510580385.8A CN105110009B (en) 2008-10-15 2008-10-22 A kind of easily method of reseptance and device
CN201310267890.8A CN103318650B (en) 2008-10-15 2008-10-22 Convenient receiving method and convenient receiving device

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN2008103049404 2008-10-15
CN200810304940.4 2008-10-15
CN200810304940 2008-10-15
CN200810305083.XA CN101759035B (en) 2008-10-15 2008-10-22 One is method of reseptance and device easily

Related Child Applications (2)

Application Number Title Priority Date Filing Date
CN201310267890.8A Division CN103318650B (en) 2008-10-15 2008-10-22 Convenient receiving method and convenient receiving device
CN201510580385.8A Division CN105110009B (en) 2008-10-15 2008-10-22 A kind of easily method of reseptance and device

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Publication Number Publication Date
CN101759035A CN101759035A (en) 2010-06-30
CN101759035B true CN101759035B (en) 2015-09-23

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CN201310267890.8A Expired - Fee Related CN103318650B (en) 2008-10-15 2008-10-22 Convenient receiving method and convenient receiving device
CN201510580385.8A Expired - Fee Related CN105110009B (en) 2008-10-15 2008-10-22 A kind of easily method of reseptance and device
CN200810305083.XA Expired - Fee Related CN101759035B (en) 2008-10-15 2008-10-22 One is method of reseptance and device easily
CN201510580339.8A Expired - Fee Related CN105329672B (en) 2008-10-15 2008-10-27 A kind of easily method of reseptance and device
CN200810305195.5A Expired - Fee Related CN101759036B (en) 2008-10-15 2008-10-27 One method of reseptance easily and device

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CN201310267890.8A Expired - Fee Related CN103318650B (en) 2008-10-15 2008-10-22 Convenient receiving method and convenient receiving device
CN201510580385.8A Expired - Fee Related CN105110009B (en) 2008-10-15 2008-10-22 A kind of easily method of reseptance and device

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CN201510580339.8A Expired - Fee Related CN105329672B (en) 2008-10-15 2008-10-27 A kind of easily method of reseptance and device
CN200810305195.5A Expired - Fee Related CN101759036B (en) 2008-10-15 2008-10-27 One method of reseptance easily and device

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103318650B (en) * 2008-10-15 2017-02-08 北京银融科技有限责任公司 Convenient receiving method and convenient receiving device
CN111137684A (en) * 2020-03-25 2020-05-12 大连新创嘉合实业有限公司 Remote transmission receiving and dispatching station mechanism for cannonball-shaped sample
CN117550352B (en) * 2024-01-09 2024-03-12 湖南捷工医疗科技有限公司 Medical material conveying system based on pneumatic logistics

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CN2848785Y (en) * 2005-11-14 2006-12-20 济南海鹰机电制造有限公司 Delivering receiving device

Also Published As

Publication number Publication date
CN105110009B (en) 2018-08-14
CN101759036B (en) 2016-08-03
CN105110009A (en) 2015-12-02
CN103318650B (en) 2017-02-08
CN101759036A (en) 2010-06-30
CN101759035A (en) 2010-06-30
CN103318650A (en) 2013-09-25
CN105329672B (en) 2018-03-27
CN105329672A (en) 2016-02-17

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