CN205739482U - A kind of pneumatic transmission system bidirectional transmit-receive work station - Google Patents

A kind of pneumatic transmission system bidirectional transmit-receive work station Download PDF

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Publication number
CN205739482U
CN205739482U CN201521046998.5U CN201521046998U CN205739482U CN 205739482 U CN205739482 U CN 205739482U CN 201521046998 U CN201521046998 U CN 201521046998U CN 205739482 U CN205739482 U CN 205739482U
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China
Prior art keywords
lifting platform
transmitting
work station
transfer bottle
receiving
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Active
Application number
CN201521046998.5U
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Chinese (zh)
Inventor
刘大勋
赖云飞
周富强
许晓毅
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Xiamen Saimo Jishuo Technology Co., Ltd.
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Xiamen Jesoo Science & Technology Co Ltd
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Abstract

The open a kind of pneumatic transmission system bidirectional transmit-receive work station of this utility model, including transmitting-receiving case, being provided with lifting platform carry transfer bottle in transmitting-receiving case, lifting platform can be sent into and receive and dispatch in the Pneumatic logistic pipeline that case connects by air draught, machinery or electronic upwards jack-up transfer bottle and by transfer bottle.This utility model is designed as liftable structure by the plummer of transfer bottle in transmitting-receiving case, directly transfer bottle is placed on lifting platform and by sending into Pneumatic logistic pipeline by air draught, machinery or electronic upwards jack-up, transfer bottle sends after leaving lifting platform, and lifting platform can be by self gravitation or machinery or electronic return in situ.It is applicable to each work station of Pneumatic logistic system, there is the advantages such as rational in infrastructure, transmitting-receiving operation is quick.

Description

A kind of pneumatic transmission system bidirectional transmit-receive work station
Technical field
The open a kind of pneumatic transmission system bidirectional transmit-receive work station of this utility model, is divided by International Patent Classification (IPC) (IPC) and belongs to pneumatic transmission system manufacturing technology field.
Background technology
Pneumatic transmission system is with compressed air as power, various article are transmitted by pipeline, article are typically disposed in transfer bottle, and carry out transmitting-receiving process by the work station of duct end, but work station needs directly to tilt transfer bottle to insert in airflow orifice at present, and transfer bottle is easily stuck at airflow orifice, therefore, transmitting-receiving is laborious, inconvenient operation.
Summary of the invention
For the deficiencies in the prior art, this utility model provides a kind of pneumatic transmission system bidirectional transmit-receive work station, sends in airflow orifice by liftable bottle supporting device by transfer bottle, has the advantages such as rational in infrastructure, transmitting-receiving operation is quick.
For reaching above-mentioned purpose, this utility model is achieved through the following technical solutions:
A kind of pneumatic transmission system bidirectional transmit-receive work station, including transmitting-receiving case, is provided with lifting platform carry transfer bottle in transmitting-receiving case, lifting platform can upwards jack-up transfer bottle transfer bottle is sent into and received and dispatched in the Pneumatic logistic pipeline that case connects.
Further, described transmitting-receiving bottom portion is provided with gas storehouse, and gas storehouse has air inlet and gas outlet, and lifting platform is arranged at gas outlet, and lifting platform passes through airflow function jack-up transfer bottle.
Further, the air inlet in described transmitting-receiving case gas storehouse is connected with the air flow power unit of pneumatic transmission system.
Further, described lifting platform bottom surface is arranged on guiding column jecket, guide column jecket to coordinate with the axis of guide, the axis of guide is fixed on bottom transmitting-receiving case gas storehouse, lifting platform is provided with annular chamber in guiding column jecket week side, annular chamber outer wall coordinates with gas storehouse gas outlet seal, and when outer wall detaches QI KOU, lifting platform realizes logistics transmission in rising to maximum height and transfer bottle being delivered to Pneumatic logistic pipeline.
Further, described transmitting-receiving case side is provided with chamber door to deposit or to take out transfer bottle, transmitting-receiving box top is provided with junction block, between junction block and work station, pipeline communication forms Pneumatic logistic pipeline, junction block extends to receive and dispatch in case and face lifting platform, junction block side sets gas flow tube, and gas flow tube communicates with the gas storehouse of transmitting-receiving case, and gas flow tube is connected with air flow power unit.
Further, described lifting platform can be by air draught or machinery or electronic upwards jack-up transfer bottle and sent into by transfer bottle and receive and dispatch in the Pneumatic logistic pipeline that case connects, transfer bottle sends after leaving lifting platform, and lifting platform can be by self gravitation or machinery or electronic return in situ.
This utility model is designed as liftable structure by the plummer of transfer bottle in transmitting-receiving case, directly transfer bottle it is placed on lifting platform and sends into Pneumatic logistic pipeline by air-flow upwards jack-up, after air-flow stops, lifting platform can not affect transfer bottle and put into operation by gravity automatic returning in situ.Be applicable to each work station of Pneumatic logistic system, such as main transmitting-receiving work station with from transmitting-receiving work station, solve at present transmitting-receiving transfer bottle time load that bottle is laborious and inefficient problem.
Accompanying drawing explanation
Fig. 1 is this utility model main transmitting-receiving work station axonometric chart.
Fig. 2, Fig. 3 are this utility model main transmitting-receiving work station forward and backward sectional views of lifting platform jack-up.
Fig. 4 is that this utility model is from transmitting-receiving work station axonometric chart.
Fig. 5,6 it is this utility model from the transmitting-receiving work station forward and backward sectional view of lifting platform jack-up.
Fig. 7, Fig. 8 are that this utility model uses state stereogram and side view.
Fig. 9, Figure 10 are another use state stereogram and side views of this utility model.
Detailed description of the invention
The utility model is described in further detail below in conjunction with the accompanying drawings:
Embodiment: refer to Fig. 1,2,3 and Fig. 4,5,6, a kind of pneumatic transmission system bidirectional transmit-receive work station, including transmitting-receiving case 1, it is provided with lifting platform 2 to carry transfer bottle W in transmitting-receiving case 1, lifting platform 2 can upwards jack-up transfer bottle W sent into by transfer bottle and receive and dispatch in the Pneumatic logistic pipeline 3 that connects of case, lifting platform 2 can use air-flow jack-up, machinery jack-up or electronic jack-up, the air-flow jack-up used in embodiment.Being provided with gas storehouse 4 bottom transmitting-receiving case 2, gas storehouse 4 has air inlet and gas outlet, and lifting platform 2 is arranged at gas outlet, and lifting platform 2 is by airflow function jack-up transfer bottle W.Lifting platform 2 bottom surface is arranged on guiding column jecket 21, lead tube end is provided with limit base 210, guide column jecket 21 to coordinate with the axis of guide 5, the axis of guide 5 is fixed on bottom transmitting-receiving case 2 gas storehouse, lifting platform 2 is provided with annular chamber 200 in guiding 21 weeks sides of column jecket, annular chamber outer wall 22 coordinates with gas storehouse 4 gas outlet seal, and when outer wall 22 detaches QI KOU, lifting platform 2 realizes logistics transmission in rising to maximum height and transfer bottle W being delivered to Pneumatic logistic pipeline 3.Such as Fig. 2,3 and Fig. 5, in 6, the axis of guide 5 is arranged on guide shaft support 6, and guide shaft support 6 is fixed on bottom transmitting-receiving case 1 gas storehouse, and at gas outlet, gas storehouse fixed underpan 7, lifting platform 2 periphery is placed on chassis 7, is provided with sealing ring 8 between lifting platform 2 periphery and chassis 7.The air inlet in transmitting-receiving case gas storehouse 4 is connected with the air flow power unit 9 of pneumatic transmission system.
Such as Fig. 1, Fig. 2, 3, transmitting-receiving case 1 side is provided with chamber door 101 to deposit or to take out transfer bottle, transmitting-receiving case 1 top is provided with junction block 31, between junction block 31 and work station, pipeline communication forms Pneumatic logistic pipeline 3, in junction block 31 extends to receive and dispatch case 1 and face lifting platform 2, wherein Fig. 1 and Fig. 2, junction block 31 side sets gas flow tube 91, gas flow tube 91 extends in the gas storehouse 4 in transmitting-receiving bottom portion, gas flow tube 91 and air flow power unit 9 are connected to form main transmitting-receiving work station Z1, it uses state such as Fig. 7, 8 and Fig. 9, shown in 10, wherein Fig. 7, 8 is that single-point is to unicast system diagram, i.e. one main transmitting-receiving work station corresponding one from transmitting-receiving work station, Fig. 9, 10 is that single-point is to multicast system figure, i.e. one main transmitting-receiving work station is corresponding multiple from transmitting-receiving work station.
Such as Fig. 4, Fig. 5, 6, transmitting-receiving case 1 side is provided with chamber door 101 to deposit or to take out transfer bottle W, transmitting-receiving case 1 top is provided with junction block 31, between junction block 31 and work station, pipeline communication forms Pneumatic logistic pipeline 3, in junction block 31 extends to receive and dispatch case 1 and face lifting platform 2, gas storehouse 4 air inlet under lifting platform can be arranged on side and be formed from transmitting-receiving work station Z2, as shown in Fig. 6 airflow arrows, use state such as Fig. 7, 8 and Fig. 9, 10, wherein Fig. 7, 8 is that single-point is to unicast system diagram, i.e. one main transmitting-receiving work station Z1 corresponding one from transmitting-receiving work station Z2, Fig. 9, 10 is that single-point is to multicast system figure, i.e. one main transmitting-receiving work station Z1 is corresponding multiple from transmitting-receiving work station Z2.
When this utility model uses, directly transfer bottle W is put on lifting platform 2 and sends into Pneumatic logistic pipeline 3 by air-flow upwards jack-up, and air-flow to be the blower fan by system take offence that unit (air flow power unit 9) provides, when transfer bottle is partially into Pneumatic logistic pipeline, the i.e. upper sealing ring circle of transfer bottle enters into Pneumatic logistic pipeline, blower fan unit of taking offence is converted to again provide air-flow to carry transfer bottle and arrive expection work station to Pneumatic logistic pipeline, has rational in infrastructure, the transmitting-receiving operation advantage such as quickly.
Described above, only utilize modification, change that the embodiment of this origination techniques content, any those skilled in the art use this creation to be done, all belong to the scope of the claims of this creation opinion, and be not limited to those disclosed embodiments.

Claims (6)

1. a pneumatic transmission system bidirectional transmit-receive work station, it is characterised in that: include receiving and dispatching case, transmitting-receiving Being provided with lifting platform in case to carry transfer bottle, lifting platform can upwards jack-up transfer bottle sent into by transfer bottle and receive Send out in the Pneumatic logistic pipeline of case connection.
Pneumatic transmission system bidirectional transmit-receive work station the most according to claim 1, it is characterised in that: Described transmitting-receiving bottom portion is provided with gas storehouse, and gas storehouse has air inlet and gas outlet, and lifting platform is arranged at gas outlet, Lifting platform passes through airflow function jack-up transfer bottle.
Pneumatic transmission system bidirectional transmit-receive work station the most according to claim 2, it is characterised in that: The air inlet in described transmitting-receiving case gas storehouse is connected with the air flow power unit of pneumatic transmission system.
Pneumatic transmission system bidirectional transmit-receive work station the most according to claim 2, it is characterised in that: Described lifting platform bottom surface is arranged on guiding column jecket, guides column jecket and coordinates with the axis of guide, and the axis of guide is fixed on to be received Sending out bottom case gas storehouse, lifting platform is provided with annular chamber, annular chamber outer wall and gas outlet, gas storehouse in guiding column jecket week side Sealing and coordinate, when outer wall detaches QI KOU, lifting platform rises to maximum height and transfer bottle is delivered to Pneumatic logistic Logistics transmission is realized in pipeline.
5., according to the pneumatic transmission system bidirectional transmit-receive work station one of Claims 1-4 Suo Shu, it is special Levying and be: described transmitting-receiving case side is provided with chamber door to deposit or to take out transfer bottle, transmitting-receiving box top is provided with joint Pipe, between junction block and work station, pipeline communication forms Pneumatic logistic pipeline, and junction block extends to receive and dispatch in case And facing lifting platform, junction block side sets gas flow tube, and gas flow tube communicates with the gas storehouse of transmitting-receiving case, gas flow tube It is connected with air flow power unit.
Pneumatic transmission system bidirectional transmit-receive work station the most according to claim 1, it is characterised in that: institute Transfer bottle by air draught or machinery or electronic upwards jack-up transfer bottle and can be sent by the lifting platform stated Entering and in the transmitting-receiving Pneumatic logistic pipeline that connect of case, after lifting platform is left in transfer bottle transmission, lifting platform can be by Self gravitation or machinery or electronic return in situ.
CN201521046998.5U 2015-12-16 2015-12-16 A kind of pneumatic transmission system bidirectional transmit-receive work station Active CN205739482U (en)

Priority Applications (1)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521046998.5U CN205739482U (en) 2015-12-16 2015-12-16 A kind of pneumatic transmission system bidirectional transmit-receive work station

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107364720A (en) * 2017-08-15 2017-11-21 厦门积硕科技有限公司 A kind of twin flue transmitting-receiving work station, pneumatic sample Transmission system and control method
CN108483046A (en) * 2018-03-22 2018-09-04 厦门积硕科技有限公司 A kind of sample automatic transceiving system
CN108946169A (en) * 2018-06-25 2018-12-07 银川东方气力运输设备有限公司 Transceiver, receive-transmit system and receiving/transmission method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107364720A (en) * 2017-08-15 2017-11-21 厦门积硕科技有限公司 A kind of twin flue transmitting-receiving work station, pneumatic sample Transmission system and control method
CN108483046A (en) * 2018-03-22 2018-09-04 厦门积硕科技有限公司 A kind of sample automatic transceiving system
CN108483046B (en) * 2018-03-22 2023-11-28 厦门积硕科技有限公司 Automatic sample receiving and dispatching system
CN108946169A (en) * 2018-06-25 2018-12-07 银川东方气力运输设备有限公司 Transceiver, receive-transmit system and receiving/transmission method

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CP01 Change in the name or title of a patent holder

Address after: 704 Fujian City, Xiamen Province Software Park Road, No. 19, No. 361000

Patentee after: Xiamen Jesoo Technology Co., Ltd.

Address before: 704 Fujian City, Xiamen Province Software Park Road, No. 19, No. 361000

Patentee before: XIAMEN JESOO SCIENCE & TECHNOLOGY CO., LTD.

CP01 Change in the name or title of a patent holder
CB03 Change of inventor or designer information

Inventor after: Liu Daxun

Inventor after: Lai Yunfei

Inventor after: Zhou Fuqiang

Inventor after: Xu Xiaoyi

Inventor after: Liu Yongzhong

Inventor before: Liu Daxun

Inventor before: Lai Yunfei

Inventor before: Zhou Fuqiang

Inventor before: Xu Xiaoyi

CB03 Change of inventor or designer information
CB03 Change of inventor or designer information

Inventor after: Liu Daxun

Inventor after: Liu Yongzhong

Inventor after: Lai Yunfei

Inventor after: Zhou Fuqiang

Inventor after: Xu Xiaoyi

Inventor before: Liu Daxun

Inventor before: Lai Yunfei

Inventor before: Zhou Fuqiang

Inventor before: Xu Xiaoyi

Inventor before: Liu Yongzhong

CB03 Change of inventor or designer information
CP01 Change in the name or title of a patent holder

Address after: 704 Fujian City, Xiamen Province Software Park Road, No. 19, No. 361000

Patentee after: Xiamen Saimo Jishuo Technology Co., Ltd.

Address before: 704 Fujian City, Xiamen Province Software Park Road, No. 19, No. 361000

Patentee before: Xiamen Jesoo Technology Co., Ltd.

CP01 Change in the name or title of a patent holder