CN211422876U - Multi-outlet adjustable inflation system - Google Patents

Multi-outlet adjustable inflation system Download PDF

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Publication number
CN211422876U
CN211422876U CN201922189756.6U CN201922189756U CN211422876U CN 211422876 U CN211422876 U CN 211422876U CN 201922189756 U CN201922189756 U CN 201922189756U CN 211422876 U CN211422876 U CN 211422876U
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China
Prior art keywords
air
inflation
gas
pipe
supply pipe
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CN201922189756.6U
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Chinese (zh)
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解文旭
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Hebei Haiyang Shunda Energy Saving Glass Co ltd
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Hebei Haiyang Shunda Energy Saving Glass Co ltd
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Abstract

The utility model relates to an inflation system with adjustable multi-outlet aerifys efficiently, and it is secure to aerify the quality. This system includes the air supply pipe with the gas pitcher intercommunication, the air supply pipe has an air inlet, the air inlet pass through the pipeline with the gas outlet intercommunication of gas pitcher, the air supply pipe has a plurality of gas outlets, air supply pipe gas outlet department installs first control valve, the air supply pipe gas outlet through first coupling with the charging connector intercommunication, the charging connector include with the gas tube of air supply pipe intercommunication, with the gas outlet of charging tube intercommunication, charging tube periphery cover is equipped with first gas cell and second gas cell, still set up the gas pocket with first gas cell and second gas cell intercommunication on the gas tube, the gas pocket still communicates there is the gas-supply pipe, the air inlet of gas-supply pipe is located the outside of gas-supply pipe, the air inlet of gas-supply pipe has aerating device through the intake pipe intercommunication, install the second control valve in the intake pipe.

Description

Multi-outlet adjustable inflation system
Technical Field
The utility model relates to a glass processing field especially relates to an inflation system with adjustable multi-outlet.
Background
Along with the improvement of social energy-saving requirements, the requirements on building materials are higher and higher, for glass, the energy-saving significance is to further expand the advantages of the glass compared with the traditional building materials, namely, the light-transmitting and heat-proof capability is improved, from the perspective of the glass, the online Low-E, heat reflection coating, single-silver Low-E, double-silver Low-E and three-silver Low-E products are available, and along with the updating and upgrading of the products, the surface radiance is also reduced to the utmost extent. In order to further improve the heat preservation performance of the glass, most of the prior methods adopt a mode of filling inert gas, and the online filling of rectangular conventional sizes is realized, but for the ultra-conventional products, the manual filling technology is still needed. The traditional manual inflation has low efficiency, only single-sheet operation, high labor intensity and low inflation efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model discloses just to prior art exist not enough, provide one kind and aerify efficiently, aerify the adjustable system of aerifing of the multi-outlet that the quality is guaranteed.
In order to solve the above problems, the utility model adopts the following technical proposal:
a multi-outlet adjustable inflation system comprises an air supply pipe communicated with an air tank, wherein the air supply pipe is provided with an air inlet, the air inlet is communicated with an air outlet of the air tank through a pipeline, the air supply pipe is provided with a plurality of air outlets, a first control valve is installed at the air outlet of the air supply pipe, the air outlet of the air supply pipe is communicated with an inflation nozzle through a first pipe joint, the inflation nozzle comprises an inflation pipe communicated with the air outlet of the air supply pipe and an air outlet head communicated with the inflation pipe, a first inflation bag and a second inflation bag are sleeved at the periphery of the inflation pipe and are arranged in a high-low position, air holes communicated with the first inflation bag and the second inflation bag are further formed in the inflation pipe, the air holes are further communicated with the air pipe, the air inlet of the air pipe is positioned outside the inflation pipe, and an inflation device is communicated with the air inlet pipe, and a second control valve is arranged on the air inlet pipe.
Preferably, the inflation device comprises an inflation ball and a hose communicated with the inflation ball, the hose is communicated with the air inlet pipe through a third pipe joint, and an air closing valve is mounted on the hose.
Preferably, the gas-supply pipe includes a main pipe and two spinal branch pipes that are responsible for the intercommunication, the gas outlet of two spinal branch pipes all communicates with the gas pocket on the gas tube, the gas inlet of being responsible for pass through the second coupling with the intake pipe intercommunication.
Preferably, the air supply pipe is of a circular tubular structure, one end of the air supply pipe is closed, the other end of the air supply pipe is provided with an air inlet communicated with the air tank, and air outlets of the air supply pipe are uniformly formed in the peripheral wall of the air supply pipe.
Preferably, the first inflatable bag and the second inflatable bag are both made of elastic rubber materials, and the upper end and the lower end of the first inflatable bag are opened and are connected with the inflatable tube in a sealing mode.
Preferably, first gas cell and second gas cell all include the portion of aerifing and are located the installation department of the portion both sides of aerifing, the installation department inboard is equipped with cyclic annular arch, seted up on the gas tube perisporium with cyclic annular arch complex annular, first gas cell and second gas cell pass through the clamp and install on the gas tube.
Compared with the prior art, the utility model discloses an implement the effect as follows:
(1) the air supply pipe adopts an adjustable multi-outlet design, a plurality of outlets are arranged, each outlet is provided with a valve which can be independently adjusted, and which outlet is used for inflation, so that different quantities of air can be simultaneously used,
(2) the inflation has synchronism, when in use, the glass with consistent size is inflated at the same time, when the concentration of the outermost sheet of gas is found to be enough through measurement, the concentration inside also meets the design requirement, because the concentration measurement is not required to be carried out frequently, the labor intensity is reduced, and the whole inflation time is shortened; compared with the traditional inflation mode, the synchronous inflation mode can save more than half of gas, thereby achieving the technical effect of saving cost.
(3) After the first inflatable bag and the second inflatable bag are inflated and expanded, the first inflatable bag and the second inflatable bag can be clamped in the inflation holes of the glass, the tightness of the combination between the air nozzle and the inflation holes is strong, the air nozzle is effectively prevented from falling off in the inflation process, and the stability of the inflation process is ensured; the air tightness between the air tap and the inflation hole can meet the use requirement, and the effectiveness of the inflation process is ensured.
Drawings
Fig. 1 is a schematic structural diagram of a gas supply pipe portion in a multi-outlet adjustable inflation system according to the present invention.
Fig. 2 is a schematic structural view of an inflation nozzle portion in a multi-outlet adjustable inflation system according to the present invention.
1. A gas supply pipe; 11. an air inlet of the air supply pipe; 12. an air outlet of the air supply pipe; 2. a first control valve; 3. clamping a hoop; 4. an air outlet head; 5. a second inflatable bag; 6. a first inflatable bladder; 7. a gas delivery pipe; 8. an inflation tube; 9. a first pipe joint; 10. a second pipe joint; 13. flushing a balloon; 14. closing the air valve; 15. a second control valve; 16. a third pipe joint; 17. a hose; 18. an air inlet pipe.
Detailed Description
The present invention will be described with reference to specific embodiments.
Referring to fig. 1 and 2, the utility model provides an inflation system with adjustable multi-outlet, including an air supply pipe 1 communicated with an air tank, the air supply pipe 1 has an air inlet, a control main valve is installed at the air supply pipe air inlet 11, the air supply pipe air inlet 11 is communicated with the air outlet of the air tank through a pipeline, the air supply pipe 1 has a plurality of air outlets, a first control valve 2 is installed at the air supply pipe air outlet 12, the air outlet of the air supply pipe 1 is communicated with an inflation nozzle through an air pipe (not shown) and a first pipe joint 9 (each air supply pipe 1 is provided with an inflation nozzle), the inflation nozzle includes an inflation pipe 8 communicated with the air supply pipe air outlet 12 and an air outlet 4 communicated with the inflation pipe 8, a first inflation bag 6 and a second inflation bag 5 are sleeved on the periphery of the inflation pipe 8, the first inflation bag 6 and the second inflation bag 5 are arranged in high and low positions, the inflation tube 8 is further provided with an air hole communicated with the first inflation bag 6 and the second inflation bag 5, the air hole is further communicated with an air pipe 7, an air inlet of the air pipe 7 is located outside the inflation tube 8, an air inlet of the air pipe 7 is communicated with an inflation device through an air inlet pipe 18, and the air inlet pipe 18 is provided with a second control valve 15.
When the glass is inflated, the air nozzle is placed in the inflation hole of the glass, air is blown into the first inflation bag 6 and the second inflation bag 5 through the inflation device, and the air bags gradually expand under the action of the air until the air bags are firmly clamped in the inflation hole of the glass. And opening the main control valve and the first control valve 2 at the air outlet 12 of the air supply pipe, and filling inert gas into the glass cavity through the air tank. And closing the control main valve and the first control valve 2 after the air charging is finished.
The gas supply pipe 1 in the scheme adopts an adjustable multi-outlet design, a plurality of outlets are arranged, each outlet is provided with a valve which can be independently adjusted, which outlet is used for opening, the requirement of simultaneous inflation for different quantities is met,
this scheme can realize aerifing the synchronism, can aerify simultaneously in the glass of size unanimity, when discovering outermost piece gas concentration enough through measuring, the inside concentration also can satisfy the designing requirement. Because concentration measurement is not required to be carried out frequently, the labor intensity is reduced, and the whole inflation time is shortened; in addition, compared with the traditional inflation mode (single-sheet inflation), the synchronous inflation mode can save more than half of gas, thereby achieving the technical effect of saving cost.
First gas cell 6 and second gas cell 5 are aerifyd and are bloated the back, can block in glass's inflation hole, and the compactness of combining between air cock and the inflation hole is strong, effectively prevents to inflate the in-process air cock and drops, has guaranteed the stability of inflation process. The air tightness between the air tap and the inflation hole can also meet the use requirement, and the effectiveness of the inflation process is ensured.
The inflation device comprises an inflation ball 13 and a hose 17 communicated with the inflation ball 13, and an air-closing valve 14 is installed on the hose 17. When the air inflation is carried out, an operator continuously extrudes the inflation balloon 13, external air can only enter the inflation bag through the air closing valve 14, and the air in the inflation bag cannot flow out. To facilitate the mounting and dismounting of the inflator, the hose 17 and the air inlet pipe 18 are communicated through a third pipe joint 16.
Gas-supply pipe 7 in this application include one be responsible for and with be responsible for two spinal branch pipes of intercommunication, the gas outlet of two spinal branch pipes all with the gas pocket intercommunication on the gas tube 8, the gas inlet of being responsible for pass through second coupling 10 with the intake pipe intercommunication, this design can be realized fast and steadily and to the air of blowing in first gas cell 6 and the second gas cell 5, has guaranteed the validity of gas cell work.
The air supply pipe 1 is of a circular tube-shaped structure, one end of the air supply pipe 1 is sealed, the other end of the air supply pipe 1 is provided with an air inlet communicated with the air tank, air outlets of the air supply pipe 1 are uniformly arranged on the peripheral wall of the air supply pipe, and the design can enable air pressure at each position in the cavity to be basically balanced, so that the air inflation stability is improved.
The first inflatable bag 6 and the second inflatable bag 5 are both made of elastic rubber materials, so that the elasticity is good, and the filling and extruding functions are easy to realize. The upper ends and the lower ends of the first inflatable bag 6 and the second inflatable bag 5 are opened and are connected with an inflatable tube 8 in a sealing way. Specifically, first gas cell 6 and second gas cell 5 all include the portion of aerifing and are located the installation department of the portion both sides of aerifing, the installation department inboard is equipped with annular arch, seted up on the gas tube 8 periphery wall with annular protruding complex annular, first gas cell 6 and second gas cell 5 pass through clamp 3 to be installed on the gas tube 8.
The size of the annular bulge is slightly larger than that of the annular groove (the annular bulge is made of elastic rubber materials), and effective sealing between the inflatable bag and the inflation tube 8 can be realized. Can firmly install the gas cell on gas tube 8 through clamp 3, avoid taking place to leak gas at the in-process gas cell that enters the air to the gas cell to help guaranteeing that follow-up inflation process can go on smoothly.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (6)

1. A multi-outlet adjustable inflation system comprises an air supply pipe communicated with an air tank, and is characterized in that the air supply pipe is provided with an air inlet, a control main valve is installed at the air inlet of the air supply pipe, the air inlet of the air supply pipe is communicated with an air outlet of the air tank through a pipeline, the air supply pipe is provided with a plurality of air outlets, a first control valve is installed at the air outlet of the air supply pipe, the air outlet of the air supply pipe is communicated with an inflation nozzle through a first pipe joint, the inflation nozzle comprises an inflation pipe communicated with the air outlet of the air supply pipe and an air outlet communicated with the inflation pipe, a first inflation bag and a second inflation bag are sleeved on the periphery of the inflation pipe, the first inflation bag and the second inflation bag are arranged in a high-low position mode, air holes communicated with the first inflation bag and the second inflation bag are further formed in the inflation pipe, the air pipes are further communicated with the air pipes, and the air inlet of each air, the air inlet of the air delivery pipe is communicated with an air charging device through an air inlet pipe, and a second control valve is installed on the air inlet pipe.
2. The system of claim 1, wherein the inflation device comprises a balloon and a hose connected to the balloon, the hose is connected to the air inlet pipe through a third pipe joint, and the hose is provided with an air-blocking valve.
3. The system of claim 2, wherein the gas delivery pipe comprises a main pipe and two branch pipes connected to the main pipe, the gas outlets of the two branch pipes are connected to the gas hole of the gas delivery pipe, and the gas inlet of the main pipe is connected to the gas inlet pipe through a second pipe joint.
4. The system of claim 1, wherein the gas supply tube is a tubular structure, one end of the gas supply tube is closed, the other end of the gas supply tube is provided with a gas inlet for communicating with a gas tank, and gas outlets of the gas supply tube are uniformly formed on the peripheral wall of the gas supply tube.
5. The system of claim 1, wherein the first and second air-inflating bags are made of elastic rubber material, and are open at upper and lower ends thereof and are connected with the air-inflating tube in a sealing manner.
6. The adjustable inflation system with multiple outlets of claim 5, wherein the first and second inflation bags each comprise an inflation portion and an installation portion located on both sides of the inflation portion, an annular protrusion is disposed inside the installation portion, an annular groove matched with the annular protrusion is formed in the circumferential wall of the inflation tube, and the first and second inflation bags are installed on the inflation tube through a clamp.
CN201922189756.6U 2019-12-09 2019-12-09 Multi-outlet adjustable inflation system Active CN211422876U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922189756.6U CN211422876U (en) 2019-12-09 2019-12-09 Multi-outlet adjustable inflation system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922189756.6U CN211422876U (en) 2019-12-09 2019-12-09 Multi-outlet adjustable inflation system

Publications (1)

Publication Number Publication Date
CN211422876U true CN211422876U (en) 2020-09-04

Family

ID=72250515

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922189756.6U Active CN211422876U (en) 2019-12-09 2019-12-09 Multi-outlet adjustable inflation system

Country Status (1)

Country Link
CN (1) CN211422876U (en)

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