A method for inflating an air path bottom plate inflation device
By designing an air storage tank and an air circuit base plate inflation device controlled by multiple valves, the problems of difficult installation and limited functionality of existing air storage devices have been solved, enabling rapid inflation and flow regulation, and improving inflation efficiency and safety.
Patent Information
- Application Number
- CN202210617673.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-01
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-06-01
AI Technical Summary
Existing gas storage and filling devices have problems such as difficulty in installation, limited functionality due to small gas tank size, and potential gas leakage during installation and use.
An air circuit base plate inflation device was designed, including an air storage tank, an air inlet pipe, an air outlet pipe, a connecting pipe, and multiple valve bodies. Different inflation modes are achieved by controlling the opening and closing of the valve bodies. Combined with sensors and solenoid valve bodies, rapid inflation and low flow rate regulation can be realized.
It enables convenient connection between the air source and the device to be inflated, supports rapid inflation and small flow rate adjustment, and improves inflation efficiency and safety.
Smart Images

Figure CN115264373B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a kind of air path bottom plate inflation device inflation method. BACKGROUND
[0002] The existing gas storage inflation device is only a simple gas tank, and when the corresponding device or equipment needs to be inflated, the gas tank is usually directly connected to the device that needs to be inflated to inflate the device. The gas tank is inflated in the specific installation and use process, and there are many deficiencies, such as difficult installation; the small volume of the gas tank limits the function; gas leakage hazard, etc. SUMMARY
[0003] The present application provides a kind of air path bottom plate inflation device inflation method with simple structure, reasonable, safe and adjustable to meet the needs of inflation amount, to solve the problems in the prior art in use.
[0004] The technical scheme for solving the existing problems is: a kind of air path bottom plate inflation device inflation method, as an improvement, including gas tank, gas inlet pipeline, gas outlet pipeline, first pipeline connected with gas inlet pipeline and gas outlet pipeline, the gas tank is connected with gas inlet pipeline and gas outlet pipeline, the first pipeline is connected with gas inlet pipeline and has first valve body H, the first pipeline is connected with gas outlet pipeline and has second valve body F, the gas tank is connected with gas inlet pipeline and has third valve body G, and the gas tank is connected with gas outlet pipeline and has fourth valve body E.
[0005] As a further improvement, the first valve body H, the second valve body F, the third valve body G or / and the fourth valve body E are normally closed valves; the first valve body H, the second valve body F, the third valve body G or / and the fourth valve body E are solenoid valves.
[0006] As a further improvement, it further includes an outer shell.
[0007] As a further improvement, the gas inlet pipeline is provided with a first sensor; the gas outlet pipeline is provided with a second sensor.
[0008] As a further improvement, the gas tank is provided with a sealing cover, the sealing cover is located at the outer side end, and the inner side end of the gas tank is communicated with the gas inlet pipeline and the gas outlet pipeline.
[0009] As a further improvement, a second pipeline is further provided between the gas inlet pipeline and the gas outlet pipeline, the third valve body G is connected between the second pipeline and the gas inlet pipeline, the fourth valve body E is connected between the second pipeline and the gas outlet pipeline, the gas tank is provided with a connecting port, and the connecting port is connected to the second pipeline.
[0010] As a further improvement, the first pipeline is provided with a plug at the end where the air outlet pipeline is located.
[0011] As a further improvement, the flow rate of the first valve body H and the second valve body F is less than that of the fourth valve body E.
[0012] As a further improvement, the flow rate of the first valve body H and the second valve body F is less than that of the third valve body G.
[0013] Compared with the prior art, the present application is provided with a gas storage tank, an air inlet pipeline, an air outlet pipeline, a first pipeline connecting the air inlet pipeline and the air outlet pipeline, wherein the gas storage tank is connected with the air inlet pipeline and the air outlet pipeline, a first valve body H is connected between the first pipeline and the air inlet pipeline, a second valve body F is connected between the first pipeline and the air outlet pipeline, a third valve body G is connected between the gas storage tank and the air inlet pipeline, and a fourth valve body E is connected between the gas storage tank and the air outlet pipeline. The third valve body G is opened, and the first valve body H and the fourth valve body E are closed to charge the gas storage tank, so that the gas storage tank stores gas. The first valve body H and the second valve body F are opened, and the third valve body G and the fourth valve body E are closed to connect the air inlet pipeline, the first pipeline, and the air outlet pipeline to charge the subordinate device with small flow rate. The first valve body H, the second valve body F, and the fourth valve body E are opened, and the third valve body G is closed to simultaneously charge the device to be charged with the gas stored in the gas storage tank and the air inlet pipeline and the air outlet pipeline. The beneficial effects are that the device to be charged is quickly charged through the cooperation of the first valve body H, the second valve body F, the third valve body G, or / and the fourth valve body E, different charging adjustments are realized through the switching of the corresponding valve bodies, the gas source and the subordinate charging device are connected conveniently and quickly, and the gas source and the device to be charged are connected conveniently and quickly through the device. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a structural perspective view of the present application.
[0015] Figure 2 is a top view of the present application.
[0016] Figure 3 is a structural view of embodiment 1 of the present application.
[0017] Figure 4 is a structural view of the present application for charging the gas storage tank.
[0018] Figure 5 is a structural view of embodiment 2 of the present application.
[0019] wherein Figure 1 、 2In order to better show the effect, the first valve body H, the second valve body F, the third valve body G and the fourth valve body E are not drawn. DETAILED DESCRIPTION
[0020] Reference Figures 1-5 A method for inflating a gas circuit bottom plate inflation device, comprising a gas storage tank 1, an inlet pipe 2, an outlet pipe 3, a first pipe 4 connecting the inlet pipe 2 and the outlet pipe 3, the gas storage tank 1 is connected with the inlet pipe 2 and the outlet pipe 3, so that the gas storage tank 1 can be inflated through the inlet pipe 2, or the gas storage tank pre-stored with gas can inflate the lower device through the outlet pipe 3. The first pipe 4 is connected with the inlet pipe 2 and the second valve body F is connected between the first pipe 4 and the outlet pipe 3, and the second valve body F controls the opening and closing of the first pipe 4 and the outlet pipe 3. The third valve body G is connected between the gas storage tank 1 and the inlet pipe 2, and the fourth valve body E is connected between the gas storage tank 1 and the outlet pipe 3; the third valve body G can control the opening and closing of the inlet pipe and the gas storage tank 1, and the fourth valve body E can control the opening and closing of the gas storage tank 1 and the outlet pipe 3.
[0021] The first valve body H, the second valve body F, the third valve body G or / and the fourth valve body E can be preferably set as a normally closed valve; the first valve body H, the second valve body F, the third valve body G or / and the fourth valve body E can be preferably an electromagnetic valve. In order to reduce the control frequency of the corresponding valve body. The first valve body H, the second valve body F, the third valve body G or / and the fourth valve body E can be controlled by manual control, or can be controlled by corresponding control circuit or control system. The specific circuit or system is subject to the control of the opening and closing of the corresponding valve body, which can be realized by programming means.
[0022] As a preferred, in order to facilitate control operation, the inlet pipe 2 is provided with a first sensor 21, and the outlet pipe 3 is provided with a second sensor 31, the first sensor 21 can be arranged at the end of the inlet pipe 2, and the second sensor 31 can be arranged at the end of the outlet pipe 3, the first and second sensors can measure the gas pressure of the corresponding pipe in real time. The first sensor 21 can be used to test the inlet gas pressure, and the second sensor 31 can be used to test the pressure maintaining gas pressure, such as the gas pressure after the lower device is filled with gas.
[0023] As can be opened by the first valve body H alone, the gas from the inlet pipe 2 enters the first pipe 4, the first sensor 21 measures the gas pressure of the first pipe 4, and after the measurement is finished, the second valve body F is opened alone, and the gas is discharged from the outlet port C of the outlet pipe 3, and the pressure measurement is finished. Similarly, the third valve body G can be opened alone, the gas from the inlet pipe 2 enters the second pipe 5 and the gas storage tank, the gas pressure of the second pipe 5 can be measured, and after the measurement is finished, the fourth valve body E is opened alone, and the gas is discharged from the outlet port C of the outlet pipe 3, and the pressure measurement is finished.
[0024] As further, the gas tank 1 is provided with a sealing cover 11, the sealing cover 11 is located at the outer side end, the inner side end of the gas tank 1 is communicated with the air inlet pipeline 2 and the air outlet pipeline 3.
[0025] As preferred of the embodiment, the second pipeline 5 is further provided between the air inlet pipeline 2 and the air outlet pipeline 3, the third valve body G is connected between the second pipeline 5 and the air inlet pipeline 2, the fourth valve body E is connected between the second pipeline 5 and the air outlet pipeline 3, and the gas tank 1 is provided with a connecting port 12, the connecting port 12 is connected on the second pipeline 5.
[0026] In order to facilitate maintenance, the first pipeline 4 is provided with a plug 7 at the end of the air outlet pipeline 3. The second pipeline 5 is provided with a plug 7 at the end of the air outlet pipeline 3.
[0027] The flow of the first valve body H and the second valve body F is less than that of the fourth valve body E. The flow of the first valve body H and the second valve body F is less than that of the third valve body G. The first valve body H and the second valve body E are small flow valve bodies, which can facilitate small flow fine adjustment. The third valve body G and the fourth valve body E are large flow valve bodies, which can facilitate rapid inflation.
[0028] Further comprising a housing 6 for mounting, wrapping or positioning each component, the gas tank 1, the air inlet pipeline 2, the air outlet pipeline 3, the first pipeline 4 and the second pipeline 5 can be arranged in the housing 6, and the first valve body H, the second valve body F, the third valve body G and / or the fourth valve body E can be mounted on the housing 6.
[0029] When the device needs to inflate the lower device, referring to Figure 3 , the air inlet D of the air inlet pipeline 2 of the device is connected to the gas source interface, and the air outlet C of the air outlet pipeline 3 is connected to the lower device which needs to be inflated. Each valve body is preferably a normally closed valve body. The first valve body H and the second valve body F are opened, the gas flow from the gas source passes through the air inlet pipeline 2, the first pipeline 4 and the air outlet pipeline 3 to inflate the lower device. When it is full, the first valve body H and the second valve body F are closed.
[0030] Each valve body is preferably a normally closed valve body. When the device needs to inflate the gas tank 1, referring to Figure 4 , the third valve body G is opened alone, the gas flow from the gas source passes through the air inlet pipeline 2, the second pipeline 5 and the connecting port 12 to inflate the gas tank. When it is full, the third valve body G is closed. Since the third valve body G has large flow, the gas tank 1 can be inflated quickly.
[0031] When rapid inflation is needed. Referring to Figure 3 , 4, 5, need to pre-charge gas tank 1, gas tank 1 full, close the third valve body G, can be opened according to the needs of the fourth valve body E, or open the fourth valve body E, the first valve body H, the second valve body F to fill the lower device. Because the fourth valve body E flow, gas tank 1 to fill the lower device fast, can be combined with the first valve body H, the second valve body F to fill the lower device, increase the amount of gas, further improve the charging speed. Fast full, can be closed according to the needs of the fourth valve body E, through the first valve body H, the second valve body F and the first pipeline 4 continue to charge, fine tuning, to ensure that the lower device can be filled.
Claims
1. A method for inflating an air circuit base plate inflation device, characterized in that: The application relates to a gas storage tank, an air inlet pipeline, an air outlet pipeline, a first pipeline connecting the air inlet pipeline and the air outlet pipeline, a first valve H connected between the first pipeline and the air inlet pipeline, a second valve F connected between the first pipeline and the air outlet pipeline, a third valve G connected between the air inlet pipeline and the gas storage tank, and a fourth valve E connected between the air outlet pipeline and the gas storage tank. The method comprises the following steps: a step of charging a lower-level device, wherein the first valve H and the second valve F are opened, air flows from the air source to the lower-level device through the air inlet pipeline, the first pipeline and the air outlet pipeline, the air pressure of the first sensor and the second sensor is monitored, and when the air pressure detected by the second sensor is equal to the air pressure detected by the first sensor, the first valve H and the second valve F are closed; a step of charging the gas storage tank, wherein the third valve G is opened, air flows from the air source to the gas storage tank through the air inlet pipeline and the second pipeline, and after the gas storage tank is filled, the third valve G is closed; 2. The method of inflating a gas path deck pad inflation device of claim 1, wherein: a step of rapidly charging the lower-level device, wherein after the gas storage tank is filled, the third valve G is closed, the fourth valve E is opened, air in the gas storage tank flows to the lower-level device through the fourth valve E, when the lower-level device is about to be filled, the fourth valve E is closed, the first valve H and the second valve F are opened, and the first pipeline is used to continue charging the lower-level device to make fine adjustment.
3. The method of inflating a gas path deck pad inflation device of claim 1, wherein: The first valve H, the second valve F, the third valve G and / or the fourth valve E are normally closed valves.
4. The method of inflating a gas path deck pad inflation device of claim 1, wherein: The first valve H, the second valve F, the third valve G and / or the fourth valve E are electromagnetic valves.
5. The method of inflating a gas path deck pad inflation device of claim 1, wherein: The application further comprises an outer shell.
6. The method of inflating a gas path deck pad inflation device of claim 1, wherein: In the step of rapidly charging the lower-level device, the first valve H and the second valve F are opened at the same time as the fourth valve E is opened.
7. The method of inflating a gas path deck pad inflation device of claim 1, wherein: The gas storage tank is provided with a sealing cover, the sealing cover is located at an outer side end, and an inner side end of the gas storage tank is communicated with the air inlet pipeline and the air outlet pipeline.
8. The method of inflating a gas path deck pad inflation device of claim 6, wherein: The gas storage tank is provided with a connecting port, and the connecting port is connected to the second pipeline.
9. The method of inflating a gas path deck pad inflation device of claim 1, wherein: The first pipeline is provided with a plug at an end where the air outlet pipeline is located.
10. The method of inflating a gas path deck pad inflation device of claims 1 or 9, wherein: The second pipeline is provided with a plug at an end where the air outlet pipeline is located. The flow of the first valve H and the second valve F is smaller than that of the fourth valve E. The flow of the first valve H and the second valve F is smaller than that of the third valve G.
Citation Information
Patent Citations
Feeding system, liquid chlorine filling method and chlorine gas supply method
CN109990200A
Gas circuit bottom plate inflating device
CN218237060U