The present invention relates to a pump and valve combination for bladder adjustment, especially to a pump and valve combination which uses fluid for adjustment of bladders. For example, the pump and valve combination can be applied to at least one part of seats, beds, etc.
For the comfort of users, seats available now are often provided with lumbar supports or adjustable supports for other areas of the body. For example, the backrest is provided with the lumbar support that forms a suitable support surface for supporting users' lumbar spine. The lumbar support can be a support based on components able to be moved mechanically or a support with at least one inflatable chamber with fluid therein. The inflatable chamber is provided with inflatable air cushions or bladders whose shape and size are adjustable along with the volume of the fluid therein.
The space in the seats available for installation of other parts is limited. Thus there is room for improvement and there is a need to provide a pump and valve combination in which a plurality of adjustable members is integrated into one piece for decreasing assembly cost and increasing seat comfort without occupying too much space while being mounted into the seat.
Therefore it is a primary object of the present invention to provide a pump and valve combination for bladder adjustment in which a plurality of adjustable members is integrated into one piece so that not space occupied is minimized and assembly cost is reduced.
The present invention provides a pump and valve combination for bladder adjustment comprising: a valve member which is communicating with at least one bladder and including a valve cap, at least one solenoid operated directional control valve mounted in the valve cap, and at least one air supply tube arranged in the valve cap; and a fluid supply member which is connected to the bottom of the valve member and provided with at least one air supply port; wherein the valve cap is connected to one end of the fluid supply member; an air input end of the air supply tube is connected to the air supply port and an air output end of the air supply tube is connected to an input portion of the solenoid operated directional control valve while an output portion of the solenoid operated directional control valve is connected to the bladder. The valve member is not provided with any check valve.
Preferably, the valve cap includes at least one pipe hole and the output portion of the solenoid operated directional control valve is exposed through the pipe hole.
Preferably, the valve member further includes an electronic control part which is electrically connected to at least one solenoid operated directional control valve. The electronic control part controls the fluid supply member for supplying gas to the valve member.
Preferably, the valve cap is further provided with an electrical interface while the electronic control part includes a terminal set which is located in the electrical interface.
Preferably, a stopping portion is formed around the air supply tube. The stopping portion is projecting from the air supply tube and disposed around the air supply port of the fluid supply member.
Preferably, at least one limiting slot is formed on the electronic control part for limiting the air supply tube therein. The stopping portion of the air supply tube is arranged between the limiting slot and the air supply port of the fluid supply member.
Preferably, the solenoid operated directional control valve further includes an adjustment outlet through which fluid in the bladder is discharged to the atmosphere.
Preferably, the adjustment outlet of the solenoid operated directional control valve is located inside the valve cap.
Preferably, the pump and valve combination for bladder adjustment includes a pair of solenoid operated directional control valves and a pair of air supply tubes while the fluid supply member includes a pair of air supply ports.
The present invention provides a pump and valve combination for bladder adjustment comprising: a valve member which is communicating with at least one bladder and including a valve cap, at least one solenoid operated directional control valve mounted in the valve cap, and at least one air supply tube arranged in the valve cap; and a fluid supply member which is connected to the bottom of the valve member and provided with at least one air supply port; wherein the valve cap is connected to one end of the fluid supply member; an air input end of the air supply tube is connected to the air supply port and an air output end of the air supply tube is connected to an input portion of the solenoid operated directional control valve while an output portion of the solenoid operated directional control valve is connected to the bladder. The fluid supply member is provided at least one check valve which is disposed on top of the air supply port.
Implementation of the present invention at least produces the following advantageous effects: a plurality of adjustable members is integrated into one pump and valve combination so as to reduce not only the space occupied but also the assembly cost.
The features and advantages of the present invention are detailed hereinafter with reference to the preferred embodiments. The detailed description is intended to enable a person skilled in the art to gain insight into the technical contents disclosed herein and implement the present invention accordingly. In particular, a person skilled in the art can easily understand the objects and advantages of the present invention by referring to the disclosure of the specification, the claims, and the accompanying drawings.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
Refer to
Refer to
In this embodiment, the pump and valve combination 1 includes a pair of solenoid operated directional control valves 126 and a pair of air supply ports 122 while the fluid supply member 11 includes a pair of air supply ports 110.
As shown in
The valve cap 128 includes a pair of pipe holes 1282 and the output portion 1262 of the solenoid operated directional control valve 126 is exposed through the pipe hole 1282, as shown in
In this embodiment, the valve member 12 further includes an electronic control part 124 which is electrically connected to at least one solenoid operated directional control valve 126. The electronic control part 124 is further electrically connected to the fluid supply member 11 for control of the fluid supply member 11 in order to supply gas to the valve member 12.
The solenoid operated directional control valve 126 further includes an adjustment outlet 1263 through which fluid in the bladder 2 is discharged to the atmosphere. The adjustment outlet 1263 of the solenoid operated directional control valve 126 is located inside the valve cap 128, as shown in
In this embodiment, the solenoid operated directional control valve 126 is provided with an actuator for adjusting gas flow during the adjustment process mentioned above. The actuator can be a solenoid, a piezo element, and so on.
Moreover, the electronic control part 124 controls time and duration the power being supplied to the actuator of the solenoid operated directional control valve 126. The electronic control part 124 can have additional functions. For example, the valve member 12 is provided with a pressure sensor for pressure measurement of the air in the bladder 2. The electronic control part 124 can be coupled to the pressure sensor for control of actuation of the fluid supply member 11 and the valve member 12 according to the value of the pressure measured. The valve member 12 further includes a storage in which preset pressure settings or preset actuation modes are stored. The electronic control part 124 controls the actuation of the fluid supply member 11 and the valve member 12 based on the preset pressure settings or preset actuation modes.
The valve cap 128 is further provided with an electrical interface 1284 while the electronic control part 124 includes a terminal set 1241 which is used for receiving signals and located in the electrical interface 1284. The electronic control part 124 is disposed to respond to the signals received for control of the fluid supply member 11 and the valve member 12. The electronic control part 124 can be mounted in the valve member 12. Thus, the assembly process of the pump and valve combination 1 on the product can be simplified.
A stopping portion 1223 is formed around the air supply tube 122. The stopping portion 1223 is projecting from the air supply tube 122 and arranged around the air supply port 110 of the fluid supply member 11.
At least one limiting slot 1242 is formed on the electronic control part 124 for limiting the air supply tube 122 therein. The stopping portion 1223 of the air supply tube 122 is arranged between the limiting slot 1242 and the air supply port 110 of the fluid supply member 11. Thereby the air supply tube 122 is fixed in the pump and valve combination 1 easily.
Refer to
As shown in
Refer to
In this embodiment, the check valves 1133 are disposed on the top of the fluid supply member 11 and used for allowing fluid to flow from the fluid supply member 11 to the valve member 12 and blocking fluid flow in the reverse direction.
As shown in
The above description is only the preferred embodiments of the present invention, and is not intended to limit the present invention in any form. Although the invention has been disclosed as above in the preferred embodiments, they are not intended to limit the invention. A person skilled in the relevant art will recognize that equivalent embodiment modified and varied as equivalent changes disclosed above can be used without parting from the scope of the technical solution of the present invention. All the simple modification, equivalent changes and modifications of the above embodiments according to the material contents of the invention shall be within the scope of the technical solution of the present invention.
Number | Date | Country | Kind |
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201811131588.9 | Sep 2018 | CN | national |