VALVE BODY, ELECTROMAGNET SWITCH VALVE AND BED STRUCTURE
20210298487 · 2021-09-30
Assignee
Inventors
Cpc classification
A47C27/083
HUMAN NECESSITIES
F16K31/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/029
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/0603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A valve body including an outer wall, an inner wall, and a connecting wall is provided. The outer wall has a first upper surface, a first side surface, and a second side surface. At least one of the first side surface and the second side surface has a fluid hole. The inner wall is disposed within the outer wall. The inner wall shields the at least one fluid hole. A third side surface has an inner opening. The connecting wall is disposed within the outer wall. The connecting wall connects the inner opening of the inner wall and the fluid hole of the outer wall. Furthermore, an electromagnet switch valve and a bed structure are also provided.
Claims
1. A valve body comprising: an outer wall having a first upper surface, a first side surface, and a second side surface, wherein the first upper surface is connected to the first side surface and the second side surface, the first upper surface has a first opening, and at least one of the first side surface and the second side surface has a fluid hole; an inner wall disposed within the outer wall, wherein the inner wall shields the at least one fluid hole, the inner wall has a second upper surface and a third side surface connected to the second upper surface, and the second upper surface has a second opening, wherein opening directions of the first opening and the second opening are the same, and the third side surface has an inner opening; and a connecting wall disposed within the outer wall, wherein the connecting wall connects the inner opening of the inner wall and the fluid hole of the outer wall.
2. The valve body according to claim 1, wherein the first side surface and the second side surface both have a fluid hole.
3. The valve body according to claim 2, wherein the fluid hole provided in the first side surface is a first fluid hole, and the fluid hole provided in the second side surface is a second fluid hole, wherein the inner wall shields the first fluid hole and the second fluid hole and is located between the first fluid hole and the second fluid hole, and the connecting wall connects the first fluid hole of the outer wall.
4. The valve body according to claim 1, wherein one of the first side surface and the second side surface has a fluid hole, while the other does not have a fluid hole.
5. The valve body according to claim 1, wherein an aperture of the first opening is larger than an aperture of the second opening.
6. The valve body according to claim 1, further comprising a limiting part disposed within the inner wall, and the limiting part comprises a limiting hole.
7. The valve body according to claim 6, wherein an aperture of the second opening is larger than an aperture of the limiting hole.
8. The valve body according to claim 6, wherein opening directions of the first opening, the second opening, and the limiting hole are the same.
9. The valve body according to claim 1, wherein opening directions of the first opening and the second opening are a first opening direction, and opening directions of the first fluid hole and the second fluid hole are a second opening direction, wherein the first opening direction is different from the second opening direction.
10. An electromagnet switch valve comprising: an electromagnet driving member; a control rod comprising a first rod body and a switch member connected to each other, wherein the control rod is mechanically coupled to the electromagnet driving member through the first rod body; at least one valve body comprising: an outer wall having a first upper surface, a first side surface, and a second side surface, wherein the first upper surface is connected to the first side surface and the second side surface, the first upper surface has a first opening, and at least one of the first side surface and the second side surface has a fluid hole; an inner wall disposed within the outer wall, wherein the inner wall shields the at least one fluid hole, the inner wall has a second upper surface and a third side surface connected to the second upper surface, the second upper surface has a second opening, and a size of the switch member is larger than a size of the second opening, wherein opening directions of the first opening and the second opening are the same, and the third side surface has an inner opening; and a connecting wall disposed within the outer wall, wherein the connecting wall connects the inner opening of the inner wall and the fluid hole of the outer wall; and a fluid driving device connected to the fluid hole of the outer wall and adapted to drive a fluid to a flow channel in the valve body via the fluid hole, wherein in a first state, the electromagnet driving member drives the first rod body to drive the switch member to move to a first position, in a second state, the electromagnet driving member is powered off to maintain a position of the switch member, and in a third state, the electromagnet driving member drives the first rod body to drive the switch member to move to a second position, wherein the first position is different from the second position.
11. The electromagnet switch valve according to claim 10, wherein the first side surface and the second side surface both have a fluid hole.
12. The electromagnet switch valve according to claim 10, wherein the fluid hole provided in the first side surface is a first fluid hole, and the fluid hole provided in the second side surface is a second fluid hole, wherein the inner wall shields the first fluid hole and the second fluid hole and is located between the first fluid hole and the second fluid hole, and the connecting wall connects the second fluid hole of the outer wall.
13. The electromagnet switch valve according to claim 10, wherein the electromagnet driving member further comprises: a housing comprising two fitting holes opposite to each other; a second rod body passed through at least one of the two fitting holes, wherein the second rod body is connected to the first rod body of the control rod; at least one induction coil disposed in the housing and surrounding the second rod body; a voltage supply coupled to the at least one induction coil; and a magnetic member disposed at at least one of the two fitting holes.
14. The electromagnet switch valve according to claim 13, wherein in the first state, the voltage supply supplies a first voltage to the induction coil, so that the second rod body generates a repulsive force relative to the magnetic member to drive the first rod body to the first position, in the second state, the voltage supply stops supplying a voltage to the induction coil, so that the second rod body is attracted by the magnetic member to maintain a position of the switch member, and in the third state, the voltage supply supplies a second voltage, which is electrically opposite to the first voltage, to the induction coil, so that the second rod body generates a repulsive force relative to the magnetic member to drive the first rod body to the second position.
15. The electromagnet switch valve according to claim 10, wherein the at least one valve body comprises a plurality of valve bodies, and the valve bodies comprise a first valve body and a second valve body, wherein the first side surface and the second side surface of the first valve body both have a fluid hole, and one of the first side surface and the second side surface of the second valve body has a fluid hole, while the other does not have a fluid hole, wherein the first opening of the first valve body is joined with the first opening of the second valve body, and the control rod is disposed within the outer wall of the first valve body and the outer wall of the second valve body.
16. A bed structure comprising: an electromagnet switch valve comprising: an electromagnet driving member; a control rod comprising a first rod body and a switch member connected to each other, wherein the control rod is mechanically coupled to the electromagnet driving member through the first rod body; at least one valve body comprising: an outer wall having a first upper surface, a first side surface, and a second side surface, wherein the first upper surface is connected to the first side surface and the second side surface, the first upper surface has a first opening, and at least one of the first side surface and the second side surface has a fluid hole; an inner wall disposed within the outer wall, wherein the inner wall shields the at least one fluid hole, the inner wall has a second upper surface and a third side surface connected to the second upper surface, the second upper surface has a second opening, and a size of the switch member is larger than a size of the second opening, wherein opening directions of the first opening and the second opening are the same, and the third side surface has an inner opening; and a connecting wall disposed within the outer wall, wherein the connecting wall connects the inner opening of the inner wall and the fluid hole of the outer wall; and a fluid driving device connected to the fluid hole of the outer wall and adapted to drive a fluid to a flow channel in the valve body via the fluid hole, wherein in a first state, the electromagnet driving member drives the first rod body to drive the switch member to move to a first position, in a second state, the electromagnet driving member is powered off to maintain a position of the switch member, and in a third state, the electromagnet driving member drives the first rod body to drive the switch member to move to a second position, wherein the first position is different from the second position; and at least one inflatable bladder connected to the at least one fluid hole of the valve body, wherein the fluid driving device drives the fluid so that the fluid passes through the valve body to inflate the at least one inflatable bladder.
17. The bed structure according to claim 16, wherein the at least one valve body comprises a plurality of valve bodies, and the valve bodies comprise a first valve body and a second valve body, wherein the first side surface and the second side surface of the first valve body both have a fluid hole, and one of the first side surface and the second side surface of the second valve body has a fluid hole, while the other does not have a fluid hole, wherein the first opening of the first valve body is joined with the first opening of the second valve body, and the control rod is disposed within the outer wall of the first valve body and the outer wall of the second valve body.
18. The bed structure according to claim 17, wherein the first valve body and the second valve body each comprise a limiting part disposed within the corresponding inner wall, and the limiting part comprises a limiting hole, wherein the first rod body of the control rod is fit in the two limiting parts.
19. The bed structure according to claim 16, wherein the electromagnet driving member further comprises: a housing comprising two fitting holes opposite to each other; a second rod body passed through at least one of the two fitting holes, wherein the second rod body is connected to the first rod body of the control rod; at least one induction coil disposed in the housing and surrounding the second rod body; a voltage supply coupled to the at least one induction coil; and a magnetic member disposed at at least one of the two fitting holes.
20. The bed structure according to claim 19, wherein in the first state, the voltage supply in the electromagnet driving member supplies a first voltage to the induction coil, so that the second rod body generates a repulsive force relative to the magnetic member to drive the first rod body to the first position, in the second state, the voltage supply in the electromagnet driving member stops supplying a voltage to the induction coil, so that the second rod body is attracted by the magnetic member to maintain a position of the switch member, and in the third state, the voltage supply in the electromagnet driving member supplies a second voltage, which is electrically opposite to the first voltage, to the induction coil, so that the second rod body generates a repulsive force relative to the magnetic member to drive the first rod body to the second position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE EMBODIMENTS
[0024] Referring to
[0025] The base 310 is an elastic (or deformable) element which may expand as a fluid is injected inside, or may contract as a fluid is drawn from inside.
[0026] The at least one inflatable bladder 320 is disposed on the base 310 and is also made of an elastic (or deformable) material. In this embodiment, the number of the inflatable bladder 320 is one, for example, but is not limited thereto.
[0027] Moreover, the base 310 and the inflatable bladder 320 respectively include control valves A1 and A2. The control valves A1 and A2 may be connected to the electromagnet switch valve 200 respectively via delivery pipelines C 1 and C2 to perform inflation. In this embodiment, inflation of the inflatable bladder 320 is described as an example. However, in other embodiments, inflation may also be performed on the base 310, and the disclosure is not limited thereto.
[0028] Next, the elements inside the electromagnet switch valve 200 will be described.
[0029] Referring to
[0030] The control rod 220 includes a rod body 222 (also referred to as a first rod body) and a switch member 224 connected to each other. The switch member 224 is disposed at one end of the rod body 222, and the switch member 224 has a fitting hole H3 for the rod body 214 of the electromagnet driving member 210 to be fit into, so that the control rod 220 and the electromagnet driving member 210 are mechanically coupled to each other.
[0031] Referring to
[0032] Referring to
[0033] In the following paragraphs, the technical effects of the electromagnet switch valve 200 in the bed structure 300 will be described in detail with reference to
[0034] Referring to
[0035] In the above process in which the fluid G enters the valve body 100, since the fluid G is first blocked by the inner wall 120, it flows upward through the second opening O2, the inner opening IO, and then to the second fluid hole FO2, rather than directly flows to the second fluid hole FO2. This design can effectively reduce the flow pressure of the fluid G and can realize the delivery of the fluid G in a large amount. Therefore, the electromagnet switch valve 200 of this embodiment can quickly inflate the inflatable bladder 320 of the bed structure 300, and the valve body 100 of the electromagnet switch valve 200 exhibits excellent reliability due to the low flow pressure.
[0036] Referring to
[0037] Referring to
[0038] In other words, in
[0039] According to the above, in the bed structure 300, the electromagnet switch valve 200, and the valve body 100 of this embodiment, by adopting the design of the inner wall 130 shielding the fluid hole FO, the flow pressure of the fluid G in the valve body 100 can be effectively reduced, and the valve body 100 exhibits excellent reliability due to the low flow pressure. Moreover, it is also possible to achieve delivery of the fluid G in a large amount to quickly inflate the inflatable bladder 320.
[0040] In addition, referring to
[0041] It is noted herein that part of the description in the above embodiment applies to the following embodiment, in which the description of the same technical content is omitted. Reference may be made to part of the description of the above embodiment for descriptions of the same elements, which will not be repeatedly described in the following embodiment.
[0042]
[0043] Referring to
[0044] Referring to
[0045] In the following paragraphs, the technical effects of the electromagnet switch valve 200a in the bed structure 300a will be described in detail with reference to
[0046] Referring to
[0047] Referring to
[0048] Referring to
[0049] According to the above, in the electromagnet switch valve 200a of this embodiment, through the arrangement relationship between the first valve body 100 and the second valve body 100a and the switching of the position of the switch member 224, it is possible to selectively inflate the base 310 or the inflatable bladder 320.
[0050] In summary of the above, in the valve body, the electromagnet switch valve, and the bed structure of the embodiments of the disclosure, one or more of the following advantages may be exhibited:
[0051] 1. Through the design of the inner wall shielding the fluid hole, the flow pressure of the fluid in the valve body can be effectively reduced, and the valve body exhibits excellent reliability due to the low flow pressure. Moreover, it is possible to achieve the delivery of fluid in a large amount.
[0052] 2. The voltage supply in the electromagnet switch valve inputs induction voltages of different phases to the induction coil to switch the position of the control rod to different positions, i.e., the first position and the second position. In addition, it is possible that the voltage supply does not supply power to the induction coil. In the power-off state, the magnetic member may attract the rod body and maintain the position of the switch member. Therefore, the electromagnet switch valve can save power and avoid the risk of fire.
[0053] 3. Since the bed structure adopts the above design of the valve body and the electromagnet switch valve, it can inflate its inflatable bladder or base quickly.
[0054] It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the disclosure covers modifications and variations provided that they fall within the scope of the following claims and their equivalents.