CN104097625A - Quick release valve and internally-disposed diaphragm thereof - Google Patents
Quick release valve and internally-disposed diaphragm thereof Download PDFInfo
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- CN104097625A CN104097625A CN201410356935.3A CN201410356935A CN104097625A CN 104097625 A CN104097625 A CN 104097625A CN 201410356935 A CN201410356935 A CN 201410356935A CN 104097625 A CN104097625 A CN 104097625A
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- diaphragm
- diaphragm body
- release valve
- rapid release
- boss structure
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- 238000013022 venting Methods 0.000 claims description 12
- 230000004913 activation Effects 0.000 claims description 7
- 238000010521 absorption reaction Methods 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 238000011161 development Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 238000000354 decomposition reaction Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000010355 oscillation Effects 0.000 description 1
- 229920000728 polyester Polymers 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 238000012360 testing method Methods 0.000 description 1
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Abstract
The invention relates to a quick release valve and an internally-disposed diaphragm thereof. The internally-disposed diaphragm comprises a diaphragm body, a first boss structure is arranged on the upper surface of the diaphragm body, and at least two first grooves extending from the center of the diaphragm body along the radius direction are arranged in the upper surface of the diaphragm body from a circumcircle of the first boss structure to an edge portion of the diaphragm body and are symmetric about the center of the diaphragm body; at least two second grooves extending from the center of the diaphragm body along the radius direction are arranged in the lower surface of the diaphragm body from the edge portion of the diaphragm body to the center of the same and are symmetric about the center of the diaphragm body.
Description
Technical field
The invention belongs to automobile brake field, specifically refer to the built-in diaphragm of a kind of rapid release valve for aerobraking vehicle and rapid release valve.
Background technology
Rapid release valve is applied in truck compression air brake vehicle, and it is generally arranged in brake piping near compressed air brake cylinder place, the effect of Quick air-discharge while playing brake off, thereby quick brake off.
Existing rapid release valve structure as shown in Figure 1, when assembling, venting valve 5 is sticked on lower house 2, seal ring 3 is placed in the seal groove having in advance of upper shell 1, it is urgent that diaphragm 4 uses four pairs of bolts and spring washer 6 to pass bolt hole 7 after being positioned on venting valve 5, and above-mentioned assembling all requires two parts center-aligned.
When automobile brake, pressurized air from brake activation valve enters rapid release valve from admission port A, promote diaphragm 4 and tightly push down venting valve 5 downwards, blow the surrounding of diaphragm 4 open simultaneously, make diaphragm edge 41 times curved, as shown in Figure 2, pressurized air, along the radial groove of lower house 2, is led to the left and right air chamber being attached thereto through 2 air extractor duct B.
When automobile brake off, pressure gas in the pipeline being connected with rapid release valve is discharged through the exhausr port of brake activation valve, it is up that the pressure gas backflow of the left and right air chamber being connected with rapid release valve promotes diaphragm 4, blocks admission port A, and the pressure gas in air chamber enters rapidly atmosphere through exhausr port C.
As described above, when rapid release valve is braked, from the gas of brake activation valve, under the edge that promotes diaphragm in curved process, high pressure gas is known from experience and is caused that diaphragm produces high-frequency vibration, thereby the air inlet that produces rapid release valve is uttered long and high-pitched sounds.
It is up that rapid release valve pressure gas in air chamber in the time of brake off will promote diaphragm 4, and this process can cause diaphragm to produce high-frequency vibration, thereby the exhaust of generation rapid release valve is uttered long and high-pitched sounds.
Above-mentioned uttering long and high-pitched sounds is the main component of rapid release valve air inlet and exhaust roar.
In order to solve the exhaust roar of rapid release valve in braking, in recent years by a shock-absorption device 8 is installed in rapid release valve lower end, as shown in Figure 3.Such technology has certain use to reducing rapid release valve exhaust roar, but its pneumatic noise producing when exhausr port exhaust only can reduce brake off time, what can not reduce braking time, diaphragm 4 high-frequency vibrationes produced utters long and high-pitched sounds.And installed after shock-absorption device 8, also exist take up room many, high in cost of production problem.
Summary of the invention
The object of the invention is by the structural development to diaphragm in rapid release valve, while being reduced in braking or brake off, gas causes the high-frequency vibration of diaphragm, reduces noise.
The present invention is achieved by the following technical solutions:
The built-in diaphragm of a kind of rapid release valve, includes diaphragm body, is provided with first boss structure at the upper surface of described diaphragm body; The center superposition of the center of described the first boss structure and described diaphragm body;
At the upper surface of described diaphragm body, from the extremely described diaphragm body edges part of circumscribing circle of described the first boss structure, be provided with at least two the first grooves that extend along radial direction from described diaphragm body center; Described the first groove is with the Central Symmetry of described diaphragm body;
At the lower surface of described diaphragm body, the center position from described diaphragm body edges part to described diaphragm body, is provided with at least two the second grooves that extend along radial direction from described diaphragm body center; Described the second groove is with the Central Symmetry of described diaphragm body.
The degree of depth of described the first groove reduces gradually from circumscribing circle to the described diaphragm body edges direction of described the first boss structure.
The degree of depth of described the second groove reduces gradually from described diaphragm body edges to described diaphragm body center position.
The lower surface of described diaphragm body is provided with second boss structure, the center superposition of the center of described the second boss structure and described diaphragm body.
The spherical cap-shaped structure of described the second boss structure.
The circumscribed circle diameter of described the first boss structure is greater than the circumscribed circle diameter of described the second boss structure.
The thickness of described the first boss structure is not more than the thickness of described diaphragm body.
The thickness of described the second boss structure is not more than the thickness of described diaphragm body, and is less than the thickness of described the first boss structure.
The cross section of the plane that is parallel to described diaphragm body of described the first boss structure is circle, triangle, quadrangle or polygon.
A kind of rapid release valve, includes the built-in diaphragm of rapid release valve described in above-mentioned middle any one, upper shell, lower house, venting valve, seal ring and binding bolt;
On described upper shell, be provided with admission port, on described upper shell, be provided with screw, for passing binding bolt;
On described lower house, be provided with, two air extractor ducts, connect respectively two air chambers of brake activation valve; An exhausr port;
Described exhausr port connects described venting valve;
The described upper shell surface that contacts with lower house is provided with seal groove, and described seal ring is arranged in seal groove;
The built-in diaphragm arrangement of described rapid release valve is between described seal ring and described venting valve.
The invention has the beneficial effects as follows:
1, by two of the built-in diaphragm of rapid release valve surperficial boss structures and groove setting, suppressed diaphragm and in the time being subject to high pressure gas impact, produced the situation of high-frequency vibration.
2,, by the application's technical scheme, do not need to use external shock-absorption device.
Brief description of the drawings
Fig. 1 is existing rapid release valve STRUCTURE DECOMPOSITION figure;
Fig. 2 is the existing built-in diaphragm applied force schematic diagram of rapid release valve;
Fig. 3 is existing rapid release valve structural representation;
Fig. 4 is an example structure schematic diagram of the built-in diaphragm of rapid release valve of the present invention;
Fig. 5 is an embodiment upward view of the built-in diaphragm of rapid release valve of the present invention;
Fig. 6 is an embodiment birds-eye view of the built-in diaphragm of rapid release valve of the present invention;
Fig. 7 is an embodiment front view of the built-in diaphragm of rapid release valve of the present invention.
Detailed description of the invention
Describe by the following examples technical scheme of the present invention in detail, following embodiment is only exemplary, only can be used for explaining and technical scheme of the present invention being described, and can not to be interpreted as is the restriction to technical solution of the present invention.
In the application, following described upper surface refers in the face of the surface of upper shell is upper surface, in the face of the surface of lower house is lower surface.
Embodiment 1
As shown in Figures 4 to 7, a kind of rapid release valve, includes the built-in diaphragm of rapid release valve, upper shell, lower house, venting valve, seal ring and binding bolt; In the application's rapid release valve, be only that the diaphragm of existing rapid release valve is carried out to structural development, and omitted shock-absorption device, the same prior art of other structure of rapid release valve.
On upper shell, be provided with admission port, on described upper shell, be provided with 4 screws, for passing binding bolt; Admission port connects with source of the gas.
The built-in diaphragm of rapid release valve, includes diaphragm body 101, is provided with first boss structure 111 at the upper surface of described diaphragm body 101; The center superposition of described the first boss structure 111 center and diaphragm body 101.
At the upper surface of diaphragm body 101, to diaphragm body edges part, be provided with at least two the first grooves 112 that extend along radial direction from diaphragm body center from the circumscribing circle of the first boss structure 111; Described the first groove is with the Central Symmetry of diaphragm body.The degree of depth of the first groove reduces gradually from circumscribing circle to the diaphragm body edges direction of the first boss structure.Nearly diaphragm body edges one end of the first groove is arranged in the external diameter of admission port.Above-mentioned structure setting, the particularly degree of depth of the first groove reduce gradually from circumscribing circle to the diaphragm body edges direction of the first boss structure.The external diameter that nearly diaphragm body edges one end of the first groove is arranged at admission port is with interior structure setting, in the time braking, the high pressure gas that come by admission port are understood some and are improved flow velocity by the first groove guides, like this gas of nominal volume pass through time shorten, therefore, frequency reduces, and is conducive to noise decrease.
In the application's embodiment, the first groove is 6, and all, with the Central Symmetry of diaphragm body, in other embodiment of the application, the quantity of the first groove can, for being greater than 3, all can realize the application's technical scheme.
At the lower surface of described diaphragm body 101, be provided with at least two the second grooves 113 that extend along radial direction from diaphragm body center; Described the second groove 113 is with the Central Symmetry of diaphragm body.The degree of depth of described the second groove 113 reduces gradually from diaphragm body edges to diaphragm body center position.
The structure setting of the second groove, the structure setting that particularly degree of depth of the second groove 113 reduces to diaphragm body center position gradually from diaphragm body edges, in the time carrying out brake off, the high pressure gas that refluxed by two air chambers of brake activation valve are understood some and are improved flow velocity by the second groove guides, like this gas of nominal volume pass through time shorten, therefore, frequency reduces, and is conducive to noise decrease.
In the application's embodiment, the second groove is 6, and all, with the Central Symmetry of diaphragm body, in other embodiment of the application, the quantity of the second groove can, for being greater than 3, all can realize the application's technical scheme.
In each embodiment of the application, the center line of the first groove and the second groove can be that straight line can be also curve.
On lower house, be provided with, two air extractor ducts, connect respectively two air chambers of brake activation valve; An exhausr port;
Described exhausr port connects venting valve; Vent valves is arranged in lower house, between aie escape valve and lower house, is formed with space, and gas flows in this space.
The upper shell surface that contacts with lower house is provided with seal groove, and described seal ring is arranged in seal groove;
The built-in diaphragm arrangement of rapid release valve is between seal ring and venting valve.On lower house, be provided with internal thread hole, fix for same binding bolt.
Embodiment 2
In other embodiment of the application, the other parts of rapid release valve body are all identical with embodiment 1, only the structure of the built-in diaphragm of rapid release valve improved, and therefore, in following embodiment, only describe the built-in structure of touching sheet of rapid release valve.
The built-in diaphragm of rapid release valve is rubber or High molecular material or polyester material processing, includes diaphragm body, is provided with first boss structure at the upper surface of described diaphragm body; The center superposition of the center of described the first boss structure and diaphragm body;
Be provided with second boss structure at the lower surface of described diaphragm body, the center superposition of the center of described the second boss structure and diaphragm body.
The circumscribed circle diameter of the first boss structure is less than the diameter of admission port, can ensure that like this high pressure gas enter rapid release valve.In the present embodiment, the cross section of the plane that is parallel to described diaphragm body of the first boss structure is for circular, in the present embodiment, diaphragm body is a diameter phi 50mm, the column structure of thickness 2mm, in use produce and acutely utter long and high-pitched sounds, after through analogue test repeatedly, increased a φ 30mm, the round boss of thickness 2mm at diaphragm upper surface, rapid release valve exhaust is uttered long and high-pitched sounds significantly weak, obtains good effect.
The thickness of the second boss structure is not more than the thickness of diaphragm body, and is less than the thickness of the first boss structure.And the spherical cap-shaped structure of the second boss structure in the present embodiment.The usefulness of this structure is, in the time of the built-in diaphragm of high pressure gas flow-reversing impingement rapid release valve of two air chambers of control cock, because there is the spherical cap structure of built-in diaphragm lower surface, the direction of the power on impact can produce change, the direction that is power is not to carry out according to definite direction bunchy, but the direction of power changes with the direction of original power and has a flow-disturbing effect, like this to the impact dynamics of the built-in diaphragm lower surface of rapid release valve have weaken, but because conservation energy, can offer again the enough lifting power of the built-in diaphragm of rapid release valve, to open aie escape valve, in this case, gas is in the time of the space by between the built-in diaphragm of rapid release valve and aie escape valve, can reduce the oscillation frequency of the built-in diaphragm of rapid release valve, therefore, exhaust roar is corresponding reducing also.
In other embodiment of the application, the cross section of the plane that is parallel to described diaphragm body of the first boss structure is triangle, quadrangle or polygon, is preferably circle, and this is because circle is conducive to diaphragm body stress equalization.
Although illustrated and described embodiments of the invention, for the ordinary skill in the art, be appreciated that without departing from the principles and spirit of the present invention and can carry out multiple variation, amendment, replacement and modification to these embodiment, these equivalent form of values fall into the application's appended claims limited range equally.Scope of the present invention is by claims and be equal to and limit.
Claims (10)
1. the built-in diaphragm of rapid release valve, includes diaphragm body, is provided with first boss structure at the upper surface of described diaphragm body; The center superposition of the center of described the first boss structure and described diaphragm body; It is characterized in that:
At the upper surface of described diaphragm body, from the extremely described diaphragm body edges part of circumscribing circle of described the first boss structure, be provided with at least two the first grooves that extend along radial direction from described diaphragm body center; Described the first groove is with the Central Symmetry of described diaphragm body;
At the lower surface of described diaphragm body, the center position from described diaphragm body edges part to described diaphragm body, is provided with at least two the second grooves that extend along radial direction from described diaphragm body center; Described the second groove is with the Central Symmetry of described diaphragm body.
2. the built-in diaphragm of rapid release valve according to claim 1, is characterized in that: the degree of depth of described the first groove reduces gradually from circumscribing circle to the described diaphragm body edges direction of described the first boss structure.
3. the built-in diaphragm of rapid release valve according to claim 1, is characterized in that: the degree of depth of described the second groove reduces gradually from described diaphragm body edges to described diaphragm body center position.
4. according to the built-in diaphragm of the rapid release valve described in any one in claim 1 or 3, it is characterized in that: the lower surface of described diaphragm body is provided with second boss structure center superposition of the center of described the second boss structure and described diaphragm body.
5. the built-in diaphragm of rapid release valve according to claim 4, is characterized in that: the spherical cap-shaped structure of described the second boss structure.
6. the built-in diaphragm of rapid release valve according to claim 4, is characterized in that: the circumscribed circle diameter of described the first boss structure is greater than the circumscribed circle diameter of described the second boss structure.
7. the built-in diaphragm of rapid release valve according to claim 1, is characterized in that: the thickness of described the first boss structure is not more than the thickness of described diaphragm body.
8. the built-in diaphragm of rapid release valve according to claim 4, is characterized in that: the thickness of described the second boss structure is not more than the thickness of described diaphragm body, and is less than the thickness of described the first boss structure.
9. the built-in diaphragm of rapid release valve according to claim 1, is characterized in that: the cross section of the plane that is parallel to described diaphragm body of described the first boss structure is circle, triangle, quadrangle or polygon.
10. a rapid release valve, is characterized in that: include in above-mentioned wantonly 1 to 9 the built-in diaphragm of rapid release valve, upper shell, lower house, venting valve, seal ring and binding bolt described in any one;
On described upper shell, be provided with admission port, on described upper shell, be provided with screw, for passing binding bolt;
On described lower house, be provided with, two air extractor ducts, connect respectively two air chambers of brake activation valve; An exhausr port;
Described exhausr port connects described venting valve;
The described upper shell surface that contacts with lower house is provided with seal groove, and described seal ring is arranged in seal groove;
The built-in diaphragm arrangement of described rapid release valve is between described seal ring and described venting valve.
Priority Applications (1)
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CN201410356935.3A CN104097625B (en) | 2014-07-24 | 2014-07-24 | A kind of built-in diaphragm of quick release valve and quick release valve |
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CN201410356935.3A CN104097625B (en) | 2014-07-24 | 2014-07-24 | A kind of built-in diaphragm of quick release valve and quick release valve |
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CN104097625A true CN104097625A (en) | 2014-10-15 |
CN104097625B CN104097625B (en) | 2016-05-18 |
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CN201410356935.3A Expired - Fee Related CN104097625B (en) | 2014-07-24 | 2014-07-24 | A kind of built-in diaphragm of quick release valve and quick release valve |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH09264443A (en) * | 1996-03-27 | 1997-10-07 | Jidosha Kiki Co Ltd | Quick release valve |
US20070209704A1 (en) * | 2006-03-08 | 2007-09-13 | Thanh Ho | Flow control device |
CN101927762A (en) * | 2010-09-27 | 2010-12-29 | 屠乐贤 | Three-axle relay valve |
CN203601261U (en) * | 2013-11-28 | 2014-05-21 | 安徽江淮汽车股份有限公司 | Quick release valve membrane and quick release valve |
-
2014
- 2014-07-24 CN CN201410356935.3A patent/CN104097625B/en not_active Expired - Fee Related
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH09264443A (en) * | 1996-03-27 | 1997-10-07 | Jidosha Kiki Co Ltd | Quick release valve |
US20070209704A1 (en) * | 2006-03-08 | 2007-09-13 | Thanh Ho | Flow control device |
CN101927762A (en) * | 2010-09-27 | 2010-12-29 | 屠乐贤 | Three-axle relay valve |
CN203601261U (en) * | 2013-11-28 | 2014-05-21 | 安徽江淮汽车股份有限公司 | Quick release valve membrane and quick release valve |
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CN104097625B (en) | 2016-05-18 |
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Address after: 230601 Anhui Province, Hefei City Industrial Park, the Peach Blossom Road No. 669 Patentee after: ANHUI JIANGHUAI AUTOMOBILE GROUP Corp.,Ltd. Address before: 230601 Anhui Province, Hefei City Industrial Park, the Peach Blossom Road No. 669 Patentee before: ANHUI JIANGHUAI AUTOMOBILE Co.,Ltd. |
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Granted publication date: 20160518 |
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