Electronic control valve having an integral non-contact noise mitigation device
US-9309987-B2 · Apr 12, 2016 · US
US10634263B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10634263-B2 |
| Application number | US-201615740251-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 28, 2016 |
| Priority date | Jul 3, 2015 |
| Publication date | Apr 28, 2020 |
| Grant date | Apr 28, 2020 |
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A valve device for liquids, especially for liquid plastic constituents of single- or multiple-constituent plastic mixtures, includes a valve housing with a liquid inlet and a metering valve, which has a discharge opening that can be closed by a closure element, a pressure control device acting on the liquid in the liquid inlet and comprising a control membrane which acts on the closure element. A shut-off diaphragm separates the pressure control device from the liquid inlet, and the pressure control device comprises a fluid-tight control chamber which is at least partially arranged in the valve housing, for storing a substantially incompressible fluid. A pressure generating device allows the control membrane to be subjected to pressure by the incompressible fluid arranged in the control chamber.
Opening claim text (preview).
The invention claimed is: 1. A valve device for liquid plastic components of single-component or multi-component plastic mixtures, comprising a valve housing having a liquid feed, a metering valve having a discharge opening closeable by a closure element, a pressure control device acting on the liquid in the liquid feed, the pressure control device including: a control diaphragm acting on the closure element, a transmission element between the control diaphragm and the closure element for transmitting a pressure acting on the control diaphragm to the closure element, and a fluid-tight control chamber with an incompressible fluid therein, the fluid-tight control chamber being located at least partially in the valve housing; a shut-off diaphragm arranged at the closure element for separating the pressure control device from the liquid feed, and a pressure generating device including a force storage element and a pressure transmission element to be acted upon by the force storage element, the pressure generating device being configured to act upon the incompressible fluid such that the control diaphragm can be acted upon with pressure via the incompressible fluid in the control chamber. 2. The valve device as set forth in claim 1 , wherein the transmission element is arranged between the control diaphragm and the shut-off diaphragm. 3. The valve device as set forth in claim 1 , wherein the control chamber is closed off from the pressure generating device by a seal. 4. The valve device as set forth in claim 3 , wherein the seal is a rolling diaphragm. 5. The valve device as set forth in claim 1 , wherein the force storage element is a coil spring. 6. The valve device as set forth in claim 1 , wherein the force storage element has an at least two-part configuration. 7. The valve device as set forth in claim 6 , wherein the force storage element includes a first force storage element portion and a second force storage element portion connected in succession. 8. The valve device as set forth in claim 7 , wherein the first force storage element portion and the second force storage element portion are each supported at a flange of a slider arranged displaceably on the pressure transmission element. 9. The valve device as set forth in claim 1 , wherein the valve housing has an at least two-part configuration. 10. The valve device as set forth in claim 9 , wherein the valve housing includes a first valve housing portion and a second valve housing portion, wherein the first valve housing portion is releasably connected to the second valve housing portion. 11. The valve device as set forth in claim 10 , wherein the metering valve, the discharge opening, the closure element, the liquid feed, and the shut-off diaphragm are arranged in the first valve housing portion. 12. The valve device as set forth in claim 10 , wherein the control diaphragm and the control chamber are arranged in the second valve housing portion. 13. The valve device as set forth in claim 12 , wherein the pressure generating device is also arranged in the second valve housing portion. 14. The valve device as set forth in claim 10 , wherein the valve housing includes a third valve housing portion in which the pressure generating device and a first control chamber region are arranged, the control diaphragm and a third control chamber region being arranged in the second valve housing portion, the third control chamber region being connected to the first control chamber region via a conduit forming a second control chamber region, wherein the first control chamber region, the second control chamber region, and the third control chamber region jointly form the control chamber. 15. The valve device as set forth in claim 1 , wherein the pressure generating device further includes a controllable relief device configured to reduce the force exerted on the pressure transmission element by the force storage element. 16. The valve device as set forth in claim 15 , wherein the relief device includes a relief chamber. 17. The valve device as set forth in claim 16 , wherein a fluid opening opens into the relief chamber, the fluid opening allowing a fluid under pressure to be introduced into the relief chamber. 18. The valve device as set forth in claim 17 , wherein the fluid under pressure is air. 19. The valve device as set forth in claim 16 , wherein the pressure transmission element has a shoulder which delimits the relief chamber. 20. The valve device as set forth in claim 16 , wherein the relief chamber is at least partially closed off from the pressure transmission element by a seal. 21. The valve device as set forth in claim 20 , wherein the seal is a rolling diaphragm. 22. The valve device as set forth in claim 1 , wherein the shut-off diaphragm is arranged at a base end of the closure element remote from the discharge opening.
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