Thermally biased valve and anti-icing system
US-10384786-B2 · Aug 20, 2019 · US
US10054962B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10054962-B2 |
| Application number | US-201314440358-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 8, 2013 |
| Priority date | Jan 30, 2013 |
| Publication date | Aug 21, 2018 |
| Grant date | Aug 21, 2018 |
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Official abstract text for this publication.
A thermo valve has a valve chamber disposed inside a housing and open to a first flow path through an opening. Second and third flow paths open into the valve chamber. A thermo-element that can move back and forth axially inside the valve chamber in response to fluid temperature opens and closes the second and third flow paths and is biased in a direction that blocks the flow paths by a coil spring. A valve element that is a bypass valve that opens and closes an opening that connects the first and third flow paths inside the valve chamber and communicates the first and third flow paths is disposed in the opening. The coil spring is also used to bias the valve element in a direction that blocks the flow paths.
Opening claim text (preview).
The invention claimed is: 1. A thermo valve for selectively opening and closing a first flow path, a second flow path, and a third flow path inside a valve housing by switching flow paths in response to fluid temperature and fluid pressure, comprising: a valve chamber inside the valve housing, open to the first flow path through an opening; a thermo-element disposed inside the valve chamber so that the second flow path and the third flow path open into the valve chamber, wherein the thermo-element is capable of moving back and forth within the valve chamber in response to fluid temperature so as to open and close the second flow path and the third flow path; a coil spring that biases the thermo-element in a direction that closes off communication between the second flow path and the third flow path, and biases a valve element in a direction that closes off the first flow path from the second flow path and the third flow path via the valve chamber; and a bypass valve constituted as the valve element, disposed in the opening connecting the first flow path and the valve chamber, the thermo-element slidably supported within the valve chamber by the valve element that constitutes the bypass valve, a sliding portion of the thermo-element cooperating with the valve element to open and close communication between the third flow path and the first flow path, a plurality of ribs formed at one end of the valve element, equally spaced around a periphery of the valve element, and protruding radially outward from an intermediate portion of the valve element so as to contact an interior wall of the valve chamber, a plurality of windows formed in the one end of the valve element at a position corresponding to the first flow path, the plurality of windows communicating the first flow path and the valve chamber, the sliding portion of the thermo-element opening and closing the plurality of windows as the thermo-element moves reciprocally back and forth within the valve chamber in response to fluid temperature, wherein, when the bypass valve is closed and a pressure differential arises between the valve chamber and the first flow path as the fluid temperature rises, the valve element slides open against the coil spring to communicate the first flow path and the third flow path via the valve chamber between the plurality of ribs in addition to through the windows. 2. The thermo valve as claimed in claim 1 , wherein the thermo-element is disposed within the valve chamber so as to be capable of moving back and forth within the valve chamber along the axial direction of the valve chamber, and constantly biased by the coil spring in a direction that disconnects communication between the second flow path and the third flow path within the valve chamber, the thermo-element further comprising a piston rod that protrudes axially from the thermo-element in response to a rise in ambient fluid temperature. 3. The thermo valve as claimed in claim 1 , wherein the valve element that constitutes the bypass valve is constantly biased within the valve chamber by the coil spring so as to disconnect the first flow path and the third flow path, and operates in response to a fluid pressure differential between the first flow path and the third flow path to connect the first flow path and the third flow path to reduce the fluid pressure differential between the first flow path and the third flow path.
with bimetallic element · CPC title
measuring the temperature of incoming fluid · CPC title
reacting to pressure and temperature · CPC title
actuated by temperature variation (thermo-electric F16K31/025) · CPC title
combined with other safety valves, or with pressure control devices · CPC title
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