Lattice structure valve/regulator body
US-2017102089-A1 · Apr 13, 2017 · US
US12076934B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12076934-B2 |
| Application number | US-202017605488-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 28, 2020 |
| Priority date | Jun 5, 2019 |
| Publication date | Sep 3, 2024 |
| Grant date | Sep 3, 2024 |
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A manufacturing method is provided for a fluid control apparatus, in which the flow of a fluid is controlled by bringing a diaphragm valve element into contact with or separating the diaphragm valve element from a valve seat. The diaphragm valve element may be a joint body that is a combination of (a) a seat member that makes contact with the valve seat and (b) a body member. The joint body is formed by machining a material joint body obtained by welding together a seat-member material which is a material for the seat member and a body member material which is a material for the body member. The welding is performed on contact faces of the seat-member material and the body-member material of the material joint body in a range wider than contact faces of the seat member and the body member of the joint body.
Opening claim text (preview).
The invention claimed is: 1. A manufacturing method for a fluid control apparatus that controls flow of a fluid by bringing a valve element into or out of contact with a valve seat, wherein (i) the valve element is a joint body that is a combination of (a) a seat member to be in contact with the valve seat and (b) a body member, or (ii) the valve seat is a joint body that is a combination of (a) a seat member to be in contact with the valve element and (b) a body member, the joint body is formed by machining a material joint body that is formed by welding together a seat-member material as a material for the seat member and a body-member material as a material for the body member, and the welding is performed on contact faces of the seat-member material and the body-member material of the material joint body in a range wider than contact faces of the seat member and the body member of the joint body. 2. The manufacturing method for the fluid control apparatus according to claim 1 , wherein the seat-member material is molded by any one of injection molding and extrusion molding, and the seat member includes an abutment surface abutting on the valve element or the valve seat and the abutment surface is formed by a molded face of the seat-member material. 3. The manufacturing method for the fluid control apparatus according to claim 2 , wherein the material joint body is formed by: a step of overlapping the seat-member material on the body-member material; a step of further overlapping an infrared-ray transmissive solid on the seat-member material overlapped with the body-member material; and a step of pressing the seat-member material against the body-member material by the infrared-ray transmissive solid and irradiating infrared beam to the seat-member material and the body-member material to weld the seat-member material and the body-member material. 4. The manufacturing method for the fluid control apparatus according to claim 2 , wherein the material joint body is formed by: a step of holding a heat plate between the body-member material and the seat-member material and bringing the body-member material and the seat-member material into contact with the heat plate to melt faces of the body-member material and the seat-member material where the heat plate is contacted; a step of removing the heat plate which is held between the body-member material and the seat-member material; and a step of bringing molten faces of the body-member material and the seat-member material to be in contact and pressurizing and cooling the body-member material and the seat-member material from a vertical direction with respect to the molten faces to weld the body-member material and the seat-member material. 5. The manufacturing method for the fluid control apparatus according to claim 1 , wherein the material joint body is formed by: a step of overlapping the seat-member material on the body-member material; a step of further overlapping an infrared-ray transmissive solid on the seat-member material overlapped with the body-member material; and a step of pressing the seat-member material against the body-member material by the infrared-ray transmissive solid and irradiating infrared beam to the seat-member material and the body-member material to weld the seat-member material and the body-member material. 6. The manufacturing method for the fluid control apparatus according to claim 1 , wherein the material joint body is formed by: a step of holding a heat plate between the body-member material and the seat-member material and bringing the body-member material and the seat-member material into contact with the heat plate to melt faces of the body-member material and the seat-member material where the heat plate is contacted; a step of removing the heat plate which is held between the body-member material and the seat-member material; and a step of bringing molten faces of the body-member material and the seat-member material to be in contact and pressurizing and cooling the body-member material and the seat-member material from a vertical direction with respect to the molten faces to weld the body-member material and the seat-member material. 7. A manufacturing method for a fluid control apparatus that controls flow of a fluid by bringing a valve element into or out of contact with a valve seat, wherein the valve element is a joint body that is a combination of a seat member to be in contact with the valve seat and a first body member, and the valve seat is a joint body that is a combination of a seat member to be in contact with the valve element and a second body member, each joint body is formed by machining a material joint body that is formed by welding together a seat-member material as a material for the seat member and a body-member material as a material for the first body member or the second body member, and the welding is performed on contact faces of the seat-member material and the body-member material of the material joint body in a range wider than contact faces of the seat member and the body member of the joint body. 8. The manufacturing method for the fluid control apparatus according to claim 7 , wherein the seat-member material is molded by any one of injection molding and extrusion molding, and the seat member includes an abutment surface abutting on the valve element or the valve seat and the abutment surface is formed by a molded face of the seat-member material. 9. The manufacturing method for the fluid control apparatus according to claim 7 , wherein the material joint body is formed by: a step of overlapping the seat-member material on the body-member material; a step of further overlapping an infrared-ray transmissive solid on the seat-member material overlapped with the body-member material; and a step of pressing the seat-member material against the body-member material by the infrared-ray transmissive solid and irradiating infrared beam to the seat-member material and the body-member material to weld the seat-member material and the body-member material. 10. The manufacturing method for the fluid control apparatus according to claim 7 , wherein the material joint body is formed by: a step of holding a heat plate between the body-member material and the seat-member material and bringing the body-member material and the seat-member material into contact with the heat plate to melt faces of the body-member material and the seat-member material where the heat plate is contacted; a step of removing the heat plate which is held between the body-member material and the seat-member material; and a step of bringing molten faces of the body-member material and the seat-member material to be in contact and pressurizing and cooling the body-member material and the seat-member material from a vertical direction with respect to the molten faces to weld the body-member material and the seat-member material.
radiating the edges of the parts to be joined, e.g. for curing a layer of adhesive placed between two flat parts to be joined, e.g. for making CDs or DVDs · CPC title
Joining {or sealing} of preformed parts {, e.g. welding of plastics materials}; Apparatus therefor {(general aspects of processes or apparatus for joining preformed parts B29C66/00; using porous material formed by internal pressure generated therein for joining preformed parts B29C44/1228, B29C44/326)} · CPC title
using wave energy {, i.e. electromagnetic radiation,} or particle radiation {(using mechanical waves B29C65/06; using ultrasonic waves B29C65/08; pressing means transparent to electromagnetic radiation B29C66/81267)} · CPC title
Infrared [IR] radiation · CPC title
by heating, with or without pressure · CPC title
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