Modular cold-spray receiver
US-2019184417-A1 · Jun 20, 2019 · US
US11891699B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11891699-B2 |
| Application number | US-201817257937-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 6, 2018 |
| Priority date | Jul 6, 2018 |
| Publication date | Feb 6, 2024 |
| Grant date | Feb 6, 2024 |
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Official abstract text for this publication.
The nozzle for cold spray (25) used in a cold spray apparatus (2) is configured to include a tubular nozzle main body (252) and a cooling jacket (253) that surrounds the nozzle main body (252) to form a flow path (25e) for refrigerant (R) between the nozzle main body (252) and the cooling jacket (253). The cooling jacket (253) is provided with a seal retaining portion (253c) that retains an O-ring (253b) for the flow path (25e). The seal retaining portion (253c) and the nozzle main body (252) are joined in a socket-and-spigot joint fashion.
Opening claim text (preview).
The invention claimed is: 1. A nozzle for cold spray, the nozzle comprising: a tubular nozzle main body having heat conductivity, the tubular nozzle main body configured to spray a raw material powder supplied from a cold spray apparatus, the tubular nozzle main body comprising: a connecting portion having a first diameter, and a rear end portion contiguous with the connecting portion and having a second diameter, the second diameter less than the first diameter; and a cooling jacket surrounding the tubular nozzle main body and forming a flow path for refrigerant between the tubular nozzle main body and the cooling jacket, the cooling jacket being configured to cool the tubular nozzle main body via the refrigerant flowing through the flow path, the cooling jacket comprising: a first seal retaining portion on a tip side of the tubular nozzle main body, and a second seal retaining portion on a rear end side of the tubular nozzle main body; a first seal member retained by the first seal retaining portion and directly contacting a tip portion of the tubular nozzle main body; and a second seal member retained by the second seal retaining portion and directly contacting the rear end portion, the second seal member positioned between the connecting portion and the tip portion; wherein the first seal retaining portion is joined with the tip portion of the tubular nozzle main body in a socket-and-spigot joint fashion. 2. The nozzle of claim 1 , wherein: a portion of the tubular nozzle main body joined with the first seal retaining portion in the socket-and-spigot joint fashion has a tapered shape that tapers in a spraying direction of the raw material powder such that an outer diameter of the portion of the tubular nozzle main body decreases in the spraying direction; and a joint part of the first seal retaining portion joined with the portion of the tubular nozzle main body in the socket-and-spigot joint fashion has a tapered shape along the portion of the tubular nozzle main body. 3. The nozzle of claim 1 , further comprising: a refrigerant introduction part arranged to introduce the refrigerant from the tip side of the tubular nozzle main body into the flow path provided from the tip side to a rear end side of the tubular nozzle main body; and a refrigerant discharge part configured to discharge the refrigerant from the rear end side of the tubular nozzle main body. 4. The nozzle of claim 1 , wherein: the cooling jacket is configured to attach to a main body portion of the cold spray apparatus, and the tubular nozzle main body is interposed and supported between the cooling jacket and the main body portion. 5. A cold spray apparatus comprising: a raw material powder supply configured to supply the raw material powder; a gas supply configured to supply a carrier gas for carrying the raw material powder supplied from the raw material powder supply and an operation gas for spraying the raw material powder; and a sprayer including the nozzle of claim 1 , the sprayer configured to spray the raw material powder carried by the carrier gas from the nozzle for cold spray, such that the raw material powder is sprayed as a supersonic flow by the operation gas. 6. A nozzle for cold spray, the nozzle comprising: a tubular nozzle main body having heat conductivity; a cooling jacket surrounding the tubular nozzle main body and forming a flow path for refrigerant between the tubular nozzle main body and the cooling jacket; and a seal member; wherein the cooling jacket is configured to cool the tubular nozzle main body via the refrigerant flowing through the flow path; wherein the cooling jacket comprises: an inner diameter portion, and a seal retaining portion on a rear end side of the tubular nozzle main body, the seal retaining portion comprising a front wall and a rear wall that project annularly inward from an inner surface of the inner diameter portion; wherein the seal member is retained by the seal retaining portion in an annular groove between the front wall and the rear wall, the seal retaining portion directly contacting a rear end portion of the tubular nozzle main body; and wherein the cooling jacket is joined with the tip portion in a socket-and-spigot joint fashion.
Impact or kinetic deposition of particles · CPC title
incorporating means for heating {or cooling} the material to be sprayed {(spraying by means of explosions B05B7/0006)} · CPC title
at the moment of mixing · CPC title
Arrangements of nozzles or spray heads specially adapted for treating the inside of hollow bodies (B05B13/0645 takes precedence) · CPC title
Arrangements for supplying particulate material · CPC title
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