CVI densification installation including a high capacity preheating zone
US-9845534-B2 · Dec 19, 2017 · US
US11788186B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11788186-B2 |
| Application number | US-202016819545-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 16, 2020 |
| Priority date | Mar 16, 2020 |
| Publication date | Oct 17, 2023 |
| Grant date | Oct 17, 2023 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A seal plate disposable between a pair of preforms for chemical vapor infiltration is disclosed. The seal plate may include a plurality of first channels that extend completely through the seal plate and that are located between an inner annulus and outer annulus of the seal plate. The seal plate may further include a plurality of second channels that also extend completely through the seal plate and that are located also between an inner annulus and outer annulus. The first channels may differ from the second channels in at least one respect (e.g., the first channels may be of a different width than the second channels). The first channels may provide an inlet for the chemical vapor infiltration of the preform, while the second channels may provide an outlet for the chemical vapor infiltration of the preform.
Opening claim text (preview).
What is claimed: 1. A seal plate disposable between a pair of preforms in a chemical vapor infiltration and deposition chamber, comprising: a body comprising an opening, an inner perimeter that defines a boundary of said opening, an outer perimeter spaced from said inner perimeter, an upper surface, and a lower surface that is spaced from said upper surface to define a thickness of said body; a plurality of first channels that extend completely through said thickness of said body proceeding from said upper surface to said lower surface, wherein a first end of each of said plurality of first channels is spaced outwardly from said inner perimeter, wherein a second end of each of said plurality of first channels is spaced inwardly from said outer perimeter, wherein, for each of said plurality of first channels, said first end is positioned closer to said inner perimeter than said second end, wherein, for each of said plurality of first channels, a spacing between said first end and said second end defines a length dimension and a continuous flowpath extends from said first end to said second end, and wherein, for each of said plurality of first channels, a first width is greater at said second end than at said first end; a plurality of second channels that extend completely through said thickness of said body proceeding from said upper surface to said lower surface, wherein a first end of each of said plurality of second channels is spaced outwardly from said inner perimeter, wherein a second end of each of said plurality of second channels is spaced inwardly from said outer perimeter, wherein, for each of said plurality of second channels, said first end is positioned closer to said inner perimeter than said second end, wherein, for each of said plurality of second channels, a spacing between said first end and said second end defines a length dimension and a continuous flowpath extends from said first end to said second end, and wherein, for each of said plurality of second channels, a second width is greater at said second end than at said first end; an inner alignment feature on said upper surface, said inner alignment feature including at least one first alignment groove, wherein each said first alignment groove is disposed outwardly of said first end of each first channel and intersects an adjacent pair of first channels; and an outer alignment feature on said upper surface, wherein said outer alignment feature includes at least one second alignment groove, wherein each said second alignment groove is disposed inwardly of said second end of each second channel and intersects an adjacent pair of second channels, wherein each of said plurality of first channels is different from each of said plurality of second channels. 2. The seal plate of claim 1 , wherein: said first end of each first channel is disposed a first distance from said inner perimeter; said second end of each first channel is disposed a second distance from said outer perimeter; said first end of each second channel is disposed a third distance from said inner perimeter; and said second end of each second channel is disposed a fourth distance from said outer perimeter. 3. The seal plate of claim 1 , wherein said first width of each first channel progressively increases proceeding from said first end to said second end. 4. The seal plate of claim 1 , wherein said second width of each second channel progressively increases proceeding from said first end to said second end. 5. The seal plate of claim 1 , wherein: said first end of each first channel is closer to said inner perimeter than said first end of each second channel; said second end of each second channel is closer to said outer perimeter than said second end of each first channel; said first width of said first end of each first channel is greater than said second width of said first end of each second channel; and said first width of said second end of each first channel is greater than said second width of said second end of each second channel. 6. The seal plate of claim 1 , wherein at least one second channel is disposed between each adjacent pair of first channels. 7. The seal plate of claim 1 , wherein said body further comprises an inner annulus and an outer annulus, wherein said inner perimeter and said outer perimeter respectively form said inner annulus and said outer annulus, wherein each of said plurality of first channels and each of said plurality of second channels are located entirely between said inner annulus and said outer annulus. 8. The seal plate of claim 7 , wherein a minimum width of said inner annulus is about 0.25″ (6.35 mm), and wherein a minimum width of said outer annulus is about 0.25″ (6.35 mm). 9. A preform stack for disposition in a chemical vapor infiltration and deposition chamber, comprising: a preform comprising an upper preform surface and a lower preform surface; a first seal plate disposed on and contacting said upper preform surface; and a second seal plate disposed on and contacting said lower preform surface, wherein each of said first seal plate and said second seal plate comprises: a body comprising an opening, an inner perimeter that defines a boundary of said opening, an outer perimeter spaced from said inner perimeter, an upper surface, and a lower surface that is spaced from said upper surface; a plurality of first channels that extend completely through a thickness of said body proceeding from said upper surface to said lower surface, wherein a first end of each of said plurality of first channels is spaced outwardly from said inner perimeter, wherein a second end of each of said plurality of first channels is spaced inwardly from said outer perimeter, wherein, for each of said plurality of first channels, said first end is positioned closer to said inner perimeter than said second end, wherein, for each of said plurality of first channels, a spacing between said first end and said second end defines a length dimension and a continuous flowpath extends from said first end to said second end, and wherein, for each of said plurality of first channels, a first width is greater at said second end than at said first end; and an inner alignment feature on said upper surface, said inner alignment feature including at least one first alignment groove, wherein each said first alignment groove is disposed outwardly of said first end of each first channel and intersects an adjacent pair of first channels. 10. The preform stack of claim 9 , wherein said body further comprises a plurality of second channels that extend completely through said thickness of said body proceeding from said upper surface to said lower surface, wherein a first end of each of said plurality of second channels is spaced outwardly from said inner perimeter, wherein a second end of each of said plurality of second channels is spaced inwardly from said outer perimeter, and wherein, for each of said plurality of second channels, said first end is positioned closer to said inner perimeter than said second end. 11. The preform stack of claim 10 , wherein said first width of each first channel progressively increases proceeding from said first end to said second end, and wherein a second width of each second channel progressively increases proceeding from said first end to said second end. 12. The preform stack of claim 10 , wherein: said first end of each first channel is closer to said inner perimeter than said first end of each second channel; said second end of each second channel is closer to said outer perimeter than said second end of each first channel; said first width of said first end of each first channel is greater tha
Coating cavities or hollow spaces, e.g. interior of tubes; Infiltration of porous substrates · CPC title
using masks · CPC title
Deposition of carbon only · CPC title
the material being of low mechanical strength, e.g. carbon, beryllium; Torque transmitting members therefor · CPC title
Deposition of compounds, mixtures or solid solutions, e.g. borides, carbides, nitrides · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.