Methods of preparing plant-based prepregs for composite laminates
US-2024399679-A1 · Dec 5, 2024 · US
US12433166B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12433166-B2 |
| Application number | US-202318394433-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 22, 2023 |
| Priority date | Jan 23, 2023 |
| Publication date | Sep 30, 2025 |
| Grant date | Sep 30, 2025 |
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Provided is a fixture for concentrically aligning and assembling a Ceramic Stack Assembly transducer during manufacturing. The CSA fixture comprises a base, a top compression cap, a central rod and a fastener, one or more alignment posts, and a driving wedge. The base further includes a groove to accept and align a transducer rear-centering ring at a central axis of the fixture. The transducer rear-centering ring supports one or more copper foil or ceramic rings during assembly. The alignment posts and driving wedge apply radial pressure to the copper foil or ceramic rings during assembly to force concentric alignment. The top compression cap, central rod, and fastener compress and stress the CSA Ceramic once assembled. The fixture simultaneously provides concentric alignment, foil alignment and provides a mechanism for stressing the CSA. A method of use is also provided.
Opening claim text (preview).
The invention claimed is: 1. A fixture for concentrically aligning and assembling a Ceramic Stack Assembly transducer comprising: a base; a top compression cap, a central rod and a fastener; one or more alignment posts and a driving wedge; said base further comprises a groove to accept and align a transducer rear-centering ring at a central axis of said fixture; wherein said transducer rear-centering ring supports one or more copper foil or ceramic rings during assembly; wherein said one or more alignment posts and said driving wedge apply radial pressure to said one or more copper foil or ceramic rings during assembly to force concentric alignment thereof; wherein said top compression cap, said central rod, and said fastener compress and stress said Ceramic Stack Assembly once assembled. 2. A fixture for concentrically aligning and assembling a Ceramic Stack Assembly transducer comprising: one or more copper foil rings; one or more ceramic rings; an adhesive; a base; a top compression cap, a central rod and a fastener; one or more alignment posts and a driving wedge; said base further comprises a groove to accept and align a transducer rear-centering ring at a central axis of said fixture; wherein said transducer rear-centering ring supports said one or more copper foil or ceramic rings during assembly; wherein said adhesive is placed between said one or more copper foil or ceramic rings during assembly; wherein said one or more alignment posts and said driving wedge apply radial pressure to said one or more copper foil or ceramic rings during assembly to force concentric alignment thereof; wherein said top compression cap, said central rod, and said fastener compress and stress said Ceramic Stack Assembly once assembled to allow said adhesive to set. 3. A method of assembling concentrically aligning and assembling a Ceramic Stack Assembly transducer comprising: providing a Ceramic Stack Assembly transducer comprising a base; a top compression cap, a central rod and a fastener; one or more alignment posts and a driving wedge; said base further comprises a groove to accept and align a transducer rear-centering ring at a central axis of said fixture; positioning said rear-centering ring on said base; positioning a copper foil ring on said rear-centering ring and applying an adhesive to said copper foil ring; placing additional said copper foil rings or a ceramic ring on said adhesive; positioning said one or more alignment posts and said driving wedge onto said base to concentrically orient said copper foil ring or a ceramic ring, wherein said driving wedge applies pressure to said alignment posts to force concentric alignment of said copper foil or said ceramic rings; continuing to apply said adhesive and add said copper foil or ceramic rings until a desired number is achieved; placing said top compression cap on top of said copper foil and ceramic rings, installing said fastener on said central rod, and compressing and stressing said copper foil and ceramic rings against said base for a desired amount of time to allow said adhesive to set.
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