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公开(公告)号:US11738386B2
公开(公告)日:2023-08-29
申请号:US17867090
申请日:2022-07-18
Applicant: GENERAL ELECTRIC COMPANY
Inventor: James Rollins Maughan , Jason Herzlinger , Patrick Daniel Willson
Abstract: An approach for supporting a wax pattern during investment casting. The approach described herein forms a support structure to support the wax pattern during investment casting. The support structure has a capping structure with a geometry that can match a profile of a lower region of the wax pattern, and at least one support brace extending outward from the support capping structure. The support structure can be placed on a surface of the lower region. The support capping structure can form a defined envelope to enclose the lower region of the wax pattern. The support structure is connected to a base plate by the support brace(s). The capping structure and the support brace(s) secure the wax pattern to the base plate and distribute the load of the wax pattern to maximize strength while minimizing the risk of a discontinuity in the wax or shell that could affect the casting process.
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公开(公告)号:US11498117B1
公开(公告)日:2022-11-15
申请号:US17525200
申请日:2021-11-12
Applicant: GENERAL ELECTRIC COMPANY
Inventor: James Rollins Maughan , Jason Herzlinger , Patrick Daniel Willson
Abstract: An approach for supporting a wax pattern during investment casting. The approach described herein forms a support structure to support the wax pattern during investment casting. The support structure has a capping structure with a geometry that can match a profile of a lower region of the wax pattern, and at least one support brace extending outward from the support capping structure. The support structure can be placed on a surface of the lower region. The support capping structure can form a defined envelope to enclose the lower region of the wax pattern. The support structure is connected to a base plate by the support brace(s). The capping structure and the support brace(s) secure the wax pattern to the base plate and distribute the load of the wax pattern to maximize strength while minimizing the risk of a discontinuity in the wax or shell that could affect the casting process.
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