Invention Grant
- Patent Title: Particulate compositions comprising a metal precursor for additive manufacturing and methods associated therewith
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Application No.: US16916460Application Date: 2020-06-30
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Publication No.: US11643566B2Publication Date: 2023-05-09
- Inventor: Nan-Xing Hu
- Applicant: Xerox Corporation
- Applicant Address: US CT Norwalk
- Assignee: XEROX CORPORATION
- Current Assignee: XEROX CORPORATION
- Current Assignee Address: US CT Norwalk
- Agency: Vorys, Sater, Seymour and Pease LLP
- Main IPC: C09D11/322
- IPC: C09D11/322 ; B33Y10/00 ; B29C64/153 ; B29C64/188 ; B33Y40/20 ; B33Y70/10 ; C09D11/037 ; C09D11/38 ; C23C18/16 ; B29K101/12

Abstract:
Additive manufacturing processes, such as powder bed fusion of thermoplastic particulates, may be employed to form printed objects in a range of shapes. It is sometimes desirable to form conductive traces upon the surface of printed objects. Conductive traces and similar features may be introduced during additive manufacturing processes by incorporating a metal precursor in a thermoplastic printing composition, converting a portion of the metal precursor to discontinuous metal islands using laser irradiation, and performing electroless plating. Suitable printing compositions may comprise a plurality of thermoplastic particulates comprising a thermoplastic polymer, a metal precursor admixed with the thermoplastic polymer, and optionally a plurality of nanoparticles disposed upon an outer surface of each of the thermoplastic particulates, wherein the metal precursor is activatable to form metal islands upon exposure to laser irradiation. Melt emulsification may be used to form the thermoplastic particulates.
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