AEROSPACE SHANGHAI, Volume. 42, Issue 1, 91(2025)

Design and Development of Photocuring/Spray Deposition Multi-material Ceramic Additive Equipment

Shasha LI*, Xianhua MA, Hongyu XING, Tao QUAN, Hewu SUN, Xinfeng WANG, and Bin ZOU
Author Affiliations
  • School of Mechanical Engineering,Shandong University,Jinan250061,,China
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    In order to solve the problem that the single performance of homogeneous ceramic materials and structures limits their application,an additive manufacturing technology for the photocuring/spray deposition composite process is proposed from the perspective of the working mechanism and integration of polymorphic modules,including the whole machine,worktable,multi-axis motion module,laser and mirror module,spray module,sensing and valve module,and process module.A prototype of photocuring/spray deposition multi-material ceramic additive continuous forming equipment is built,and the multi-system collaborative motion process of “coating+solidification+spray+solidification” is studied to optimize the stability of multi-module motion.The combination logic of the multi-process composite technology is studied,and the multi-material CeraMulti Slicer software and CeraMulti Driver configuration software are developed.A collaborative motion mechanism and a high-precision integrated control system are developed for the photopolymerization forming motion mechanism and spray deposition module.The integrated preparation of forming control for multi-material ceramic parts is explored.The results indicate that this technology can prepare multi-material ceramic samples with high accuracy,good interface bonding,and no defects.

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    Shasha LI, Xianhua MA, Hongyu XING, Tao QUAN, Hewu SUN, Xinfeng WANG, Bin ZOU. Design and Development of Photocuring/Spray Deposition Multi-material Ceramic Additive Equipment[J]. AEROSPACE SHANGHAI, 2025, 42(1): 91

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    Paper Information

    Category: Integration of Material Structure and Function

    Received: Dec. 12, 2021

    Accepted: --

    Published Online: May. 13, 2025

    The Author Email:

    DOI:10.19328/j.cnki.2096-8655.2025.01.009

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