A laser synchronous processing method and device of additive-semi-solid strengthening-subtractive
By collecting the temperature and width of the semi-solid region of the material in real time, calculating the real-time viscosity using a viscosity derivation model, and dynamically adjusting the laser parameters, the three processes are synchronized in time and space. This solves the problems of process sequence separation and insufficient parameter adjustment in existing technologies, and improves the efficiency and accuracy of laser composite processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- JIANGSU UNIV
- Filing Date
- 2026-01-20
- Publication Date
- 2026-06-05
AI Technical Summary
Existing laser composite processing technology suffers from process sequence separation, making it impossible to achieve continuous and seamless integration of additive, semi-solid strengthening, and subtractive processing. This results in low processing efficiency, missed optimal strengthening opportunities, and a lack of quantitative basis for adjusting various process parameters based on the real-time state of the material. Consequently, the coordination is poor, and the system integration and intelligence levels are insufficient, making it difficult to cope with complex paths and dynamic changes, thus limiting processing accuracy and stability.
By collecting the temperature and width of the semi-solid region of the material in real time, calculating the real-time viscosity using a viscosity derivation model, and dynamically adjusting the pulsed laser strengthening and subtraction parameters, the three processes are synchronized in time and space. Combined with the built-in collaborative controller, the parameters are adaptively linked to ensure the stability and consistency of the processing.
It achieves seamless synergy between additive manufacturing, semi-solid strengthening, and laser subtraction, improving processing efficiency and the overall mechanical properties of parts, refining the internal grain structure, and improving the service life and processing accuracy of parts.
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Abstract
Citation Information
Patent Citations
Full-laser additive and subtractive composite manufacturing method and full-laser additive and subtractive composite manufacturing device
CN119609158A