Metal Material Processing and Analysis in Material Forming and Control Engineering
Abstract
In the context of manufacturing transformation and upgrading, the quality of metal material processing directly impacts the performance of high-end equipment. Focusing on the field of material forming and control engineering, this paper aims to enhance metal processing
accuracy and efficiency. By combining theoretical modeling with experimental verification, it analyzes issues such as insufficient deformation
control and delayed process parameter optimization in traditional machining methods. Innovative solutions are proposed, including intelligent
regulation based on digital twin technology and multi-physical-field coupled simulation optimization. Experimental results demonstrate that
process improvements can provide technical support for the manufacturing of high-end metal components.
accuracy and efficiency. By combining theoretical modeling with experimental verification, it analyzes issues such as insufficient deformation
control and delayed process parameter optimization in traditional machining methods. Innovative solutions are proposed, including intelligent
regulation based on digital twin technology and multi-physical-field coupled simulation optimization. Experimental results demonstrate that
process improvements can provide technical support for the manufacturing of high-end metal components.
Keywords
Metal material processing; Material forming; Process optimization; Digital twin; Multi-physical field simulation
Full Text:
PDFReferences
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DOI: http://dx.doi.org/10.70711/frim.v3i11.7685
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