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扫描策略对激光增材制造铁基复合材料冶金缺陷控制、显微组织演变及力学性能的影响机制研究
作者姓名:Hong-yu Chen  Dong-dong Gu  Qing Ge  Xin-yu Shi  Hong-mei Zhang  Rui Wang  Han Zhang  Konrad Kosiba
作者单位:1)College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China
基金项目:This work was financially supported by the National Key Research and Development Program "Additive Manufactur-ing and Laser Manufacturing" ;China
摘    要:Steel matrix composites (SMCs) reinforced with WC particles were fabricated via selective laser melting (SLM) by employing various laser scan strategies. A detailed relationship between the SLM strategies, defect formation, microstructural evolution, and mechanical properties of SMCs was established. The laser scan strategies can be manipulated to deliberately alter the thermal history of SMC during SLM processing. Particularly, the involved thermal cycling, which encompassed multiple layers, strongly affected the processing quality of SMCs. S-shaped scan sequence combined with interlayer offset and orthogonal stagger mode can effectively eliminate the metallurgical defects and retained austenite within the produced SMCs. However, due to large thermal stress, microcracks that were perpendicular to the building direction formed within the SMCs. By employing the checkerboard filling (CBF) hatching mode, the thermal stress arising during SLM can be significantly reduced, thus preventing the evolution of interlayer microcracks. The compressive properties of fabricated SMCs can be tailored at a high compressive strength (~3031.5 MPa) and fracture strain (~24.8%) by adopting the CBF hatching mode combined with the optimized scan sequence and stagger mode. This study demonstrates great feasibility in tuning the mechanical properties of SLM-fabricated SMCs without varying the set energy input, e.g., laser power and scanning speed.

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Role of laser scan strategies in defect control,microstructural evolution and mechanical properties of steel matrix composites prepared by laser additive manufacturing
Hong-yu Chen,Dong-dong Gu,Qing Ge,Xin-yu Shi,Hong-mei Zhang,Rui Wang,Han Zhang,Konrad Kosiba.Role of laser scan strategies in defect control,microstructural evolution and mechanical properties of steel matrix composites prepared by laser additive manufacturing[J].International Journal of Minerals,Metallurgy and Materials,2021,28(3):462-474.
Authors:Hong-yu Chen  Dong-dong Gu  Qing Ge  Xin-yu Shi  Hong-mei Zhang  Rui Wang  Han Zhang  Konrad Kosiba
Abstract:Steel matrix composites (SMCs) reinforced with WC particles were fabricated via selective laser melting (SLM) by employing vari-ous laser scan strategies. A detailed relationship between the SLM strategies, defect formation, microstructural evolution, and mechanical prop-erties of SMCs was established. The laser scan strategies can be manipulated to deliberately alter the thermal history of SMC during SLM pro-cessing. Particularly, the involved thermal cycling, which encompassed multiple layers, strongly affected the processing quality of SMCs. S-shaped scan sequence combined with interlayer offset and orthogonal stagger mode can effectively eliminate the metallurgical defects and re-tained austenite within the produced SMCs. However, due to large thermal stress, microcracks that were perpendicular to the building direction formed within the SMCs. By employing the checkerboard filling (CBF) hatching mode, the thermal stress arising during SLM can be signific-antly reduced, thus preventing the evolution of interlayer microcracks. The compressive properties of fabricated SMCs can be tailored at a high compressive strength (~3031.5 MPa) and fracture strain (~24.8%) by adopting the CBF hatching mode combined with the optimized scan se-quence and stagger mode. This study demonstrates great feasibility in tuning the mechanical properties of SLM-fabricated SMCs without vary-ing the set energy input, e.g., laser power and scanning speed.
Keywords:laser additive manufacturing  selective laser melting  scan strategy  defect control  mechanical property
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