This paper presents the results of a study concerned with the surface hardening of Fe-based alloys and WC-8Co cemented carbide by inte- grating laser cladding and the electrospark deposition processes. Specimens of lo...This paper presents the results of a study concerned with the surface hardening of Fe-based alloys and WC-8Co cemented carbide by inte- grating laser cladding and the electrospark deposition processes. Specimens of low carbon steel were processed firstly by laser cladding with Fe-based alloy powders and then by electrospark deposition with WC-SCo cemented carbide. It is shown that, for these two treatments, the electrospark coating possesses finer microstructure than the laser coating, and the thickness and surface hardness of the electrospark coating can be substantially increased.展开更多
通过激光熔覆沉积技术制备应用于航空航天工业的Nb Mo Ta Ti难熔高熵合金材料,通过X射线衍射判断出成形的合金晶体结构为体心立方的单相固溶体结构。高熵合金晶粒尺寸大多在2~12μm之间;平均显微硬度为397.6HV,室温抗压强度为1301.83MPa...通过激光熔覆沉积技术制备应用于航空航天工业的Nb Mo Ta Ti难熔高熵合金材料,通过X射线衍射判断出成形的合金晶体结构为体心立方的单相固溶体结构。高熵合金晶粒尺寸大多在2~12μm之间;平均显微硬度为397.6HV,室温抗压强度为1301.83MPa,1000℃高温抗压强度只达到347.28MPa,其原因可能与激光熔覆沉积成形Nb Mo Ta Ti高熵合金的过程中产生的气孔、未熔化/不完全熔化的Ta粉末粒子和裂纹有关,需进一步研究。展开更多
Ni60-WC particles are used to improve the wear resistance of hard-facing steel due to their high hardness. An emerging technology that combines laser with cold spraying to deposit the hard-facing coatings is known as ...Ni60-WC particles are used to improve the wear resistance of hard-facing steel due to their high hardness. An emerging technology that combines laser with cold spraying to deposit the hard-facing coatings is known as supersonic laser deposition. In this study, Ni60-WC is deposited on low-carbon steel using SLD. The microstructure and performance of the coatings are investigated through SEM, optical microscopy, EDS, XRD, microhardness and pin-on-disc wear tests. The experimental results of the coating processed with the optimal parameters are compared to those of the coating deposited using laser cladding.展开更多
文摘This paper presents the results of a study concerned with the surface hardening of Fe-based alloys and WC-8Co cemented carbide by inte- grating laser cladding and the electrospark deposition processes. Specimens of low carbon steel were processed firstly by laser cladding with Fe-based alloy powders and then by electrospark deposition with WC-SCo cemented carbide. It is shown that, for these two treatments, the electrospark coating possesses finer microstructure than the laser coating, and the thickness and surface hardness of the electrospark coating can be substantially increased.
文摘通过激光熔覆沉积技术制备应用于航空航天工业的Nb Mo Ta Ti难熔高熵合金材料,通过X射线衍射判断出成形的合金晶体结构为体心立方的单相固溶体结构。高熵合金晶粒尺寸大多在2~12μm之间;平均显微硬度为397.6HV,室温抗压强度为1301.83MPa,1000℃高温抗压强度只达到347.28MPa,其原因可能与激光熔覆沉积成形Nb Mo Ta Ti高熵合金的过程中产生的气孔、未熔化/不完全熔化的Ta粉末粒子和裂纹有关,需进一步研究。
基金sponsored by the Centre for Industrial Photonics, Institute for Manufacture, Department of Engineering, University of Cambridgethe Natural Science Foundation of China (51271170)+1 种基金China International Science and Technology Cooperation Project (2011DFR50540)Major Scientific and Technological Special Key Industrial Project of Zhejiang Province (2012C11001)
文摘Ni60-WC particles are used to improve the wear resistance of hard-facing steel due to their high hardness. An emerging technology that combines laser with cold spraying to deposit the hard-facing coatings is known as supersonic laser deposition. In this study, Ni60-WC is deposited on low-carbon steel using SLD. The microstructure and performance of the coatings are investigated through SEM, optical microscopy, EDS, XRD, microhardness and pin-on-disc wear tests. The experimental results of the coating processed with the optimal parameters are compared to those of the coating deposited using laser cladding.