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Microstructure and Wear Resistance of Ni-Cr Alloy Laser Cladding Layer with High Cr Content
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作者 Pan Chaoyang Liu Zongde +4 位作者 Shen Yue Lu Xinjie Mao Jie Wang Xinyu Li Jiaxuan 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2024年第9期2438-2445,共8页
Four kinds of Ni-xCr alloy laser cladding layers(x=20,40,60 and 80,wt%)were prepared by high-speed laser cladding technique,and the relationship between microstructure and wear resistance of Ni-Cr alloy laser cladding... Four kinds of Ni-xCr alloy laser cladding layers(x=20,40,60 and 80,wt%)were prepared by high-speed laser cladding technique,and the relationship between microstructure and wear resistance of Ni-Cr alloy laser cladding layers with different Cr contents was investigated.The results show that the four Ni-Cr alloy laser cladding layers all have reticulated dendritic structures.Among them,Ni-20Cr and Ni-40Cr are single-phaseγ-(Ni,Cr)solid solutions,and their wear mechanisms are adhesive wear and abrasive wear.With the increase in Cr content,Ni-60Cr and Ni-80Cr areγ-(Ni,Cr)phase and Cr phase,as well as Cr-rich precipitates,and their wear mechanisms are adhesive wear,abrasive wear and fatigue wear.A moderate increase in Cr content can enhance the hardness and wear resistance of Ni-Cr alloy laser cladding layer.However,excessive addition of Cr results in the precipitation of Cr-rich precipitates.The hardness of these precipitates is 2430.4 MPa,which is lower than the hardness of the Ni-60Cr matrix(4024.86 MPa)and Ni-80Cr matrix(7022.68 MPa).A hardness transition zone exists between the Cr-rich precipitates and the matrix.Cracks are likely to initiate and expand in this zone,leading to deep spalling,which is not conducive to the wear-resistant properties of the laser cladding layer.Ni-80Cr has the highest hardness,but its high Cr content leads to a large number of penetrating cracks and Cr-rich precipitates on the surface,ultimately resulting in the worst wear resistance.Ni-60Cr exhibits the best wear resistance due to its high hardness and dense microstructure. 展开更多
关键词 Ni-Cr alloy laser cladding Cr-rich precipitate wear resistance
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考虑风剪切的漂浮式风力机气动特性研究 被引量:4
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作者 陈子文 王晓东 +2 位作者 郭翼泽 叶昭良 康顺 《工程热物理学报》 EI CAS CSCD 北大核心 2021年第4期905-914,共10页
波浪与风载的共同作用下,海上风电机组平台存在多自由度运动,同时伴随着海上复杂的风况,其气动特性变化较为复杂。以NREL5MW风电机组为研究对象,在风剪切来流下,依据波浪和风载的作用规律,研究平台纵摇和纵荡运动对机组气动特性和绕流... 波浪与风载的共同作用下,海上风电机组平台存在多自由度运动,同时伴随着海上复杂的风况,其气动特性变化较为复杂。以NREL5MW风电机组为研究对象,在风剪切来流下,依据波浪和风载的作用规律,研究平台纵摇和纵荡运动对机组气动特性和绕流场细节的影响。结果表明:平台运动会造成风电机组气动性能的周期性波动,而风剪切作用使得风电机组平均发电量降低并加剧功率和推力的波动。风剪切会增大纵摇运动过程中展向截面的法向载荷幅值且波动加剧,但会降低与功率输出有关的切向受力;风剪切作用推迟了纵荡运动过程中展向截面法向和切向载荷峰值出现时刻,加剧载荷的波动。外叶展截面的法向和切向力系数曲线出现平台,加剧了叶片疲劳载荷,减小了功率输出。 展开更多
关键词 风剪切 纵摇运动 纵荡运动 数值模拟 气动载荷
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