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铸锻复合工艺下履带支重轮摩擦磨损性能研究
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作者 雷和林 吴江波 +3 位作者 周强 蒋辉 徐晨阳 秦训鹏 《塑性工程学报》 CAS CSCD 北大核心 2023年第11期210-216,共7页
针对光伏板维保系统履带支重轮传统铸造成形存在的摩擦磨损性能不足问题,提出了一种铸锻复合新工艺,通过铸造获得具有关键几何特征的工件毛坯,然后通过多级锻造实现最终成形。通过对比实验,研究了新工艺对材料摩擦磨损性能的影响规律和... 针对光伏板维保系统履带支重轮传统铸造成形存在的摩擦磨损性能不足问题,提出了一种铸锻复合新工艺,通过铸造获得具有关键几何特征的工件毛坯,然后通过多级锻造实现最终成形。通过对比实验,研究了新工艺对材料摩擦磨损性能的影响规律和作用机制。结果表明,在磨粒磨损和接触疲劳磨损两种机制共同作用下,新工艺通过晶粒细化和位错强化能够实现材料强韧协同调控,提升磨粒磨损时抵抗挤压和切屑变形的能力,抑制接触疲劳磨损时疲劳裂纹的萌生和扩展,从而减缓疲劳剥层的产生。在铸锻复合工艺下,材料摩擦因数下降约20.6%,磨损率减少约26.5%,摩擦磨损性能得到明显提升。 展开更多
关键词 履带支重轮 铸锻复合工艺 摩擦磨损 马氏体组织细化 强韧协同调控
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Role of plastic deformation in tailoring ultrafine microstructure in nanotwinned diamond for enhanced hardness 被引量:4
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作者 胡文涛 温斌 +8 位作者 黄权 肖建伟 于栋利 王雁宾 赵智胜 何巨龙 柳忠元 徐波 田永君 《Science China Materials》 SCIE EI CSCD 2017年第2期178-185,共8页
Nanotwinned diamond(nt-diamond),which demonstrates unprecedented hardness and stability,is synthesized through the martensitic transformation of onion carbons at high pressure and high temperature(HPHT).Its hardne... Nanotwinned diamond(nt-diamond),which demonstrates unprecedented hardness and stability,is synthesized through the martensitic transformation of onion carbons at high pressure and high temperature(HPHT).Its hardness and stability increase with decreasing twin thickness at the nanoscale.However,the formation mechanism of nanotwinning substructures within diamond nanograins is not well established.Here,we characterize the nanotwins in nt-diamonds synthesized under different HPHT conditions.Our observation shows that the nanotwin thickness reaches a minimum at ~20 GPa,below which phase-transformation twins and deformation twins coexist.Then,we use the density-functional-based tight-binding method and kinetic dislocation theory to investigate the subsequent plastic deformation mechanism in these pre-existing phase-transformation diamond twins.Our results suggest that pressure-dependent conversion of the plastic deformation mechanism occurs at a critical synthetic pressure for nt-diamond,which explains the existence of the minimum twin thickness.Our findings provide guidance on optimizing the synthetic conditions for fabricating nt-diamond with higher hardness and stability. 展开更多
关键词 nanotwinned diamond high temperature and high pressure(HTHP) plastic deformation HARDNESS
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