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磁流变限滑差速器摩擦片组的性能分析
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作者 陈作炳 柳刚 +1 位作者 程海斌 汤帅 《汽车工程师》 2016年第4期31-34,共4页
通过分析磁流变限滑差速器摩擦片组的传递转矩性能来确定摩擦片结构,改进差速器结构。结合磁流变限滑差速器结构及MRF-G40型号磁流变液的性能曲线,采用Workbench软件分析摩擦片组的传递转矩与磁感应强度、转速差及摩擦片数量的关系。结... 通过分析磁流变限滑差速器摩擦片组的传递转矩性能来确定摩擦片结构,改进差速器结构。结合磁流变限滑差速器结构及MRF-G40型号磁流变液的性能曲线,采用Workbench软件分析摩擦片组的传递转矩与磁感应强度、转速差及摩擦片数量的关系。结果表明,传递转矩随磁感应强度的增加而大幅度增长,每0.1 T磁感应强度能增加10倍转矩,摩擦片数量越多,总传递转矩和锁紧系数越大,而随转速差的变化非常小。通过分析,最终确定摩擦片数量为16对,完善了磁流变限滑差速器结构。 展开更多
关键词 磁流变限滑差速器 摩擦片组 传递转矩 磁感应强度
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Achieving superior low temperature and high strain rate superplasticity in submerged friction stir welded Ti-6Al-4V alloy 被引量:2
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作者 吴利辉 张昊 +3 位作者 曾祥浩 薛鹏 肖伯律 马宗义 《Science China Materials》 SCIE EI CSCD 2018年第3期417-423,共7页
The superplastic forming of Ti alloy welds has great application prospects in producing integrated components. However, the nugget zone(NZ) of the Ti alloy welds,produced by fusion welding or conventional friction s... The superplastic forming of Ti alloy welds has great application prospects in producing integrated components. However, the nugget zone(NZ) of the Ti alloy welds,produced by fusion welding or conventional friction stir welding(FSW), consists of lamellar micro structure, which exhibits either low superplasticity or high superplastic temperautre and low strain rate. As a result, the NZ plays a leading role in hindering the superplastic forming of the whole welds.In this study, submerged friction stir welding(SFSW) was conducted in Ti-6Al-4 V alloy for the first time, and a defectfree weld with the NZ consisting of a strip microstructure was obtained. The NZ exhibited a low-temperature superplasticity at 600℃, which was the lowest superplastic temperature ever reported in the Ti alloy welds. Besides, at 800℃, the NZ showed high strain rate(3×10^(-2) s^(-1)) superplasticity and a largest elongation of 615% at 1×10^(-3) s^(-1). Compared to conventional FSW joints, the NZ of SFSW joint exhibited a much lower flow stress and a decrease in optimal superplastic temperature by 100℃. This is mainly attributed to the easy globularization of the strip microstructure, enhancing the ability of grain/phase boundary sliding. 展开更多
关键词 titanium alloys friction stir welding SUPERPLASTICITY microstructure
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