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电火花线切割薄壁尖角类零件磁力变形研究
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作者 李红丽 马耀峰 陈志 《机械设计与制造》 北大核心 2019年第12期121-123,127,共4页
针对电火花线切割加工薄壁尖角类零件(厚度<4mm,角度<10°)容易在尖端处产生一定的磁力变形,开展磁力变形的形成机理和抑制方法研究。首先,开展轮廓观测实验,发现磁性材料的磁力变形与加工方向相同,非磁性材料的磁力变形与加... 针对电火花线切割加工薄壁尖角类零件(厚度<4mm,角度<10°)容易在尖端处产生一定的磁力变形,开展磁力变形的形成机理和抑制方法研究。首先,开展轮廓观测实验,发现磁性材料的磁力变形与加工方向相同,非磁性材料的磁力变形与加工方向相反。其次,通过电火花线切割加工电磁场分析,揭示薄壁尖角类零件磁力变形的根本原因。随后,设计正交实验,分析加工工艺参数对磁力变形的影响规律,并获得较小磁力变形的工艺参数范围。最后,提出电极丝轨迹补偿方法降低磁力变形,实验结果表明该方法可以将磁力变形降低50%。 展开更多
关键词 电火花线切割 薄壁尖角类零件 磁力变形 电极丝轨迹补偿
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Microstructure, martensitic transformation and mechanical properties of Ni-Mn-Sn alloys by substituting Fe for Ni 被引量:2
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作者 Chang-long TAN Zhi-cheng FENG +3 位作者 Kun ZHANG Ming-yang WU Xiao-hua TIAN Er-jun GUO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第10期2234-2238,共5页
The effects of partial substitution of Fe element for Ni element on the structure,martensitic transformation and mechanicalproperties of Ni50-xFexMn38Sn12(x=0and3%,molar fraction)ferromagnetic shape memory alloys were... The effects of partial substitution of Fe element for Ni element on the structure,martensitic transformation and mechanicalproperties of Ni50-xFexMn38Sn12(x=0and3%,molar fraction)ferromagnetic shape memory alloys were investigated.Experimentalresults indicate that by substitution of Fe for Ni,the microstructure and crystal structure of the alloys change at room temperature.Compared with Ni50Mn38Sn12alloy,the martensitic transformation starting temperature of Ni47Fe3Mn38Sn12alloy is decreased by32.5K.It is also found that martensitic transformation occurs over a broad temperature window from288.9to352.2K.It is found that themechanical properties of Ni-Mn-Sn alloy can be significantly improved by Fe addition.The Ni47Fe3Mn38Sn12alloy achieves amaximum compressive strength of855MPa with a fracture strain of11%.Moreover,the mechanism of the mechanical propertyimprovement is clarified.Fe doping changes the fracture type from intergranular fracture of Ni50Mn38Sn12alloy to transgranularcleavage fracture of Ni47Fe3Mn38Sn12alloys. 展开更多
关键词 Ni-Mn-Sn alloys martensitic transformation mechanical properties ferromagnetic shape memory alloys
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Influence of stresses on martensitic transformation in ferromagnetic shape memory Ni_(50)Mn_(19)Fe_6Ga_(25) ribbons
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作者 MENG Fanbin LI Yangxian +4 位作者 LIU Heyan QU Jingping LIU Zhuhong CHEN Jinglian WU Guangheng 《Science China(Technological Sciences)》 SCIE EI CAS 2004年第6期710-715,共6页
The influence of stresses on martensitic transformation in Ni50Mn19Fe6Ga25 melt-spun ribbons was studied. X-ray diffraction examination shows that the ribbon has a pure cubic L21 phase at room temperature and that the... The influence of stresses on martensitic transformation in Ni50Mn19Fe6Ga25 melt-spun ribbons was studied. X-ray diffraction examination shows that the ribbon has a pure cubic L21 phase at room temperature and that the ribbon surface exhibits [100] preferentially oriented texture, while the [110] axis is about 45° tilted from the normal of the ribbon. By calculating the d spacing at different angles with the length direction of the ribbon, the tension was observed. It was found that the direction of the stress was along [010] direction of the oriented textured grains. During cooling, there is no obvious structural transition observed in as-spun ribbons. However, when the ribbons were annealed at 900 K for 24 h, the tension along [010] direction disappeared and the structural transition from cubic to tetragonal occurred obviously during cooling. It indicates that it is the tension along [010] direction to suppress the martensitic transformation in the as-spun ribbons. 展开更多
关键词 STRESS martensitic transformation ferromagnetic shape memory alloy
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