首页> 外文会议>Japan/China Workshop on Microgravity Sciences; 20051022-25; Takeo Onsen(JP) >Effect of melt flow on microstructure formation from undercooled Ni-B alloys---a comparative study based on EBSP
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Effect of melt flow on microstructure formation from undercooled Ni-B alloys---a comparative study based on EBSP

机译:熔体流动对过冷Ni-B合金组织形成的影响---基于EBSP的比较研究

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A grain refined microstructure is of great interest in industrial applications because of the improved mechanical properties and enhanced homogeneous features. A large melt undercooling can lead to the formation of metastable phases and refined microstructures in the single-phase solid solution alloys. Using an electromagnetic levitator (EML) or glass flux method by rf heating, a grain-refined microstructure has been found in many alloys, e.g., Ni-Cu. In the meanwhile, the microstructure transition as a function of melt undercooling can be well interpreted by using the fragmentation model developed by Karma. In the model, Karma only considered two factors of solute and capillarity effects as driving force for fragmentation. However, when a sample is processed by the EML or heated by rf method in glass slag, the melt flow induced by the magnetic field imposed onto the metallic sample is unavoidable. In the present study, we employed an electrostatic levitator (ESL) and an electromagnetic levitator (EML) to investigate the microstructure and microtexture formation from undercooled Ni_(99)B_1 alloys.
机译:由于改善的机械性能和增强的均匀特性,晶粒细化的微结构在工业应用中引起了极大的兴趣。较大的熔体过冷会导致在单相固溶体合金中形成亚稳态相并改善组织。使用电磁悬浮器(EML)或通过射频加热的玻璃熔剂方法,已发现在许多合金(例如Ni-Cu)中晶粒细化的微观结构。同时,通过使用Karma开发的碎裂模型可以很好地解释微观结构转变与熔体过冷的关系。在模型中,业力仅将溶质和毛细管效应的两个因素视为破碎的驱动力。然而,当样品通过EML处理或通过rf方法在玻璃渣中加热时,不可避免的是由施加在金属样品上的磁场引起的熔体流动。在本研究中,我们使用静电悬浮剂(ESL)和电磁悬浮剂(EML)来研究过冷的Ni_(99)B_1合金的微观结构和微观组织。

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