首页> 外文会议>Symposium on Supercooled Liquid, Bulk Glassy and Nanocrystalline States of Alloys Nov 27-30, 2000, Boston, Massachusetts, U.S.A. >Internal friction and elastic modulus change associated with structural relaxation and crystallization in amorphous Mg-Ni-Y alloys
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Internal friction and elastic modulus change associated with structural relaxation and crystallization in amorphous Mg-Ni-Y alloys

机译:与非晶Mg-Ni-Y合金的结构弛豫和结晶相关的内摩擦和弹性模量变化

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Mechanical spectroscopy technique has been applied to investigation of structural relaxation and crystallization of Mg-Ni-Y amorphous alloys of different composition. The composition of the alloys was varied due to change of yttrium concentration from 0 to 7 at.%. The internal friction (IF) and Young's modulus have been measured by a vibrating reed method at frequency of ~200 Hz at heating and cooling runs in the temperature range from 300K to 650K. Crystallization kinetic studies of the alloys by DSC and XRD showed that the transition from amorphous to crystalline state in the Mg-Ni-Y alloys has gone through several stages with origination of intermediate phase. IF spectra and Young's modulus of the alloys have been analyzed and the effect of yttrium content on the stability of intermediate phase was investigated.
机译:机械光谱技术已被用于研究不同组成的Mg-Ni-Y非晶态合金的结构弛豫和结晶。合金的组成由于钇浓度从0到7 at。%的变化而变化。在300K至650K的温度范围内进行加热和冷却时,通过振动簧片方法以〜200 Hz的频率测量了内部摩擦(IF)和杨氏模量。通过DSC和XRD对合金的结晶动力学研究表明,Mg-Ni-Y合金中从非晶态到结晶态的转变经历了中间阶段的起源的几个阶段。分析了合金的IF光谱和杨氏模量,研究了钇含量对中间相稳定性的影响。

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