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中国物理学会期刊

La基非晶合金β弛豫行为: 退火和加载应变的影响

CSTR: 32037.14.aps.72.20222389

The β relaxation process of La-based amorphous alloy: Effect of annealing and strain amplitude

CSTR: 32037.14.aps.72.20222389
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  • β弛豫行为是理解非晶合金扩散、塑性变形和玻璃转变行为的重要切入口. 本研究以具有显著β弛豫行为的(La0.6Ce0.4)65Al10Co25非晶合金为研究载体, 利用动态力学分析仪, 研究了加载频率、退火以及加载应变等因素对非晶合金β弛豫行为的影响. 结果表明, 随着加载频率的升高, 非晶合金β弛豫峰向高温段移动. 低于玻璃转变温度退火导致非晶合金β弛豫峰内耗值降低, 非晶合金“缺陷”浓度降低, 玻璃体系向更稳定状态迁移. 随加载应变幅值增大, 非晶合金β弛豫强度增大. 本研究为进一步厘清非晶合金β弛豫起源提供新思路.

     

    The dynamic relaxation process of amorphous alloys is an important issue to understand the diffusion behavior, plastic deformation as well as glass transition phenomenon. In the current research, (La0.6Ce0.4)65Al10Co25 amorphous alloy with a pronounced β relaxation process was selected as a model system to study the dynamic mechanical relaxation processes. Influence of driving frequency, physical aging and applied strain amplitude on the β relaxation of the La-based metallic glass was probed process using dynamic mechanical analysis. The experimental results demonstrated that the peak of the β relaxation process shifts to high temperature by increasing the driving frequency. Physical aging below the glass transition temperature induces a decrease of the intensity of the β relaxation process. The “defects” of amorphous alloy decreases during the physical aging process, which is ascribed to the glassy system shifts to more stable state induced by physical aging treatment. In parallel, the intensity of the β relaxation process of the amorphous alloy increases by increasing strain amplitude. The research sheds new light on further understanding the physical origin of β relaxation process of the amorphous alloy.

     

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