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Home - Engineering - 压力如何让晶体“失忆”:一种全新的材料塑性机制

Engineering

压力如何让晶体“失忆”:一种全新的材料塑性机制

Last updated: January 23, 2026 2:07 am
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电气工程领域最新发现

一份关于您所在领域最相关研究进展的简明简报,旨在提供清晰且具有影响力的信息。

压力如何让晶体“失忆”:一种全新的材料塑性机制

研究人员通过模拟和显微技术发现,在矿物镁橄榄石中,应力可以诱导其从有序的晶体结构转变为无序的非晶态。这一“应力诱导非晶化”过程表现出相变塑性的特征,意味着材料通过改变其基本相态来适应和耗散机械应力,而非传统的位错滑移。这为理解极端条件下材料的变形行为提供了新视角。

为什么它可能与您相关:
对于致力于提升AI训练效率的研究而言,理解材料在应力下的相变行为具有启发意义。这种从有序到无序的转变机制,可能在概念上类比于寻找神经网络中更高效、更低能耗的信息处理或状态转换路径。它为设计新型计算硬件或算法提供了来自材料科学的跨学科灵感,特别是在探索非传统计算范式时。


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