首页> 外文会议>Symposium on Mechanical Properties of Nanostructured Materials and Nanocomposites; 20031201-20031205; Boston,MA; US >Direct Measurement of the Nanoscale Mechanical Properties of NiTi Shape Memory Alloy
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Direct Measurement of the Nanoscale Mechanical Properties of NiTi Shape Memory Alloy

机译:NiTi形状记忆合金的纳米级力学性能的直接测量

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The mechanical properties of sputter-deposited NiTi shape memory alloy thin films ranging in thickness from 35 nm to 10 μm were examined using nanoindentation and atomic force microscopy (AFM). Indents made in films as thin as 150 nm showed partial shape recovery upon heating, although film thickness was found to have a marked effect on the results. A modified spherical cavity model is used to describe the findings, which suggest that the substrate tends block the shape memory effect as film thickness decreases below a threshold level which is specific to applied load. This has the net effect of decreasing the indent recovery below the critical film thickness. The fact that the spherical cavity model predicts the critical film thickness at which the shape memory effect is blocked indicates that the increased recovery of nanoscale indentations is due to a suppression of plastic processes rather than an enhancement of shape memory processes.
机译:使用纳米压痕和原子力显微镜(AFM)检查了厚度从35 nm到10μm的溅射沉积NiTi形状记忆合金薄膜的机械性能。尽管发现薄膜厚度对结果有显着影响,但在厚度仅为150 nm的薄膜中制成的压痕在加热时显示出部分形状恢复。修改后的球腔模型用于描述发现,这表明当膜厚度减小到特定于所施加负载的阈值水平以下时,基材倾向于阻止形状记忆效应。这具有将压痕恢复降低到临界膜厚度以下的最终效果。球形腔模型预测了形状记忆效应受阻的临界膜厚这一事实表明,纳米级压痕恢复的增加是由于塑性过程的抑制而不是形状记忆过程的增强。

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