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Disordered Nanoparticle Packings under Local Stress Exhibit Avalanche-Like, Environmentally Dependent Plastic Deformation

机译:局部应力下的纳米粒子填料在局部应力下表现出雪崩样,环保塑性变形

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Nanoindentation experiments on disordered nanoparticle packings performed both in an atomic force microscope and in situ in a transmission electron microscope are used to investigate the mechanics of plastic deformation. Under an applied load, these highly porous films exhibit load drops, the magnitudes of which are consistent with an exponential population distribution. These load drops are attributed to local rearrangements of a small number of particles, which bear similarities to shear transformation zones and to the T1 process, both of which have been previously predicted for disordered packings. An increase in the relative humidity results in an increase in the number of observed load drops, indicating that the strength of the particle interactions has a significant effect on the modes of plastic deformation. These results suggest how disordered nanoparticle packings may be expected to behave in devices operating under varying environments.
机译:在原子力显微镜和在透射电子显微镜中进行的无序纳米粒子填料的纳米狭窄实验用于研究塑性变形的力学。 在施加的载荷下,这些高度多孔膜表现出负荷下降,其幅度与指数人口分布一致。 这些负载下降归因于少数颗粒的局部重排,其承担与剪切变换区域和T1工艺的相似性,两者之前已经预测了无序的填料。 相对湿度的增加导致观察到的负荷下降的数量的增加,表明颗粒相互作用的强度对塑性变形的模式具有显着影响。 这些结果表明,预期纳米粒子填料的纳米粒子填料的表现如何在不同环境下运行的装置中表现。

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