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Compressive properties of hollow BN nanoparticles: theoretical modeling and testing using a high-resolution transmission electron microscope

机译:抗压性能的中空BN纳米粒子:理论建模和测试使用高分辨率透射电子显微镜

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摘要

Due to their excellent mechanical properties, nanoparticles have great potential as reinforcing phases in composite materials, friction modifiers in liquid lubricants, catalysts and drug-delivery agents. In the present study, the mechanical analysis of individual spherical hollow BN nanoparticles (BNNPs) using a combination of in situ compression tests inside a high-resolution transmission electron microscope (TEM) and theoretical modelling was conducted. It was found that BNNPs display high mechanical stiffness and a large value of elastic recovery. This enables the hollow BNNPs to exhibit considerably large cyclic deformation (up to 30 of the sphere's original external diameter) and to accumulate plastic deformation of approximately 30 of the total compression strain. Theoretical simulations allowed for elucidation of BNNPs' structural changes under compression at the atomic level and explained the origin of their high stiffness and large critical deformation values.
机译:由于其优良的力学性能,加强纳米颗粒有很大的潜力在复合材料阶段,摩擦修饰符在液体润滑剂、催化剂和药物传输代理。分析单个球形空心BN纳米颗粒(BNNPs)中使用的组合在一个高分辨率原位压缩测试透射电子显微镜(TEM)和理论模型。BNNPs显示机械刚度和高弹性复苏的一个较大的值。空心BNNPs表现出相当大的循环变形(高达30%的球体最初的外部直径)和积累大约30%的塑性变形总压应变。允许说明BNNPs的结构在压缩在原子级别和变化高刚度和起源的解释大型临界变形值。

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