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Tunable Plasticity in Amorphous Silicon Carbide Films

机译:非晶碳化硅薄膜的可调塑性

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Plasticity plays a crucial role in the mechanical behavior of engineering materials. For instance, energy dissipation during plastic deformation is vital to the sufficient fracture resistance of engineering materials. Thus, the lack of plasticity in brittle hybrid organic—inorganic glasses (hybrid glasses) often results in a low fracture resistance and has been a significant challenge for their integration and applications. Here, we demonstrate that hydrogenated amorphous silicon carbide films, a class of hybrid glasses, can exhibit a plasticity that is even tunable by controlling their molecular structure and thereby leads to an increased and adjustable fracture resistance in the films. We decouple the plasticity contribution from the fracture resistance of the films by estimating the "work-of-fracture" using a mean-field approach, which provides some insight into a potential connection between the onset of plasticity in the films and the well-known rigidity percolation threshold.
机译:可塑性在工程材料的机械性能中起着至关重要的作用。例如,塑性变形过程中的能量耗散对于工程材料的足够抗断裂性至关重要。因此,脆性有机-无机混合玻璃(混合玻璃)缺乏可塑性通常会导致抗断裂性降低,并且对于其集成和应用一直是一项重大挑战。在这里,我们证明了氢化非晶碳化硅薄膜是一类混合玻璃,通过控制其分子结构甚至可以显示出可调节的可塑性,从而导致薄膜的抗断裂性提高和可调。通过使用均值场方法估算“断裂功”,我们将可塑性与薄膜的抗断裂性脱钩,从而提供了对薄膜可塑性开始与众所周知的潜在联系的一些见解。刚度渗滤阈值。

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