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Mechanical size effects of amorphous polymer-derived ceramics at the nanoscale: experiments and ReaxFF simulations

机译:机械尺寸非晶的影响polymer-derived陶瓷在纳米尺度上:实验和ReaxFF模拟

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Here we report an unprecedented mechanical size effect at the nanoscale in polymer-derived ceramic (PDC) nanofibers. Silicon oxycarbide (SiOC) PDCs were fabricated as micro- and nanofibers without the aid of fillers. By decreasing the size of SiOC ceramic fibers from 1.1 m to 630 nm (reduction of 74%), the strength of nanofibers nearly tripled, going from approximate to 1 GPa to approximate to 3.3 GPa. This increase in strength exceeds the predictions of the Griffith theorem, which relies on the length-scale dependence of energy release rate during crack propagation, suggesting a reduction in flaw size more than proportional to sample size. Given the crosslinked and amorphous nature of SiOC PDCs, flaws are likely microcracks and voids, which form during polymer degassing as it is pyrolyzed to PDC nanofibers. A reduction in sample size may favor degassing via diffusion, preceding bubble and void formation. We developed a new reactive force field (ReaxFF) with parameters for Si/O/C/H/N to study the mechanics of PDCs in extreme cases where no void is present. The models and experiments compare favorably in terms of the elastic modulus. The simulations suggest a strength of approximate to 8.5 GPa for a flawless structure, which is in line with extrapolated experimental results, with C-C breakage as the root cause of failure. This work clearly shows the benefits of utilizing nanoscale components as building blocks of superstrong PDC structures.
机译:我们在这里报告一个前所未有的机械尺寸在polymer-derived效应在纳米尺度上陶瓷(PDC)纳米纤维。(SiOC)髓微和制作的纳米纤维没有填充物的援助。减少SiOC陶瓷纤维的大小1.1 - 630 nm(减少74%)、强度纳米纤维的近两倍,从近似为1 GPa近似平均绩点3.3。这种强度的增加超过了预测格里菲思的定理,这依赖于长度尺度依赖的能量释放率在裂纹扩展过程中,建议减少在裂纹尺寸超过正比于样品大小。SiOC PDCs,缺点是可能的裂纹空洞,形成在聚合物脱气正交PDC纳米纤维。通过扩散样本量可能忙脱气,之前的泡沫和孔隙的形成。一个新的反应力场(ReaxFF)参数Si / O / C / H / N研究力学PDCs在极端的情况下,没有空隙礼物。良好的弹性模量。模拟表明强度近似8.5的绩点为一个完美的结构,与外推实验结果一致,碳碳破损是失败的根源。工作清楚显示利用的好处纳米级组件的构建块超级PDC结构。

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