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首页> 外文期刊>CERAMICS INTERNATIONAL >Predicting Charpy impact energy of A16061/SiC_p laminated nanocomposites in crack divider and crack arrester forms
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Predicting Charpy impact energy of A16061/SiC_p laminated nanocomposites in crack divider and crack arrester forms

机译:预测裂纹分隔体和裂纹阻止体形式的A16061 / SiC_p层状纳米复合材料的夏比冲击能。

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摘要

Charpy impact energy of the produced A16061-SiC_p laminated nanocomposites by mechanical alloying was modeled by adaptive neuro-fuzzy interfacial systems (ANFIS) in both crack divider and crack arrester configurations. The model was constructed by training, validating and testing of 171 gathered input-target data. The thickness of layers, the number of layers, the adhesive type, the crack tip configuration and the content of SiC nanoparticles were five independent input parameters utilized for modeling. The output parameter was Charpy impact energy of the nanocomposites. The performance of the proposed models was evaluated by absolute fraction of variance, the absolute percentage error and the root mean square error and the best values of 0.9945, 3.521 and 8.224, respectively acquired for them. The results introduced ANFIS as an influential tool for predicting the Charpy impact energy of the considered A16061-SiC_p laminate nanocomposites.
机译:通过自适应合金-模糊界面系统(ANFIS)在裂隙分配器和避雷器配置中对通过机械合金化生产的A16061-SiC_p层压纳米复合材料的夏比冲击能进行建模。该模型是通过训练,验证和测试171个收集的输入目标数据而构建的。层的厚度,层数,粘合剂类型,裂纹尖端构型和SiC纳米颗粒的含量是用于建模的五个独立的输入参数。输出参数是纳米复合材料的夏比冲击能。通过绝对方差分数,绝对百分比误差和均方根误差以及分别获得的最佳值0.9945、3.521和8.224来评估所提出模型的性能。结果介绍了ANFIS作为预测所考虑的A16061-SiC_p层压纳米复合材料的夏比冲击能的有力工具。

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