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首页> 外文期刊>International Journal of Applied Engineering Research >Finite Element Analysis for Deformation Studies in Natural Fiber (Human Hair) Composites
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Finite Element Analysis for Deformation Studies in Natural Fiber (Human Hair) Composites

机译:天然纤维(人发)复合材料变形研究的有限元分析

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Transitions to modernization involve materials and profits from sophistications in materials modeling. Present trend in design and utility of advanced materials majorly concentrate on accuracy, predictive capabilities, preciseness, repeatability, realism and of tools for the theory its modeling and simulation. Simulation methods are typically deployed to hasten product development with reliable design, increase of efficiency, and enable fundamental learning and understanding. Integrating good analysis and experimentation facilitates materials modeling that drive progress by saving time, resource and effort. Results are realistic, swiftly available and project relevant. Composites are the favorable engineering materials of high demand in industrial sectors. This paper presents the exploitation of software package ANSYS based on the Finite Element Analysis (FEA) for forecasting stress distribution in a general natural fiber composite. Though this is not the exact model, it still provides a detailed insight into the behavior of composites and fine-tuning this model may benefit in extrapolating them for forecasting the characteristics of natural and synthesis fiber composites for static and dynamic loading conditions.
机译:转型到现代化涉及材料和利润从材料建模中的复杂性。先进材料的设计和效用的目前趋势主要集中精度,预测性能力,精确性,重复性,现实主义和工具的理论,实现其建模和仿真。通常部署模拟方法以通过可靠的设计,提高效率,效率提高和理解,仿真方法。整合良好的分析和实验促进了通过节省时间,资源和努力来推动进展的材料建模。结果是现实的,迅速可用和项目相关。复合材料是工业领域需求量高的有利工程材料。本文基于有限元分析(FEA),介绍了软件包ANSYS的利用,用于预测一般天然纤维复合材料中的应力分布。虽然这不是确切的模型,但它仍然对复合材料的行为提供了详细的洞察,并且微调该模型可能有益于推断它们以预测天然和合成纤维复合材料的特性进行静态和动态负载。

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