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Analysis and Characterization of Tensile Property of the Composite Specimen using ANSYS

机译:应用ANSYS分析和表征复合材料的拉伸性能

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摘要

The objective of the this research paper is to predict the deformation length of glass/epoxy composite laminates using Finite Element Analysis (FEA) and compare with the Universal Testing Machine (UTM) deformation results through the tensile load. The laminate was made by six layered glass fiber (in woven mat form) with epoxy as the binding medium by hand lay-up technique, cured at room temperature at the pressure of 30 kg/cm~2. Tensile specimens with ASTM D3039 standard dimensions were cut from the laminate. These specimens were subjected to uni-axial tension under the 10 ton capacity UTM. The specimen's FEA models were created using ANSYS 12 and the deformation length data were obtained. The actual deformation results were compared with the predicted values obtained from the FEA. The results were ensures that the FEA results has well agreed with the original deformation length with in the acceptable error margin.
机译:本研究的目的是使用有限元分析(FEA)来预测玻璃/环氧树脂复合材料层压板的变形长度,并通过拉伸载荷与通用测试机(UTM)的变形结果进行比较。所述层压材料通过六层玻璃纤维(编织垫形式),通过手工铺层技术,以环氧树脂为粘合介质,在室温下以30 kg / cm〜2的压力固化。从层压板上切下具有ASTM D3039标准尺寸的拉伸试样。这些样品在10吨容量的UTM下承受单轴拉伸。使用ANSYS 12创建了样品的FEA模型,并获得了变形长度数据。将实际变形结果与从FEA获得的预测值进行比较。结果确保了FEA结果与原始变形长度完全吻合,并且误差范围在可接受范围内。

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