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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Experimental and Finite-Element Analysis of Woven Glass-Cloth/Epoxy Laminate Tensile Specimen at Room and Low Temperatures
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Experimental and Finite-Element Analysis of Woven Glass-Cloth/Epoxy Laminate Tensile Specimen at Room and Low Temperatures

机译:室温下玻璃纤维/环氧层压板拉伸试样的实验和有限元分析

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To evaluate the tensile properties of SL-ES30 glass-cloth/epoxy laminates for superconducting magnets in fusion energy systems, tensile tests were examined both experimentally and analytically. The tensile tests were conducted in accordance with JIS K 7054 at room temperature and liquid nitrogen temperature (77 K). The general specimen geometry was a rectangular dog-bone shape with constant gage length but with each specimen size having a different specimen width. The experimental finding provides the data for analytical modeling. The model utilizes two damage variables that are determined from experimental data. A finite-element method coupled with damage was adopted for the extensional analysis. The effects of temperature, specimen geometry, and gripping method on the tensile properties are examined.
机译:为了评估用于聚变能系统中超导磁体的SL-ES30玻璃布/环氧树脂层压板的拉伸性能,对拉伸试验进行了实验和分析检验。根据JIS K 7054在室温和液氮温度(77 K)下进行拉伸试验。样品的总体几何形状为矩形的狗骨形状,其标距长度恒定,但每个样品尺寸具有不同的样品宽度。实验结果为分析建模提供了数据。该模型利用了根据实验数据确定的两个损伤变量。扩展分析采用有限元方法结合损伤。研究了温度,样品几何形状和夹持方法对拉伸性能的影响。

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