首页> 外文会议>Materials and processing technology—60 years of SAMPE progress >INVESTIGATION OF THE TENSILE STRENGTH BEHAVIOR OF E-GLASS/VINYL-ESTER COMPOSITE UNDER SYNERGISTIC HYGROTHERMAL EXPOSURE AND SUSTAINED STRAIN
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INVESTIGATION OF THE TENSILE STRENGTH BEHAVIOR OF E-GLASS/VINYL-ESTER COMPOSITE UNDER SYNERGISTIC HYGROTHERMAL EXPOSURE AND SUSTAINED STRAIN

机译:湿热暴露和持续应变下电子玻璃/乙烯基酯复合材料的拉伸强度行为研究

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摘要

The aim of the present research is to provide insights into the degradation mechanisms of a unidirectional pultruded E-glass/vinyl ester composite subjected to synergistic hygrothermal exposure (ambient atmosphere and deionized water at 22°C, 40°C and 60°C) and sustained load (three levels of constant bending strains), by investigating changes in the composite mechanical and physico-chemical properties. First, moisture sorption profiles will be compared to the widely accepted Fickian diffusion model and to the alternate Langmuir diffusion model, believed to be more accurate. Retention strength results are presented in the wet state as well as after redrying in order to assess any recovery in tensile strength due to water desorption. Scanning Electron micrographs will be used to correlate the appearance of microscopic damage in the form of interfacial debonding, fiber pitting and fiber cracking to the change in tensile properties. Attempts will be also made to dissociate the effect of matrix plasticization with other irreversible damage on the tensile strength loss. Finally, changes in the glass transition temperature as determined by Dynamic Mechanical Thermal Analysis, which can be correlated to physical and chemical changes within the polymer structure, will be presented.
机译:本研究的目的是提供对协同增湿暴露(环境温度和22°C,40°C和60°C的去离子水)的单向拉挤E-玻璃/乙烯基酯复合材料降解机理的见解。通过研究复合材料机械和物理化学特性的变化来承受持续载荷(三个水平的恒定弯曲应变)。首先,将水分吸收曲线与公认的Fickian扩散模型和替代的Langmuir扩散模型进行比较,后者被认为更加准确。保持强度结果以湿态以及重干后的形式呈现,以评估由于水分解吸而产生的拉伸强度的任何恢复。扫描电子显微照片将用于以界面剥离,纤维点蚀和纤维开裂的形式将微观损伤的出现与拉伸性能的变化联系起来。还将尝试消除基体塑化的影响以及对拉伸强度损失的其他不可逆的破坏。最后,将介绍由动态机械热分析确定的玻璃化转变温度的变化,该变化可以与聚合物结构内的物理和化学变化相关。

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