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Mechanical properties of pultruded glass fiber-reinforced plastic after moistening

机译:拉挤玻璃纤维增​​强塑料的力学性能

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The kinetics of moisture sorption under immersion in water at room and elevated temperatures and flex-ural characteristics of dry (conditionally initial) and wet (moistened up to saturation level) composite material were investigated on flat specimens of polyester based glass fiber-reinforced plastic, cut from I-beam pultruded profile. It was found that the coefficients of diffusion and swelling are different in three principal axis of the composite. The former have the largest value in fiber axis direction, but the latter - in transverse to fiber axis direction out of plane of the layers. The observed difference in kinetics of mass gain and change of volume strain for the specimens of various sizes allowed evaluate the volume of pores, filled with water. The large data spread for the specimens, cut from the flanges, was found. Edge specimens have lower density and showed lower elastic and strength characteristics. The material specimens moistened up to saturation level showed the decrease in flexural modulus and strength for 8% and 16.5%, respectively. No effect of sorbed moisture on tensile modulus and strength of the composite (tension along the fiber axis direction) was found.
机译:在聚酯基玻璃纤维增​​强塑料的扁平样品上研究了室温和高温下浸入水中的水分吸收动力学以及干燥(有条件的初始)和湿(湿润至饱和水平)复合材料的挠曲特性,从工字钢拉挤型材上切下。发现在复合材料的三个主轴上扩散和溶胀系数是不同的。前者在纤维轴方向上具有最大值,而后者-在层平面之外的横向于纤维轴方向上具有最大值。对于各种尺寸的样品,所观察到的质量增加动力学和体积应变变化的动力学差异允许评估充满水的孔的体积。发现了从法兰上切下的大量样本数据。边缘样品的密度较低,并且弹性和强度特性较低。润湿至饱和水平的材料试样的弯曲模量和强度分别降低了8%和16.5%。没有发现吸附的水分对复合材料的拉伸模量和强度(沿纤维轴方向的拉伸)的影响。

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