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首页> 外文期刊>Polymer Testing >Microstructure-mechanical properties relationships in vibration welded glass-fiber-reinforced polyamide 66: A high-resolution X-ray microtomography study
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Microstructure-mechanical properties relationships in vibration welded glass-fiber-reinforced polyamide 66: A high-resolution X-ray microtomography study

机译:振动焊接玻璃 - 纤维增强聚酰胺的微观结构 - 机械性能关系66:高分辨率X射线微观图谱研究

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摘要

The effect of initial fiber orientation and welding conditions on the mechanical properties and microstructure of 30 wt% glass-fiber-reinforced polyamide 66 was systematically evaluated. For all conditions studied no significant change in the polymer matrix was evidenced. However, fibers in the welded zone were reoriented toward the squeeze and vibration flows and this reorientation is related to the appearance of cavities, as evidenced by high-resolution synchrotron-based X-ray microtomography. It is shown that stress at break values of the welded samples increase with the thickness of the weld zone together with the minimum value of the fiber orientation tensor component in the tensile direction. A drop of strain at break is also related to an increase in the fibers' concentration in the weld. The maximum void volume fraction being measured on samples which have the thickest welded zones, counterintuitively it does not induce lower stress at break.
机译:系统评价初始纤维取向和焊接条件对30wt%玻璃纤维增强聚酰胺66的机械性能和微观结构的影响。 对于所有条件,所研究的情况下,显着的聚合物基质的显着变化显着。 然而,焊接区域中的纤维被重新定向挤压和振动流动,并且这种重新定向与空腔的外观有关,这是由高分辨率同步氧化克雷显微镜图所证明的。 结果表明,焊接样品的断裂值的应力随着焊接区的厚度而增加,与拉伸方向的纤维取向张量分量的最小值一起增加。 断裂滴的菌株也与焊缝中纤维浓度的增加有关。 在具有最厚的焊接区域的样品上测量的最大空隙体积分数,违反焊接地区的样品不会诱导断裂的较低应力。

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