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首页> 外文期刊>Polymer engineering and science >Apparent Volumetric Shrinkage Study of RTM6 Resin During the Curing Process and Its Effect on the Residual Stresses in a Composite
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Apparent Volumetric Shrinkage Study of RTM6 Resin During the Curing Process and Its Effect on the Residual Stresses in a Composite

机译:RTM6树脂在固化过程中的表观体积收缩率及其对复合材料残余应力的影响

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A comprehensive characterization of the volumetric shrinkage of a commercially important aerospace resin (RTM6) during the various stages of the curing process was studied. The apparent volumetric shrinkage, evaluated from density measurements at room temperature, was correlated with the progress of epoxide conversion. During the entire curing process, the apparent volume shrinkage was found to be less than 3% and occurred before vitrification. A slight re-expansion of the resin, attributed to self-antiplasticization effects, was observed during postcuring at 180 C. It was concluded that residual stresses were not generated due to chemical cross-linking during curing but rather from thermal contraction occurring during the cooling stage after cure. A photo-elastic method was used to characterize residual stresses during cooling in a deliberately engineered resin rich hole of a carbon fiber/RTM6 composite. The residual stress was found to reach approximately 28 MPa, which is in good agreement with the value calculated from the shrinkage and elastic moduli. It is proposed that this simple method can be provide insights useful to the design and materials selection processes by measuring and localizing residual stresses from resin during curing and or thermal cycling.
机译:研究了在固化过程的各个阶段中商业上重要的航空航天树脂(RTM6)的体积收缩率的综合特征。通过在室温下的密度测量评估的表观体积收缩与环氧化物转化的进展相关。在整个固化过程中,表观体积收缩率小于3%,发生在玻璃化之前。在180°C的后固化过程中,观察到由于自身抗塑化作用,树脂略有重新膨胀。得出的结论是,残余应力不是由于固化过程中的化学交联产生的,而是由于冷却过程中发生的热收缩而产生的治愈后的阶段。在经过精心设计的碳纤维/ RTM6复合材料的富树脂孔中,使用光弹性方法来表征冷却过程中的残余应力。发现残余应力达到约28 MPa,这与根据收缩率和弹性模量计算出的值非常吻合。提出该简单方法可以通过在固化和/或热循环过程中测量和确定树脂的残余应力来提供对设计和材料选择过程有用的见解。

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