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Effects of inter-fiber spacing and thermal residual stress on transverse failure of fiber-reinforced polymer–matrix composites

机译:纤维间距和热残余应力对纤维增强聚合物基复合材料横向破坏的影响

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摘要

The effect of thermal residual stress on transverse failure of fiber-reinforced polymer matrix composites is investigated by computational micromechanics with finite element method (FEM). Especially, the effect of inter-fiber spacing on thermal residual stress and then its effect on the transverse failure of composites are studied through microstructures with random fiber distribution and controllable minimal inter-fiber spacing. The residual stress is supposed to be introduced by thermal contraction of both resin and fiber as a result of cooling from the curing temperature to room temperature. The calculated residual stresses generally increase with the increase of fiber volume fraction and decrease of minimal inter-fiber spacing. And initial matrix and interface damage may be induced by thermal residual stress, especially when the inter-fiber spacing is quite small. For the particular composite system studied and the assumed parameters, it is concluded that the existence of residual stress can have significant effects on the failure behavior of composite when subsequent external load is applied, obviously changing the damage initiation locus and damage evolution path, and causing significant decrease in the transverse strength of the composite. Generally, there is a trend of more significant decrease in the transverse strength for higher fiber volume fraction and smaller inter-fiber spacing. In conclusion, this paper reveals how inter-fiber spacing and thermal residual stress affect the transverse failure behavior of composites, and thus can provide some guidance for both design and analysis of composites when thermal residual stress is concerned.
机译:采用有限元计算微力学方法研究了残余热应力对纤维增强聚合物基复合材料横向破坏的影响。特别是,通过具有随机纤维分布和可控最小纤维间间距的微观结构,研究了纤维间间距对热残余应力的影响,然后研究其对复合材料横向破坏的影响。假定由于从固化温度冷却至室温而导致树脂和纤维的热收缩而引入残余应力。计算出的残余应力通常随着纤维体积分数的增加和最小纤维间间距的减小而增加。残余的热应力可能会引起初始的基体和界面损伤,特别是当纤维间的间距很小时。对于所研究的特定复合材料系统和假定的参数,得出的结论是,残余应力的存在可在施加后续外部载荷时对复合材料的破坏行为产生重大影响,从而显着改变破坏的起始轨迹和破坏的演化路径,并导致复合材料的横向强度显着降低。通常,对于较高的纤维体积分数和较小的纤维间间距,存在横向强度显着降低的趋势。总之,本文揭示了纤维间的间距和热残余应力如何影响复合材料的横向破坏行为,从而可以在考虑热残余应力的情况下为复合材料的设计和分析提供一些指导。

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