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The evolution of transverse stresses in hybrid composites under hygrothermal loading

机译:湿热载荷下混杂复合材料的横向应力演化

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摘要

This paper presents a hygrothermal analysis of the hybrid composites under the effect of the cyclic environmental conditions in order to determine the transient transverse stresses of the [θ/-θ]s stacking sequences. Hybrid composite is used to consider an appropriate isolation against the cyclic environmental conditions, as well as the reduction of the hygrothermal transverse stresses at both edges of the plate. To reach this aim, we used initially, the computer code W8gain developed by Springer for the determination of the moisture concentration at the end of each cycle. Thereafter, a computer code is developed to compute the hygrothermal transient stresses with implicit variation of temperature and moisture concentration after each cycle. To reduce the transverse stresses, some cases of hybrid composites are proposed. For each case, the thickness of each material constituting the hybrid plate (T300/5208 or AS/3501 -5) is gradually varied, but the total thickness of our plate remains unchanged. This thickness variation enables us to find an appropriate hybrid plate which predicts an optimal reduction of hygrothermal transverse stresses; consequently an increase in durability of our hybrid plate.
机译:本文介绍了在循环环境条件下对杂化复合材料的湿热分析,以确定[θ/-θ] s堆叠序列的瞬时横向应力。混合复合材料用于考虑针对周期性环境条件的适当隔离,以及减小板的两个边缘处的湿热横向应力。为了达到这个目标,我们最初使用Springer开发的计算机代码W8gain来确定每个循环结束时的水分浓度。此后,开发了计算机代码以计算每个循环后温度和水分浓度隐含变化的湿热瞬态应力。为了减少横向应力,提出了混合复合材料的一些情况。对于每种情况,构成混合板的每种材料的厚度(T300 / 5208或AS / 3501 -5)都是逐渐变化的,但我们板的总厚度保持不变。这种厚度变化使我们能够找到合适的混合板,该板可预测湿热横向应力的最佳减小;因此,增加了我们混合板的耐用性。

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  • 来源
    《Materials & design》 |2011年第5期|p.3120-3126|共7页
  • 作者单位

    Laboratory of Composite Structures and Innovating Materials, Faculty of Mechanical Engineering, University of Sciences and Technology of Oran Mohamed Boudiaf, BP 1505 El M'naouer, USTO, Oran, Algeria,Materials and Hydrology Laboratory, University ofSidi Bel Abbes, BP 89 Ben M'hidi City, 22000 Sidi Bel Abbes, Algeria;

    Materials and Hydrology Laboratory, University ofSidi Bel Abbes, BP 89 Ben M'hidi City, 22000 Sidi Bel Abbes, Algeria;

    Laboratory of Composite Structures and Innovating Materials, Faculty of Mechanical Engineering, University of Sciences and Technology of Oran Mohamed Boudiaf, BP 1505 El M'naouer, USTO, Oran, Algeria;

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