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A Theoretical Model for Estimation of Yield Strength of Fiber Metal Laminate

机译:纤维金属层压板屈服强度估算理论模型

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The paper presents a theoretical model for estimation of yield strength of fiber metal laminate. Principles of elasticity and formulation of residual stress are employed to determine the stress state in metal layer of the laminate that is found to be higher than the stress applied over the laminate resulting in reduced yield strength of the laminate in comparison with that of the metal layer. The model is tested over 4A-3/2 Glare laminate comprising three thin aerospace 2014-T6 aluminum alloy layers alternately bonded adhesively with two prepregs, each prepreg built up of three uni-directional glass fiber layers laid in longitudinal and transverse directions. Laminates with prepregs of E-Glass and S-Glass fibers are investigated separately under uni-axial tension. Yield strengths of both the Glare variants are found to be less than that of aluminum alloy with use of S-Glass fiber resulting in higher laminate yield strength than with the use of E-Glass fiber. Results from finite element analysis and tensile tests conducted over the laminates substantiate the theoretical model.
机译:本文介绍了纤维金属层压板屈服强度估算的理论模型。采用弹性的原理和配制残余应力的原理来确定叠层的金属层中的应力状态,该压板的粘附性高于施加在层压板上的应力,从而与金属层相比,该层压板的屈服强度降低。该模型经过4A-3/2眩光层压板,包括三个薄的航空航天2014-T6铝合金层,交替地用两个预浸料粘合地粘合,每个预浸料坯构成在纵向和横向上铺设的三个单向玻璃纤维层。在单轴张力下单独研究具有E-玻璃和S玻璃纤维的预浸料的层压材料。发现眩光变体的屈服强度小于使用S玻璃纤维的铝合金的强度,从而产生较高的层压屈服强度而不是使用E-玻璃纤维。通过层压板进行有限元分析和拉伸试验的结果证实了理论模型。

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