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The Effects of Marcel Defects on Composite Structural Properties

机译:马塞尔缺陷对复合材料结构性能的影响

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This paper describes a method for predicting key structural properties of carbon fiber reinforced composite materials containing ply waviness several times the nominal ply thickness. These so-called marcelled regions have been observed in a number of highly loaded thick structural components. The origins of these defects are not fully understood, although several contributing factors have been identified. The goal of this work is to develop an analysis based disposition criterion for components where fabrication process changes cannot be readily implemented to eliminate marcel defects. Work to date has focused on developing a micro-mechanics-based procedure for modeling the strength and stiffness properties of a marcelled region given basic properties of the material and simple geometric parameters of the marcel that can be measured nondestructively. The result is a general constitutive model that can be used in global structural analysis packages to assess the effects marcel defects have on component performance. Analyses of test coupons containing marcelled regions have been carried out to illustrate the method and establish the validity of the modeling approach. Results indicate that the degree to which marcel defects affect structural properties depends not only on the maximum fiber misalignment angle, but also on the location and size of the marcelled region and nominal applied strain field.
机译:本文介绍了一种预测碳纤维增强复合材料的关键结构性能的方法,该复合材料的层波纹度是标称层厚度的几倍。在许多高负载的厚结构组件中都观察到了这些所谓的marcelled区域。尽管已经确定了几个促成因素,但对这些缺陷的来源还没有完全了解。这项工作的目的是为无法轻松实现制造工艺变化以消除焊缝缺陷的组件开发一种基于分析的处理标准。迄今为止,工作集中在开发基于微力学的程序,该程序用于模拟马氏体区域的强度和刚度属性,其中给出了材料的基本属性以及可以无损测量的简单的马氏几何参数。结果是可以在全局结构分析程序包中使用的通用本构模型,以评估马氏体缺陷对组件性能的影响。进行了包含marcelled区域的测试优惠券的分析,以说明该方法并建立建模方法的有效性。结果表明,马氏体缺陷影响结构性能的程度不仅取决于最大纤维未对准角度,而且还取决于边界区域的位置和大小以及标称施加的应变场。

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