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首页> 外文期刊>Journal of Failure Analysis and Prevention >Description of the Boundary Layer Behavior of an Aluminum-Carbon-Fiber-Reinforced Polymer Hybrid Compound Using a Cohesive Zone Model
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Description of the Boundary Layer Behavior of an Aluminum-Carbon-Fiber-Reinforced Polymer Hybrid Compound Using a Cohesive Zone Model

机译:铝 - 碳纤维增强聚合物杂交化合物使用粘性区模型的描述

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摘要

Compounds of light metals and fiber composites have a large potential in the field of lightweight construction. In order to fully exploit the properties of both materials, joining technology is a major challenge. One of the reasons for this is the electrochemical contact corrosion in these materials. By using a high-temperature resistant thermoplastic (PEEK) as a separating layer between the joining partners, it is possible to produce a material composite using the aluminum die casting process, which exhibits both electrochemical decoupling and high composite strength. The description of the failure behavior of this composite plays an important role in the application of this type of joint to structural components. One of the most widely used methods to describe the failure behavior of a composite using the finite element method is the cohesive zone model. With this model, the initiation of a crack, its evolution and finally the failure of the component can be described by means of a bilinear law. In this paper, a methodology to determine the necessary parameters for fracture mode I using a modified wedge test for the cohesive zone model is described.
机译:光金属和纤维复合材料的化合物在轻质结构领域具有很大的潜力。为了充分利用两种材料的性质,加入技术是一项重大挑战。其中一个原因是这些材料中的电化学接触腐蚀。通过使用高温耐热塑料(PEEK)作为连接伴侣之间的分离层,可以使用铝压铸工艺产生材料复合材料,这表现出电化学去耦和高复合强度。该复合材料的故障行为的描述在将这种类型的关节应用于结构部件中起重要作用。使用有限元方法描述复合材料的最大使用方法之一是凝聚区模型。利用该模型,可以通过双线性法律描述裂缝,其演化和最终组分的故障的启动。本文描述了一种方法,用于确定使用用于粘结区模型的改进的楔形测试的裂缝模式I的必要参数。

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