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Experimental investigation of hybrid material systems consisting of advanced composites and sheet metal

机译:由高级复合材料和钣金构成的混合材料系统的实验研究

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Previous studies have identified composite-metal hybrid material systems in automotive crash structural applications as a possible solution to meet the demands of both ambitious efficiency goals and increasingly strict vehicle safety requirements. The purpose of this study is to experimentally identify basic principles, which define the material systems' properties such as the stiffness and strength as well as major parameter effects on a coupon scale. A further aim is to compare these findings to common approaches such as the rule-of-mixture theory and define analytical models able to predict these properties based on a set of parameter values. While there is a strong dominance of the steel phase, the experiments generally confirm the rule-of-mixture theory. Some effects might have to be considered when designing hybrid material systems for technical applications, such as the shift of the special neutral plane in asymmetric layups or a changed failure mode for different loading directions. The analytical models presented do match the experimental results, although the complex interaction between the material phases is not fully analyzed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前的研究已经将汽车碰撞结构应用中的复合金属混合材料系统确定为既可以满足雄心勃勃的效率目标又要满足日益严格的车辆安全要求的可能解决方案。这项研究的目的是通过实验确定基本原理,这些基本原理定义了材料系统的特性,例如刚度和强度以及在试样量表上的主要参数影响。另一个目标是将这些发现与常用方法(例如混合规则理论)进行比较,并定义能够基于一组参数值来预测这些属性的分析模型。尽管钢相具有很强的支配性,但实验通常证实了混合规则理论。在设计用于技术应用的混合材料系统时,可能必须考虑一些影响,例如非对称叠层中特殊中性面的移动或针对不同加载方向的更改失效模式。尽管没有完全分析材料相之间的复杂相互作用,但给出的分析模型确实与实验结果相符。 (C)2016 Elsevier Ltd.保留所有权利。

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