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Impact analysis of automotive structures with distributed smart material systems

机译:分布式智能材料系统的汽车结构影响分析

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New class of automobiles has structural skins that are quite different from their current designs. Particularly, new families of composite skins are developed with new injection molding processes. These skins while support the concept of lighter vehicles of the future, are also susceptible to damage upon impact. It is important that their design should be based on a better understanding on the type of impact loads and the resulting strains and damage. It is possible that these skins can be integrally designed with active materials to counter damages. This paper presents a preliminary analysis of a new class of automotive skins, using piezoceramic as a smart material. The main objective is to consider the complex system with, the skin to be modeled as a layered plate structure involving a lightweight material with foam and active materials imbedded on them. To begin with a cantilever beam structure is subjected to a load through piezoceramic and the resulting strain at the active material site is predicted accounting for the material properties, piezoceramic thickness, adhesive thickness including the effect of adhesives. A finite element analysis is carried out to compare experimental work. Further work in this direction would provide an analytical tool that will provide the basis for algorithms to predict and counter impacts on the future class of automobiles.
机译:新一类汽车具有与当前设计完全不同的结构性皮。特别是,具有新的注塑方法开发的复合皮肤的新系列。这些皮肤,同时支持未来较轻的车辆的概念,也易受影响损害的影响。重要的是,他们的设计应该基于更好地了解冲击载荷的类型和产生的菌株和损坏。这些皮肤可能与主动材料一体地设计,以对抗损坏。本文介绍了一种新型汽车皮肤的初步分析,使用压电陶瓷作为智能材料。主要目的是考虑复杂的系统,皮肤被建模为层状板结构,涉及具有泡沫和嵌入它们的泡沫和活性材料的轻质材料。为了从悬臂梁结构开始,通过压电陶瓷经受负荷,并且在活性物质位点的所得菌株核算用于材料性质,压电陶瓷厚度,包括粘合剂的作用的粘合剂厚度。进行有限元分析以比较实验工作。朝着这个方向进一步工作将提供一个分析工具,可以为算法提供预测和反击对未来类汽车的影响的基础。

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