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A review on functionally graded structures and materials for energy absorption

期刊

ENGINEERING STRUCTURES
卷 171, 期 -, 页码 309-325

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.engstruct.2018.05.094

关键词

Crashworthiness; Functionally graded material; Thin-walled structures; Cellular materials; Energy absorption

资金

  1. National Natural Science Foundation of China [11672117, 51605353, 11502177, 11372115, U1564202]
  2. 111 Project [B17034]

向作者/读者索取更多资源

In the past decades, there has been a constant aspiration for light-weight and highly efficient energy-absorbing structures and materials in vehicle and other industries. A large number of publications have shown that advanced configurations with functionally graded properties could collapse in a more controlled manner and have a remarkable energy-absorbing efficiency when compared with traditional uniform structures and materials. This paper mainly covers the state of the art of energy absorption of graded structures and materials, and discusses the effects of the graded properties on their crashworthiness. Those advanced energy-absorbing structures and materials include primarily thin-walled structures with variable diameter/width/wall thickness/strength, cellular materials with variable density and their filling structures, and other hybrid structures with multiple graded properties. It demonstrates that thin-walled structures and cellular materials could exhibit more efficient and effective energy-absorbing performance by introducing graded properties. Additionally, some advanced manufacturing and modeling technologies such as the 3D printing, multi-scale computation, etc. provide a much wider and more feasible conceptual design for graded structures and materials.

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