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Experimental Study on Crashworthiness of Functionally Graded Thickness Thin-Walled Tubular Structures

机译:功能梯度厚度薄壁管状结构耐撞性的实验研究

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摘要

This paper is an experimental investigation of the crashworthiness behavior of functionally graded thickness (FGT) thin-walled tubular structures. Aluminum alloy AA6061-T5 was chosen because of its high strength to weight ratio and high stiffness. A series of FGT tubes with thicknesses varying linearly from one end to the other were evaluated in quasi-static crushing and three- and four-point bending tests for the purpose of evaluating their energy absorption characteristics. AA6061-T5 FGT tubes with four thickness distributions were considered, namely: t top = 0.6, 0.8, 1.0, 1.2 mm, t bottom = 1.5 mm. Specific energy absorption (SEA) and crush force efficiency (CFE) under maximum deformed displacement (δ max) were measured from the tests to infer crashworthiness of the FGT tubes. It was found that the FGT tubes exhibit superior performance relative to a uniform thickness (UT) counterpart especially at the highest displacements and deformed more stably in overall crashing behaviors or collapsed modes. For example, the CFE of the AA6061-T5 FGT tube with t top = 0.6 mm at δ = 80 mm was ~105 %; however, that for an AA6061-T5 UT counterpart with a 1.5 mm thickness tube is only 62 %. This suggests the possibility that crash energy absorption management in ground transportation vehicles may be enhanced through the use of the FGT tube designs.
机译:本文是功能梯度厚度(FGT)薄壁管状结构耐撞性的实验研究。选择铝合金A6061-T5是因为它具有高的强度重量比和高的刚度。为了评估其能量吸收特性,在准静态破碎和三点和四点弯曲试验中对一系列厚度从一端到另一端线性变化的FGT管进行了评估。考虑了具有四种厚度分布的AA6061-T5 FGT管,即:t top = 0.6、0.8、1.0、1.2mm,t bottom = 1.5mm。通过测试测量了最大变形位移(δmax)下的比能量吸收(SEA)和压碎力效率(CFE),以推断FGT管的耐撞性。已经发现,相对于均匀厚度(UT)对应物,FGT管表现出优异的性能,尤其是在最大位移下,并且在整体碰撞行为或塌陷模式下变形更稳定。例如,在δ= 80 mm处t top = 0.6 mm的AA6061-T5 FGT管的CFE为〜105%;但是,对于具有1.5毫米厚度管的AA6061-T5 UT对应物来说,仅为62%。这表明通过使用FGT管设计可以增强地面运输车辆的碰撞能量吸收管理的可能性。

著录项

  • 来源
    《Experimental Mechanics》 |2015年第7期|1339-1352|共14页
  • 作者

    F. Xu; X. Tian; G. Li;

  • 作者单位

    School of Automotive Engineering Wuhan University of Technology">(1);

    Hubei Key Laboratory of Advanced Technology of Automotive Parts Wuhan University of Technology">(2);

    State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body Hunan University">(3);

    State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body Hunan University">(3);

    Center for Intelligent New Energy Vehicle Hunan University">(4);

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thin-walled tubes; Functionally graded thickness (FGT); Crushing behavior; Bending performance; Crashworthiness; Energy absorption;

    机译:薄壁管;功能梯度厚度(FGT);压碎行为;弯曲性能;耐撞性能量吸收;

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