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The effects of interfacial adhesion strength on the characteristics of an aluminum/CFRP hybrid beam under transverse quasi-static loading

机译:横向准静态载荷下界面粘结强度对铝/ CFRP混合梁性能的影响

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摘要

The effects of interfacial adhesion strength on the damage behavior and energy absorption characteristics of an aluminum (Al)/carbon fiber reinforced plastic (CFRP) short square hollow section (SHS) beam under three point bending loading was investigated. An Al SHS beam was wrapped by CFRP with a [0o/+45°/90°/ -45°]_n (n = 1 or 2) stacking sequence, and four gradations of interfacial adhesion strength were caused by physical or chemical changes of the Al adherend with different mechanical abrasion and optimal Argon plasma treatment. A different level of appropriate interfacial adhesion strength existed for each hybrid specimen depending on the CFRP laminate thickness to obtain the highest energy absorption capability, and this was verified by detailed observation of the failure mechanism of the hybrid specimen. The specific energy absorbed (SEA) was improved by up to 57.2% in the Al/CFRP [0°/+45°/90°/-45°]_2 SHS beam compared to the Al SHS beam without compromising the crush force efficiency (CFE).
机译:研究了在三点弯曲载荷下界面粘结强度对铝(Al)/碳纤维增强塑料(CFRP)短方形空心截面(SHS)梁的损伤行为和能量吸收特性的影响。 CFRP用[0o / + 45°/ 90°/ -45°] _n(n = 1或2)堆叠顺序包裹Al SHS束,并且界面粘合强度的四个等级是由物理或化学变化引起的具有不同机械磨损和最佳氩等离子体处理的铝粘附体。根据CFRP层压板的厚度,每个混合试样存在不同水平的适当界面粘合强度,以获得最高的能量吸收能力,这通过对混合试样破坏机理的详细观察得到了证实。与Al SHS光束相比,Al / CFRP [0°/ + 45°/ 90°/ -45°] _2 SHS光束吸收的比能(SEA)提高了57.2%,而不会破坏压碎力效率( CFE)。

著录项

  • 来源
    《Composites》 |2014年第12期|595-606|共12页
  • 作者

    HeeChul Kim; Jungju Lee;

  • 作者单位

    Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daehak-ro 291, Daejeon 305-701, Republic of Korea;

    Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daehak-ro 291, Daejeon 305-701, Republic of Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Carbon fiber; B. Buckling; B. Adhesion; C. Damage mechanics;

    机译:A.碳纤维;B.屈曲;B.附着力;C.损伤力学;
  • 入库时间 2022-08-18 01:19:35

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