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Innovative solution for strength enhancement of metallic like-composite tubular structures axially crushed used as energy dissipating devices

机译:用于轴向破碎的金属类复合管状结构的强度增强的创新解决方案,用作耗能设备

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摘要

This work presents the milestones of the underlying of a patented work [1] (Abdul-Latif, 2014) which aims to enhance the plastic buckling resistance of thin-walled right-circular cylindrical mild steel tubes deformed axially under the quasi-static compressive load. The proposed concept can be described by producing a metal like composite where a hard phase incorporates in these tubes made by case-hardening of 15% of tubes outer surface with different geometrical shapes and a constant depth along the tubes thickness. To study the effect of case-hardening configurations, several forms were designed, made and tested. They were four ring forms (with 2, 3, 4 and 5 rings), two vertical strip forms (2 and 3 strips) and, six helical strip forms with three tilt angles of 30 degrees, 45 degrees and 60 degrees (2H30, 3H30, 2H45, 31145, 21160 and 3H60). The total energy absorption of conventional tubes could be increased up to 46%. The effects of the case-hardened zone, quasi-Static strain rate and the crush force efficiency were investigated. Moreover, the deformation modes of these case-hardened tubes were analyzed. The effect of the case-hardened forms could be classified into three categories by the gain percentage (low, intermediate and high gains). Especially in the high gain category, the material behavior seems to be directed by complicated local strain induced by the metal like-composite tube, where a triaxial strain state was encouraged particularly within the tube wall of 3H30. For this reason, the collapse load became the function of case-hardened forms.
机译:这项工作提出了一项专利工作[1](A​​bdul-Latif,2014年)的里程碑,该工作旨在增强准静态压缩载荷作用下轴向变形的薄壁直圆柱软钢管的抗塑性屈曲性。 。提出的概念可以通过生产类似金属的复合材料来描述,其中硬质相掺入这些管中,方法是对15%的管外表面进行表面硬化处理,这些外表面具有不同的几何形状和沿管厚度的恒定深度。为了研究案例强化配置的效果,设计,制作和测试了几种形式。它们是四个环形式(带有2、3、4和5个环),两个垂直带状形式(2和3个带)和六个具有30度,45度和60度倾斜角的螺旋状带形式(2H30、3H30) ,2H45、31145、21160和3H60)。常规管的总能量吸收可以增加到46%。研究了表面硬化区,准静态应变率和破碎力效率的影响。此外,分析了这些表面硬化管的变形模式。硬化处理形式的效果可以按增益百分比分为三类(低,中和高增益)。特别是在高增益类别中,材料行为似乎是由类似金属的复合管引起的复杂局部应变所指导的,在这种情况下,尤其在3H30的管壁内,三轴应变状态得到了鼓励。因此,塌陷载荷成为表面硬化形式的功能。

著录项

  • 来源
    《Thin-Walled Structures》 |2017年第10期|332-344|共13页
  • 作者单位

    Supmeca, Lab Quartz, 3 Rue Fernand Hainaut, F-93407 St Ouen, France|Univ Paris 08, Paris, France;

    Supmeca, Lab Quartz, 3 Rue Fernand Hainaut, F-93407 St Ouen, France|Univ Mouloud MAMMERI Tizi Ouzou, Lab LEC2M, BP17RP, Tizi Ouzou 15000, Peoples R China;

    Supmeca, Lab Quartz, 3 Rue Fernand Hainaut, F-93407 St Ouen, France|Ens Sup La Salle Passy Buzenval, F-92500 Rueil Malmaison, France;

    Univ Mouloud MAMMERI Tizi Ouzou, Lab LEC2M, BP17RP, Tizi Ouzou 15000, Peoples R China;

  • 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

    Plastic buckling; Case-hardened forms; Quasi-static loading; Energy absorber;

    机译:塑料屈曲;表面硬化形式;准静态载荷;吸能器;

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