首页> 外文会议>ASME international mechanical engineering congress and exposition >LARGE DEFORMATION STRAIN MEASUREMENT USING DIGITAL IMAGE CORRELATION TECHNIQUE DURING AXIAL CRUSHING OF AN EXTRUDED AA- 6063 TUBE
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LARGE DEFORMATION STRAIN MEASUREMENT USING DIGITAL IMAGE CORRELATION TECHNIQUE DURING AXIAL CRUSHING OF AN EXTRUDED AA- 6063 TUBE

机译:使用挤压的Aa-6063管轴向挤压过程中的数字图像关联技术进行大变形应变测量

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Thin-walled metal tubes are extensively used in aircraft and automobile industries as energy absorbers during collision. When a thin wall tube is subjected to an axial compressive load, lobes are formed sequentially and each lobe undergoes a large plastic deformation without any cracking; this is referred to as progressive buckling. The focus of this paper is to study the displacement and strain fields near the buckled zone of a thin-walled square tube both experimentally and numerically. Quasi-static test was conducted on thin-walled square tubes made of aluminum alloy AA-6063 and the displacement and full-field strain was measured using Digital Image Correlation (DIC) technique. It is noted that while one face of the tube undergoes tensile deformation, the adjacent faces undergo compressive deformation. The strain levels exceed the fracture strain obtained during a tensile test. Strain estimated from DIC was found to be in good agreement with the strain gauge measurements at far field. Further, strain estimations obtained through numerical simulations showed a reasonable agreement with DIC measurements.
机译:薄壁金属管在碰撞过程中被广泛用作飞机和汽车行业的能量吸收器。当薄壁管承受轴向压缩载荷时,会依次形成凸角,并且每个凸角都会经历较大的塑性变形而不会破裂。这称为渐进屈曲。本文的重点是通过实验和数值研究薄壁方管弯曲区域附近的位移和应变场。在由AA-6063铝合金制成的薄壁方管上进行了准静态测试,并使用数字图像相关(DIC)技术测量了位移和全场应变。应当指出,尽管管子的一个面经受拉伸变形,但是相邻的面经受压缩变形。应变水平超过在拉伸试验中获得的断裂应变。发现由DIC估算的应变与远场应变仪的测量结果非常吻合。此外,通过数值模拟获得的应变估计值与DIC测量值显示出合理的一致性。

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