首页> 外文期刊>Experimental Mechanics >Experimentally Observed Strain Distributions Near Circular Discontinuities of AA6061-T6 Extrusions During Axial Crush
【24h】

Experimentally Observed Strain Distributions Near Circular Discontinuities of AA6061-T6 Extrusions During Axial Crush

机译:轴向挤压过程中AA6061-T6挤压件的圆形间断附近的实验观察到的应变分布

获取原文
获取原文并翻译 | 示例
           

摘要

An experimental investigation to determine the strain distribution and collapse behaviour for AA6061-T6 square cross-sectional extrusions with and without circular discontinuities under quasi-static axial compressive loading was completed. Three-dimensional digital image correlation (DIC) was utilized for strain assessment. In order to validate the results of the optical strain measurement system, tensile tests were first conducted employing both the DIC technique and a traditional extensometer. Strain observations from both methods were found to be very consistent prior to strain localization in the test specimen. Quasi-static axial crushing tests were then conducted. Extrusions considered for the present research had a nominal side width, wall thickness and length of 38.1 mm, 3.15 mm, and 200 mm, respectively. A centrally-located circular hole with diameter of either 14.29 mm, 10.72 mm or 7.14 mm was incorporated into the extrusion. Square tubes without any discontinuities were also considered in the experimental testing program. Testing results showed that the collapse mode of the extrusion altered from global bending to a cutting and splitting deformation mode with the presence of the circular discontinuity. Strain localization occurred near the vicinity of the holes for all specimens. For discontinuities sized 14.29 mm and 10.72 mm the location of strain localization and the initiation of material fracture was at the edge of the discontinuity while the location for extrusions with a 7.14 mm hole was found to occur at the intersection of the extrusion side walls. Maximum values of the effective strain were found to vary from approximately 60% to 100%. The region of strain localization was consistent with the location where material fracture initiated.
机译:完成了确定准静态轴向压缩载荷下具有和不具有圆形不连续性的AA6061-T6方形截面挤出的应变分布和塌陷行为的实验研究。三维数字图像相关性(DIC)用于应变评估。为了验证光学应变测量系统的结果,首先使用DIC技术和传统引伸计进行拉伸测试。两种方法的应变观察结果在将应变定位到试样之前非常一致。然后进行了准静态轴向破碎试验。本研究中考虑的挤压件的标称侧面宽度,壁厚和长度分别为38.1毫米,3.15毫米和200毫米。将直径为14.29 mm,10.72 mm或7.14 mm的位于中心的圆形孔合并到挤出物中。实验测试程序中还考虑了没有任何间断的方管。测试结果表明,在存在圆形间断的情况下,挤压的塌陷模式从整体弯曲变为切割和分裂变形模式。所有样品的孔附近都发生应变局部化。对于尺寸为14.29 mm和10.72 mm的不连续点,应变局部化和材料断裂的始端位于不连续点的边缘,而具有7.14 mm孔的挤出位置则位于挤出侧壁的相交处。发现有效应变的最大值在大约60%至100%之间变化。应变局部化区域与材料断裂开始的位置一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号