首页> 外文期刊>Journal of testing and evaluation >Design Optimization of Instrumented Strikers for Charpy V-Notch Pendulum Impact Testing
【24h】

Design Optimization of Instrumented Strikers for Charpy V-Notch Pendulum Impact Testing

机译:夏比V-antch摆锤冲击试验设计优化

获取原文
获取原文并翻译 | 示例
       

摘要

The Charpy impact test was originally devised to measure the amount of energy absorbed by a material during fracture. Instrumentation of the striker extended the scope of this inexpensive dynamic test significantly. By not only recording the absorbed energy but also the force applied to the specimen as a function of time, additional information about the material’s properties is obtainable. At the present day, however, no internationally accepted procedure to calibrate or verify the measured dynamic force exists. From an engineering viewpoint, an instrumented striker for which a static force calibration is sufficient to accurately measure the force applied to the specimen during a Charpy impact test would be ideal. To investigate if such an instrumented striker can be designed, the influence of the striker geometry, the location of the strain gauges, and the static force calibration procedure on the force measured by an instrumented International Organization for Standardization striker is assessed using finite element analysis. It is demonstrated that when the strain gauge bridge on the striker is sensitive to the load distribution at the striking edge, the voltage response for the Charpy impact test deviates from the static force calibration curve, and the conversion of the voltage readout to force values introduces an error in the force value and hence a discrepancy between computed and angle-based energies. A striker with a height of 12 mm and strain gauges positioned at 17 mm from the striking edge is nearly insensitive to the load distribution, and a static force calibration is sufficient to accurately measure the force during an impact test.
机译:最初设计了夏比冲击试验,以测量骨折期间材料吸收的能量。罢工器仪器显着扩展了这种廉价动态测试的范围。不仅记录吸收的能量,还可以作为时间的函数施加到样本的力,可以获得有关材料性质的附加信息。但是,在当前,没有国际接受的程序来校准或验证测量的动态力。从工程观点来看,静力校准的仪表掠过者足以准确测量夏匹冲击试验期间施加到样本的力是理想的。为了调查这种仪表撞针,可以使用有限元分析评估撞击器几何形状,应变仪的位置,应变仪的位置和静力校准程序对由仪表的国际标准化前锋的力量测量的力进行评估。据证明,当撞针上的应变计桥对撞击边缘处的负载分布敏感时,夏比冲击试验的电压响应偏离静力校准曲线,电压读出的转换为力值引入力值中的错误,因此在基于角度和角度的能量之间存在差异。具有位于撞击边缘17mm的高度为12mm和应变仪的撞针几乎对负载分布几乎不敏感,并且静力校准足以在冲击试验期间精确测量力。

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