首页> 外文期刊>International journal of impact engineering >Plate impact investigation of the dynamic response of commercial tungsten carbide under shock-induced compression and combined compression-and- shear loading
【24h】

Plate impact investigation of the dynamic response of commercial tungsten carbide under shock-induced compression and combined compression-and- shear loading

机译:商用碳化钨在冲击诱导压缩和压缩剪联合载荷作用下动力响应的板冲击研究

获取原文
获取原文并翻译 | 示例
       

摘要

This article presents results from a series of plate-impact experiments designed to study dynamic response of commercial purity (99.6%) tungsten carbide (WC) under shock-induced normal compression and simultaneous compression-and-shear stress wave loading. The normal shock compression experiments utilize a heated WC flyer plate which impacts a WC target at room temperature, enabling inelastic response of the WC target plate as well as the elevated temperature shock-impedance of the heated WC flyer plate to be probed simultaneously. The measured normal particle velocity profiles at the free surface of the WC target plate exhibit an elastic precursor, which corresponds to a longitudinal stress of similar to 5.9-6.2 GPa, and decreasing particle velocity levels in the shocked state with increasing temperature of the WC flyer. The shock impedance of the heated WC flyer is estimated to decrease from 1.05 x 10(8) to 8.23 x 10(7) kg/m(2)s over the temperature range 23-600 degrees C. The simultaneous compression-and-shear loading experiments are conducted using a symmetric oblique plate-impact experimental configuration with progressively increasing angles of inclination (5 degrees, 10 degrees, and 22 degrees), resulting in increasing shear to longitudinal stress ratios upon impact in the WC flyer and target plates. The measured longitudinal and transverse components of the free surface particle velocity in experiments with inclination angles of up to 10 degrees and impact velocities similar to 100 m/s (corresponding to shear and longitudinal stress levels of 0.5 GPa and 4.5 GPa, respectively), coincide well with their corresponding elastic particle-velocity predictions. However, the free-surface normal particle velocity profiles for experiments conducted at an oblique impact angle of 22 degrees (corresponding to shear stresses similar to 1.3 GPa and longitudinal stress of similar to 4.9 GPa) are remarkably different and exhibit a sudden increase in particle velocity from their plateau levels reminiscent of failure waves observed by other investigators in soda lime glass and silicon carbide (SIC-B). The new normal particle velocity level, after the arrival of the recompression/re-acceleration signal, exceeds the magnitude of the impact velocity, suggesting failure of the WC target plate during the stress wave loading process. The relatively large undulations present in the measured free-surface transverse particle velocity profiles provide further evidence for the heterogeneous brittle failure processes in WC under the resulting simple-shear state of stress, and is used to provide estimates for the critical range of simple-shear loading that can initiate catastrophic failure (fracture) in pure WC.
机译:本文介绍了一系列板式冲击实验的结果,这些实验旨在研究商品级纯度(99.6%)的碳化钨(WC)在冲击诱导的正常压缩和同时压缩与剪切应力波载荷下的动态响应。正常的冲击压缩实验利用加热的WC飞行器板,该板在室温下撞击WC目标,从而使WC目标板具有非弹性响应,并且可以同时探测加热的WC飞行器板的高温冲击阻抗。在WC靶板的自由表面处测得的正常粒子速度分布显示出弹性前驱体,其对应于类似5.9-6.2 GPa的纵向应力,并且在冲击状态下随着WC飞行器温度的升高而降低了粒子速度水平。估计在23-600摄氏度的温度范围内,加热的WC飞行器的冲击阻抗将从1.05 x 10(8)降低至8.23 x 10(7)kg / m(2)s。同时压缩和剪切加载实验是使用对称的斜板撞击实验配置进行的,该配置具有逐渐增加的倾斜角度(5度,10度和22度),从而在撞击WC飞轮和目标板时导致剪切应力与纵向应力之比增加。在最大倾角为10度且冲击速度类似于100 m / s的实验中,测得的自由表面粒子速度的纵向和横向分量一致(分别对应于0.5 GPa和4.5 GPa的剪切应力和纵向应力)以及它们相应的弹性粒子速度预测。但是,在22度倾斜冲击角(对应于类似于1.3 GPa的切应力和相似于4.9 GPa的纵向应力)下进行的实验所获得的自由表面法向粒子速度分布明显不同,并且粒子速度突然增加从其高原水平回想起其他研究人员在钠钙玻璃和碳化硅(SIC-B)中观察到的破坏波。在重新压缩/重新加速信号到达之后,新的正常粒子速度水平超过了撞击速度的大小,这表明在应力波加载过程中WC目标板发生故障。测得的自由表面横向粒子速度曲线中存在的相对较大的波动为WC在所得的简单剪切应力状态下的非均质脆性破坏过程提供了进一步的证据,并用于估计简单剪切的临界范围纯WC中可能引发灾难性故障(断裂)的载荷。

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