...
首页> 外文期刊>Review of Scientific Instruments >High strain rate metalworking with vaporizing foil actuator: Control of flyer velocity by varying input energy and foil thickness
【24h】

High strain rate metalworking with vaporizing foil actuator: Control of flyer velocity by varying input energy and foil thickness

机译:带有蒸发箔执行器的高应变率金属加工:通过改变输入能量和箔厚度控制飞轮速度

获取原文
获取原文并翻译 | 示例
           

摘要

Electrically driven rapid vaporization of thin metallic foils can generate a high pressure which can be used to launch flyers at high velocities. Recently, vaporizing foil actuators have been applied toward a variety of impulse-based metal working operations. In order to exercise control over this useful tool, it is imperative that an understanding of the effect of characteristics of the foil actuator on its ability for mechanical impulse generation is developed. Here, foil actuators made out of 0.0508 mm, 0.0762 mm, and 0.127 mm thick AA1145 were used for launching AA2024-T3 sheets of thickness 0.508 mm toward a photonic Doppler velocimeter probe. Launch velocities ranging between 300 m/s and 1100 m/s were observed. In situ measurement of velocity, current, and voltage assisted in understanding the effect of burst current density and deposited electrical energy on average pressure and velocity with foil actuators of various thicknesses. For the pulse generator, geometry, and flyer used here, the 0.0762 mm thick foil was found to be optimal for launching flyers to high velocities over short distances. Experimenting with annealed foil actuators resulted in no change in the temporal evolution of flyer velocity as compared to foil actuators of full hard temper. A physics-based analytical model was developed and found to have reasonable agreement with experiment.
机译:电动驱动的薄金属箔的快速汽化会产生高压,该高压可用于以高速发射传单。近来,汽化箔致动器已经应用于各种基于脉冲的金属加工操作。为了对这种有用的工具进行控制,必须发展对箔片致动器的特性对其机械脉冲产生能力的影响的理解。在这里,使用厚度为0.0508 mm,0.0762 mm和0.127 mm的A1145制成的箔片致动器向光子多普勒测速仪探头发射厚度为0.508 mm的AA2024-T3薄板。观测到的发射速度在300 m / s和1100 m / s之间。速度,电流和电压的原位测量有助于理解爆炸电流密度和沉积的电能对各种厚度的箔片致动器对平均压力和速度的影响。对于此处使用的脉冲发生器,几何形状和传单,发现0.0762毫米厚的箔片是在短距离内以较高速度发射传单的最佳选择。与完全硬回火的箔片执行器相比,使用退火的箔片执行器进行实验不会导致飞片速度随时间的变化。建立了基于物理学的分析模型,发现该模型与实验具有合理的一致性。

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