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Construction and characterization of a single stage dual diaphragm gas gun.

机译:单级双隔膜气枪的构造和特性。

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摘要

In the interest of studying the propagation of shock waves, this work sets out to design, construct, and characterize a pneumatic accelerator that performs high-velocity flyer plate impact tests. A single stage gas gun with a dual diaphragm breach allows for a non-volatile, reliable experimental testing platform for shock phenomena. This remotely operated gas gun utilizes compressed nitrogen to launch projectiles down a 14 foot long, 2 inch diameter bore barrel, which subsequently impacts a target material of interest. A dual diaphragm firing mechanism allows the 4.5 liter breech to reach a total pressure differential of 10ksi before accelerating projectiles to velocities as high as 1,000 m/s (1570-2240 mph). The projectile's velocity is measured using a series of break pin circuits. The target response can be measured with Photon Doppler Velocimetry (PDV) and/or stress gauge system. A vacuum system eliminates the need for pressure relief in front of the projectile, while additionally allowing the system to remain closed over the entire firing cycle. Characterization of the system will allow for projectile speed to be estimated prior to launching based on initial breach pressure.
机译:为了研究冲击波的传播,这项工作着手设计,构造和表征执行高速飞轮板冲击试验的气动加速器。具有双隔膜断裂的单级气枪可为震荡现象提供非易失性,可靠的实验测试平台。这款远程操作的气枪利用压缩氮气向14英尺长,2英寸直径的膛管发射弹丸,随后击中目标物。双膜片发射机构可使4.5升后膛在将弹丸加速至高达1,000 m / s(1570-2240 mph)的速度之前达到10ksi的总压差。弹丸的速度是使用一系列的断针电路测量的。可以使用光子多普勒测速仪(PDV)和/或压力计系统测量目标响应。真空系统消除了弹丸前压力释放的需要,同时还使系统在整个发射过程中保持关闭状态。系统的特征将允许在发射之前根据初始突破口压力估算弹丸速度。

著录项

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Mechanical engineering.;Thermodynamics.;Energy.
  • 学位 M.S.
  • 年度 2017
  • 页码 295 p.
  • 总页数 295
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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