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Ignition Threshold Energy Determination for Reactive Materials Using a Pneumatic Impact Testing Apparatus

机译:使用气动冲击测试仪确定活性材料的点火阈值能量

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Reactive Metals International, Inc. (RMII), a fully owned subsidiary of Mach I Inc. has designed, built and tested a Pneumatic Impact Testing Apparatus (PITA) for qualitative and quantitative analysis of the impact ignition threshold energies for consolidated reactive materials. The PITA has proven to be an essential tool for routine, cost effective impact testing of reactive materials. The PITA can launch a spherical (0.375" diameter) steel projectile at energies ranging from 10 Joules to greater than 450 Joules corresponding with projectile velocities of 100 fps to greater than sound speed. A calibration curve of projectile velocity vs. launch gas pressure has been generated and is utilized in determining impact energies. Ignition is detected through a Si photodetector and overpressure from the ignition event is measured using a piezoresistive pressure transducer. Both detectors are mounted to the wall of a catch box in close proximity to the sample, which is mounted against a steel target plate. The ignition threshold energy was demonstrated for several compositions including a thermite type material, a metal-metal intermetallic and a metal-metalloid. Samples were prepared by high energy ball milling and consolidated into 0.250" pellets using a hydraulic press. The effectiveness of the PITA is exemplified by its accuracy, high throughput and low cost for the routine evaluation of impact- ignition sensitivities/energies for reactive materials. Typically, ignition threshold energies for reactive materials can be determined with a sensitivity of a few Joules. The time necessary to produce the ignition data for a material can be done in a single day using 20-30 rounds.
机译:Mach I Inc.的全资子公司Reactive Metals International,Inc.(RMII)设计,制造和测试了气动冲击测试仪(PITA),用于定性和定量分析固结反应性材料的冲击起火阈能量。实践证明,PITA是常规,经济有效的反应性材料冲击测试的重要工具。 PITA可以以10焦耳到450焦耳以上的能量发射球形(直径为0.375英寸)钢弹丸,对应的弹丸速度为100 fps到大于声速。弹丸速度与发射气压的校准曲线已经确定。通过硅光电探测器检测点火,并使用压阻压力传感器测量点火事件产生的超压,两个探测器都安装在捕集箱壁上,并紧邻样品。安装在钢靶板上。证明了几种成分的着火阈值能量,包括铝铁矿型材料,金属-金属间金属化合物和金属-类金属。通过高能球磨制备样品,并使用液压将其固结为0.250“球团按。 PITA的准确性,高通量和低成本(例行评估反应性材料的撞击着火敏感度/能量)证明了其有效性。通常,可以以几焦耳的灵敏度确定反应性材料的点火阈值能量。生成材料的点火数据所需的时间可以在一天中使用20-30发来完成。

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