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Techniques for Conducting Shock Tube Experiments with Mixtures of Ultrafine Solid Particles and Gases

机译:用超细固体颗粒和气体的混合物进行激波管实验的技术

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摘要

Techniques have been developed for conducting shock tube experiments on mixtures of fine solid particles and gases. Particles with diameters of 1 μ and smaller are prepared by grinding in a dry atmosphere. The powdered material is injected into the shock tube test section by opening a valve connecting the evacuated shock tube with a tank containing gas into which the powder has been previously suspended by a pressurized injection. The axial distribution of powder in the shock tube has been measured both by determining the weight of powder which has settled out on small stainless steel slides placed in the shock tube and by observing the optical absorption from a long‐life reaction product of the shock‐heated powder‐gas mixture as the mixture sweeps by an observation port. Typical operating results are presented, including particle size distribution of a solid material after grinding, powder distribution along the shock tube axis after injection, and oscilloscope records of absorption at 2536 Å by the CF2 formed from Teflon decomposition behind the incident shock wave.
机译:已经开发了用于对细小的固体颗粒和气体的混合物进行冲击管实验的技术。通过在干燥气氛中研磨来制备直径为1μ或更小的颗粒。通过打开将抽空的冲击管与装有气体的储罐相连的阀,将粉末状材料注入到冲击管测试部分,该储罐预先通过加压注入将粉末悬浮在其中。通过确定已经沉积在冲击管中的小型不锈钢滑轨上的粉末的重量,以及观察冲击源的长寿命反应产物的光吸收,可以测量冲击管中粉末的轴向分布。当混合物通过观察口扫过时加热粉末气体混合物。给出了典型的操作结果,包括研磨后固体材料的粒径分布,注射后沿震动管轴的粉末分布以及示波器记录的CF2在2536Å处吸收,该CF2是由入射冲击波背后的特氟隆分解形成的CF2所吸收。

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