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Design and Performance of a Laboratory Pneumatic Gun for Soil Ballistic Applications

机译:用于土壤弹道应用的实验室气动枪的设计和性能

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摘要

A laboratory gun that uses compressed gas as its propellant was designed and tested for the study of small projectiles traveling in soils with initial velocities ranging from 50 to 200 m/s. The gun employed the use of air or helium with an electrically triggered, pneumatically piloted, solenoid valve. The triggering system was designed to provide remote activation. A photo gate speedometer was utilized to measure the exit velocity of each projectile. Details of the electro-pneumatic control system are presented in this paper along with the design of the gun assembly and its subsystems. The effects of different design parameters, including muzzle length, projectile mass, propellant type, and volume of compressed gas utilized, on projectile velocity were investigated. Statistical analysis of the gun performance is presented. The gun is currently being used to visualize the fundamental physics of rapid earth penetration in soils, using transparent soils.
机译:设计并测试了一种使用压缩气体作为推进剂的实验室枪,用于研究在初始速度为50至200 m / s的土壤中行进的小弹丸。喷枪使用空气或氦气和电动触发的气动先导电磁阀。触发系统旨在提供远程激活。光电门测速仪用于测量每个弹丸的出口速度。本文介绍了电动气动控制系统的详细信息,以及喷枪组件及其子系统的设计。研究了不同设计参数(包括枪口长度,弹丸质量,推进剂类型和所用压缩气体的体积)对弹丸速度的影响。介绍了枪支性能的统计分析。该枪目前正用于可视化使用透明土壤快速渗透到土壤中的基本物理原理。

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