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Study of Combustion Stroke of Double-Chamber Explosive Gas Forming Device

机译:双腔爆炸气体成型装置燃烧行程研究

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The double-chamber explosive gas forming device is a kind of pulse punching unit. The device comprises a combustion chamber and an operating cylinder separated from each other by a piston, at the top of which an elastic disc is mounted. The stamping process is carried out by the pressure of the elastic disc due to the kinetic energy of the piston being accumulated during the explosion stroke. The piston is accelerated by the pressure of a high-temperature gas formed in the combustion chamber through the gaseous fuel mixtures burnout. The explosion stroke process was analysed on the basis of the equations of rigid body dynamics and thermodynamics. As a result, the regularity of the piston motion was determined, and the optimal ratios of the geometric parameters of the stamping device were found, ensuring an increase in its effective energy. It is established that the motion pattern of a piston depends essentially on the ratios of the flow bore section of an exhaust valve and the cross section of an operating cylinder. If this ratio is less than 0.07, the piston oscillates along the length of the cylinder, which is not acceptable for the stamping process. If it is greater than 0.1, the piston moves monotonously, continuously accumulating kinetic energy, which ensures the punching process. It is also established that the optimum ratio of the operating cylinder and the combustion chamber is within the range of 1.3-2.5.
机译:双室爆炸气体形成装置是一种脉冲冲孔单元。该装置包括燃烧室和通过活塞彼此分开的操作圆柱体,其顶部安装在其顶部。由于在爆炸行程期间累积的活塞的动能,弹性盘的压力由弹性盘的压力进行。通过在燃烧室中形成的高温气体通过气体燃料混合物燃烧,活塞加速了活塞。基于刚体动力学和热力学的方程分析爆炸冲程过程。结果,确定活塞运动的规律性,并且发现冲压装置的几何参数的最佳比率,确保其有效能量增加。建立活塞的运动模式基本上取决于排气阀的流动孔部分的比率和操作缸的横截面。如果该比率小于0.07,则活塞沿着气缸的长度振荡,这对于冲压过程不可接受。如果它大于0.1,则活塞移动单调,连续累积动能,这确保了冲压过程。还建立了操作圆筒和燃烧室的最佳比率在1.3-2.5的范围内。

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