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Parameters optimization design of air-liquid-combined impact pickaxe

机译:气液混合冲击镐的参数优化设计

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Parameters optimization design of a new light air-liquid-combined impact pickaxe is proposed in this paper, which contributes to an outstanding performance of impact pickaxe. Firstly, kinetics analysis of impact pickaxe with three-segment method was made and kinetic equations were established to simplify abstract problems to mathematical models. Secondly, mathematical optimization models were established to solve the multi-objective optimization design problems; In which, design variables, such as, initial volume and pressure of nitrogen chamber, action area of piston rod, resistance coefficient of piston and working pressure are fully concerned to make objective functions of energy and flow minimum. Thirdly, a nonlinear dynamic model of the hydraulic pickaxe was established, a best stroke process was gotten with improved Euler method. Finally, the optimization parameters of impact pickaxe was determined, which is of small size, high performance. Besides, impact points experiment are used to testify impact performance of pickaxe. After repeated impact tests, impact energy date was ascertained by 58J, which is slightly smaller than theoretical value, but right and reasonable compared with the theoretical value.
机译:本文提出了一种新型轻气液混合冲击镐的参数优化设计,以提高冲击镐的性能。首先,采用三段法对冲击镐进行了动力学分析,建立了动力学方程,将抽象问题简化为数学模型。其次,建立数学优化模型以解决多目标优化设计问题。其中,充分考虑了氮气室的初始容积和压力,活塞杆的作用面积,活塞的阻力系数和工作压力等设计变量,以使能量和流量的目标函数最小。第三,建立了液压镐的非线性动力学模型,通过改进的欧拉方法获得了最佳行程过程。最终确定了冲击镐的优化参数,该参数小巧,性能高。此外,通过冲击点实验来验证镐的冲击性能。经过反复的冲击试验,确定冲击能量的日期为58J,比理论值稍小,但与理论值相比是正确和合理的。

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