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首页> 外文期刊>Strength of Materials >EXPERIMENTS AND SIMULATION ON MANNESMANN PIERCING PROCESS IN THE DRILL STEEL MANUFACTURE
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EXPERIMENTS AND SIMULATION ON MANNESMANN PIERCING PROCESS IN THE DRILL STEEL MANUFACTURE

机译:钻头钢制造中曼尼斯曼冲孔过程的实验与模拟

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摘要

Steel drill rods are employed in the mining industry to drill blast holes in rock, for them a high-quality metal surface and accurate geometrical parameters are essential. Drill steel is a special material exclusively designed for drill rods. To estimate the microstructure and dimensional stability of drill steel, a rigid plastic finite element method (FEM) was applied in examining the Mannesmann piercing in the drill steel manufacture. The three-dimensional thermal-force coupling FEM models were computer-generated with different plug positions. The metal deformation during the piercing process was analyzed in detail. The stress-strain state of the metal ahead of the plug was simulated to obtain formation characteristics during the Mannesmann piercing. The effect of the plug position on force and strain rates was also studied with simulation. The results demonstrate that the dimensional stability of hollow drill rods can be enhanced by advancing the plug position.
机译:采矿业中使用钢钻杆在岩石中钻出爆破孔,因为钢钻杆的高质量金属表面和精确的几何参数至关重要。钻钢是专门为钻杆设计的特殊材料。为了评估钻钢的微观结构和尺寸稳定性,采用刚性塑料有限元方法(FEM)来检查钻钢制造中的Mannesmann穿孔。三维热力耦合有限元模型是计算机生成的,具有不同的插头位置。详细分析了穿孔过程中的金属变形。模拟了塞子前面金属的应力-应变状态,以获得曼内斯曼穿孔过程中的形成特征。还通过仿真研究了插塞位置对力和应变率的影响。结果表明,提高钻头位置可以提高空心钻杆的尺寸稳定性。

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