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Uniaxially Cold Compacted Green Parts: Shrinkage Kinetic Law and Effective Particle Size

机译:单轴冷压坯件:收缩动力学定律和有效粒径

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In a previous work, a shrinkage kinetic equation was derived from a physical model accounting for thegeometrical condition of the powder particles in prior cold compacted green parts. Among the materialparameters affecting shrinkage, the particle size has a large effect, as well known. But commercialpowders have a broad particle size distribution and the median value is often used.The equation has been experimentally verified by means of dilatometry tests on uniaxially coldcompacted iron specimens, observing a discrepancy between the theoretical and the experimentalshrinkage. Since all the other material parameters can be quite precisely defined, the difference wasattributed to the incorrect definition of the particle size. The match between the theoretical and theexperimental shrinkage was therefore obtained by introducing an effective particle size and the validityof this approach was verified on specimens with different density and orientation with respect to thecompaction direction.
机译:在先前的工作中,收缩动力学方程式是从物理模型得出的, 先前冷压坯件中粉末颗粒的几何条件。在材料之中 众所周知,在影响收缩率的参数中,粒径具有很大的影响。但是商业 粉末的粒度分布较广,通常使用中值。 该方程已通过在单轴冷态下的膨胀试验进行了实验验证 压实的铁试样,观察到理论与实验之间的差异 收缩。由于所有其他材料参数都可以非常精确地定义,因此差异为 归因于对粒度的不正确定义。理论与理论之间的匹配 因此,通过引入有效粒径和有效性来获得实验收缩率 此方法已在具有不同密度和方向的标本上进行了验证。 压实方向。

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