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Study of the Effect of an Improved Die Filling Shoe on Density Variations

机译:改进的充模模对密度变化影响的研究

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Die filling is still today the operation that leads to most of the density variation in compact and in final components, thus leading to various problems including part distortion, uneven metallurgical and mechanical quality. The formation of air entrapment, an uneven vertical pressure over the die cavity, power fluidity, cavity width-to-depth ratio, and the stacking of powder in long parts during scraping are known to be major concerns that influence strongly the reproducibility and uniformity of compact density. In past research, several parameters have been studied on common die filling shoe. Some new designs have also been proposed.In this paper, we present a new design of die filling shoe incorporating the best solutions found so far for keeping powder fluidity, maintaining powder pressure over the cavity, allowing clean scraping while minimizing powder stacking, and at last providing lower density variation over the die cavity and from part to part over time.For testing, this shoe has been installed on a 6-axis instrumented compaction press to establish the effect of several parameters including the die filling strategy, the powder height in the shoe, the agitator speed, the part height and geometry and more. A specially made multi-cavity die is used along with stainless steel 409 powder. The new shoe has been tested over a longer period and compared with the performance of a classic shoe.
机译:如今,模头填充仍然是导致紧凑型和最终组件中大多数密度变化的操作,因此会导致各种问题,包括零件变形,冶金和机械质量不均。空气滞留的形成,模具型腔上垂直压力的不均匀,动力流动性,型腔宽度与深度的比值以及刮削过程中粉末在长零件中的堆积是主要关注的问题,这些因素严重影响了模具的重现性和均匀性。密度小。在过去的研究中,已经对常见的模具填充靴进行了几个参数的研究。还提出了一些新的设计。 在本文中,我们介绍了一种新型模具填充靴,该模具结合了迄今发现的最佳解决方案,这些解决方案可保持粉末流动性,保持粉末在型腔上的压力,允许清洁刮擦同时将粉末堆积减至最少,并最终在整个模具中提供较低的密度变化腔,随着时间的流逝从一部分到另一部分。 为了进行测试,该靴子已安装在6轴仪器压实机上,以建立多个参数的效果,包括模头填充策略,靴子中的粉末高度,搅拌器速度,零件高度和几何形状等等。特制的多腔模具与409不锈钢粉末一起使用。这款新鞋经过了较长时间的测试,并与经典鞋的性能进行了比较。

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