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Improvement of Dimensional Stability of Sinter Hardening Powders Under Production Conditions

机译:在生产条件下提高烧结硬化粉末的尺寸稳定性

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Sinter hardening of steel powders in furnaces equipped with fast cooling units represents a cost effective way to manufacture components with high strength and high apparent hardness without the need for secondary operations. However, due to microstructural transformations allowing achievement of high hardness after sintering, the dimensional control of components is of paramount importance. For this reason, Rio Tinto Metal Powders and Metaldyne, a powder producer and a part manufacturer respectively, have worked together over the last few years in order to better understand the behavior during sintering of ATOMET 4601 and ATOMET 4701, two widely used sinter-hardening powders. Extensive studies were carried out under production conditions with the ultimate goal to improve the dimensional accuracy of components and to reduce as much as possible the cost related to quality issues resulting from dimensional variation.Some of the key factors related to the materials and to the sintering process, as well as their impact on dimensional change, are discussed in this paper. In the first part, the effect of mix formulation and type of additives on dimensional change occurring during sintering is evaluated. In addition, the optimized mix formulations obtained at the end of the first part and their properties are summarized. In the second part, the effect of sintering conditions on dimensional consistency is presented. In particular, the improvement in dimensional consistency achieved through optimization of sintering conditions in mass production is discussed in detail. In conclusion, it was found that both materials and processing conditions must be optimized in order to maximize the benefits offered by the sinter hardening technology.
机译:在配备快速冷却装置的熔炉中对钢粉进行烧结硬化是一种经济高效的方法,可用于制造具有高强度和高表观硬度的部件,而无需进行二次操作。但是,由于在烧结后实现了高硬度的微观结构转变,因此零件的尺寸控制至关重要。因此,过去几年里,力拓金属粉末和粉末生产商和零件制造商Metaldyne共同合作,以便更好地了解两种广泛使用的烧结硬化ATOMET 4601和ATOMET 4701在烧结过程中的行为。粉末。在生产条件下进行了广泛的研究,其最终目的是提高组件的尺寸精度并尽可能降低与尺寸变化引起的质量问题有关的成本。一些与材料和烧结有关的关键因素本文讨论了该过程及其对尺寸变化的影响。在第一部分中,评估了混合配方和添加剂类型对烧结过程中尺寸变化的影响。此外,总结了在第一部分末获得的最佳混合配方及其性能。在第二部分中,介绍了烧结条件对尺寸一致性的影响。特别地,详细讨论了通过在批量生产中优化烧结条件而实现的尺寸一致性的改善。总之,发现必须同时优化材料和加工条件,以最大程度地提高烧结硬化技术所带来的好处。

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