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Manipulation of Strength During Sintering as a Basis for Obtaining Rapid Densification without Distortion

机译:烧结过程中的强度控制是获得不变形的快速致密化的基础

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Sintering to full density enables powder metallurgy products to compete with castings and forgings. Subsieve powders with high inherent sinterability provide one means to attain densification, but at a substantial cost penalty when compared with readily available coarse compaction grade powders. Unfortunately, for large powders the sintering stress that causes densification is small and often insufficient to overcome the inherent compact strength that resists rapid densification. In such cases, only slow diffusion-controlled densification occurs. The current analysis identifies an option for sintering densification of large particles based on a comparison of the sintering stress and component strength during heating. Rapid densification occurs when the in situ strength is reduced to levels comparable to the sintering stress. On this basis, alloy systems are identified for full density sintering using thermal softening concepts.
机译:烧结至全密度可使粉末冶金产品与铸件和锻件竞争。具有高固有烧结性的筛子粉末提供了一种获得致密化的方法,但与容易获得的粗压实级粉末相比,却付出了可观的成本损失。不幸的是,对于大的粉末,引起致密化的烧结应力很小,并且通常不足以克服抵抗快速致密化的固有的致密强度。在这种情况下,仅发生缓慢的扩散控制的致密化。当前的分析基于对加热过程中烧结应力和组件强度的比较,确定了大颗粒烧结致密化的一种选择。当原位强度降低到与烧结应力相当的水平时,就会发生快速致密化。在此基础上,使用热软化概念确定了用于全密度烧结的合金体系。

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