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Sintering Kinetics of the Powder during Fields-Activated Micro-forming and Sintering (Micro-FAST) of Copper Micro-Gears

机译:粉末在铜微型齿轮的场活化微成型和烧结(微快速)期间烧结粉末的烧结动力学

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Forming of micro-components from powder with fields-activated sintering technology (FAST) renders different forming and sintering mechanisms, comparing to that occurring during the forming of macro-sized components with a similar technology. Establishing a good understanding of these mechanisms would help process design and control aiming at achieving desired quality of the components to be formed. This paper presents a study and the results on the sintering kinetics of the powder during Micro-FAST for the fabrication of micro-gears (the module is 0.2 and the pitch diameter 1.6 mm) from copper powder. The results showed that the densification of copper powder is related largely to the bulk plastic-deformations of the particles and the melting of the particles at contact interfaces. Particularly, it is revealed that plastic deformations of the copper particles mainly occurred at approximately 340 °C and melting of the particle-interfaces at approximately 640 °C. Differently, in a densification process with a traditional powder sintering method, grain growth and neck growth would, normally, be two dominant mechanisms that achieve the densification of powder.
机译:用粉末形成微量组分,具有田地激活的烧结技术(快)呈现不同的成型和烧结机构,与在具有类似技术的宏观大小的组件期间发生的不同的形成和烧结机构。建立对这些机制的良好理解将有助于处理设计和控制,旨在实现要形成的组件的所需质量。本文提出了一种研究和粉末烧结动力学在微快速的微型齿轮(模块为0.2和俯仰直径1.6mm)期间粉末的烧结动力学。结果表明,铜粉的致密化主要是颗粒的块状塑料变形和颗粒在接触界面上的熔化。特别地,揭示了铜颗粒的塑性变形主要发生在大约340℃并在大约640℃下熔化颗粒界面。不同,在具有传统粉末烧结方法的致密化过程中,通常是谷物生长和颈部生长,通常是达到粉末致密化的两个主要机理。

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