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Microstructural development during liquid phase sintering of Fe and Fe-Mo alloys containing elemental boron additions

机译:含元素硼添加物的Fe和Fe-Mo合金的液相烧结过程中的显微组织发展

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The sintering behaviour of Fe and Fe-Mo prealloyed powder compacts containing from 0-5 to 3-5 wt- percent Mo and fixed boron additions has been studied with special emphasis on the microstructural development, the formation of the liquid phase and the liquid phase sintering mechanisms involved during the densification process. The basic phenomena involving the formation of a liquid phase and the temperature at which the liquid is generated is strongly influenced by the Mo/B ratio in the initial powder mixture. The effect produced by Mo and its concentration, both, on the final microstructure and on the behaviour of boron prior to, during and after the formation of the liquid phase, was studied under both the optical and the scanning electron microscope. For this purpose interrupted sintering experiments followed by water quenching from specific temperatures and times within the sintering cycle have been carried out. The study shows that the formation of a liquid phase is preceded by noticeable enhancement of solid state sintering at intermediate temperatures. This is accompanied by boron diffusion into the metallic particles, generating inter- and intragranular precipitates in amounts dependent on the Mo concentration. At a later stage boron is found to be preferentially located at the boundaries as the formation of a continuous Fe/Mo/B liquid phase with excellent wetting characteristics proceeds thus producing densification by pore filling and shape accommodation. Final densities up to 7-82 g cm"3 were obtained for these alloys. PM/1128
机译:研究了含有0-5至3-5 wt%的Mo和固定硼添加量的Fe和Fe-Mo预合金粉末压块的烧结行为,特别着重于微观结构发展,液相的形成和液相致密化过程中涉及的烧结机制。涉及液相形成和液体生成温度的基本现象受初始粉末混合物中Mo / B比的影响很大。在光学和扫描电子显微镜下都研究了钼及其浓度对形成液相之前,之中和之后硼的最终微观结构和行为的影响。为此目的,已经进行了中断的烧结实验,随后在烧结周期内从特定温度和时间对水进行淬火。研究表明,在液相形成之前,在中间温度下固态烧结显着增强。这伴随着硼扩散到金属颗粒中,产生了颗粒间和颗粒内的沉淀物,其数量取决于Mo的浓度。在随后的阶段中,发现硼优先位于边界处,因为形成具有优异润湿特性的连续Fe / Mo / B液相的过程不断进行,从而通过孔填充和形状调节产生致密化作用。这些合金的最终密度高达7-82 g cm•3。PM/ 1128

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