原位热导率测定法研究铁粉压坯烧结工艺进展

Q4 Materials Science Powder Metallurgy Progress Pub Date : 2018-11-01 DOI:10.1515/pmp-2018-0009
H. Danninger, G. Leitner, C. Gierl-Mayer
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引用次数: 2

摘要

烧结过程的原位表征是一项困难的任务,特别是对于没有明显尺寸变化的系统。在这种情况下,扩张测量法没有太大帮助,因此必须记录其他性质。本文利用激光闪蒸仪对铁粉压坯的热扩散系数进行了原位烧结研究。该特性是表征通过材料的热流的一种措施;它取决于颗粒之间的接触面积,从而揭示了它们在烧结过程中的变化。结果表明,在烧结过程中,铁块的孔隙率变化远不如硬质合金明显,这在考虑孔隙率变化时并不奇怪。然而,当考虑到一些实验限制时,结果与预期很好地一致。热导率λ的趋势。它可以由比热和密度a计算出来,与电导率的结果非常吻合,这两种性质都通过Wiedemann-Franz定律联系在一起。
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Studying the Progress of Sintering in Ferrous Powder Compacts by In-Situ Measuring the Thermal Conductivity
Abstract In situ characterization of the sintering process is a difficult task, in particular for systems without pronounced dimensional changes. Dilatometry is not too helpful in those cases, and therefore other properties have to be recorded. In the present study, sintering of ferrous powder compacts was studied in situ by measuring the thermal diffusivity a using a laser flash apparatus. This property is a measure to characterise the heat flow through a material; it depends on the contact area between the particles and thus reveals their change during sintering. It is shown that the change of a during sintering of ferrous compacts is much less pronounced than in the case of cemented carbides which is not surprising when regarding the widely differing porosity changes. The results are however in good agreement with expectations when considering some experimental limitations. The trend for the thermal conductivity λ. which can be calculated from a, the specific heat and the density, is in good agreement with that found for the electrical conductivity, both properties being linked through Wiedemann-Franz’ law.
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Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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