Analytical Model of the Anisotropic Dimensional Change on Sintering of Ferrous PM Parts

Q4 Materials Science
I. Cristofolini, N. Corsentino, M. Larsson, A. Molinari
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引用次数: 4

Abstract

Abstract This work proposes an analytical model developed from experimental data to describe the anisotropic dimensional change on sintering. Axial-symmetric iron parts differing for geometry and sintering conditions have been investigated, aiming at highlighting the influence of geometry. The specimens were measured in the green and sintered state by a coordinate measuring machine (CMM). The dimensional changes of height, external diameter and internal diameter were derived from measurement results. The anisotropy of the dimensional variations has been studied with reference to the isotropic dimensional change derived from the change in volume of the parts. The influence of geometry and sintering temperature was highlighted. To properly describe the dimensional variations in the compaction plane, the dimensional change of the external diameter versus the dimensional change of the internal one has been analysed. By means of the experimental data, a reliable analytical relationship has been found, dependent on the parts geometry. An anisotropy parameter has been identified, which allows relating the dimensional change in the compaction plane and in the axial direction to the isotropic dimensional change. This parameter depends both on geometry and on sintering conditions. By means of the anisotropy parameter an analytical model for the anisotropic behaviour has been developed.
铁粉末冶金零件烧结各向异性尺寸变化的解析模型
摘要本文提出了一个基于实验数据的分析模型来描述烧结过程中各向异性的尺寸变化。研究了不同几何形状和烧结条件的轴对称铸铁件,旨在突出几何形状的影响。采用三坐标测量机(CMM)对试样进行了生坯状态和烧结状态的测量。根据测量结果推导出高度、外径和内径的尺寸变化。参考由零件体积变化引起的各向同性尺寸变化,研究了尺寸变化的各向异性。重点讨论了几何形状和烧结温度对烧结性能的影响。为了恰当地描述压实面的尺寸变化,分析了外径尺寸变化与内径尺寸变化的关系。通过实验数据,发现了依赖于零件几何形状的可靠解析关系。确定了各向异性参数,该参数允许将压实平面和轴向的尺寸变化与各向同性尺寸变化联系起来。该参数取决于几何形状和烧结条件。利用各向异性参数建立了各向异性行为的解析模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
CiteScore
1.00
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