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Sintering stress and microstructure in ceramic powder compacts.

机译:陶瓷粉末压块中的烧结应力和微观结构。

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摘要

The behavior of the sintering stress and microstructure during sintering is studied under various thermal and physical conditions. Specifically, the study includes sintering under isothermal or constant heating rate conditions; and altering the starting compact structure by pre-coarsening to increase the particles size, or by compaction to increase the starting density. Loading dilatometry is used to measure the ratio of the densification strain rate to the creep strain rate and the continuous shrinkage history of the systems. The data show that the ratio of the densification to the creep strain rate is remarkably constant within a wide temperature range for densification, from the earliest stages of densification to at least the onset of the final stage. As a consequence, the sintering stress, which is proportional to the strain rate ratio, is nearly independent of sintered density or of temperature. Analysis leads to a simple method for determining the simultaneous densification strain rate over the creep strain rate ratio.; A rigorous densification strain rate equation is derived for a model system. The constant sintering stress allows progress on formulating a sintering equation to predict the densification behavior of powder compacts. Analysis of dilatometry data from compacts sintered at various heating rates, and of numerical computations, indicate the need to include separate coarsening processes with different activation energies. The same model is used to describe the differences in pore spacing evolution between pre-coarsened and as-received systems.
机译:研究了在各种热和物理条件下烧结过程中烧结应力和微观组织的行为。具体来说,研究包括在等温或恒定加热速率条件下进行烧结;通过预粗化以增加颗粒尺寸或通过压实以增加起始密度来改变起始的致密结构。载荷膨胀法用于测量致密应变率与蠕变应变率之比和系统的连续收缩历史。数据表明,从最早的致密阶段到至少最后阶段的致密化,致密化与蠕变应变率之比在很宽的致密化温度范围内都非常恒定。结果,与应变率比成正比的烧结应力几乎与烧结密度或温度无关。通过分析得出一种简单的方法,可以确定同时致密化应变率与蠕变应变率之比。为模型系统导出了严格的致密化应变率方程。恒定的烧结应力使制定烧结方程以预测粉末压块的致密化行为成为可能。对以不同加热速率烧结的压坯的膨胀测量数据进行的分析以及数值计算表明,需要包括具有不同活化能的单独的粗化过程。使用相同的模型来描述预粗处理系统和接收系统之间的孔间距演变差异。

著录项

  • 作者

    Chu, May-Ying.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Materials Science.; Engineering Metallurgy.; Engineering General.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;冶金工业;工程基础科学;
  • 关键词

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