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Heat treatment optimization in the manufacture of Wilson Rockwell steel hardness test blocks

机译:Wilson Rockwell钢硬度试块的制造中的热处理优化

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摘要

The heat-treatment process in the manufacture of Wilson Rockwell steel hardness test blocks often produces parts which are inconsistent in the mean hardness and hardness uniformity. In this thesis, the sources of variation in the mean hardness and hardness uniformity of the test blocks are identified by means of metallurgical study and Design of Experiments methodology. The uniformity of temperature distribution within the heating chamber and the effect of temperature and material composition on the final microstructure of the steel are analyzed. The hardness measurements and preparation of metallographic specimens follow the standards defined by the American Society for Testing and Materials (ASTM). Several control factors including soak temperature, soak time and location within the heating furnace are included in the Design of Experiment. The effects and interactions of control factors are studied using analysis of variance (ANOVA) techniques. Response Surface Methodology (RSM) was used to minimize the hardness variation on the interaction of the control factors. The heat-treatment experiment indicated that non-uniform temperature distribution within the heating chamber resulted in test blocks of different mean hardness in a batch run. The experiment also demonstrated that hardening temperatures below the homogeneous austenite formation temperature resulted in a large hardness variation. Several control factors and interaction between the factors that are significant on the mean hardness and hardness variation are identified. And finally, recommendations of control factor settings that minimize the hardness variation are presented in this thesis.
机译:威尔逊·罗克韦尔(Wilson Rockwell)钢硬度试块的制造过程中的热处理过程通常会产生平均硬度和硬度均匀性不一致的零件。本文通过冶金研究和实验设计方法,确定了试块平均硬度和硬度均匀性的变化来源。分析了加热室内温度分布的均匀性以及温度和材料成分对钢最终组织的影响。硬度测量和金相试样的制备遵循美国材料试验学会(ASTM)定义的标准。实验设计中包括几个控制因素,包括保温温度,保温时间和加热炉内的位置。使用方差分析(ANOVA)技术研究了控制因素的影响和相互作用。响应表面方法学(RSM)用于最小化控制因素相互作用时的硬度变化。热处理实验表明,加热室内温度分布不均匀,导致分批运行的平均硬度不同的测试块。实验还表明,低于均匀奥氏体形成温度的硬化温度会导致较大的硬度变化。确定了几个控制因素以及对平均硬度和硬度变化有重要影响的因素之间的相互作用。最后,本文提出了将硬度变化降至最低的控制因素设置建议。

著录项

  • 作者

    Tan Vincent Tandean;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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