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An investigation of eddy current analysis for laser surface treatment of steel.

机译:钢激光表面处理中涡流分析的研究。

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摘要

The problem of this exploratory study was to determine the strength of the bivariate correlational relationship between microhardness readings converted to Rockwell values and eddy current values of laser heat-treated AISI 1045 steel. Further, the microstructure was analyzed to determine the microstructural changes formed by laser surface treatment utilizing a carbon dioxide laser.; The purpose of this study was to investigate the microhardness and depth of hardness formed by laser surface treatment, to develop a measure of correlation between microhardness and eddy current values, and to study microstructural changes formed by the laser surface treatment. This knowledge could be used to verify hardness by using nondestructive testing techniques.; The study was designed to perform a laser surface treatment of steel samples and then determine hardness of the material by both destructive and nondestructive testing methods. Ten samples were treated at three separate scanning rates of 22, 30, and 35 IPM respectively. A Rockwell hardness test was used for the destructive analysis. An eddy current analysis was used for testing hardness for the nondestructive method.; Six samples from each scanning rate for a total of 18 samples were used for the comparison between testing methods. Data analyses included the use of descriptive statistics, ANOVA, Pearson Product-Moment Correlation, and Regression Analysis. The data collected from the samples were examined at the .05 level of significance.; Based on the data collected from this study, it was found that there was a statistically significant relationship in hardness between Rockwell values and eddy current values at the p .05 significance level. However, it was also concluded that there were no significant differences between Rockwell and eddy current values for any of the individual scanning rates.; Given the outcomes of this study, recommendations for further study were warranted and may be utilized to further define the relationship between Rockwell hardness values and eddy current analysis. It was also recommended that this study be replicated using a larger sample size.
机译:这项探索性研究的问题在于确定转换为洛氏值的显微硬度读数与激光热处理的AISI 1045钢的涡流值之间的二元相关关系的强度。此外,分析显微组织以确定通过利用二氧化碳激光器进行的激光表面处理形成的显微​​组织变化。这项研究的目的是研究通过激光表面处理形成的显微​​硬度和硬度深度,以开发一种测量微硬度和涡流值之间的相关性的方法,并研究通过激光表面处理形成的显微​​组织变化。该知识可通过使用非破坏性测试技术来验证硬度。该研究旨在对钢样品进行激光表面处理,然后通过破坏性和非破坏性测试方法确定材料的硬度。十个样品分别以22、30和35 IPM的三种独立扫描速率进行处理。洛氏硬度测试用于破坏性分析。涡流分析用于非破坏性方法的硬度测试。每个扫描速率中的六个样本(总共18个样本)用于测试方法之间的比较。数据分析包括描述性统计,方差分析,皮尔逊积矩相关性和回归分析的使用。从样本中收集的数据以0.05的显着性水平进行检查。根据这项研究收集的数据,发现在 p <.05显着性水平下,洛氏硬度值与涡流值之间存在统计学上的显着关系。但是,还得出结论,对于任何单个扫描速率,罗克韦尔和涡流值之间都没有显着差异。鉴于这项研究的结果,有必要提出进一步研究的建议,这些建议可以用来进一步定义洛氏硬度值和涡流分析之间的关系。还建议使用更大的样本量来重复这项研究。

著录项

  • 作者

    O'Meara, Ronald Edward.;

  • 作者单位

    University of Northern Iowa.;

  • 授予单位 University of Northern Iowa.;
  • 学科 Engineering Materials Science.; Engineering Metallurgy.
  • 学位 D.I.T.
  • 年度 2001
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;冶金工业;
  • 关键词

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