首页> 外文学位 >Dynamic measurement of residual strains by x-ray diffraction in a metal matrix composite during rapid temperature cycling (aluminum).
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Dynamic measurement of residual strains by x-ray diffraction in a metal matrix composite during rapid temperature cycling (aluminum).

机译:在快速温度循环(铝)过程中,通过X射线衍射动态测量金属基复合材料中的残余应变。

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摘要

This study was undertaken to characterize the temperature dependence of the residual stresses in an AA339 Al alloy reinforced with 23%(vol.) Kaowool short fibres. This material is being considered for service in a piston head by General Motors Corp. An experiment was designed to measure the residual stresses by x-ray diffraction dynamically during isothermal stress relaxations at 100{dollar}spcirc{dollar}C and 300{dollar}spcirc{dollar}C with rapid temperature ramping of 200{dollar}spcirc{dollar}C/min between the two states. This simulates the thermal cycling conditions between an idling engine (100{dollar}spcirc{dollar}C) and an accelerating one (300{dollar}spcirc{dollar}C).; A linear position sensitive detector was used to measure a peak profile in 5 seconds, and a novel high temperature stage was developed with a very low thermal mass and thermal expansion. The x-ray experiments were supplemented by an elastic model to examine the strain distribution due to a periodic array of cuboidal inclusions.; Stress relaxations at 100{dollar}spcirc{dollar}C after rapid cooling from 300{dollar}spcirc{dollar}C were observed in some of the runs. It was found that a slow rate thermal cycle (5{dollar}spcirc{dollar}C/min heating and cooling) eliminated the relaxations in cycles immediately following it. Several rapid cycles were required after which the relaxations reappeared. This behaviour can be attributed to the development of a fine dispersion of incoherent precipitates. These can be redissolved in a slow cycle, but are stable during rapid ones. High stresses developed during low temperature cooling unpin dislocations from their coherent precipitates and this unpinning reduces the elastic stresses when these particles become incoherent. (Abstract shortened by UMI.)
机译:进行这项研究以表征用23%(vol。)Kaowool短纤维增强的AA339铝合金中残余应力的温度依赖性。通用汽车公司正在考虑将该材料用于活塞头中。设计了一个实验,通过等温应力松弛在100 xspcirc {dollar} C和300 {dollar时通过X射线衍射动态测量残余应力。 spcirc {dollar} C,两个状态之间的温度快速升高200 {dollar} spcirc {dollar} C / min。这模拟了怠速发动机(100 {spC)的加速循环条件和加速发动机(300spC)的热循环条件。使用线性位置敏感检测器在5秒内测量峰轮廓,并开发了一种新型的高温台,其热质量和热膨胀非常低。 X射线实验通过弹性模型进行补充,以检查由于周期性排列的长方体夹杂物引起的应变分布。在一些运行中,观察到在从300℃循环的快速冷却后,在100℃的循环的应力松弛。发现慢速热循环(5℃/分钟C / min的加热和冷却)消除了紧随其后的循环中的松弛。需要几次快速循环,之后才出现松弛。此行为可归因于非相干沉淀物的精细分散。这些可以在较慢的周期中重新溶解,但在快速的过程中稳定。在低温冷却过程中产生的高应力使位错从其相干的析出物中脱出,当这些粒子变得不相干时,这种脱出作用降低了弹性应力。 (摘要由UMI缩短。)

著录项

  • 作者单位

    Queen's University at Kingston (Canada).;

  • 授予单位 Queen's University at Kingston (Canada).;
  • 学科 Engineering Metallurgy.
  • 学位 M.Sc.
  • 年度 1997
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

  • 入库时间 2022-08-17 11:48:52

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