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The effects of thermomechanical processing parameters on elevated temperature behavior of a 6061 Al-Al2O3 metal matrix composite

机译:热机械加工参数对6061 Al-Al2O3金属基复合材料高温行为的影响

摘要

The effects of thermomechanical processing parameters on the elevated temperature behavior of a 6061 aluminum -- aluminum oxides metal-matrix composite (MMC) have been studied. The same processing parameters were employed with unreinforced 6061 AL to provide a comparison. These materials were both thermomechanically processed at either 350 C or 500 C using two rolling schedules. Both schedules involved a constant strain per pass. Subsequent mechanical tests were conducted at temperatures 200 to 500 C and strain rates ranging from (6.7E-3)/s to (1.3E-1)/s. The materials processed at 500 C exhibited higher strength when compared to those processed at 350 C for deformation temperatures below 350 c. Materials stabilized by annealing after completion of rolling displayed higher ductilities when compared to the as-processed materials, especially at lower testing temperatures. The peak ductilities of the MMCS occurred at testing temperatures near the prior rolling temperatures. Solution treatment prior to rolling and additional strains during rolling in excess of 2.5 appeared to have no effect on strength or ductility
机译:研究了热机械加工参数对6061铝-氧化铝金属基复合材料(MMC)高温行为的影响。未增强的6061 AL使用相同的处理参数以进行比较。这些材料均使用两个轧制程序在350°C或500°C下进行了热机械加工。两种时间表都涉及恒定的每次通过应变。随后的机械测试是在200至500℃的温度下进行的,应变速率范围为(6.7E-3)/ s至(1.3E-1)/ s。当变形温度低于350℃时,与在350℃下加工的材料相比,在500℃下加工的材料表现出更高的强度。与加工后的材料相比,轧制完成后通过退火稳定的材料具有更高的延展性,尤其是在较低的测试温度下。 MMCS的峰值延展性发生在接近先前轧制温度的测试温度下。轧制前的固溶处理和轧制过程中超过2.5的附加应变似乎对强度或延展性没有影响

著录项

  • 作者

    Schauder Thomas J.;

  • 作者单位
  • 年度 1992
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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