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Effect of metallurgical parameters on the machining behavior of 356 and 319 alloys (drilling and tapping study) .

机译:冶金参数对356和319合金加工性能的影响(钻孔和攻丝研究)。

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摘要

The present study was undertaken to investigate the effect of metallurgical parameters on the hardness and microstructural characterisation of as-cast and heat-treated 356 and 319 alloys, with the aim of adjusting these parameters to produce castings of suitable hardness and Fe-intermetallic volume fractions for subsequent use in studies relating to the machinability of these alloys. Hardness measurements were carried out on specimens prepared from 356 and 319 alloys in as-cast and heat-treated conditions, using different combinations of grain refining, Sr-modification, and alloying additions. Aging treatments were carried out at 155°C, 180°C, 200°C, and 220°C for 4 h, followed by air cooling, as well as at 180°C and 220°C for 2, 4, 6, and 8 h to determine conditions under which specific hardness levels viz., 85 and 115 HBN could be obtained. Addition of Mg to 319 alloys containing beta- and/or alpha-Fe intermetallics was found to produce a remarkable increase in hardness at all aging temperatures in both the unmodified and Sr-modified conditions.; Additions of Mg to 319 alloys coupled with different heat treatment conditions for both 356 and 319 alloys were carried out to get similar levels of hardness for both alloys. Conditions of Sr-modified (200-250ppm) 356 and 319 alloys-containing mainly alpha-Fe-intermetallics related to different levels of hardness (90, 100 and 110 HB) were selected for the drilling and tapping study. Effect of Mg and alpha-Fe-intermetallic volume fraction on the machinability of heat treated 319 alloys was studied for two levels of Mg (0.1 and 0.28%) and two levels of alpha-Fe-intermetallic volume fractions (2 and 5%), respectively. The range of the hardness and Fe-intermetallic volume fractions used in this study conforms to the most common levels of the commercial applications of these alloys.; The most important factors undertaken in the present study that determine the condition of the work material that can influence the outcome of the machinability of 356 and 319 alloys are: (a) Chemistry and additions (Cu, Mg and alpha-Fe-intermetallic volume fractions); (1) Role of Cu-intermetallics when machining 356 (without Cu- aged at 180°C/2h) and 319 (with Cu- aged at 220°C/2h) alloys, both have the same level of hardness (100 HB). (2) Role of Mg addition to 319 alloys at two levels of Mg content (0.1 and 0.28%) given the same aging treatment (220°C/2h) that yields different levels of hardness (90 and 100 HB) and given different aging treatment (180°C/2h and 220°C/2h) that yield the same level of hardness (100 HB). (3) Effect of increasing alpha-Fe intermetallic volume fractions to 319 alloys (2 and 5%) when aging carried out at 220°C/2h and at 180°C/2h that yields hardness of (90 HB) and (100 HB), respectively. (b) Solidification time (25-45)s and quenching rate (100-145)°C/s; (c) Hardness (100 +/- 10 HB). (Abstract shortened by UMI.)
机译:本研究旨在研究冶金参数对铸态和热处理的356和319合金的硬度和显微组织表征的影响,旨在调整这些参数以生产具有合适硬度和铁金属间体积分数的铸件以便随后用于与这些合金的切削性有关的研究中。在铸态和热处理条件下,对由356和319合金制成的试样进行硬度测量,采用晶粒细化,Sr改性和合金添加的不同组合。时效处理分别在155°C,180°C,200°C和220°C下进行4小时,然后进行空气冷却,以及在180°C和220°C下进行2、4、6和10 8小时确定可得到特定硬度水平(即HBN 85和115 HBN)的条件。在未改性和Sr改性条件下,在所有时效温度下,将镁添加到含有β-和/或α-Fe金属间化合物的319合金中,都会显着提高硬度。向319和319合金中添加Mg到319合金中,再加上不同的热处理条件,以使两种合金获得相似的硬度水平。选择了Sr改性(200-250ppm)356和319合金(主要包含与不同硬度水平(90、100和110 HB)相关的α-Fe-金属间化合物)的条件进行钻孔和攻丝研究。研究了两种水平的Mg(0.1和0.28%)和两种水平的α-Fe金属间体积分数(2和5%)的Mg和α-Fe金属间化合物体积分数对热处理319合金的切削性能的影响,分别。本研究中使用的硬度和铁金属间体积分数的范围符合这些合金在商业应用中的最常见水平。在本研究中采取的最重要的因素决定了可能影响356和319合金可切削性结果的工作材料的状况:(a)化学和添加物(Cu,Mg和α-Fe金属间化合物的体积分数); (1)加工356(无Cu-在180°C / 2h时)和319(有Cu-在220°C / 2h)时,铜间金属的作用均具有相同的硬度水平(100 HB) 。 (2)在相同的时效处理(220°C / 2h)下产生不同水平的硬度(90和100 HB)并进行不同时效处理的情况下,以两种水平的镁含量(0.1和0.28%)在319种合金中添加镁的作用处理(180°C / 2h和220°C / 2h)产生相同水平的硬度(100 HB)。 (3)在220°C / 2h和180°C / 2h进行时效处理时,将α-Fe金属间化合物的体积分数增加到319种合金(2和5%)的效果,其硬度为(90 HB)和(100 HB) ), 分别。 (b)凝固时间(25-45)s和淬火速率(100-145)°C / s; (c)硬度(100 +/- 10 HB)。 (摘要由UMI缩短。)

著录项

  • 作者

    Tash, Mahmoud M.;

  • 作者单位

    Universite du Quebec a Chicoutimi (Canada).;

  • 授予单位 Universite du Quebec a Chicoutimi (Canada).;
  • 学科 Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 270 p.
  • 总页数 270
  • 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 11:41:31

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