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Study on Grain Refining and Metamorphism of ZL111 Aluminium Alloys
作者姓名:ZHANG  Xu-ping  REN  Yao-jian  SUN  Zhi
作者单位:School of Materials Science and Engineering, China University of Mining & Technology, Xuzhou, Jiangsu 221008, China
摘    要:Vacuum sintering and ball milling methods were employed in the preparation process of Ti-C grain refinement and the ability of refiners with varying ratios of Ti and C to refine ZL111 crystal grains was tested. The refinement effect of the Ti-C ratios on tensile strength, elongation percentage, Brinell hardness, pro-eutectoid αAl and the size of the Si phase of ZL111, after modification by rare-earth and strontium nitrate, were studied by means of metallographic examination, SEM and mechanical property tests. The results show that there is an obvious increase in the tensile strength and elongation percentage of refined ZL111 with these new Ti and C refiner compounding powders, while Brinell hardness remained more or less constant. The pro-eutectoid αAl is considerably reduced in size and the Si phase shows a finer and rounder structure. The refiner exhibits a good grain refining performance when the Ti-C ratio is 25:1, for Al crystals can favorably easily form nuclei and grow up along the TiC surface thanks to the TiAl3 generated by surplus Ti and Al. The mechanical properties have clearly been improved by the addition of strontium nitrate to ZL111. The effective factors in the modification of mechanical properties of ZL111 are in order of importance: strontium nitrate, Ti-C ratio and rare earth.

关 键 词:铝合金  变质作用  真空烧结法  相位  热处理
收稿时间:2006-06-06
修稿时间:2006-07-11

Study on Grain Refining and Metamorphism of ZL111 Aluminium Alloys
ZHANG Xu-ping REN Yao-jian SUN Zhi.Study on Grain Refining and Metamorphism of ZL111 Aluminium Alloys[J].Journal of China University of Mining and Technology,2006,16(4):475-479.
Authors:ZHANG Xu-ping  REN Yao-jian  SUN Zhi
Affiliation:1. Université du Québec à Chicoutimi, Québec, Canada;2. General Motors, Materials Engineering, 823 Joslyn Avenue, Pontiac, MI 48340, USA;3. Corporativo Nemak, S.A. DE C.V., P.O. Box 100, Garza Garcia, N.L., 66221, Mexico
Abstract:Vacuum sintering and ball milling methods were employed in the preparation process of Ti-C grain refinement and the ability of refiners with varying ratios of Ti and C to refine ZL111 crystal grains was tested. The refinement effect of the Ti-C ratios on tensile strength, elongation percentage, Brinell hardness, pro-eutectoid αAl and the size of the Si phase of ZL111, after modification by rare-earth and strontium nitrate, were studied by means of metallographic examination, SEM and mechanical property tests. The results show that there is an obvious increase in the tensile strength and elongation percentage of refined ZL111 with these new Ti and C refiner compounding powders, while Brinell hardness remained more or less constant. The pro-eutectoid αAl is considerably reduced in size and the Si phase shows a finer and rounder structure. The refiner exhibits a good grain refining performance when the Ti-C ratio is 25:1, for Al crystals can favorably easily form nuclei and grow up along the TiC surface thanks to the TiAl3 generated by surplus Ti and Al. The mechanical properties have clearly been improved by the addition of strontium nitrate to ZL111. The effective factors in the modification of mechanical properties of ZL111 are in order of importance: strontium nitrate, Ti-C ratio and rare earth.
Keywords:ZL111 aluminium alloy  refiner  vacuum sintering  ball milling  Ti-C ratio
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