Zhao Junwen Wu Shusen Xie Lizhi. Preparation of Al Alloy ZL101 Semi-Solid Slurry by Ultrasonic Vibrating Method. [J]. Special Casting & Nonferrous Alloys (S1):374-377(2007)DOI:
Preparation of Al Alloy ZL101 Semi-Solid Slurry by Ultrasonic Vibrating Method
摘要
研究了超声波振动制备ZL101铝合金半固态浆料中相关工艺参数对半固态微观组织的影响规律
将熔体温度为630
6
60℃的ZL101铝液浇入特制样杯中
进行超声波振动或保温处理不同时间
然后取少量熔体水淬。对各种条件下的金相试样拍摄金相照片并用金相软件进行分析
结果发现
振动144s即可使α-Al晶粒平均直径在90μm左右
平均形状系数在0.5以上;预先对半固态熔体进行一段时间的振动
然后保温
晶粒平均形状系数先降低
后升高;随着超声工作时间与间隔时间的比值增大
其他条件相同时
可制备出更细小圆整的晶粒。还对超声振动下半固态微观组织的形成机理进行了初步探讨。
Abstract
The effect of pertinent processing parameters on the semi-solid microstructure was investigated in the course of preparing ZL101 Al Alloy semi-solid slurry by Ultrasonic Vibrating Method. The ZL101 melt in temperature of 630~660℃ was cast into a special-made metal cup
and exposed to ultrasonic vibration or isothermal holding for certain time. After examination and analysis of the microstructure of the samples
the following results are concluded: the primary α-Al crystals could be prepared with average grain diameter about 90μm and average shape coefficient above 0.5 by 144 s ultrasonic vibration; the average shape coefficient of grains would decrease at first
and then increase if isothermal holding with a short time of ultrasonic vibration beforehand; finer and rounder grains could be fabricated with the increase of the ratio of ultrasonic working time to rest time under the same other conditions. In addition
the mechanism of the ultrasonic vibration on metal melt is discussed preliminarily.