Please wait a minute...
Acta Metall Sin  1993, Vol. 29 Issue (10): 28-32    DOI:
论文 Current Issue | Archive | Adv Search |
MELTING BEHAVIORS OF DIRECTIONALLY GROWN EUTECTIC STRUCTURES
XU Daming;LI Qingchun;WANG Yongqian Harbin Institute of Technology
Cite this article: 

XU Daming;LI Qingchun;WANG Yongqian Harbin Institute of Technology. MELTING BEHAVIORS OF DIRECTIONALLY GROWN EUTECTIC STRUCTURES. Acta Metall Sin, 1993, 29(10): 28-32.

Download:  PDF(2071KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  

The melting behaviors of directionally grown eutectic structures of Al-Cu,AL-Ni and Al-Si alloys have been investigated using directional solidification/remeltingtechnique. No complete reversibility of processes between melting of eutectic structure and itssolidification was revealed. The melting processes of eutectic structures, not only regularlamellar or rodlet but also irregular lamellar, may be that the two component phases of aneutectic structure are priorly decomposed on the melting interfaces simultaneously, and dis-persed into liquid region as their own phases, then these disperse phases of different composi-tions dissolved further to form a homogeneous single liquid phase at higher temperatures.

Key words:  melting      eutectic structure      Al-Cu alloy      Al-Ni alloy      Al-Si alloy     
Received:  18 October 1993     
Service
E-mail this article
Add to citation manager
E-mail Alert
RSS
Articles by authors

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y1993/V29/I10/28

1 Tiller W A. In: ASM ed., Liquid Metals and Solidification, Cleveland, Ohio, 1958: 276
2 Davics V L. J Inst Met, 1964--65; 93: 10
3 Hunt J D, Jackson K A. TMS AIME 1966; 236: 843
4 Jackson K A, Hunt J D. TMS AIME, 1966; 236: 1129
5 Fisher D J, Kurz W. Acta Metall, 1980; 28: 777
6 徐达鸣,李庆春.金属科学与工艺,1988;(3) :47
7 Xu Daming, Pehlke R D, Li Qingchun. AFS Trans, 1992; 100: 961
8 ASM ed. Metals Handbook, 8th ed, Ohio, Metals Park, 1973; 8: 259
9 徐达鸣,李庆春,张宝友.哈尔滨第二届青年学术年会论文集(理工分册),哈尔滨工业大学出版社,1992:312
10 Mollard F R, Flemings M C. TMS AIME 1967; 239: 1526, 1534

[1] ZHANG Dongyang, ZHANG Jun, LI Shujun, REN Dechun, MA Yingjie, YANG Rui. Effect of Heat Treatment on Mechanical Properties of Porous Ti55531 Alloy Prepared by Selective Laser Melting[J]. 金属学报, 2023, 59(5): 647-656.
[2] FENG Li, WANG Guiping, MA Kai, YANG Weijie, AN Guosheng, LI Wensheng. Microstructure and Properties of AlCo x CrFeNiCu High-Entropy Alloy Coating Synthesized by Cold Spraying Assisted Induction Remelting[J]. 金属学报, 2023, 59(5): 703-712.
[3] HOU Juan, DAI Binbin, MIN Shiling, LIU Hui, JIANG Menglei, YANG Fan. Influence of Size Design on Microstructure and Properties of 304L Stainless Steel by Selective Laser Melting[J]. 金属学报, 2023, 59(5): 623-635.
[4] TANG Weineng, MO Ning, HOU Juan. Research Progress of Additively Manufactured Magnesium Alloys: A Review[J]. 金属学报, 2023, 59(2): 205-225.
[5] WANG Hu, ZHAO Lin, PENG Yun, CAI Xiaotao, TIAN Zhiling. Microstructure and Mechanical Properties of TiB2 Reinforced TiAl-Based Alloy Coatings Prepared by Laser Melting Deposition[J]. 金属学报, 2023, 59(2): 226-236.
[6] MIAO Junwei, WANG Mingliang, ZHANG Aijun, LU Yiping, WANG Tongmin, LI Tingju. Tribological Properties and Wear Mechanism of AlCr1.3TiNi2 Eutectic High-Entropy Alloy at Elevated Temperature[J]. 金属学报, 2023, 59(2): 267-276.
[7] QI Zhao, WANG Bin, ZHANG Peng, LIU Rui, ZHANG Zhenjun, ZHANG Zhefeng. Effects of Stress Ratio on the Fatigue Crack Growth Rate Under Steady State of Selective Laser Melted TC4 Alloy with Defects[J]. 金属学报, 2023, 59(10): 1411-1418.
[8] LU Haifei, LV Jiming, LUO Kaiyu, LU Jinzhong. Microstructure and Mechanical Properties of Ti6Al4V Alloy by Laser Integrated Additive Manufacturing with Alternately Thermal/Mechanical Effects[J]. 金属学报, 2023, 59(1): 125-135.
[9] WANG Meng, YANG Yongqiang, Trofimov Vyacheslav, SONG Changhui, ZHOU Hanxiang, WANG Di. Effects of Particle Size on Processability of AlSi10Mg Alloy Manufactured by Selective Laser Melting[J]. 金属学报, 2023, 59(1): 147-156.
[10] ZHU Guoliang, KONG Decheng, ZHOU Wenzhe, HE Jian, DONG Anping, SHU Da, SUN Baode. Research Progress on the Crack Formation Mechanism and Cracking-Free Design of γ' Phase Strengthened Nickel-Based Superalloys Fabricated by Selective Laser Melting[J]. 金属学报, 2023, 59(1): 16-30.
[11] PENG Liming, DENG Qingchen, WU Yujuan, FU Penghuai, LIU Ziyi, WU Qianye, CHEN Kai, DING Wenjiang. Additive Manufacturing of Magnesium Alloys by Selective Laser Melting Technology: A Review[J]. 金属学报, 2023, 59(1): 31-54.
[12] FANG Yuanzhi, DAI Guoqing, GUO Yanhua, SUN Zhonggang, LIU Hongbing, YUAN Qinfeng. Effect of Laser Oscillation on the Microstructure and Mechanical Properties of Laser Melting Deposition Titanium Alloys[J]. 金属学报, 2023, 59(1): 136-146.
[13] YANG Chao, LU Haizhou, MA Hongwei, CAI Weisi. Research and Development in NiTi Shape Memory Alloys Fabricated by Selective Laser Melting[J]. 金属学报, 2023, 59(1): 55-74.
[14] YANG Tianye, CUI Li, HE Dingyong, HUANG Hui. Enhancement of Microstructure and Mechanical Property of AlSi10Mg-Er-Zr Alloys Fabricated by Selective Laser Melting[J]. 金属学报, 2022, 58(9): 1108-1117.
[15] FENG Di, ZHU Tian, ZANG Qianhao, LEE Yunsoo, FAN Xi, ZHANG Hao. Solution Behavior of Spray-Formed Hypereutectic AlSiCuMg Alloy[J]. 金属学报, 2022, 58(9): 1129-1140.
No Suggested Reading articles found!