Unidirectional solidification of Zn-rich Zn-Cu hypoperitectic alloy

被引:16
作者
Kaya, Hasan [1 ]
Engin, Sevda [2 ]
Boyuk, Ugur [1 ]
Cadirli, Emin [3 ]
Marasli, Necmettin [4 ]
机构
[1] Erciyes Univ, Dept Sci Educ, Fac Educ, TR-38039 Kayseri, Turkey
[2] Erciyes Univ, Dept Phys, Inst Sci & Technol, TR-38039 Kayseri, Turkey
[3] Nigde Univ, Dept Phys, Fac Arts & Sci, TR-51200 Nigde, Turkey
[4] Erciyes Univ, Dept Phys, Fac Arts & Sci, TR-38039 Kayseri, Turkey
关键词
PERITECTIC ALLOYS; MICROSTRUCTURE SELECTION; RAPID SOLIDIFICATION; COUPLED GROWTH; PERMEABILITY; SYSTEM; PHASE; LIMIT; FLOW;
D O I
10.1557/JMR.2009.0415
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Zn-0.7 wt% Cu-hypoperitectic alloy was prepared in a graphite crucible under a vacuum atmosphere. Unidirectional solidification of the Zn-0.7 wt% Cu-hypoperitectic alloy was carried out by using a Bridgman-type directional solidification apparatus under two different conditions: (i) with different temperature gradients (G = 3.85-9.95 K/mm) at a constant growth rate (41.63 mu m/s) and (ii) with different growth rate ranges (G = 8.33-435.67 mu m/s) at a constant temperature gradient (3.85 K/mm). The microstructures of the directionally solidified Zn-0.7 wt% Cu-hypoperitectic samples were observed to be a cellular structure. From both transverse and longitudinal sections of the samples, cellular spacing (lambda) and cell-tip radius (R) were measured. The effects of solidification-processing parameters (G and V) on the microstructure parameters (lambda and R) were obtained by using a linear regression analysis. The present experimental results were also compared with the current theoretical and numerical models and similar previous experimental results.
引用
收藏
页码:3422 / 3431
页数:10
相关论文
共 50 条
[21]   Impedance Spectroscopic Study of Nanoscale Zn-Cu Ferrite prepared by Exploding Wire Technique [J].
Singh, Surendra ;
Katyal, S. C. ;
Goswami, Navendu .
DAE SOLID STATE PHYSICS SYMPOSIUM 2018, 2019, 2115
[22]   Experimental determination of solid-solid and solid-liquid interfacial energies of solid ε (CuZn5) in the Zn-Cu alloy [J].
Kaygisiz, Y. ;
Akbulut, S. ;
Ocak, Y. ;
Keslioglu, K. ;
Marasli, N. ;
Cadirli, E. ;
Kaya, H. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 487 (1-2) :103-108
[23]   Effect of rapid solidification and small additions of Zn and Bi on the structure and properties of Sn-Cu eutectic alloy [J].
Tarek El-Ashram ;
R. M. Shalaby .
Journal of Electronic Materials, 2005, 34 :212-215
[24]   Effect of rapid solidification and small additions of Zn and Bi on the structure and properties of Sn-Cu eutectic alloy [J].
El-Ashram, T ;
Shalaby, RM .
JOURNAL OF ELECTRONIC MATERIALS, 2005, 34 (02) :212-215
[25]   Investigation of the effect of composition on microhardness and determination of thermo-physical properties in the Zn-Cu alloys [J].
Kaya, H. ;
Cadirli, E. ;
Ulgen, A. .
MATERIALS & DESIGN, 2011, 32 (02) :900-906
[26]   Effect of Heat Treatment on the Mechanical Properties of Wrought Al-Zn-Mg-Cu Alloy Cast by Rapid Solidification [J].
Kapinos, Dawid ;
Szymanek, Marcin ;
Augustyn, Boguslaw ;
Gawlik, Maciej .
LIGHT METALS TECHNOLOGY 2013, 2013, 765 :496-500
[27]   Effect of electric pulse and rotating magnetic field on solidification microstructure and properties of Al-Zn-Mg-Cu alloy [J].
Kang, Kaijiao ;
Jiang, Shunde ;
Li, Dayong ;
Shi, Dequan .
MATERIALS CHARACTERIZATION, 2023, 200
[28]   The effect of the solidification rate on the physical properties of the Sn-Zn eutectic alloy [J].
Sahin, Mevlut ;
Karakurt, Fatih .
PHYSICA B-CONDENSED MATTER, 2018, 545 :48-54
[29]   Microstructural evolution and micromechanical property of rapidly solidified Mg-25at%Zn hypoperitectic alloy under simulated space conditions [J].
Long, Qiang ;
Hu, Liang ;
Mi, XiaoLei ;
Wu, BoWen ;
Wei, BingBo .
Scientia Sinica Technologica, 2025, 55 (02) :270-280
[30]   Influence of rapid solidification on microstructure, thermodynamic characteristic and the mechanical properties of solder/Cu joints of Sn-9Zn alloy [J].
Jing, Yanxia ;
Sheng, Guangmin ;
Zhao, Guoji .
MATERIALS & DESIGN, 2013, 52 :92-97