Effect of Ingate Length on Microstructure and Properties of Semi-Solid Squeeze Casting CuSn10P1 Alloy

Author:

Zhang Hao1,Li Yong Kun1,Li Zhao Qiang1,Wang Qian Shi1,Xie Ling Zhi1,Zhang Ling Zhi1,Zhou Rong Feng1,Xiao Han1

Affiliation:

1. Kunming University of Science and Technology

Abstract

It is easy to occur solid-liquid separation during semi-solid rheological forming, which leads to poor uniformity of microstructure and properties and limits its application in high strength and toughness parts. In this paper, a semi-solid CuSn10P1 alloy slurry was prepared by an enclosed cooling slope channel (for short ECSC). The effect of ingate length on microstructure and properties by semi-solid squeeze casting was studied. The results showed that the proper increase of the length of the ingate is beneficial to improve the uniformity of the microstructure and properties of the semi-solid squeeze casting. The microstructure uniformity and properties are the best when the ingate length is 20mm. The ultimate tensile strength and elongation of semi-solid squeeze casting CuSn10P1 alloy with 20 mm ingate length reached 419.2 MPa and 13.4%.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference10 articles.

1. W.A. Baker, T.F. Pearson. Causes of porosity in tin-bronze castings. J. Inst. Met. 1941, 67, 231-235.

2. H. Kodama, K. Nagase, T. Umeda et al. Microsegregation during dendritic growth in Cu-8%Sn alloys. Imono. 1976, 49, 287-293.

3. Semi-Solid Metal Processing from an Industrial Perspective; The Best is yet to Come!;Jorstad;Solid State Phenomena,2016

4. Microstructure evolution and semi-solid deformation behavior of an A356 aluminum alloy processed by strain induced melt activated method;Hassas-Irani;Materials & Design (1980-2015)

5. J.A. Yurko, R.A. Martinez, M.C. Flemings. Commercial development of the semi-solid rheocasting (SSRTM) process. Met. Sci. Tec. 2013, 21, 10-15.

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