Preparation of a (Ca,Sr,Ba)ZrO3 Crucible by Slip Casting for the Vacuum Induction Melting of NiTi Alloy

Author:

Ding Shijia1,Li Mingliang12,Wang Hailong12,Zhu Jinpeng12,Shao Gang1,Xu Hongliang1,Lu Hongxia1,Zhang Rui1

Affiliation:

1. School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China

2. Zhongyuan Critical Metals Laboratory, Zhengzhou University, Zhengzhou 450001, China

Abstract

Vacuum induction melting is a more energy-efficient process for the preparation of a titanium alloy with good homogeneity and low cost. But the crucial problem for this technology is in developing a crucible refractory with high stability. In the present work, a novel (Ca,Sr,Ba)ZrO3 crucible was prepared by slip casting and its performance in melting NiTi alloy was studied. The results showed that a single solid solution was formed with a homogeneous distribution of metal elements after sintering at 1500 °C. It was found that the total content of oxygen and nitrogen remaining in the TiNi alloy after melting in the (Ca,Sr,Ba)ZrO3 crucible was 0.0173 wt.%, which fulfills the ASTM standard on biomedical TiNi alloys. The good resistance of the (Ca,Sr,Ba)ZrO3 crucible to molten NiTi has a relationship with the sluggish diffusion effect of high-entropy ceramics. This study provides insights into the process of designing highly suitable crucible material for melting a NiTi alloy.

Funder

National Natural Science Foundation of China

Henan Province University Science and Technology Innovation Team Support Program

Henan Science and Technology Research Project

Publisher

MDPI AG

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