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

Изготовление тигля из (Ca,Sr,Ba)ZrO3 методом литья шликера для вакуумно-индукционной плавки сплава NiTi
Mingliang Li, Shijia Ding, Hailong Wang, Gang Shao, Hongxia Lu, Jinpeng Zhu, Hongliang Xu, Rui Zhang
2024-04-22

(Ca,Sr,Ba)ZrO3 crucibleNiTi alloyhigh-entropy ceramicsslip castingvacuum induction melting
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.
1
A novel (Ca,Sr,Ba)ZrO3 crucible was fabricated by slip casting for vacuum induction melting of NiTi alloy.
2
NiTi melted in the crucible contained only 0.0173 wt.% residual oxygen and nitrogen, satisfying ASTM standards for biomedical TiNi alloys.
3
Sintering at 1500 °C produced a single solid solution with homogeneously distributed metallic elements.
4
The crucible exhibited good resistance to molten NiTi, attributed to sluggish diffusion in the high-entropy ceramic.
5
The study demonstrates a design approach for stable, suitable crucible refractories for NiTi alloy melting.

(Ca,Sr,Ba)ZrO3 crucible and molten NiTi alloy during vacuum induction melting

Crucible stability and resistance to molten NiTi, including elemental homogeneity, oxygen and nitrogen contamination, and the role of sluggish diffusion in high-entropy ceramics

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2024-04-22
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Mingliang Li
Shijia Ding
Hailong Wang
Gang Shao
Hongxia Lu
Jinpeng Zhu
Hongliang Xu
Rui Zhang
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