Features of the Structural Formation of Tungsten Single Crystals in the Shape of Hollow Rotational Bodies

Yuriy Nikitenko, Viktor Shapovalov, Volodymyr Yakusha, O. Gnizdylo, Olena M. Berdnikova
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Abstract

The results of the development of the technology for growing super-large single crystals of refractory metals, which were developed at the E.O. Paton Electric Welding Institute of the NAS of Ukraine. Based on proven technology and acquired skills, a new generation of equipment was created that allows the growth of single crystals of refractory alloys in the form of bodies of rotation. Experiments were conducted on growing a single crystal of tungsten in the form of a hollow cylinder, from which it is possible to make such a product as a crucible. Technological parameters and energy regimes were established, which allowed for control of the thickness of the wall to be welded. As a result of the experiments, an ingot with a welded wall height of 68 mm, a thickness of 20–22 mm, and an outer diameter of 85 mm was grown. The structure of the obtained samples was studied.
中空旋转体形状钨单晶的结构形成特征
乌克兰国家航空和航天局帕顿电焊研究所(E.O. Paton Electric Welding Institute of the NAS of Ukraine)研发的超大型难熔金属单晶体生长技术的成果。在成熟技术和已掌握技能的基础上,研发出了新一代设备,可以旋转体的形式生长难熔合金单晶体。进行了以空心圆柱体形式生长钨单晶体的实验,由此可以制造坩埚等产品。建立了技术参数和能量机制,从而可以控制焊接壁的厚度。实验结果表明,钢锭的焊接壁高为 68 毫米,厚度为 20-22 毫米,外径为 85 毫米。对所获得样品的结构进行了研究。
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