Nd:YAG激光焊接Ni-Cr合金的冶金特性变化观察。

Journal of dental biomechanics Pub Date : 2014-08-17 eCollection Date: 2014-01-01 DOI:10.1177/1758736014547144
Mh Hong, Sm Choi
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引用次数: 2

摘要

本研究通过设置光斑直径大小的不同条件,确定激光熔深对Ni-Cr合金硬度变化的影响,并观察Nd:YAG激光照射牙科用Ni-Cr合金时显微组织的相关性。在所有组中,激光熔合区和热影响区(HAZ)的硬度深度分布图均大于母材。此外,在熔合区和热影响区以外的地方,测量到的硬度值在定量上较低。利用场发射扫描电镜、能量色散光谱和电子探针显微分析仪对组份元素的扩散和显微组织进行了观察,结果表明,由于焊接后的自淬作用,熔合区呈现出比母材细得多的枝晶形态,而组份元素没有发生变化,但主元素有一定的蒸发。在枝晶间区形成了Mo和si结合的金属间化合物。通过本研究,激光熔合区由于金属间化合物和晶粒细化作用,具有较好的淬透性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Observation of changes in the metallurgical characteristics of Ni-Cr alloys using Nd:YAG laser welding.

Observation of changes in the metallurgical characteristics of Ni-Cr alloys using Nd:YAG laser welding.

Observation of changes in the metallurgical characteristics of Ni-Cr alloys using Nd:YAG laser welding.

Observation of changes in the metallurgical characteristics of Ni-Cr alloys using Nd:YAG laser welding.

This study aimed to determine the effect of hardness change according to penetration depth in the laser fusing zone and observed the correlation of the microstructure as an Nd:YAG laser was irradiated to Ni-Cr alloy for dental use by setting the spot diameter size to various conditions. In all groups, the hardness depth profiles in the laser fusing zone and heat-affected zone (HAZ) had larger values than those of the base metal. In addition, the hardness values in places beyond the fusing zone and the HAZ were measured as being quantitatively lower. The observation result of the diffusion of the constituent elements and microstructure using field emission scanning electron microscopy, energy-dispersive spectroscopy, and electron probe microanalyzer showed that the fusing zone revealed a much finer dendritic form than the base metal due to the self-quenching effect after welding, while no change in constituent elements was found although some evaporation of the main elements was observed. In addition, Mo- and Si-combined intermetallic compounds were formed on the interdendritic area. Through this study, the laser fusing zone had better hardenability due to the intermetallic compound and grain refinement effect.

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