首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effects of boron and silicon on microstructure and isothermal solidification during TLP bonding of a duplex stainless steel using two Ni-Si-B insert alloys
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Effects of boron and silicon on microstructure and isothermal solidification during TLP bonding of a duplex stainless steel using two Ni-Si-B insert alloys

机译:硼和硅对使用两种Ni-Si-B插入合金进行TLP粘合双相不锈钢时组织和等温凝固的影响

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摘要

The influence of B and Si on microstructure and isothermal solidification during transient liquid phase (TLP) bonding of a duplex stainless steel using MBF-30 (Ni-4-5Si-3-2B, wt-%) and MBF-35 (Ni-7-3Si-2-2B, wt-%), was investigated. Based on experimental studies, the formation of Ni_3B within the joint centreline is dependent on B content; the morphology of Ni_3Si is dominated by Si concentration. There was a deviation between the times for complete isothermal solidification obtained by the experiment and the conventional TLP bonding model. Isothermal solidification of the liquid dependent on different solidification regimes is suggested to be a controlling factor contributing to the change in the rate of isothermal solidification observed using the two filler metals.
机译:B和Si对使用MBF-30(Ni-4-5Si-3-2B,wt-%)和MBF-35(Ni-)的双相不锈钢在瞬态液相(TLP)键合过程中的微观结构和等温凝固的影响研究了7-3Si-2-2B,重量%。根据实验研究,关节中心线内Ni_3B的形成取决于B的含量。 Ni_3Si的形貌主要由Si浓度决定。通过实验获得的完全等温凝固的时间与常规TLP粘结模型之间存在偏差。液体的等温凝固取决于不同的凝固方式,被认为是控制使用两种填充金属观察到的等温凝固速率变化的控制因素。

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