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Microstructure and mechanical properties of undercooled Fe80C5Si10B5 eutectic alloy

机译:过冷Fe80C5Si10b5共晶合金的微观结构和力学性能

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摘要

The Fe80C5Si10B5 alloy was investigated by means of fluxing and cyclic superheating. The microstructure of low undercooling range was quasi regular eutectic and complex rules eutectic; The structure of moderate undercooling corresponded to mixed eutectic and irregular eutectic; High undercooling resulted in the granular ferrite and irregular eutectic borides. There were two grain refinement processes within achieved undercoolings. The first grain refinement of irregular eutectic was related to oscillatory instability under non-equilibrium condition. The second grain refinement at large undercooling was caused by stress accumulation and break-up originating from the rapid solidification. With the increase of undercooling, the relationship between the microstructure and hardness including the size effect of crystal grain was systematically investigated. Meanwhile, the friction and wear performance of undercooled Fe80C5Si10B5 alloy was studied. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过助熔剂和循环过热来研究FE80C5SI10B5合金。 低温过冷却范围的微观结构是准则生植物和复杂的规则共晶; 中等过冷的结构对应于混合共晶和不规则的共肠; 高过冷产生粒状铁氧体和不规则的共晶硼化物。 在达到过冷却中有两个谷物细化过程。 不正常共晶的第一晶粒细化与非平衡条件下的振荡不稳定有关。 大型过冷的第二颗粒细化是由源自快速凝固的应力积累和分解引起的。 随着过冷的增加,系统地研究了包括晶粒尺寸效应的微观结构和硬度之间的关系。 同时,研究了过冷Fe80c5Si10b5合金的摩擦和磨损性能。 (c)2018年elestvier b.v.保留所有权利。

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