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Microstructure evolution and microhardness of friction stir welded cast aluminum bronze

机译:搅拌摩擦铸造铸铝青铜的组织演变和显微硬度

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摘要

Microstructural characteristics and mechanical properties of a friction stir welded cast aluminum bronze (Cu-9Al-1Fe), produced by a sand casting method, have been investigated at tool rotation of 850-1500 rpm and traverse speed of 50-100 mm/min. Refinement of the primary coarse cast microstructure in the base metal was seen after friction stir welding. Microstructure of the stir zone was characterized in four distinct areas of non-isometric fine grains while a significant grain growth was noticed in some of the areas. Conditions of grain growth are defined with high heat input intensity and low heat transfer capability. The grain size was observed to decrease after FSW, resulting in a greater microhardness across the welded region from about 100 HV in the base metal to about 150 HV at the center of the stir zone. The increased hardness in the stir zone may have stemmed from the locally refined grain size according to Hall-Petch relation.
机译:已经研究了在砂轮铸造方法下,在850-1500 rpm的工具转速和50-100 mm / min的横向移动速度下,摩擦搅拌焊接的铸铝青铜(Cu-9Al-1Fe)的组织和力学性能。搅拌摩擦焊接后,可以看到母材中粗铸细组织的细化。在非等距细晶粒的四个不同区域中表征了搅拌区的微观结构,而在某些区域中观察到明显的晶粒长大。高热输入强度和低传热能力定义了晶粒生长的条件。观察到在FSW之后晶粒尺寸减小,从而导致整个焊接区域的显微硬度从贱金属中的约100 HV到搅拌区中心的约150 HV。搅拌区硬度的增加可能源于根据Hall-Petch关系式的局部精炼晶粒尺寸。

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