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A critical assessment of the microstructure and mechanical properties of friction stir welded reduced activation ferritic-martensitic steel

机译:搅拌摩擦焊还原活化铁素体-马氏体钢的显微组织和力学性能的关键评估

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摘要

Bead-on-plate friction stir welding was conducted on 6 mm thick plate of Reduced Activation Ferritic-Martens-itic Steel employing polycrystalline cubic boron nitride tool with rotational speeds of 200,300,500 and 700 rpm and traverse speed of 30 mm/mia The interface temperature between shoulder bottom and top surface of the plate was monitored by non-contact in-line thermography which served to identify the peak temperature attained in the stir zone (SZ). This temperature for 200,300 and 500, and 700 rpm was respectively below Ac_1, between Ac_1 and Ac_3, and above Ac_3. In the base metal (BM), the prior austenite grain and martensite lath boundaries were decorated with chromium and tungsten rich M_23C_6 precipitates while intra-lath regions revealed Ta and V rich MX type carbides. Rotational speeds greater than 300 rpm led to martensite formation and simultaneous recovery, recrystallization and grain growth in SZs with wide distribution in grain size whereas SZ of 200 rpm and BM possessed similar distribution. The grain boundary M23Q dissolved and very fine needles of Fe3C precipitated in all SZs. The hardness of all SZs was unacceptably higher compared to the BM. The 200 rpm weld exhibited higher impact toughness in the absence of martensite in SZ.
机译:采用多晶立方氮化硼工具,以200,300,500和700 rpm的旋转速度和30 mm / mia的横向移动速度,在6 mm厚的还原活化铁素体-马氏体钢板上进行珠上摩擦搅拌焊接。平板的肩部底部和顶部表面通过非接触式在线热成像法进行监测,该热成像法用于确定在搅拌区(SZ)中达到的峰值温度。 200,300、500和700 rpm的温度分别低于Ac_1,介于Ac_1和Ac_3之间以及高于Ac_3。在贱金属(BM)中,先前的奥氏体晶粒和马氏体板条边界以富含铬和钨的M_23C_6析出物装饰,而板条内区域则显示出富含Ta和V的MX型碳化物。大于300 rpm的转速导致SZs中马氏体形成并同时恢复,再结晶和晶粒长大,晶粒尺寸分布较宽,而200 rpm的SZ和BM具有相似的分布。 M23Q的晶界溶解,所有SZ中析出非常细的Fe3C针状体。与BM相比,所有SZ的硬度都高得无法接受。在SZ中,在没有马氏体的情况下,200 rpm的焊接表现出更高的冲击韧性。

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