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Friction Stir Welding in HSLA-65 Steel: Part I. Influence of Weld Speed and Tool Material on Microstructural Development

机译:HSLA-65钢的搅拌摩擦焊:第一部分。焊接速度和工具材料对显微组织发展的影响

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摘要

A systematic set of single-pass full penetration friction stir bead-on-plate and butt-welds in HSLA-65 steel were produced using a range of different traverse speeds (50 to 500 mm/min) and two tool materials (W-Re and PCBN). Microstructural analysis of the welds was carried out using optical microscopy, and hardness variations were also mapped across the weld-plate cross sections. The maximum and minimum hardnesses were found to be dependent upon both welding traverse speed and tool material. A maximum hardness of 323 Hv(10) was observed in the mixed martensite/bainite/ferrite microstructure of the weld nugget for a welding traverse speed of 200 mm/min using a PCBN tool. A minimum hardness of 179 Hv(10) was found in the outer heat-affected zone (OHAZ) for welding traverse speed of 50 mm/min using a PCBN tool. The distance from the weld centerline to the OHAZ increased with decreasing weld speed due to the greater heat input into the weld. Likewise for similar energy inputs, the size of the transformed zone and the OHAZ increased on moving from a W-Re tool to a PCBN tool probably due to the poorer thermal conductivity of the PCBN tool. The associated residual stresses are reported in Part II of this series of articles.
机译:使用一系列不同的横移速度(50至500 mm / min)和两种工具材料(W-Re),生产了一套系统化的HSLA-65钢单道次全渗透摩擦搅拌珠和对接焊缝和PCBN)。使用光学显微镜对焊缝进行显微组织分析,并在整个焊接板横截面上绘制硬度变化图。发现最大和最小硬度取决于焊接移动速度和工具材料。使用PCBN工具在200毫米/分钟的焊接移动速度下,在焊接熔核的马氏体/贝氏体/铁素体混合微结构中观察到的最大硬度为323 Hv(10)。使用PCBN工具在焊接速度为50 mm / min的外部热影响区(OHAZ)中发现最小硬度为179 Hv(10)。焊接中心线到OHAZ的距离随着焊接速度的降低而增加,这是由于输入到焊缝中的热量更大。同样,对于类似的能量输入,从W-Re工具向PCBN工具移动时,转换区和OHAZ的大小可能会增加,这可能是因为PCBN工具的导热性较差。相关的残余应力在本系列文章的第二部分中进行了报道。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第7期|p.2342-2355|共14页
  • 作者单位

    School of Materials, Materials Science Centre, University of Manchester, Manchester, M13 9PL, United Kingdom;

    School of Materials, Materials Science Centre, University of Manchester, Manchester, M13 9PL, United Kingdom;

    ESS Scandinavia, University of Lund, 22350, Lund, Sweden;

    TWI Yorkshire, Wallis Way, Catcliffe, Rotherham, S60 5TZ, United Kingdom;

    School of Materials, Materials Science Centre, University of Manchester, Manchester, M13 9PL, United Kingdom;

    School of Materials, Materials Science Centre, University of Manchester, Manchester, M13 9PL, United Kingdom;

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