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Modern fiber laser beam welding of the newly-designed precipitation-strengthened nickel-base superalloys

机译:新设计的沉淀强化镍基高温合金的现代光纤激光束焊接

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In the present research, the modern fiber laser beam welding of newly-designed precipitation- strengthened nickel-base superalloys using various welding parameters in constant heat input has been investigated. Five nickel-base superalloys with various Ti and Nb contents were designed and produced by Vacuum Induction Melting furnace. The fiber laser beam welding operations were performed in constant heat input (100 J mm~(-2)) and different welding powers (400 and 1000 W) and velocities (40 and 100 mm s~(-1)) using 6-axis anthropomorphic robot. The macro- and micro-structural features, weld defects, chemical composition and mechanical property of 3.2 mm weldments were assessed utilizing optical and scanning electron microscopes equipped with EDS analysis and microhardness tester. The results showed that welding with higher powers can create higher penetration-to-width ratios. The porosity formation was increased when the welding powers and velocities were increased. None of the welds displayed hot solidification and liquation cracks in 400 and 1000 W welding powers, but liquation phenomenon was observed in all the heat-affected zones. With increasing the Nb content of the superalloys the liquation length was increased. The changing of the welding power and velocity did not alter the hardness property of the welds. The hardness of welds decreased when the Ti content declined in the composition of superalloys. Finally, the 400 and 1000 W fiber laser powers with velocity of 40 and lOOmms~(-1)have been offered for hot crack-free welding of the thin sheet of newly-designed precipitation-strengthened nickel-base superalloys.
机译:在本研究中,已经研究了在恒定热量输入下使用各种焊接参数对新设计的沉淀增强型镍基高温合金进行的现代光纤激光束焊接。利用真空感应熔炼炉设计生产了五种不同Ti和Nb含量的镍基高温合金。光纤激光束焊接操作在恒定热量输入(100 J mm〜(-2))和不同焊接功率(400和1000 W)和速度(40和100 mm s〜(-1))下使用6轴进行拟人化的机器人。使用配备EDS分析和显微硬度测试仪的光学和扫描电子显微镜,对3.2毫米焊件的宏观和微观结构特征,焊接缺陷,化学成分和力学性能进行了评估。结果表明,高功率焊接可以产生更高的熔深比。当焊接功率和速度增加时,孔隙形成增加。在400和1000 W的焊接功率下,没有焊缝显示出热凝固和液化裂纹,但是在所有热影响区均观察到液化现象。随着超级合金中Nb含量的增加,液化长度也随之增加。焊接功率和速度的变化不会改变焊缝的硬度。当钛合金成分中的钛含量下降时,焊缝的硬度下降。最后,速度为40mm和100mms〜(-1)的400和1000 W光纤激光功率可用于新设计的沉淀强化镍基高温合金薄板的无裂纹热焊接。

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