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Effect of cooling rate and powder characteristics on the soundness of heat affected zone in powder welding of ductile cast iron

机译:球墨铸铁粉末焊接中冷却速度和粉末特性对热影响区健全性的影响

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摘要

In an application concerning large forming dies made of ductile cast iron, a number of failures were reported at the location of some of the weld repairs. Metallurgical investigations pointed out the cause to be mainly related to the presence of micro cracks in the heat affected zone (HAZ) of the oxyacetylene powder weld surface repairs. Using controlled cooling conditions in order to simulate repair of large forming dies, powder welding with nickel base self-fluxing alloys was carried out. It is shown that in cer tain conditions involving relatively high cooling rates which could be encountered when welding very 0large parts with standard preheats combined with the use of the harder nickel base powders, micro cracks can form in the HAZ of ductile cast iron. The cracking process is proposed to be dominated by the stress fields induced on the toe of weld deposit by the shrinkage effect of the hard nickel base alloy. The cracks initiate mostly at the interface of graphite nodules and then propagate through the martensitic matrix.
机译:在涉及由球墨铸铁制成的大型成型模具的应用中,据报道在某些焊缝修复处发生了许多故障。冶金研究指出,原因主要与氧乙炔粉末焊缝表面修复的热影响区(HAZ)中存在微裂纹有关。为了模拟大型成形模具的修复,使用受控的冷却条件,进行了镍基自熔合金的粉末焊接。结果表明,在某些情况下,当使用标准预热焊接非常大的零件并结合使用较硬的镍基粉末时,可能遇到较高的冷却速度,在球墨铸铁的热影响区会形成微裂纹。提出的开裂过程主要受硬镍基合金的收缩作用在焊缝趾部上引起的应力场的影响。裂纹主要在石墨结节的界面处开始,然后通过马氏体基体扩展。

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