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Mechanism of Crack Generation in Carbide Surface Layer of Laser-Clad Iron Alloys

机译:激光熔覆铁合金硬质合金表层产生裂纹的机理

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The mechanism of crack generation in the surface chromium carbide layer formed by laser cladding of an iron substrate with a mixed powder of raw materials has been investigated for different laser melting procedures. On the vertical Section of the Specimens Subjected to cross laser scanning, vertical cracks across the surface carbide layer were observed on one side or both sides of the laser melted track, and some interfacial cracks were observed at the interface between the carbide layer and the iron substrate. Stress analysis revealed that vertical cracks may be caused by a tensile Stress generated just after the solidification of the laser melted region due to the restriction of the unmelted carbide on both sides, while interfacial cracks may be generated due to a stress resulting from a Steep temperature gradient beneath the top surface and the difference in the coefficient of thermal expansion between the chromium carbide and the iron substrate.
机译:对于不同的激光熔化程序,已经研究了通过用铁粉与原料混合粉对铁基体进行激光熔覆而在表面碳化铬层中产生裂纹的机理。在样品的垂直截面上,进行交叉激光扫描时,在激光熔化轨迹的一侧或两侧观察到整个表面碳化物层的垂直裂纹,并且在碳化物层和铁之间的界面处观察到一些界面裂纹。基质。应力分析表明,垂直裂纹可能是由于激光熔化区域刚凝固后由于两侧未熔化碳化物的限制而产生的拉伸应力引起的,而界面裂纹可能是由于陡峭温度导致的应力产生的顶部表面下方的梯度和碳化铬与铁基材之间的热膨胀系数差异。

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