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Effects of Eutectic Carbide Content on Erosion Behaviors in Ductile Cast Irons

机译:共晶碳化物含量对球墨铸铁冲蚀行为的影响

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During the casting process of thin-wall parts, due to fast cooling rate or chemical composition of the ductile iron, iron carbide (cementite) may exist in the microstructure that retards the mechanical properties of the iron greatly. In this study we discuss the effects of eutectic carbide contents in relation to the cooling parameters and the erosion behavior of the erosion incident angle on the casting specimens. Different content of eutectic carbide was produced by varying the cooling rate and silicon content. Solid particle erosion tests were performed using a shot-blasting machine with angular Al_2O_3 particles. The results show that, the largest amount of eutectic carbon (plate-like) exists in the faster cooling rate and lower silicon content. The amount of pearlite and nodules counts produced at lower cooling rates also decreased accordingly. Erosion rate also was found in the same trend that higher carbide content yielded better erosion resistance and lower erosion rates, hut the amount of reduction is lower than the amount of increase on the hardness level. The maximum erosion rate occurred at the incident angle equaling to pi/4.5, and the deepest erosion penetration occurred at an incident angle of pi/3.6 for four comparison specimens. The impinged surface morphologies of four specimens exhibit cutting and plowed furrows at lower incident angles, but the overlapped chippings at higher incident angles. The erosion mechanisms, at medium and high incident angle erosion, show fatigue crack and subsurface lateral crack propagation in higher eutectic carbide specimen, but platelet peeling-off and internal crack and deformation in lower eutectic carbide specimen. The test also revealed that the failure mechanism of the casting thin plates tend to be ductile-brittle fracture.
机译:在薄壁零件的铸造过程中,由于球墨铸铁的快速冷却速度或化学成分,其微观结构中可能存在碳化铁(渗碳体),从而大大阻碍了铁的机械性能。在这项研究中,我们讨论了共晶碳化物含量与冷却参数和铸件试样上冲蚀入射角的冲蚀行为有关的影响。通过改变冷却速率和硅含量可以生产出不同含量的共晶碳化物。使用带有角Al_2O_3颗粒的喷砂机进行了固体颗粒侵蚀测试。结果表明,最大的共晶碳(板状)存在于更快的冷却速度和更低的硅含量中。较低冷却速率下产生的珠光体和结核数量也相应减少。腐蚀速率也以相同的趋势被发现,即较高的碳化物含量会产生更好的耐蚀性和较低的腐蚀速率,但减少量低于硬度水平的增加量。对于四个比较样品,最大腐蚀速率在等于pi / 4.5的入射角处发生,而最深的腐蚀穿透发生在pi / 3.6的入射角处。四个试样的撞击表面形态在较低的入射角处表现出割缝和犁沟,但在较高的入射角处出现重叠的碎屑。在中等和高入射角腐蚀下的腐蚀机理在较高的共晶碳化物试样中显示出疲劳裂纹和地下横向裂纹的扩展,而在较低的共晶碳化物试样中则出现了血小板剥落和内部裂纹及变形。测试还表明,铸造薄板的失效机理倾向于是韧性脆性断裂。

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