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Surface reactivity of thin wall ferritic ductile iron. The effect of nodule count and grinding variables

机译:薄壁铁素体球墨铸铁的表面反应性。结节数和磨削变量的影响

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Thin wall ductile iron (TWDI) castings constitute an attractive alternative to several applications in which the strength to weight ratio becomes a key design variable. In TWDI, the nodule count for a given chemical composition is highly dependent on cooling rate during solidification, and hence on thickness. For mechanical parts, where accurate dimensional tolerance is mandatory, the most common machining process applied is grinding. This process induces significant temperature gradients and surface plastic deformations which could affect service performance, particularly in corrosion environments. In TWDI, surface properties become more relevant due to the high surface area to volume ratio. Therefore, the aim of this paper is to determine the effect of nodular count and grinding conditions on surface reactivity of ferritic TWDI. Electrochemical assays were carried out in a three-electrode cell in a 3.5 wt.% NaCl solution on both polished and ground samples. The results obtained indicate that surface reactivity increases with higher nodular counts and residual plastic strain.
机译:薄壁球墨铸铁(TWDI)铸件是强度与重量比成为关键设计变量的几种应用的有吸引力的替代方案。在TWDI中,给定化学成分的结节数在很大程度上取决于凝固过程中的冷却速率,因此也取决于厚度。对于要求精确尺寸公差的机械零件,最常用的加工过程是磨削。此过程会引起明显的温度梯度和表面塑性变形,这可能会影响使用性能,尤其是在腐蚀环境中。在TWDI中,由于高的表面积体积比,表面性质变得更加重要。因此,本文的目的是确定结节数和磨削条件对铁素体TWDI表面反应性的影响。电化学分析是在三电极电池中的3.5 wt。%NaCl溶液中对抛光和研磨的样品进行的。获得的结果表明,表面反应性随较高的结节数和残余塑性应变而增加。

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