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Influence of Silicon Content on the Mechanical Properties of As-cast and Heat Treated Samples of Nodular Cast Iron Grade EN-1563-GJS-400-18-LT

机译:硅含量对EN-1563-GJS-400-18-LT级球墨铸铁铸态和热处理样品力学性能的影响

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摘要

The effect of silicon content on the mechanical properties of as-cast and heat treated samples of nodular cast iron grade EN-GJS-400-18-LT, specified according to EN-1563, was studied. The presence of manganese and other pearlite forming elements and low nodule count prevented the formation of as--cast fully ferritic matrix in the samples even with silicon content over 3,0 %. Increase in silicon content, in examined range from 2,0 to 3,0 %, caused a mild reduction of hardness and tensile strength in as-cast samples, yield strength stayed unchanged, while elongation values progressively increase. The effect of silicon content variation on tensile strength and hardness in heat treated samples was the quite opposite, which can be attributed to ferrite strengthening by silicon. The probability of attaining the specified values of impact toughness, tested at -20 ℃, was increased by ferritizing annealing treatment of the samples and limiting of final silicon content in the nodular cast iron below 2,6%.
机译:研究了硅含量对根据EN-1563规定的球墨铸铁级EN-GJS-400-18-LT铸态和热处理样品的机械性能的影响。锰和其他珠光体形成元素的存在以及较低的结节数,即使硅含量超过3.0%,也无法在样品中形成铸态全铁素体基体。硅含量的增加(在2.0%至3.0%的范围内)导致铸态样品的硬度和拉伸强度略有下降,屈服强度保持不变,而伸长率值则逐渐增加。硅含量变化对热处理样品中拉伸强度和硬度的影响是完全相反的,这可以归因于硅对铁素体的强化。通过对样品进行铁素体退火处理并将球墨铸铁中的最终硅含量限制在2.6%以下,可以提高在-20℃下测试达到规定的冲击韧性值的可能性。

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