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Effect of Boron and Cross-Section Thickness on Microstructure and Mechanical Properties of Ductile Iron

机译:硼和截面厚度对球墨铸铁组织和力学性能的影响

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摘要

Eeffect of Boron addition on the microstructure and mechanical properties of ductile iron, GJS-500-7 grade was studied. Three cast batches with the Boron content of 10, 49 and 131ppm were cast in a casting geometry containing plates with thicknesses of 7, 15, 30, 50 and 75mm. Microstructure analysis, tensile test, and hardness test were performed on the samples which were machined from the casting plates. Addition of 49 ppm Boron decreased pearlite fraction by an average of 34±6% in all the cast plates. However, minor changes were observed in the pearlite fraction by increasing Boron from 49 to 131 ppm. Variation in the plate thickness did not affect the pearlite fraction. The 0.2% offset yield and ultimate tensile strength was decreased by an average of 11±1% and 18±2%, respectively. Addition of 49 ppm Boron decreased Brinell hardness by 16±1%, while 11±2% reduction was obtained by addition of 131ppm Boron.
机译:研究了硼对GJS-500-7牌号球墨铸铁组织和力学性能的影响。硼含量分别为10、49和131ppm的三批铸件以具有7、15、30、50和75mm厚度的板的铸造几何形状进行铸造。对由铸造板加工而成的样品进行了显微组织分析,拉伸试验和硬度试验。在所有铸板中,添加49 ppm的硼会使珠光体分数平均降低34±6%。但是,通过将硼从49 ppm增加到131 ppm,可以观察到珠光体部分的微小变化。板厚度的变化不影响珠光体分数。 0.2%的胶印屈服和极限抗拉强度分别平均降低11±1%和18±2%。硼含量为49 ppm时,布氏硬度降低了16±1%,硼含量为131 ppm时,布氏硬度降低了11±2%。

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