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In Situ Fracture Observation and Fracture Toughness Analysis of Pearlitic Graphite Cast Irons with Different Nodularity

机译:不同球度珠光体石墨铸铁的原位断裂观察和断裂韧度分析

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摘要

Effects of micro-structural modification and microfracture mechanisms on fracture toughness of pearlitic graphite cast irons with different nodularity were investigated by in situ observation of microfracture process. Six pearlitic graphite cast irons were fabricated by adding a small amount of .Mg as a nodularizing element for graphite, and their microstractures including pearlite, ferrite, graphite, and eutectic carbide were analyzed. Most of ferrites were observed in a layer shape around graphites because of carbon-depleted zones formed near graphites. As the nodularity and noddle count increased, fracture toughness linearly increased in the cast irons except the iron containing many fine graphites. According to in situ observation of microfracture process, cracks initiated at nodular graphites and carbides even at a small load, and then propagated readily through the adjacent graphites or carbides, thereby resulting in the lowest fracture toughness. The cast iron having widely spaced graphites and ferrite layers thickly formed around graphites showed the highest fracture toughness because of the blocking of crack propagation by ductile ferrite layers and the crack blunting and deflection by graphites, which was also confirmed by the R-curve analysis.
机译:通过微断裂过程的原位观察,研究了微结构改性和微断裂机理对不同球度的珠光体石墨铸铁断裂韧性的影响。通过添加少量的.Mg作为石墨的球化元素,制造了六种珠光体石墨铸铁,并分析了它们的微观组织,包括珠光体,铁素体,石墨和共晶碳化物。由于在石墨附近形成了贫碳区,因此在石墨周围观察到的大多数铁素体都呈层状。随着球化度和球化度的增加,铸铁中的断裂韧度线性增加,除了含许多细石墨的铸铁。根据微断裂过程的原位观察,即使在很小的载荷下,裂纹也始于球状石墨和碳化物,然后很容易地传播通过相邻的石墨或碳化物,从而导致最低的断裂韧性。具有宽间隔的石墨和在石墨周围厚厚地形成的铁素体层的铸铁表现出最高的断裂韧性,这是由于延性的铁素体层阻止了裂纹扩展以及石墨导致的裂纹钝化和挠曲,这也通过R曲线分析得到了证实。

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