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Effects of sizes of ferrite grains and carbide particles on toughness of notched and precracked specimens of low-alloy steels

机译:铁素体晶粒和碳化物颗粒的尺寸对低合金钢的缺口和预裂纹试样的韧性的影响

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摘要

Four point bending (4PB) tests of notched specimens and COD tests of precracked specimens were carried out on two steels; one steel was treated into two groups with the same ferrite grain size but different carbide sizes, the other steel with different ferrite grain sizes but similar carbide sizes. The results of the tests show that the toughness measured in notched specimens is mainly determined by the grain sizes, which define the local fracture stress sigma_f; the size of carbide particle plays a minor role. However, on the contrary, in precracked specimens the toughness is sensitive to the carbide sizes, which affect the critical plastic strain epsilon_(pc) for initiating a crack nucleus; the effect of grain size is indistinct. By these inferences the behavioral discrepancy of large grain steel in improvement of crack fracture toughness while reducing the notch toughness is explained.
机译:在两种钢上进行了带缺口试样的四点弯曲(4PB)试验和预裂纹试样的COD试验。一种钢被分为两组,它们具有相同的铁素体晶粒尺寸,但碳化物尺寸不同,另一种钢具有不同的铁素体晶粒尺寸,但碳化物尺寸相似。测试结果表明,在缺口试样中测得的韧性主要取决于晶粒大小,晶粒大小决定了局部断裂应力sigma_f。碳化物颗粒的大小起着很小的作用。但是,相反,在预裂试样中,韧性对碳化物尺寸敏感,这会影响临界塑性应变ε_pc来引发裂纹核。晶粒尺寸的影响不清楚。通过这些推论,可以解释大晶粒钢在改善裂纹断裂韧性同时降低缺口韧性方面的行为差异。

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