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Impact toughness and microstructure of continuous steel wire-reinforced cast iron composite

机译:连续钢丝增强铸铁复合材料的冲击韧性和组织

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摘要

In this study, improvement of impact toughness of gray cast iron by reinforcing steel fiber was investigated. The composite material was produced by sand mould casting technique. Then, normalizing heat treatment was applied to the specimens at various temperatures (800℃, 850 ℃, and 900 ℃). Charpy impact toughness tests were conducted at the temperature of -80℃, 0℃, and 27℃. The results show that impact toughness of the gray cast iron is increased by reinforcing low carbon steel wire. As the test temperature is decreased, impact toughness of the composite specimens decreases considerably. It is noted that graphite free transition regions with high hardness were observed due to the carbon diffusion from cast iron to steel fiber. It is considered that interphase (fine pearlitic phase without graphite flakes) and bond quality in transition region contribute to increase in impact toughness of the cast iron composites.
机译:在这项研究中,研究了通过增强钢纤维来改善灰口铸铁的冲击韧性。该复合材料是通过砂模铸造技术生产的。然后,在不同温度(800℃,850℃和900℃)下对试样进行正火热处理。夏比冲击韧性试验在-80℃,0℃和27℃的温度下进行。结果表明,通过增强低碳钢丝增强了灰口铸铁的冲击韧性。随着测试温度的降低,复合材料试样的冲击韧性大大降低。注意,由于碳从铸铁扩散到钢纤维,观察到具有高硬度的无石墨过渡区。可以认为,过渡区域的中间相(没有石墨薄片的细珠光体相)和结合质量有助于铸铁复合材料的冲击韧性的提高。

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