首页> 外文期刊>Transactions of the Indian Institute of Metals >Influence of Manganese and Boron Alloying and Processing Conditions on the Microstructure and the Mechanical Properties of 0.4% Carbon Steels
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Influence of Manganese and Boron Alloying and Processing Conditions on the Microstructure and the Mechanical Properties of 0.4% Carbon Steels

机译:锰和硼合金化和加工条件对0.4%碳钢微观结构的影响及力学性能

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摘要

The performance of three steels with 0.4% carbon content was evaluated in the warm forging condition and benchmarked against the as-hot-deformed and hardening and tempering condition. The steels include a plain carbon steel S45C, a carbon-manganese steel 40Mn5 and a carbon-manganese-boron-alloyed steel 15B41. Such lean alloyed steels are preferred by automotive companies for component manufacture. In the as-hot-rolled condition, the steel with a ferrite pearlite microstructure shows, a good strength and lowest impact toughness. In the hardened and tempered condition at 650 A degrees C, a tempered martensite microstructure with a moderate improvement in strength and significant enhancement in impact toughness, than the hot-rolled steel, is obtained. The steel subjected to warm forging at 760 A degrees C, shows a ferrite pearlitic microstructure with a moderate improvement in strength but with the highest impact toughness level. The microstructure evolution at the various processing conditions has been brought out and correlated with the mechanical properties. The relative merits in processing the steels at the different processing conditions show that warm forging is an effective means to achieve the highest strength toughness combination in a ferrite pearlitic matrix.
机译:在温暖的锻造条件下评估具有0.4%碳含量的三个钢的性能,并以抗变形和硬化和回火条件为基准测试。钢包括普通碳钢S45C,碳锰钢40MN5和碳 - 锰 - 硼合金钢15B41。这种精益合金钢是由汽车公司进行组件制造的。在以热轧条件下,具有铁氧体珠光体微观结构的钢,强度良好和最低的冲击韧性。在650℃的硬化和回火条件下,获得了具有中等改善的钢化马氏体微观结构,其强度的强度和显着增强,而不是热轧钢。在760℃下进行温暖锻造的钢,显示了铁氧体珠光体微观结构,其强度适中,但具有最高的冲击韧性水平。已经产生了各种加工条件的微观结构演化并与机械性能相关。在不同加工条件下加工钢的相对优点表明,温暖的锻造是在铁氧体珠光体基质中实现最高强度韧性组合的有效手段。

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