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Influence of thermomechanical processing and heat treatments on tensile and Charpy impact properties of B and Cu bearing high-strength low-alloy steels

机译:热机械加工和热处理对含B和Cu的高强度低合金钢的拉伸和夏比冲击性能的影响

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摘要

High-strength low-alloy steels containing different B and Cu contents were fabricated by thermomechanical processing and heat treatments such as accelerated cooling, intercritical annealing, and tempering, and then tensile and Charpy impact tests were conducted on them in order to investigate the mechanical properties in terms of yield strength, deformability, and toughness. The test results revealed that the B-added acceleratedly cooled specimens composed mostly of lath martensite had relatively high yield strength, poor deformability and low-temperature toughness in contrast to the B-free acceleratedly cooled specimens consisting mainly of granular bainite and degenerate upper bainite. When the B-added acceleratedly cooled specimens were tempered, the yield strength increased to a certain degree and the low-temperature toughness was remarkably improved, but the deformability severely deteriorated. However, the B-added intercritically annealed specimens provided an attractive balance of yield strength, deformability, and low-temperature toughness due to the dual-phase microstructure of fine ferrite and martensite with lath type morphology.
机译:通过加速冷却,临界退火和回火等热机械加工和热处理工艺,制备了含不同硼和铜含量的高强度低合金钢,然后对其进行了拉伸和夏比冲击试验,以研究其机械性能。就屈服强度,可变形性和韧性而言。试验结果表明,与主要由粒状贝氏体和简并上贝氏体组成的无硼快速冷却试样相比,含硼的快速冷却试样主要由板条马氏体组成,具有较高的屈服强度,较差的变形性和低温韧性。对添加了B的急冷试样进行回火后,屈服强度提高到一定程度,低温韧性显着提高,但变形性严重降低。然而,由于细铁素体和马氏体具有板条型形态的双相微观结构,添加了B的临界退火样品在屈服强度,可变形性和低温韧性之间提供了吸引人的平衡。

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