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Mechanical Property of Ultrafine Elongated Grain Structure Steel Processed by Warm Tempforming and Its Application to Ultra-High-Strength Bolt

机译:温暖的柔性加工超细细长晶粒结构钢的力学性能及其在超高强度螺栓的应用

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Our strategy is to enhance the fracture property of ultra-high-strength low-alloy steels with a yield strength of 1.4 GPa or over by arresting the propagation of brittle cracks in hierarchical, anisotropic, and ultrafine-grained structures. This provides a fail-safe design in addition to suppressing crack initiation. The present article reviews the strength, ductility, toughness, and delayed fracture resistance of ultra-high-strength low-alloy steels with ultrafine elongated grain structures processed by the deformation of tempered martensitic structures at elevated temperatures (referred to as warm tempforming ). The evolution of heterogeneous microstructures during warm tempforming using multi-pass caliber rolling is discussed, as are the microstructural factors controlling the strength and fracture properties of warm tempformed steels. Furthermore, we apply warm tempformed steels with ultrafine elongated grain structures to the fabrication of ultra-high-strength bolts.
机译:我们的策略是通过在分层,各向异性和超细粒子结构中的脆性裂缝的繁殖中增强超高强度低合金钢的屈服强度为1.4 gpa的屈服强度。除了抑制裂纹启动之外,这提供了故障安全设计。本文通过在升高的温度下的升温马氏体结构的变形(称为温暖的齿轮成形)的变形(称为暖温度),摘要超高强度低合金钢的强度,延展性,韧性和延迟断裂抗断裂性抗断裂性抗断裂性抗断裂抗性(称为

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