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Brittle fracture of high-strength steels at very low temperatures

机译:高强度钢在极低温下的脆性断裂

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High-strength steels are used to increase the load carrying capacity of components. However, to guarantee a safe design, it is also necessary to combine high strength with adequate fracture toughness. In this paper, fracture toughness of three high-strength steels with yield strengths ranging from 460 to 890 MPa has been studied at very low temperatures. Taking into account experimental evidence, a new mechanism of cleavage at very low temperatures is proposed. This mechanism considers the possibility of reaching the ideal strength (the stress at which the lattice of a single crystal losses its stability) in the immediate vicinity of the fatigue crack tip. Moreover, a computational model able to calculate the external load needed to produce a catastrophic failure of these steels has been developed.
机译:高强度钢用于增加部件的承载能力。但是,为了确保安全的设计,还必须将高强度与足够的断裂韧性相结合。本文研究了在低温下三种屈服强度为460到890 MPa的高强度钢的断裂韧性。考虑到实验证据,提出了一种在极低温度下裂解的新机制。该机制考虑了在疲劳裂纹尖端附近立即达到理想强度(单晶晶格失去稳定性的应力)的可能性。此外,已经开发了能够计算产生这些钢的灾难性破坏所需的外部载荷的计算模型。

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