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Determination method of excellent steel in excellent steel and Crack Propagation required characteristic has been a method for manufacturing the same, and fatigue resistance to crack propagation characteristics-out resistance to fatigue

机译:优良钢中的优良钢及其裂纹扩展所需特性的测定方法是其制造方法,其耐疲劳裂纹扩展性-耐疲劳性

摘要

PROBLEM TO BE SOLVED: To provide a high strength steel material excellent in fatigue crack propagation property.SOLUTION: There is provided a high strength steel material having a structure containing a composition containing, by mass%, C: 0.02 to 0.4%, Si: 0.01 to 1.0%, Mn: 0.5 to 3.0%, P: 0.05% or less, S: 0.05% or less, Sol.Al: 0.10% or less, and the balance: Fe with inevitable impurities, and a bainite phase and/or a martensite phase having the total area percentage of over 50% as main phase and balance other phase (including 0%), and having excellent low temperature toughness with yield strength: 325 MPa or more and vTrs of -20°C or less. The fatigue crack propagation property of steel material is improved by setting a ratio between crack tip plastic region dimension during propagating fatigue crack γ(={(K)×10/(2&pgr;&sgr;)}×(1-2&ngr;)(μm)) and an effect crystal unit MU, γ/MUat 10 or less. Also quality of the fatigue crack propagation property of a composite structure steel material is determined by γ/MU.
机译:解决的问题:提供一种疲劳裂纹扩展特性优异的高强度钢材。解决方案:提供一种具有以质量%计含有C:0.02〜0.4%的Si的组成的组织的高强度钢材。 0.01〜1.0%,Mn:0.5〜3.0%,P:0.05%以下,S:0.05%以下,Sol.Al:0.10%以下,余量:Fe不可避免的杂质,贝氏体相和/或马氏体相的总面积率为50%以上作为主相并平衡其他相(包括0%),并且具有优异的低温韧性且屈服强度为325MPa以上且vTrs为-20℃以下。通过设定传播疲劳裂纹时的裂纹尖端塑性区域尺寸之比γ(= {((K)×10 /(2&pgr;&sgr;)}}×(1-2&ngr)(),可以提高钢材的疲劳裂纹扩展性。 (μm))和效果晶体单元MU,γ/ MUat 10以下。复合结构钢材的疲劳裂纹扩展特性的质量也由γ/ MU确定。

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