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首页> 外文期刊>Archives of Metallurgy and Materials >Experimental – Numerical Analysis of Stress State in Front of the Crack Tip of Modified and Unmodified G17CrMo5-5 Cast Steel by Rare Earth Metals in a Brittle-Ductile Transition Region
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Experimental – Numerical Analysis of Stress State in Front of the Crack Tip of Modified and Unmodified G17CrMo5-5 Cast Steel by Rare Earth Metals in a Brittle-Ductile Transition Region

机译:脆性-塑性过渡区中稀土金属改性和未改性G17CrMo5-5铸钢裂纹尖端前的应力状态的实验分析

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摘要

In the paper presented experimental data and numerical analysis of stress distribution in front of the crack of two melts of low-alloy G17CrMo5-5 cast steel-modified (M) by rare earth metals and original, unmodified (UM) in the temperature range, according to the brittle-ductile transition region. Experimental tests include determination of the tensile properties and fracture toughness characteristics for the UM and M cast steel. Numerical analysis includes determination of stress distribution in front of the crack at the initial moment of the crack extension. In the numerical computations, experimentally tested specimens SEN(B) were modeled. The true stress-strain curves for the UM and M cast steel were used in the calculation. It was shown that the maximum of the opening stresses at the initial moment of the crack extension occurs in the axis of the specimens and reaches similar level of about 3.5??0 for both UM and M cast steel. However, the length of the critical distance, measured for stress level equal 3??0, is great for the M in comparison to the UM cast steel. Also was shown that the UM cast steel increased the level of the stress state triaxiality parameters that resulted in a decrease of fracture toughness.
机译:在本文中,我们给出了在温度范围内的两种低合金G17CrMo5-5铸钢(经稀土金属改性和未经改性的原始UM)熔体的裂纹前的实验数据和应力分布的数值分析,根据脆性-韧性过渡区域。实验测试包括确定UM和M铸钢的拉伸性能和断裂韧性特性。数值分析包括确定裂纹扩展初始时刻裂纹前的应力分布。在数值计算中,对经过实验测试的标本SEN(B)进行了建模。计算中使用了UM和M铸钢的真实应力-应变曲线。结果表明,裂纹扩展开始时的最大张应力出现在试样的轴线上,并且对于UM和M铸钢都达到了约3.5≤0的相似水平。但是,与UM铸钢相比,对于M来说,临界应力的长度(对于应力水平等于3 ?? 0的测量)更大。还表明,UM铸钢提高了应力状态三轴性参数的水平,导致断裂韧性降低。

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