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Study on Short Fatigue Crack Behaviour of LZ50 Steel Under Non-Proportional Loading

机译:非比例载荷下LZ50钢的短疲劳裂纹行为研究

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摘要

The low cycle fatigue tests using the replica technique for LZ50 steel under non-proportional cyclic loading were carried out, and eight groups of effective test data were obtained. The evolution behaviour of short cracks was studied based on the effective short cracks criterion. The results show that short cracks generally originate in the grain or along the grain boundary. At the microstructural short crack stage, the crack propagation is influenced strongly by the microstructure of the material, and the growth rate of the short crack slows down several times according to the number of obstacles encountered. At the physical short crack stage, the crack propagation breaks through the banded structure of pearlite. Thus, the dominant effective short fatigue crack is formed, and the crack growth rate increases rapidly. Based on the modified parameters of the uniaxial short crack model, an approach is presented to calculate the growth rate of short cracks under multi-axial non-proportional loadings, and the new model can consider the non-proportional factor . The fitting results of the multi-axial microstructural obstacles model are compared with test data. The comparison results show that this model can reflect the trend of short fatigue crack propagation rate under non-proportional loadings.
机译:采用仿制技术对LZ50钢在非比例循环载荷下进行了低周疲劳试验,获得了八组有效试验数据。基于有效的短裂纹准则研究了短裂纹的演化行为。结果表明,短裂纹一般起源于晶粒或沿晶界。在微观结构的短裂纹阶段,裂纹的扩展受到材料微观结构的强烈影响,短裂纹的生长速度根据遇到的障碍数量而减慢了几倍。在物理的短裂纹阶段,裂纹的传播穿过珠光体的带状结构。因此,形成了有效的主要的短疲劳裂纹,并且裂纹的生长速度迅速增加。基于单轴短裂纹模型的修正参数,提出了一种计算多轴非比例载荷下短裂纹扩展速率的方法,新模型可以考虑非比例因素。将多轴微结构障碍物模型的拟合结果与测试数据进行比较。比较结果表明,该模型可以反映非比例载荷下疲劳裂纹短时裂纹扩展速率的变化趋势。

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