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Experimental and Numerical Modeling of the Stress Rupture Behavior of Nickel-Based Single Crystal Superalloys Subject to Multi-Row Film Cooling Holes

机译:基于镍的单晶超合金的应力破裂行为进行多排薄膜冷却孔的实验和数值模型

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摘要

The stress rupture behavior of nickel-base single crystal superalloys is a primary issue facing aero-engine design, which has been studied for more than 40 years. To a large degree, it is the existence of film cooling holes with the introduction of air cooling techniques that adds the extra challenge to the problem. Using both experimental and numerical methods, we explore here the stress rupture behavior of nickel base single crystal plate specimens subject to multi-row film cooling holes. As the numerical simulation part, finite element analysis using Abaqus was performed. Numerical results reveal that the existence of film-holes causes stress concentration and transforms local stress from uniaxial to multi-axial. For the stress distribution of different types of specimens, we defined a stress multiaxiality factor to quantitatively characterize the degree of the stress complexity and examined its effect on the rupture behaviors of the specimens along with the true stress concentration factor. The test was also carried out and results indicated that the creep rupture lives of one- and two-row specimens turn out to be longer than those of non-hole specimen. However, the three- and four-row configuration showed the opposite trend. Among the geometric parameters of film-hole configuration, film-hole row spacing is a predominant one influencing the creep rupture properties. Numerical results agree well with the fracture positions and shapes of specimens.
机译:镍基单晶高温合金的应力破裂行为是机理发动机设计的主要问题,已经研究了40多年。在很大程度上,它是薄膜冷却孔的存在,引入空气冷却技术,为问题增加了额外的挑战。使用两种实验和数值方法,我们探讨了镍基单晶板试样的应力破裂行为,经过多排薄膜冷却孔。作为数值模拟部分,执行了使用ABAQU的有限元分析。数值结果表明,薄膜孔的存在导致应力集中并将局部应力从单轴转化为多轴。对于不同类型标本的应力分布,我们定义了应力多轴性因子,以定量表征应力复杂度的程度,并检查其对试样的破裂行为以及真正应力浓度因子的影响。还进行了测试,结果表明,一排和两排标本的蠕变破裂寿命变得比非孔样品长。但是,三排和四排配置表现出相反的趋势。在薄膜孔构造的几何参数中,膜孔行间距是影响蠕变破裂性能的主要一个。数值结果与标本的骨折位置和形状吻合良好。

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