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THE SPHERICAL INDENTATION APPROACH FOR FRACTURE TOUGHNESS EVALUATION: A STUDY BASED ON THE ENERGY RELEASE RATE

机译:断裂韧性评价的球形压痕方法:基于能量释放率的研究

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In this study, we investigated the drawbacks of previous studies regarding the evaluation of fracture toughness from spherical indentation tests (SITs). This was achieved by an examination of the material damage mechanism during indentation tests, uniaxial tensile tests, and Mode I/II fracture tests. A new approach based on the energy release rate was proposed in this study to evaluate the fracture toughness of ductile metals. Scanning electron microscope (SEM) observations revealed that the mechanism for material damage during an indentation test was different with the material damage in uniaxial tensile tests and Mode I fracture tests, but similar to that in Mode II fracture tests. Thus, the energy release rate during SITs should be correlated with J_(IIC). Compared with previous studies, this new proposed method was more consistent with the actual damage mechanism and did not rely on the specific critical damage values. Experiments on SA508, SA533, 15CrMoR, and S30408 revealed that the maximum error from this energy release rate-based approach was no more than 13% when compared with their conventional counterparts (compact tension tests), and thus can meet the precision requirement of engineering applications.
机译:在这项研究中,我们研究了对来自球形压痕试验(坐姿)评估骨折韧性的先前研究的缺点。这是通过检查压痕试验,单轴拉伸试验和模式I / II裂缝试验中的材料损伤机制来实现的。本研究提出了一种基于能量释放率的新方法,评价延性金属的断裂韧性。扫描电子显微镜(SEM)观察表明,对于压痕试验过程中的材料损坏的机理与在单轴拉伸测试和模式I断裂试验的物质损失不同,但在模式II断裂试验相似。因此,坐姿期间的能量释放速率应与J_(IIC)相关。与先前的研究相比,这种新的方法与实际损坏机制更符合,并且不依赖于特定的临界损伤值。 SA508,SA533,15Crmor和S30408上的实验表明,与传统对应物(紧凑张力试验)相比,基于能源释放率的方法的最大误差不超过13%,因此可以满足工程的精确要求应用程序。

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