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APPLICATION OF INSTRUMENTED INDENTATION TECHNIQUE FOR SMALL SCALE TESTING

机译:仪表指示技术在小规模测试中的应用

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Instrumented indentation technique (IIT) is a novel tool to estimate mechanical properties such as tensile properties, residual stress and fracture toughness by analyzing indentation load-depth curve measured during loading-unloading of indentation. It can be applied directly in small-scale and localized sections of pressure vessel and pipeline since the preparation of specimen is very easy and the experimental procedure is feasible and nondestructive. We present the principles developed for measuring mechanical properties using IIT; the tensile properties by defining the representative stress and strain underneath a spherical indenter, the residual stress near the weldments using the stress-insensitive contact hardness model, and the fracture toughness of ductile metal based on critical indentation energy model. The experimental results from IIT were verified by comparing the results from the conventional methods such as uniaxial tensile test for tensile properties, mechanical saw-cutting and hole-drilling methods for residual stress, and CTOD test for fracture toughness. In particular, the applications of IIT in small scale materials and localized sections of the pressure vessel and pipeline in-use and in-fields are presented.
机译:仪器压痕技术(IIT)是一种新颖的工具,可通过分析压痕在加载/卸载过程中测得的压痕载荷-深度曲线来估算机械性能,例如拉伸性能,残余应力和断裂韧性。由于样品的制备非常容易并且实验过程可行且无损,因此可直接用于压力容器和管道的小范围和局部区域。我们将介绍为使用IIT测量机械性能而开发的原理。通过定义球形压头下的代表应力和应变,使用应力不敏感接触硬度模型定义焊件附近的残余应力以及基于临界压痕能量模型的可延展金属的断裂韧性,来定义拉伸性能。通过比较常规方法的结果来验证IIT的实验结果,这些方法包括:拉伸性能的单轴拉伸测试,残余应力的机械锯切和钻孔方法以及断裂韧性的CTOD测试。特别是,介绍了IIT在小规模材料以及压力容器和管道的局部使用和现场使用中的应用。

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