首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >NONDESTRUCTIVE MEASUREMENT OF NON-EQUIBIAXIAL WELDING RESIDUAL STRESSES USING INSTRUMENTED INDENTATION TECHNIQUE WITH KNOOP INDENTER
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NONDESTRUCTIVE MEASUREMENT OF NON-EQUIBIAXIAL WELDING RESIDUAL STRESSES USING INSTRUMENTED INDENTATION TECHNIQUE WITH KNOOP INDENTER

机译:带有结点指示器的仪表化压痕技术对非等轴焊接残余应力的非破坏性测量

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Welding residual stresses which are generated in almost all welded structures unavoidably can come to be serious cause of fracture and failure of in-service welded structures. Various techniques have been developed to measure and estimate welding residual stresses such as hole-drilling method, saw-cutting method, X-rayeutron diffraction method and so on. The instrumented indentation technique(IIT) is being attracted to significant alternative as a measurement method of residual stresses because of it's nondestructive characteristic and usefulness of measurement on local scales. Basic concept of IIT to evaluate residual stresses is to compare two indentation load-depth curves that are measured experimentally between under stress-free state and under stressed state. In case of using Vickers indenter, average surface residual stress can be measured quantitatively from analyzing measured load diffrerence. Each x, y directional residual stresses can be evaluate by using Knoop indenter. Indenting each directions with Knoop indenter, difference load-depth curves are measured under non-equibiaxial stress state. Residual stress directionality can be expressed as the function of the load-difference ratio calculated from the load-depth curves and the conversion factor ratio that is constant regardless of indentation depth. This function was verified with the experimental data and the results of finite element analyses on various biaxial stress states, Knoop indentation model showed good agreement between the experimental data and the simulation results.
机译:在几乎所有焊接结构中不可避免地产生的焊接残余应力可能会成为在役焊接结构断裂和失效的严重原因。已经开发出各种技术来测量和估计焊接残余应力,例如钻孔方法,锯切方法,X射线/中子衍射方法等。仪器压痕技术(IIT)由于其无损的特性和在局部范围内进行测量的实用性而作为一种残余应力的测量方法而吸引了许多替代方法。 IIT评估残余应力的基本概念是比较两条压痕载荷-深度曲线,这些曲线是在无应力状态下和在应力状态下通过实验测得的。如果使用维氏压头,则可以通过分析测得的载荷差来定量测量平均表面残余应力。可以使用努氏压头评估每个x,y方向的残余应力。使用努氏压头对每个方向进行压痕,在非等轴应力状态下测量了不同的载荷-深度曲线。残余应力方向性可以表示为由载荷深度曲线计算出的载荷差比和与压痕深度无关的恒定转换系数的函数。实验数据验证了该功能,并在各种双轴应力状态下进行了有限元分析,努氏压痕模型表明实验数据与模拟结果吻合良好。

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