The most comprehensive and particularly reliable method for non-destructively measuring the residual stress of the surface layer of metals is the sin method. When X-rays were used the relationship of sin measured on the surface layer of the processing metal did not show linearity when the sin method was used. In this case, since the effective penetration depth changes according to the changing direction of the incident X-ray, becomes a sin function. Since cannot be used as a constant, the relationship in sin cannot be linear. Therefore, in this paper, the orthogonal function method according to Warren’s diffraction theory and the basic profile of normal distribution were synthesized, and the X-ray diffraction profile was calculated and reviewed when there was a linear strain (stress) gradient on the surface. When there is a strain gradient, the X-ray diffraction profile becomes asymmetric, and as a result, the peak position, the position of half-maximum, and the centroid position show different values. The difference between the peak position and the centroid position appeared more clearly as the strain (stress) gradient became larger, and the basic profile width was smaller. The weighted average strain enables stress analysis when there is a strain (stress) gradient, based on the strain value corresponding to the centroid position of the diffracted X-rays. At the 1/5 max height of X-ray diffraction, the position where the diffracted X-ray is divided into two by drawing a straight line parallel to the background, corresponds approximately to the centroid position.
본 논문에서는 레이저기반 응력측정을 위한 비접촉식 로드셀을 개발을 위하여, 실내실험을 통하여 기술을 검증하고, 실규모 실험을 통하여 문제점을 파악하였으며, 최종적으로 현장적용에 적합한 응력측정용 비접촉식 로드셀 프로토타입을 개발하였다. 이를 위하여, 중심공 압축 타입의 로드셀 제작에 사용되는 로드셀 몸체 표면에 용사코팅기술을 이용하여 알루미나를 도포하고, 레이저를 기반으로한 압분광법을 이용하여, 비접촉식으로 응력을 계측하였다. 이때, 인가되는 응력과 스펙트럼 이동간의 관계가 선형임을 확인하였다. 해당 기술의 현장 적용성 확인을 위하여, 실규모 프리스트레스 콘크리트 시편을 제작하고, 레이저를 조사하여 인가된 응력을 확인하는 과정에서, 반복적인 상황 하에서 레이저 조사 위치가 동일해야 함을 확인하였다. 이를 보완하기 위하여 프로브를 고정할 수 있는 케이싱이 포함된 로드셀 프로토타입을 제작하였고, 실내일축압축시험을 통하여 압축력과 스펙트럼 이동간의 선형성을 확인하였다. 따라서, 본 연구를 통하여 개발된 비접촉식 로드셀을 이용하여, 압축력을 효과적으로 측정할 수 있을 것으로 기대된다.
Steel deck plate is a preferable structure in the long span bridge construction because of the weight decrease and the aesthetic enhancement. But its orthogonal anisotropic structure is connected with various subsidiary materials so that the fatigue transfer is complex. This study will be conducted with the a few strain gauge is installed in the weak range of hot spot stress where the actual fatigue crack is anticipated and will compare it with the fatigue crack range and the allowable fatigue stress category of the steel deck plate in home and abroad