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박정웅,이재원,이해우,Park, Jeong Ung,Lee, Jae Won,Lee, Hae Woo 한국강구조학회 2001 韓國鋼構造學會 論文集 Vol.13 No.5
본 연구에서는 실험을 통해 용접이음부의 형상 및 구속도의 크기 등을 변화시켜 측정한 용접 각변형량과 FEM해석을 이용한 해석결과로부터 구속계수를 유도하고 이를 고려한 등가하중을 결정하는 새로운 방법을 제시하였다. 새롭게 제시한 등가하중 결정 방법에 의한 수치해석결과는 실험결과와 잘 일치하여 그 타당성이 검증되었으며, 크기와 형상에 관계없이 대형구조물의 용접변형량을 예측하는데도 확대 적용할 수 있다. 한편 용접이음부 형상에 따른 구속에 대한 영향을 보면 맞대기용접의 경우 구속계수를 고려하지 않으면 실제 변형량보다 변형이 크게 발생하여 구속에 대한 영향을 크게 받으며 필렛용접의 경우 구속계수의 고려 유 무에 관계없이 거의 같은 변형량이 발생함으로써 구속에 대한 영향이 작음을 알 수 있었다. This study presents new method in which to derive the constraint coefficient from the quantity of angular deformation by welding measured by varying the shape of welded joints and the magnitude of constraints by varying the shape of welded joints and the magnitude of constraints by experiment and from the result analyzed by elastic FEM method and then to decide equivalent load with it The numerical analysis results by this new method verified the validity by agreeing with the experimental result on specimen. In addition These results are applicable to the prediction of the quantity of welding deformation for large structures regardless of the size and the shape While in the effects of the constraints based on the shape of welded joints in the case of Butt welding when the constraint coefficients are not considered the deformed quantity is produced larger than one by the experiment and consequently is largely affected by the constraints But in the case of Fillet welding the deformed quantity is seldom affected regardless of considering the constraint coefficients or not.
고주파가열에 의한 Built-up재의 용접종굽힘 변형방지
박정웅,장경호,이해우,안규백,Park Jeong-Ung,Chang Kyong-Ho,Lee Hae-Woo,An Gyu-Baek 대한용접접합학회 2005 대한용접·접합학회지 Vol.23 No.3
Longitudinal deformation is produced by fillet welding during the fabrication of built-up beams and decreases productivity and quality because it needs an extra correcting process. The deformation is caused by welding moment, which is the value multiplied the welding shrinking farce by the distance from the neutral axis. This welding moment can be offset by generating a moment in the same magnitude and in an opposite direction by induction heating. The location and quantity of the induction heating are decided via experiments and simple equations. This study, first, clarifies the creation mechanism of the longitudinal deformation with FEM analysis. Then, we presents the preventive method of this deformation by induction heating basing on the mechanism and verifies its validity through analysis and experiments.
박정웅,이해우,Park Jeong-Ung,Lee Hae-Woo 대한용접접합학회 2005 대한용접·접합학회지 Vol.23 No.4
To estimate welding deformation for large steel structures, either experiment result with small specimen or analysis result of FEM with small numerical model is used. Consequently, it is important to decide the welding length of specimen and numerical model not to have an effect on welding deformation for accurate estimation of whole welding deformation. This study experimentally clarifies the effect of welding length on angular distortion due to welding by varying welding length of specimens, but fixing width and thickness of specimens on V-groove butt welding, fillet welding and bead on plate welding. As a resell the critical welding length on fillet welding and on bead on plate welding is over 500mm and on V-groove butt welding is over 1,000mm.
피로강도 향상을 위한 표면마찰교반법의 가공조건 및 비드형상
박정웅,안규백,김흥주,조병철,Park, Jeong-Ung,An, Gyu-Baek,Kim, Heung-Ju,Jo, Byeong-Cheol 대한용접접합학회 2013 대한용접·접합학회지 Vol.31 No.4
Burr grinding, Tungsten Inert Gas (TIG) dressing, ultrasonic impact treatment, and peening are used to improve fatigue life in steel structures. These methods improve the fatigue life of weld joints by hardening the weld toe, by improving the bead shape, and by creating the compressive residual stress. In this study, a new post-weld treatment method improving the weld bead shape and metal structure at the welding zone using Friction Stir Processing (FSP), a welding process, is proposed to enhance fatigue life. For that, a pin-shaped tool and processing condition employing Friction Stir Processing (FSP) is established through experiments. Experimental results revealed that fatigue life is improved by around 50% compared to as-welded fatigue specimens by reducing the stress concentration at the weld toe and by generating a metal structure finer than that of flux-cored arc welding (FCAW).
고유변형도법에 의한 두께 25mm 맞대기용접부의 두께방향의 잔류응력측정
박정웅,안규백,우완측,허승민,Park, Jeong-Ung,An, Gyu-Baek,Woo, Wanchuck,Heo, Seung-Min 대한용접접합학회 2013 대한용접·접합학회지 Vol.31 No.4
Overlay welding is carried out to improve the corrosion resistance, wear resistance and heat resistance on the surface of the chemical plant and steelmaking plant structures. In overlay welding, control of the bead size and the temperature distribution of weldment are particularly important because that is directly connected to the improvement of quality and productivity. The aim of this study is to model the welding heat source that is very useful to analyze the bead size and temperature distribution of weldment. To find the welding heat source model, numerical analyses are performed by using FE software MSC-marc.