• Title/Summary/Keyword: Welding Simulation

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A Study on Temperature Profile and Residual Stress in Pipeline Repair Welding Using Sleeve (슬리브덮개를 이용한 배관 보수용접시 온도분포와 잔류응력에 관한 연구)

  • 김영표;김형식;김우식;홍성호;방인완;오규환
    • Journal of Welding and Joining
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    • v.14 no.5
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    • pp.95-105
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    • 1996
  • Korea Gas Corporation has operated high pressure gas transmission line of about 600 kilometers and, therefore, a series of repair welding processes are required in order to cope with external defects such as dent, gouge, cracking usually due to mechanical attacks. Most of gas pipelines repair processes are performed after completely venting remaining gas. However, in some case, though it is very unusual, repairs require without venting gas. For instance, this case is that damaged pipeline is remedied with split sleeve by welding. In this paper, in an effort to confirm a safe application of the split sleeve welding, residual stress, strain and temperature distributions are evaluated by computer simulation and experiments. The results obtained are as follows : 1) Computer modelling is supposed to be reasonable because microstructure changes due to welding is simulated coincidently as compare to that of real condition. 2) The maximal temperature on inside surface of pipeline is 50$0^{\circ}C$ for the repair welding process. 3) The amount of residual stress is estimated as the stress corresponding to 0.8% strain. 4) The repair process employed is determined to be technically preferable because of its avoiding cracks and fractures in the course of welding.

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Simulation of Al spot welding for Delta spot welding machine (알루미늄 스폿용접을 위한 시뮬레이션에 관한 연구)

  • Chung, Taek-Min;Yu, Ji-Young;Rhee, Se-Hun;Cho, Yong-Jun;Kim, Dong-Cheol;Kang, Mun-Jin
    • Proceedings of the KWS Conference
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    • 2010.05a
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    • pp.98-98
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    • 2010
  • 온실가스와 같은 환경오염으로 인한 규제로 인해 경량화 소재인 알루미늄의 차체 적용이 늘어가는 추세이다. 하지만 알루미늄의 낮은 용접성으로 인하여 기계적 접합법 등이 알루미늄의 접합에 사용되고 있으나 낮은 접합강도 등의 문제가 발생하고 있다. 본 논문에서는 스폿용접 시뮬레이션 프로그램인 SORPAS를 이용하여 건전한 용접부를 얻을 수 있는 알루미늄 합금 용접 조건을 도출하였고 실제 델타스폿 용접기를 이용하여 도출된 실험 결과와 비교 분석하였다. 이를 위하여 전극의 형태에 따른 용접성의 변화를 분석하였고, 전류 및 가압력 프로파일에 따른 용접성의 특징을 관찰하였다. 그리고 각각의 용접 변수들의 변화에 따른 용접 특성 평가 실험을 통하여 각 변수들의 특성을 파악하였고, 용접강도가 높고 용접부에 결함이 존재하지 않는 용접성을 가진 변수조건을 구하였다. 최종적으로 변수 특성 평가 실험의 결과를 바탕으로 Al 6032와 Al 5454에 대하여 넓은 적정용접 영역을 가진 로브 곡선을 도출하였다. 본 연구는 2009년도 서울시 산학연 협력사업(과제번호 10848) 및 BK21의 연구비 지원을 받아 수행 하였음.

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The Effect of Annular Projection Collapse on Tolerance of ECV Assembly (링 프로젝션 돌기의 용입정도가 ECV 조립공차에 미치는 영향)

  • Chang, Hee-Seok;Won, Woong-Yeon;Choi, Duk-Jun;Kim, Jong-Ho;Kim, Jin-Sang;Nahm, Tak-Hyun;Kang, Hee-Jong
    • Journal of Welding and Joining
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    • v.30 no.1
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    • pp.78-84
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    • 2012
  • Due to the inherent dimensional uncertainty, tolerances accumulate in the final assembly. Tolerance accumulation has serious effect on the performance of ECV assembly. This paper proposes a method of tolerance accumulation analysis using Monte Carlo simulation, which includes welding process in assemble process. This method can predict the final tolerance distributions of the completed assembly with the prescribed statistical tolerance distribution of each part to be assembled. With the inclusion of welding, another dimensional uncertainties due to partial melting is to be accounted as well. Partial melting of projection height was included in the tolerance propagation analysis. Verification of the proposed method was performed by making use of Monte Carlo simulation. Monte Carlo simulation results showed promising results in that we can predict the final tolerance distributions in advance before actual assembly process of precision machinery.

Effect of a Coil Shape on an Impulse Velocity of the Electromagnetic Welding (전자기 용접의 충돌 속도에 대한 코일 형상의 영향)

  • Park, H.;Lee, K.;Lee, J.;Lee, Y.;Kim, D.
    • Transactions of Materials Processing
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    • v.28 no.3
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    • pp.135-144
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    • 2019
  • Electromagnetic impulse welding (EMIW) is a type of solid state welding using the Lorentz force generated by interaction between the magnetic field of the coil and the current induced in the workpiece. Although many experimental studies have been investigated on the expansion and compression welding of tube using the EMIW process, studies on the EMIW process of lap joint between flat sheets are uncommon. Since the magnetic field enveloped inside the tube can be controlled with ease, the electromagnetic technique has been widely used for tube welding. Conversely, it is difficult to control the magnetic field in the flat sheet welding so as to obtain the required welding velocity. The current study analyzed the effects of coil shape on the impulse velocity for suitable flat one-turn coil for the EMIW of the flat sheets. The finite element (FE) multi-physics simulation involving magnetic and structural field of EMIW were conducted with the commercial software LS-DYNA to evaluate the several shape variables, viz., influence of various widths, thicknesses, gaps and standoff distances of the flat one-turn coil on the impulse velocity. To obtain maximum impulse velocity, the flat one-turn coil was designed based on the FE simulation results. The experiments were performed using an aluminum alloy 1050 sheets of 1.0mm thickness using the designed flat one-turn coil. Through the microscopic interfacial analysis of the welded specimens, the interfacial connectivity was observed to have no defects. In addition, the single lap joint tests were performed to evaluate the welding strength, and a fracture occurred in the base material. As a result, a flat one-turn coil was successfully designed to guarantee welding with bond strength equal to or greater than the base material strength.

Computer Simulation on the Explosive Welding Characteristics of Dissimilar Materials (이종재료의 폭발용접특성 해석에 관한 컴퓨터 시뮬레이션)

  • 김청균;김명구;손원호
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.17 no.12
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    • pp.3028-3044
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    • 1993
  • A metallic bond of great strength for the same or dissimilar metals can be produced by the explosive welding. The formation of a metallic jet at the interface between the two impacting plates has been simulated using the numerical hydrocode DYNA2D. The mechanism of explosive welding for the wave formation is also analyzed by the computer simulation technique. The microscopic with the experimentally observed behaviour of the explosive welding. The computer simulations of the explosive welding process have proven especially useful for analyzing the mechanism of metallic bones.

Examination on the Mechanical Behavior of Hybrid Laser-MIG Weld (하이브리드 용접부의 역학적 거동 규명)

  • O, Jong-In;Park, Ho-Gyeong;Bang, Han-Seo;Bang, Hui-Seon;Seok, Han-Gil
    • Proceedings of the KWS Conference
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    • 2005.11a
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    • pp.243-245
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    • 2005
  • Recently many research are going on in the field of application of Laser-Arc hybrid welding for superstructures such as shop-structures, transport vehicles etc. However, the study on heat distribution and welding residual stress of hybrid weld by numerical simulation leaves much to be desired. Therefore in this study an optimized welding condition and numerical simulation for hybrid welding by using previous numerical analysis which is used to calculate the heat source for hybrid welding has been analyzed.

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Crack Growth Analysis of Dissimilar Metal Weld using a Numerical Method (수치해석방법을 이용한 이종금속용접부에서의 균열성장해석)

  • Kim, Sang-Chul;Kim, Maan-Won
    • Journal of Welding and Joining
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    • v.28 no.1
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    • pp.100-106
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    • 2010
  • In this paper crack propagation analyses in the dissimilar metal weldment of a nozzle were performed using a finite element alternating method (FEAM). A two-dimensional axisymmetric finite element nozzle model was prepared and welding simulation including the thermal heat transfer analysis and the thermal stress analysis was performed. Initial cracks were inserted at weld and heat affected zone in the finite element model which has welding residual stress distribution obtained from the welding simulation. To calculate crack propagation trajectories of these cracks, a new fatigue crack evaluation module was developed in addition to the previous FEAM program. With the new FEAM fatigue crack evaluation module, crack propagation trajectory and crack growth time were calculated automatically and effectively.

A Study of the Weld Strength of Extru-Rivet Spot Welding Using Electrodes Heated by Electric Resistance (전기저항가열 압출점접합공정에 있어서 접합강도에 관한 연구)

  • Lee, S.J.;Jin, I.T.
    • Transactions of Materials Processing
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    • v.22 no.4
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    • pp.189-195
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    • 2013
  • In this study, the weld strength of extru-rivet spot welding was investigated by simulation and experiment. In order to obtain hot plasticity flow bonding of the two plates by a single rivet, electrodes are used for heating of the two plates and the rivet by electric resistance. Because weld strength is influenced by the temperature in the weld zone, the diameter of the electrodes and the amount of current supplied to the electrodes are important variables. For the simulation, heat distribution and weld strength were calculated using DEFORM-3D. The weld strength in the weld zone was calculated for various values of the experimental parameters. The simulation results showed that the weld strength was the highest when the weld current was 37kA, the electrode diameter was 12mm, and the welding frequency was 90cycle. Aluminum 5052 was used for the experimental study. A total of three aluminum plates, two welding plates with 1mm thickness and one plate with 2mm thickness for the inserting rivet, were used for the experimental extru-rivet spot welding.

FEM Simulation of Lap Joint in $CO_2$ Laser Welding of Zn-coated Steel (아연도금 강판의 $CO_2$ 레이저 용접에서 겹치기 용접의 FEM 시뮬레이션)

  • 김재도;조치용
    • Journal of Welding and Joining
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    • v.16 no.1
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    • pp.52-62
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    • 1998
  • Laser beam welding of zinc-coated steel, especially lap joints, has a problem of zinc vapor produced during welding which has a low vaporization temperature of 906.deg. C. It is lower than the melting temperature of steel (1500.deg. C). The high pressure formed by vaporization of zinc during laser welding splatters the molten pool and creates porosities in weld. During laser lap welds of zinc-coated steel sheets with CW CO$_{2}$ laser the gap size has been analyzed and simulated using a FEM. The simulation has been carried out in the range of gap aetween 0 and 0.16 mm. The vaporized zinc gas has effected to prevent heat from conducting toward the bottom of sheets. In vaporized zinc gas has effected to prevent heat from conducting toward the bottom of sheets. In the case of too small gap size, zinc gas has not ejected and existed between two sheets. Therefore heat was difficult to conduct from the upper sheet to lower sheet and the upper sheet could over-melted. In the case of large gap size the zinc gas has been prefectly ejected but only a part of lower sheet has melted. The optimum range of gap size in the lap welds of zinc-coated steel sheets has been calculated to be between 0.08 and 0.12 mm. According to the comparison of experiment, the simulation is proved to be acceptable and applicable to laser lap welds.

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