• 제목/요약/키워드: Butt-welded joints

검색결과 80건 처리시간 0.025초

마찰교반접합한 알루미늄 합금과 스테인리스 강 이종접합부 계면 조직 및 접합부 강도 (Interface Analysis and Mechanical Properties of Friction Stir Welded Dissimilar joints between Stainless steel and AI alloy)

  • 이원배;이창용;연윤모;정승부
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2005년도 추계학술발표대회 개요집
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    • pp.189-191
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    • 2005
  • Dissimilar joining of AI 6013-T4 alloys and austenite stainless steel was carried out using friction stir welding technique. Microstructures near the weld zone and mechanical properties of the joint have been investigated. Microstructures in the stainless steel side and AI alloy were depended on the thermo-mechanical condition which they received. TEM micrographs revealed that the interface region was composed of the mixed layers of elongated stainless steel and ultra-fine grained AI alloy and intermetallic compound layer which was identified as the $Al_{4}Fe$ with hexagonal close packed structure. Mechanical properties were lower than those of 6013 AI alloy base metal, because tool inserting location was deviated to AI alloy from the butt line, which resulted in the lack of the stirring.

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프루브 길이에 따른 A5052 겹치기 마찰교반접합 특성 (Characteristics of Friction Stir Lap Welded A5052 with Probe Length)

  • 고영봉;강채원;최준웅;박경채
    • 한국표면공학회지
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    • 제42권6호
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    • pp.294-300
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    • 2009
  • The Friction Stir Welding (FSW) has mainly been used for making butt joints in Al alloys. The development of Friction Stir Lap Welding (FSLW) would expand the number of applications. In this study, for effective application on thin aluminum alloy lap joint, non-heat treatment A5052 alloys were joined by FSLW with the length of probe 2.3 mm and 3.0 mm. Investigating the characteristics of joint area showed the results were as below ; When the length of probe was 2.3 mm, good joint area was formed at all welding condition except for 600 rpm-700 mm/min. In the case of 3.0 mm probe length, there was formed good joint area without defects at 1500 rpm-100 mm/min. The width of joint area, position and size of defects were very important factors for FSLW, due to heat input and stirring intensity.

십자형 필릿 용접부에서의 피로파괴 형상과 특성 (Patterns and Characteristics of Fatigue Failure in Cruciform Fillet Weld Joint)

  • 이용복;정준기;박상흡
    • Journal of Welding and Joining
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    • 제29권4호
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    • pp.67-72
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    • 2011
  • The proportion of the welding in the production process of machinery, buildings and marine structures is increasing and the joining are mainly conducted by butt and fillet weld. In the case of fillet weld, the shape of structures is complicated depending on the constraint on the geometry of the structures, therefore, the full penetration is mostly difficult. Accordingly, it is necessary to establish safe and economical criteria of design of the structures through the strength based on the penetration state of the fillet weld. Patterns of fatigue failure in cruciform fillet weld jont appear in the form of the root, toe and mixed failure. In the case of toe and mixed failure, the fatigue strength is higher than root failure. Therefore, we have to make the enough depth of penetration or perform the welding work through improving the fatigue strength of cruciform joints in welded structures. So it is necessary to optimize the penetrated depth in the range of the possible mixed failure and find the way in the cost-effective design to lessen the amount of the welding work.

피로강도 향상을 위한 표면마찰교반법의 가공조건 및 비드형상 (Bead Shape and Conditions of Friction Stir Processing to Improve Fatigue Strength)

  • 박정웅;안규백;김흥주;조병철
    • Journal of Welding and Joining
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    • 제31권4호
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    • pp.73-79
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    • 2013
  • 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).

초정밀 레이저용접을 이용한 티타늄 안경테 제조 (Manufacturing Ti-Alloy Frames of Classes with High-Precision Laser Beam Welding)

  • 황용화;김수성;이형권;민덕기;고진현
    • 한국산학기술학회논문지
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    • 제1권2호
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    • pp.1-8
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    • 2000
  • 본 연구에서는 상용 순수 티타늄 소재를 사용하여 안경테를 레이저 빔 용접으로 제조하기 위하여 광섬유로 전송되는 가변 펄스곡 80 ㎲-10 ms. 최대 평균출력 200 W, 첨두출력 12 kW와 최대 펄스에너지 50J성능의 초정밀 Nd:YAG 레이저 용접장치를 설계 제작하고 이 장치를 사용하여 안경테 제조를 위한 최적 용접조건을 선정하기 위한 실험을 수행하였다. 안경테를 위한 T이음 및 맞대기 이음형상을 용접할 때 평균출력, 광섬유 형태, 초점위치 등에서 용입상태와 용접결함을 조사하여 최적 용접조건을 선정하였고 안경테 부품 장석(temple hinge)과 다리, 톱바를 레이저 용접으로 시제품을 제작하였다.

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고상접합을 이용한 Al/Mg 합금의 이종 용접 (Solid State Joining Processes for Dissimilar Joints of Mg/Al Alloys)

  • 김흥주;김성욱;천창근;장웅성
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.41-41
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    • 2009
  • To evaluate the applicability of dissimilar joining between Mg and Al alloys in automobile manufacturing process, solid state joining processes such as magnetic pulse welding(MPW), friction stir welding(FSW) and friction spot joining(FSJ) were attempted successfully. MPW process has been concentrated mainly on round section tube to tube and tube to bar welds. AZ31 Mg alloy has been successfully welded to pure Al A1070 as well as to Al alloy A3003. While, for friction stir welding of dissimilar sheet joints, AZ31B/A6061 with the thickness of 2mm were used and a square butt joint with a good quality was obtained at the conditions of 0.8mm/sec of travel speed and tool rotation speed of 850rpm. The maximum tensile strength of 179 MPa, which was about 80 % of the Mg base metal tensile strength, has been obtained. Finally, friction spot joining was attempted to make a dissimilar lap joint between AZ31(0.8mm) and A6061(1mm), while the joint exhibited the same level of tensile shear strength as that of similar Mg joint.

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강구조물(鋼構造物) 맞대기 용접연결부(鎔接連結部)의 피로파괴거동(疲勞破壞擧動)에 관한 연구(硏究) (A Study on the Fatigue Fracture Behavior in Butt Welded Joints of Steel Structures)

  • 박제선;정영화;김정태
    • 대한토목학회논문집
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    • 제6권3호
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    • pp.53-62
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    • 1986
  • 소재시험편(素材試驗片)과 맞대기 용접시험편(鎔接試驗片)을 대상(對象)으로 피로시험(疲勞試驗)을 행(行)하여 작용최대응력(作用最大應力)-피로수명(疲勞壽命)(S-N)선도(線圖), 소성변형율(塑性變形率)-하중반복회수(荷重反復回數)(${\varepsilon}_p$-N)선도(線圖), 초기균열발생시(初期龜裂發生時)의 소성변형율(塑性變形率)-피로수명(疲勞壽命)(${\varepsilon}_p-N_c$)선도(線圖) 및 균열성장율(龜裂成長率)-응력확대계수변동범위(應力擴大係數變動範圍)(da/dN-${\Delta}K$)선도(線圖)를 그려서 강구조물(鋼構造物) 용접부(鎔接部)에서의 여러가지 피로거동(疲勞擧動)을 검토(檢討)하였다. 본(本) 연구(硏究)에서 얻어진 결과(結果)를 요약(要約)하면 다음과 같다. 하중반복회수(荷重反復回數) $2{\times}10^6$ cycle에서의 피로강도(疲勞强度)는 용접부(鎔接部)가 소재부(素材部)의 약(約) 60%였으며 강복응력(降伏應力)에 대한 피로강도(疲勞强度)의 비(比)는 소재부(素材部)와 용접부(鎔接部)가 각각(各各) 0.72, 0.65로 나타났다. 용접시험편(鎔接試驗片)의 S-N 선도(線圖)는 피로강도(疲勞强度)의 감소(減少)가 완만(緩慢)한 구간(區間)과 피로강도(疲勞强度)의 감소(減少)가 큰 구간(區間)으로 분류(分類)되어 작용최대응력(作用最大應力)이 작을 수록 피로강도(疲勞强度)의 감소(減少)가 커지는 현상(現象)을 보였다. 두 구간(區間)으로 구분(區分)되지 않은 S-N 선도(線圖)에 의한 피로강도(疲勞强度)에 비(比)해 $2{\times}10^6$ cycle에서의 피로강도(疲勞强度)가 약(約) 83%에 해당(該當)하였다. 이는 낮은 응력(應力)에서 용접부(鎔接部) 내부결함(內部缺陷)의 영향(影響)이 크게 작용(作用)하는 때문이 아닌가 생각된다. 용접시험편(鎔接試驗片)의 경우(境遇) 소재시험편(素材試驗片)에 비(比)해, 또 작용최대응력(作用最大應力)이 클수록 초기균열발생(初期龜裂發生)이 빠르고 균열발생직전(龜裂發生直前)의 소성변형율(塑性變形率)의 증가(增加)가 급격(急激)한 것을 알 수 있었다. 소재시험편(素材試驗片)에서 ${\varepsilon}_p-N_c$ 관계식(關係式)의 상수(常數) ${\alpha}$값이 0.42 로 Manson, Coffin의 연구결과(硏究結果)와 거의 일치(一致)하였고 용접시험편(鎔接試驗片)에서는 이 값이 0.28 로 이들의 연구결과(硏究結果)와 큰 차이(差異)를 나타내었는데, 이는 피로(疲勞)에 의한 용접부(鎔接部) 소성변형(塑性變形)의 급격(急激)한 변화(變化)와 내부결함(內部缺陷)의 영향(影響)이 작용(作用)했기 때문이 아닌가 생각된다. 이와 같은 결과(結果)로 볼 때 기존(旣存)의 강구조물(鋼構造物) 및 향후(向後) 신설(新設)될 강구조물(鋼構造物) 용접부(鎔接部)의 품질(品質) 및 피로(疲勞)에 대한 안전성(安全性)에 적절(適切)한 대책(對策)이 요망(要望)되며, 이 분야(分野)에 관한 더 많은 연구(硏究)가 행(行)해져야 되리라고 사료(思料)된다.

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조선용 강재의 맞대기 이음에서 팁회전 아크 용접의 공정 변수에 따른 용접 특성 분석 (Weld Characteristic Analysis for Weld Process Variables of Tip-Rotating Arc Welding in Butt Joint of Shipbuilding Steels)

  • 이종중;안상현;박영환
    • 한국기계가공학회지
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    • 제20권7호
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    • pp.105-112
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    • 2021
  • Reduction of weld distortions and increase in productivity are some of the major goals of the shipbuilding industry. To address these issues, many researchers have attempted to apply new welding processes. In the shipbuilding industry, steel is the candidate material of choice owing to its good weldability. However, conventional welding techniques are not feasible for avoiding welding problems. Tip-rotating arc welding is one of the high-efficiency welding process that has several advantages, such as high welding speed, high melting rate, low heat input, and less distortion. The present study investigates the influence of the welding variables on the weld characteristics of tip-rotating arc welding. Welding was performed using EH36 as the base metal and SM-70s as the filler metal, which are widely used in shipbuilding. Basic experiments were conducted to understand the effects of the major welding variables, such as welding and tip-rotating speeds. The distortion and mechanical properties of the optimal welding conditions were used to evaluate the tip-rotating arc welding performance. Consequently, the feasibility of the tip-rotating arc welding process for joining steel components was investigated, so that the optimized welding conditions could be applied directly to ship body welding to enhance the quality of the welded joints.

AZ61 마그네슘 합금 마찰교반용접부의 기계적 특성 평가 및 미세조직 분석 (Evaluation of Mechanical Properties and Analysis of Microstructure of AZ61 Magnesium Alloy Butt Joints by Friction Stir Welding)

  • 선승주;김정석;임재용;이우근;고요한;김영민;유봉선
    • 한국철도학회논문집
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    • 제19권4호
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    • pp.417-426
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    • 2016
  • 본 연구에서는 AZ61 압출 판재 마찰교반용접부의 기계적 강도 평가와 미세조직 평가를 수행하여 최적의 용접조건을 도출하였다. 용접조건은 용접 툴의 회전속도 400, 600, 800rpm, 이송속도 200, 300, 400mm/min으로 선정하였다. 인장시험 및 경도시험을 통해서 용접부의 기계적 강도 평가를 하였으며, 파단면 관찰과 용접부 단면 미세조직 관찰을 통해서 용접부의 결함 유무를 확인하였다. 용접부 특성 평가 결과 본 연구에서 제시한 용접조건 내에서 AZ61 압출 판재의 최적용접조건은 회전속도 800rpm, 이송속도 200mm/min이었고, 용접부의 인장강도, 항복강도 그리고 연신율은 모재 대비 79.0%, 65.4%, 30.1%로 측정되었다.

스캐너와 산업용 로봇을 이용한 고속 레이저 용접에 관한 연구 (A Study on High Speed Laser Welding by using Scanner and Industrial Robot)

  • 강희신;서정;김종수;김정오;조택동
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.29-29
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    • 2009
  • On this research, laser welding technology for manufacturing automobile body is studied. Laser welding technology is one of the important technologies used in the manufacturing of lighter, safer automotive bodies at a high level of productivity; the leading automotive manufacturers have replaced spot welding with laser welding in the process of car body assembly. Korean auto manufacturers are developing and applying the laser welding technology using a high output power Nd:YAG laser and a 6-axes industrial robot. On the other hand, the robot-based remote laser welding system was equipped with a long focal laser scanner system in robotic end effect. Laser system, robot system, and scanner system are used for realizing the high speed laser welding system. The remote laser welding system and industrial robotic system are used to consist of robot-based remote laser welding system. The robot-based remote laser welding system is flexible and able to improve laser welding speed compared with traditional welding as spot welding and laser welding. The robot-based remote laser systems used in this study were Trumpf's 4kW Nd:YAG laser (HL4006D) and IPG's 1.6kW Fiber laser (YLR-1600), while the robot systems were of ABB's IRB6400R (payload:120kg) and Hyundai Heavy Industry's HX130-02 (payload:130kg). In addition, a study of quality evaluation and monitoring technology for the remote laser welding was conducted. The welding joints of steel plate and steel plate coated with zinc were butt and lapped joints. The quality testing of the laser welding was conducted by observing the shape of the beads on the plate and the cross-section of the welded parts, analyzing the results of mechanical tension test, and monitoring the plasma intensity and temperature by using UV and IR detectors. Over the past years, Trumf's 4kW Nd:YAG laser and ABB's IRB6400R robot system was used. Nowadays, the new laser source, robot and laser scanner system are used to increase the processing speed and to improve the efficiency of processes. This paper proposes the robot-based remote laser welding system as a means of resolving the limited welding speed and accuracy of conventional laser welding systems.

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