• 제목/요약/키워드: 플라즈마 아크용접

검색결과 39건 처리시간 0.023초

컴퓨터수치제어(CNC) 플라즈마 아아크 절단장치 개발에 관한 연구 (A study on development of plasma-arc cutting system with computer-numerical control)

  • 노태정;나석주;나규환
    • Journal of Welding and Joining
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    • 제8권3호
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    • pp.60-69
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    • 1990
  • Plasma arc cutting is a fusion cutting process in which a gas-constricted arc is employed to produce a high-temperature, high-velocity plasma jet on the workpiece. This process provides some advantages such as increased cutting velocity, excellent working accuracy and the ability to cut special materials (widely used stainless steels and Al-alloys, for example), when compared with iconventional oxyfuel gas cutting. From the view point of price and reliability of the power source, plasma arc cutting has also some distinct advantages over laser beam cutting. High-speed machines with NC or CNC systems are needed for the plasma arc or laser beam cutting process, while for oxyfuel gas cutting, low-speed machines with copying templates or optical-shape tracking sensors can be applied. The low price and high flexibility of the microprocessor arc contributing more and more the application of CNC system in the plasma arc cutting process, as in other manufacturing fields. From these points of view, a microprocessor-based plasma arc cutting system was developed by using a reference-pulse system, and its performance was tested. The interpolating routines were programmed in the assembly language for saving the memory volume and improving the compouting speed, which has an intimate relationship with the available cutting velocity.

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플라즈마 아크를 이용한 판재료의 절단현상에 관한 연구 (A study on the plasma arc cutting phenomena of plate materials)

  • 엄기원;김동조
    • Journal of Welding and Joining
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    • 제9권4호
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    • pp.69-74
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    • 1991
  • The Plasma Arc Cutting Method using high density and hight temperature beam is well applicable to the cutting of the nonferrous metal (Al alloy ) and stainless steel which are unable to be cut by the use of the oxy-fuel gas. This study focalizes on the cutting phenomena of the plate of (mm) thickness, since the cutting phenomena of thick plates have been rather thoroughly studied. In this study the cutting groove, adhesive phenomena of dross, surface roughness were measured according to the variation of cutting speed and compared with the case of mild steel plates. The result showed that the kerf width variation of Al alloy was similar to the case of mild steel, while that of the stainless steel differed from the mild steel. In the adhesive phenomena of dross, 6(mm) thick plates of Al alloy showed a difference from those of thick plates, but the stainless steel was similar to thick plates. The surface roughness variation of Al alloy wias minimum at 67 cm/min, while that of stainless steel was at 30cm/min.

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플라즈마 아크 오비탈 용접의 경사상진자세에서 이면비드 형성에 관한 연구 (A Study on Back Bead Formation in Inclined-up Position of Flasma An Orbital Welding)

  • 김효원;조상명
    • Journal of Welding and Joining
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    • 제27권1호
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    • pp.71-78
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    • 2009
  • In the circumferential welding of pipe, welding phenomenon changes with the position of pipe. Especially in the overhead position, back bead of vertical-up position would be sunk. To investigate the size of back bead and keyhole with the change of the flow rate of pilot and shield gas at each position, bead-on plate welds were conducted on 6mm thickness SS400 with inclined-up position. When the rest of welding conditions remained constant, the width of back bead was increased as the flow rate of pilot gas was increased. And back bead tended to convex as the flow rate of shield gas was increased.

Plasma 용접에 의한 박판 겹치기 이음 필릿 용접부의 품질에 미치는 용접 변수의 영향 (The Effects of Welding Parameters on Quality in Lap Joint Fillet Welds of Thin Plate by Plasma Welding)

  • 박금기;양종수;조상명;윤훈성
    • 대한조선학회 특별논문집
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    • 대한조선학회 2006년도 특별논문집
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    • pp.122-127
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    • 2006
  • In case of lap joint fillet welds of thin plate, the example which is applicable to Plasma Welding increases substituting for the exiting TIG Welding but the quality of Plasma arc welding has a special feature influenced sensitively by the condition of welding caused by controlling the various parts of welding torch. This research is purposed to improve lap joint fillet welds of thin plate in high quality and attain the high productivity and it is examined that how the change of electrode tip angle and Setback has an effect on the quality of welding and it is investigated how the change of Setback and Standoff has an effect on Melting efficiency using Response Surface Analysis.

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용사법에 의한 표면개질 특성 (A Characteristics Surface Modification by Thermal Spraying)

  • 양병모;박경채
    • Journal of Welding and Joining
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    • 제14권2호
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    • pp.19-27
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    • 1996
  • 재료의 표면개질은 표면층의 조직변화에 대한 개질법과 표면피복에 의한 개질 법으로 나눌 수 있다. 조직변화에 의한 개질법으로는 침탄, 질화, 이온주입 및 금속 확산 등이 있고, 표면피복에 의한 개질법으로는 도장, 도금, 육성용접, 물리증착(PVD) 및 화학증착(CVD) 등이 있는데, 용사법은 표면피복에 의한 개질법에 속한다. 용사기술 은 비교적 최근에 발달된 표면피복 기술로서 그림1과 같이 플라즈마, 가스화염 또는 아크열원을 이용하여 금속 또는 비금속 재료를 용융 혹은 반용융 상태로 모재에 고속 도로 분사하여 충돌 적층시켜 피복하는 공정으로 다른 표면개질기술에 비해서 여러 가지 잇점을 가지고 있다. 이것은 거의 모든 재질의 모재(금속, 세라믹, 유기재료 등) 에 대해 피막의 형성이 가능하고, 용사재료의 종류도 다양하다(금속, 합금, 각종 세라 믹, 플라스틱, 각종 복합재료 등). 또한 노재크기의 제한이 없고, 대형의 재료에 대해 서 한정된 부위의 피복이 가능하며, 모재의 열영향이 적고, 피막의 형성속도가 다른 피막법에 비해 빠른 장점을 가지고 있다. 그 예로 알루미나(Al$_{2}$O$_{3}$)를 피복할 경우 화학증착(CVD)법에 의해서는 피막형성 속도가 약 2 * $10^{-4}$mm/min 인데 비해 용사법에 의해서는 약 7.5 * $10^{-1}$mm/min로 매우크다. 이와같은 많은 장점을 갖고있는 용사법을 이용한 표면개질에 대해 본 기술보고에서 서술하고자 한다.

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Plasma Transferred Arc 오버레이법에 의한 Al 합금 표면층의 복합기능화에 관한 연구 (A Study on the Formation of Functionally Composite Layer on Al Alloy Surface by Plasma Transferred Arc Overlaying Process)

  • 임병수;황선효;서창제
    • Journal of Welding and Joining
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    • 제17권5호
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    • pp.107-115
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    • 1999
  • The objective of this research was to study the formation of the thick hardened layer with the addition of metal powder(Cu) and ceramics powders(TiC) on the aluminum 5083 alloys by plasma transferred arc process(PTA process) and to characterize the effect of overlaying conditions on the overlaid layer formation. This was followed by investigating the microstructures of the overlaid layers and mechanical properties such as hardness and wear resistance. The overlaid layer containing copper powder was alloyed and intermetallic compound($CuAl_2$) was formed. The overlaid layers with high melting point TiC powders, however, did not react with base metal. Wear resistance of the alloyed layer was remarkably improved by the formation of $CuAl_2$, precipitate phase, which prevented wear of base aluminum alloys and at higher wear speed, accelerated sliding of the counter part. Wear resistance of the composite layer was also remarkably improved because TiC powder act as a load barring element and Fe debris fragments detached from the counter part act as a solid lubricant on the contact surface.

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PTAW법에 의한 Al 합금 표면의 후막경화층 형성에 관한 연구 (A Study on Formation of Thick Hardened Layer on Al Alloy Surface by PYAW Process)

  • 임병수;김봉수;오세훈;황선효;서창제
    • Journal of Welding and Joining
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    • 제15권5호
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    • pp.92-103
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    • 1997
  • The purpose of this study is to improve the wear resistance and hardness of Al alloy by making a formation of the thick surface hardening layers. The thick surface hardening layers were formed by PTAW(Plasma Transferred Arc Welding), with the addition of metal powders (Cu), ceramics powders (NbC, TiC), and mixture powders (Cu+NbC) in Al alloy (A1050, A5083). Mechanical properties of overlaid layers (wear resistance, hardness) were investigated in relation to the microstructure. The results obtained are summarized as follows: The depth of penetration was increased with increasing powder feeding rate. It is considered that these increase were due to the thermal pinch effect by the addition of powders, especially, for the Cu powders, were due to the heat of reaction with the matrix. The hardness and wear resistance of overlaid layers were improved with increasing powder feeding rate. For the Cu powders, it is considered that these increase were due to the increase of the formation of ${\theta}(CuAl_2)$ phase with increasing feeding rate of Cu powers.

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박판 고속 플라즈마 맞대기 용접에서 용접 시작부의 용락과 미용융에 미치는 시작블록과 아크길이의 영향 (The Effects of Start Block and Arc Length on Melt Through and Unmelted Zone at Welding Start in High Speed Plasma Arc Welding of Thin Plate)

  • 추용수;홍성준;정재필;조상명
    • Journal of Welding and Joining
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    • 제26권2호
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    • pp.92-97
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    • 2008
  • In welding of thin plate, some defects such as melt through and unmelted zone occur easily at welding start, however there is a limited study on those problems. Therefore the effects of start block and arc length on melt through and unmelted zone at start were investigated in this study. When start block height was lower than base metal, there was melt through at start. And when the height was even with base metal, no unmelted zone existed. Unmelted zone was increased as start block height increased from 0mm to 0.5mm. However unmelted zone was not much changed as the height increasing from 0.5mm to 1.0mm. When gap existed between start block and base metal, melt through occurred. However, unmelted zone was increased as the contact force of start block on base metal was increased from 0kgf to 7.5kgf. And when arc length was decreased from 3.8mm to 3.0mm, unmelted zone was decreased. It was concluded that the optimum condition to prevent melt through and to minimize unmelted zone would be with start block height 0.25mm, contact force 3.0kgf, and arc length 3.4mm. This optimum condition was applied to the mass production line and resulted in satisfied outcome.

Ti 및 Ti계 세라믹스에 의한 Al합금의 표면복합합금화 (Formation of Ti and Ti ceramics composite layer on aluminium alloy)

  • 임병수;문정훈;서창제
    • Journal of Welding and Joining
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    • 제13권1호
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    • pp.103-114
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    • 1995
  • Plasma Transferred arc(PTA) hard facing process has been developed to obtain an overlay weld metal having excellent wear resistance. The effect of Ti, TiSi$_{2}$ and TiC powders addition on the surface of Aluminum alloy 5083 has been investigated with PTA process. This paper describes the result of test the performance of the overlay weld metal. The result can be summarized as follows 1. Intermetallic compound is formed on surface of base metal in Ti or TiSi$_{2}$ powder but the reaction with surface of base metal is little seen in TiC powder. 2. In formation of composite layer on aluminum alloy surface by plasma transferred arc welding process, high melting ceramics like TiC powder is excellent. 3. The multipass welding process is available for formation of high density of powder. But the more number of pass, the less effect of powder, it is considered, and limits of number of pass. 4. By increasing area fraction of TiC powder on Al alloy surface, in especially TiC powder the hardness increase more than 40% area fraction and 88% shows about Hv 700.

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