• Title/Summary/Keyword: 알루미늄 판재

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Effects of Acid Treatment and HHT(Heat and Humidity Treatment) on AZ31B (AZ31마그네슘합금판재 산세 표면처리)

  • Seo, Jang-Hyeon;Kim, Hye-Jeong;Park, Yeong-Hui
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2013.05a
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    • pp.71-71
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    • 2013
  • AZ31 마그네슘 합금 판재는 경량화가 요구되는 분야에 사용되는 것을 목표로 설계되어 상업화가 추진되고 있으며, 이의 적용을 위해서는 마그네슘 판재의 내 부식성을 제어하는 표면처리 공정이 필수적이다. 표면처리에서는 강판 및 알루미늄판재의 표면처리 공정에 이용되는 화성처리-전착도장 공정에 따라야 하겠지만, 산 용액에 매우 취약한 마그네슘 소재의 특성상 같은 처리 조건을 적용하기 어렵다. 산 종류에 따른 AZ31 마그네슘합금판재 표면처리효과를 알아보기 위해 여러 종류의 산 처리 후 내 부식성을 알아보고 HH(Heat and Humidity; 가압, 가습 조건에서 열처리) 공정을 접목시킨 표면처리 결과에 대하여도 관찰하였다. 그 중 불산을 이용한 표면처리는 농도별로 진행하여 산세의 농도가 표면에 주는 영향에 대하여도 알아보았다.

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Non-Quadratic Anisotropic Strain Rate Potential Defined in Plane Stress State (평면 응력 조건에서 정의된 비이차 비등방 변형률 속도 포텐셜)

  • Kim, D.;Kim, J.H.;Lee, Y.S.;Barlat, Frederic;Chung, K.
    • Transactions of Materials Processing
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    • v.20 no.5
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    • pp.369-376
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    • 2011
  • A non-quadratic anisotropic strain rate potential was introduced as a conjugate potential of the yield stress potential Yld2000-2d to describe anisotropic behavior of sheet metals, in particular, aluminum alloy sheets under plane stress state. This strain-rate potential takes into account the anisotropic yield stresses and R-values measured along the directions measured at 0, 45 and 90 degrees from the rolling direction, as well as the balanced biaxial yield stress and strain-rate ratio. The convexity of the strain-rate potential was completely proven. The strain-rate potential was applied for two anisotropic aluminum alloy sheets, AA6022-T4 and AA2090-T3. The results verified that the strain rate potential properly described the anisotropic behavior of aluminum alloy sheets and was closely conjugate of Yld2000-2d under the plane stress state.

Factors affecting the mechanical properties of aluminum alloy laser welds (알루미늄 합금 레이저 용접부의 기계적 성질에 영향을 미치는 인자)

  • 윤종원;이윤상;박현성;신현일
    • Proceedings of the KWS Conference
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    • 2004.05a
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    • pp.131-133
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    • 2004
  • 차체 경량화 소재인 냉간압연 알루미늄합금 판재는 대부분의 경우 연신율이 15%이하로 연신율 35%이상인 차체용 강판(SPCC, SPCD, SPCE 급)에 비채 성형성이 나쁘다. 알루미늄 합금 용접부의 기계적 성질 및 성형성 또한 모재에 비해 열화됨이 알려져 있다. (중략)

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A Study on The Change of Insert Clamping Force Influence According to the Surface Treatment of Armor Aluminum Alloy Plate (장갑판재의 표면처리에 따른 인서트 체결력 변화 연구)

  • Hwang, Bu Il;Yang, Sang Hun;Kim, Chi Hwan
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.39 no.8
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    • pp.787-791
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    • 2015
  • In some cases which are unable to replace the inserts when the depot maintenance or performance improvement of armored vehicles are carried out could have a risk of declining clamping forces by re-processing chromate. The change in the clamping forces of inserts has been investigated by applying a chromate process to hold the insert on the aluminum plate of the armored vehicle in this paper. In order to identify the effect of types and surface treatment, the breaking strength has been measured by the equivalent test item to the actual conditions. These tests would contribute the establishment of the armored vehicle production process.

Characteristics of Electric Resistance Heated Surface Friction Spot Welding Process of Copper and Aluminum Dissimilar Metal Sheets (구리와 알루미늄 이종금속 판재간의 전기저항가열 표면마찰 스폿용접 특성)

  • Sun, Xiao-Guang;Jin, In-Tai
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.21 no.8
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    • pp.99-109
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    • 2022
  • In this study, an electric resistance-heated surface friction spot-welding process was proposed and tested for the spot-welding ability of copper and aluminum dissimilar metal sheets using electric resistance heating and surface friction heating. This process has welding variables, such as the current value, energizing cycles, rotational speed, and friction time. The current value and energizing cycle can affect the resistance heat, and the rotational speed of the rotating pin and friction time influence frictional heat generation. Resistance heating before friction heating has a preheating effect on the Cu-Al contact interface and a positive effect on preventing friction heat loss during the friction stage. However, because resistance preheating can soften the copper sheet and affect the contact stress and friction coefficient, it has difficulties that may adversely affect frictional heat generation. Therefore, the optimal combination of welding variables should be determined through simulations and experiments of the spot-welding process to determine the effects of electric resistance preheating on the suggested process. Through this procedure, it is known that the proposed spot-welding process can improve the welding quality during the spot welding of Cu-Al sheets.

The Characteristics of Painted Coating on Aluminum Sheet by Sending Conditions (알루미늄 판재의 센딩조건에 따른 도장특성 평가)

  • Yoon, Han-Ki;Choi, Seok-In;Lee, Jong-Ho
    • Journal of Ocean Engineering and Technology
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    • v.25 no.1
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    • pp.44-48
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    • 2011
  • Researchers suggested painted coating characteristics of aluminum sheet by various sending condition. Painted coating is used to protect the surface of the blocks from the interior and exterior. It is also used to enhance the value of automobiles and ship materials. This process makes the materials surface for protection and elegance. Although analysis of the roughness and critical scratch load of painted coating is important, the effects of this material have not progressed much. In this study, the characteristics of painted coating in the other conditions of the polished aluminum sheet were investigated. The results of both various conditions and initial roughness values were almost similar to final values after painted coating.

Press Formabilities of Aluminum Sheets for Autobody Application (차체용 알루미늄 판재의 프레스 성형성)

  • Kim, Y.S.;Kim, K.S.;Kwon, N.C.
    • Transactions of the Korean Society of Automotive Engineers
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    • v.2 no.1
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    • pp.73-83
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    • 1994
  • Press formabilities of aluminum sheets for automobile body were investigated. Plane strain stretching test (called RIST-PSST), cupping test and U bending test were performed to assess the press formability of aluminum sheets respectively. The results showed that aluminum sheets are generally inferior to cold-rolled steel sheet of deep drawing quality (CSP3N) in press formability. The limiting punch height (LPH) and limiting plane strain (FLCo) of aluminum sheets are 50%-70% level compared to that of CSP3N. Moreover, the limiting drawing ratios(LDR) of aluminum sheets are ranged between 1.95 and 2.1. The poor press formability of aluminum sheets is responsible for low values of total elongation and plastic anisotropy parameter in tensile characteristic. The shape fixability of aluminum sheets evaluated in U bending test is very poor due to its low elastic modulus compared to CSP3N.

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The Principle and Application of the Explosive Welding (폭발용접의 원리와 응용)

  • 성상철;심상한;이병일
    • Journal of Welding and Joining
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    • v.15 no.6
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    • pp.13-23
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    • 1997
  • 폭발용접은 화약의 폭발에 의한 충격 에너지를 이용하여 금속을 접합시키는 방법으로서 화약의 폭발에 의해 생기는 순간적인 높은 에너지를 이용하는 접합법이다. 1944년에 처음으로 폭발용접의 기술적, 상업적인 이점으로 인해 수요가 증가하고 있는 실정이다. 적용 예는 거대한 판재의 cladding을 포함하여 cladding nozzle, tube 와 tubeplate의 접합, pipe와 pipe의 접합등에 사용되고 있다. 종래의 용접법으로는 용접이 곤란하거나 불가능한 것으로 생각되었던 이종금속에 대해서는 적용이 가능하 고, 용접에 의한 열영향을 받지 않으며 용접 속도가 대단히 빠르다는 잇점이 있다. 또한 용접의 차이가 커서 접합이 곤란한 금속을 폭발용접하면 이음부는 충분한 강도를 가지면서 용이하게 접합할 수 있는 것이 큰 특징이다. 대부분의 금속은 폭발용접이 가능하지만 폭발의 충격에 의해서 균열이 발생되기 쉽고 주철과 같이 취약한 금속 및 Mg을 함유한 알루미늄 합금(순 알루미늄과는 접합 가능함)등은 이 용접법을 사용하기 는 곤란하다. 시공상의 특징으로는 특별한 기계 장치가 필요하지 않고 모재가 판재 혹은 파이프상이면 모재 두께에 제한 받지 않고, 어떠한 형태와도 가능하기 때문에 다품종, 소량생산이 가능하다. 한편 접합시에 화약을 사용하기 때문에 취급에 있어서 주의를 요하고 큰 폭발음 때문에 용접장소의 제한을 받는다는 것이다.

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Evaluation of incremental sheet forming characteristics for 3D-structured aluminum sheet - part 2 (3D 구조 알루미늄 판재의 점진판재성형 특성 평가 (제2보))

  • Kim, Young-Suk;Do, Van-Cuong;Ahn, Dae-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.3
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    • pp.1585-1593
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    • 2015
  • 3D-structured (embossed) aluminum sheets have been used in the heat insulation purpose for automative exhaust parts because of increasing their surface areas and stiffness reinforcement imposed in making the embossing pattern. However, there are many restrictions in press forming of the embossed sheet compared with the flat sheet (non-embossed one) because of its difference in the mechanical properties and the geometrical 3-dimensional shape. In this paper we investigated the deformation characteristic of embossed aluminum sheet in the incremental sheet forming process which has frequently used in the design verification and the trial manufacturing of sheet products. The single point incremental forming (SPIF) experiments for the rectangular cone forming using the CNC machine with a chemical wood-machined die and a circular tool shape showed that the formability of the embossed sheet are better than that of the flat sheet in view of the maximum angle of cone forming. This comes from the fact that the embossed sheet between the tool and the elastic die wall is plastically compressed and the flatted area contributes to increase the plastic deformation. Also the tool path along the outward movement from the center showed a better formability than that of the inward movement from the edge. However the surface quality for the tool path along the outward movement evaluated from the surface deflection is inferior than that of the tool path along the inward movement.