• 제목/요약/키워드: 권취강판

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유한요소법을 이용한 권취강판 적재운송용 Wedge의 내구성에 관한 연구 (A Study on the Durability of a Wedge for Transportation of Rolled Steel Plates Using FEM)

  • 곽이구;김홍건
    • 한국생산제조학회지
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    • 제18권3호
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    • pp.328-335
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    • 2009
  • In order to 1ransport the steel roll coil effectively and safely to the destination, the stability of the steel roll coil which induced the minimum movements during the 1ransportation was s1rongly required. The basic 1ransportation equipment for the steel roll coil such as the wedge is made of 100% imported wood known as the apitong. However, the material characteristic such as the rigidity has caused permanent damages to the steel roll coil and the damaged steel roll coils were not easily restorable. Thus it was unsuitable for other purposes. The introduction of new materials to manufacturing wedges which would have a good recovery performance and thus enable the wedge prevention or reduction to the steel roll coil or any other products during the 1ransportation is needed. Due to the fact that recovering damage of the coil is almost impossible, we have to find the new type of wedge that can substitute the apitong wedge. Therefore, we are going to develop a wedge that does not damage rolled steel coil and has better recovery and softness than existing apitong wedge.

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고급강판용 엔드마크 감소를 위한 고무 슬리브의 개발 (Development of Rubber Sleeve for Reduction of End-mark in Cold Rolled Steel Sheet)

  • 김순경;김동건
    • 한국기계가공학회지
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    • 제14권1호
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    • pp.29-35
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    • 2015
  • In this study, a FEM analysis is undertaken of a rubber sleeve which is mounted onto a spreading mandrel so as to avoid marking the first wrappings of coils (known as the 'end-mark'), as occasionally occurs when a concentrated load is placed on the edge of a steel sheet, significantly reducing its quality. A commercial numerical package, ANSYS, was utilized to analyze the structural behavior of the rubber sleeve. In general, the strain of the sleeve increases as the thickness of the rubber layer (H) covering the tubes increases, thus also increasing the surface of the sleeve for a constant boundary condition, and decreasing the pitch (P) between each tube, resulting in an increase in the strain on the surface of the sleeve for all rubber thickness conditions tested here. In a comparison of two different materials, rubber and urethane, when H=3 mm and P=1.1D, the maximum total deformations in these cases are 0.12669 mm and 0.086623 mm, respectively.

페라이트-베이나이트 복합조직 고강도 열연강판의 신장플랜지 특성에 관한 연구 (A Study on the Stretch-flangeability of Hot-Rolled High Strength Steel with Ferrite-Bainite Duplex Microstructure)

  • 조열래;정진환;구황회;김인배
    • 한국재료학회지
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    • 제9권12호
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    • pp.1252-1262
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    • 1999
  • 자동차 휠, 멤버 등의 소재로 사용되는 인장강도 580MPa급 열연강판의 버링성형성을 향상시키기 위하여 강판의 신장 플랜지성(stretch-flangeability)에 대한 미세조직 및 열간압연후 냉각인자의 영향에 대하여 검토하였다. 열간압연후 3단 냉각제어 및 권취온도의 극저온화에 의하여 신장플랜지성이 우수한 페라이트-베이나이트 복합조직강의 제조가 가능하며, 3단 제어냉각에서 강판의 온도를 $Ar_3$ 직하의 페라이트변태역에서 일정 시간 유지하면 페라이트 변태 및 NbC의 석출이 조장됨을 확인하였다. 페라이트-베이나이트 복합조직 열연강판의 우수한 신장플랜지성은 3단 냉각 및 극저온 권취에 의한 등축 페라이트 분율의 증가, 입계 세멘타이트의 미세화 및 구성 상간의 경도차 저하에 의하여 타발공정에서의 미소균열 생성 및 전파가 억제되기 때문인 것으로 판단되었다. 아울러 0.08wt%C-1.5wt%Mn-0.04wt%Nb 성분계를 이용하여 제조된 인장강도 580MPa급 페라이트-베이나이트 복합조직 열연강판은 연신율 22% 이상, 구멍확장율 (신장플랜지성) 90% 이상의 재질특성을 가지며, 버링비 60% 이상의 자동차 휠 디스크에 적용 가능한 것으로 판명되었다.

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권취 공정 중 열연 강판의 잔류 응력 해석 (Residual Stress Analysis of Rot Rolled Strip in Coiling Process)

  • 구진모;김홍준;이재곤;황상무
    • 소성∙가공
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    • 제12권4호
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    • pp.302-307
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    • 2003
  • Hot rolled strip is cooled by air and water in Run-Out-Table. In this process, phase transformation and shape deformation occurs due to temperature drop. Because of un-ideal cooling condition of ROT, irregular shape deformation and phase transformation arise in the strip. which affect the strip property and lead to the residual stress of strip. And these exert effects on the following processes, coiling process, coil cooling process, and re-coiling process. Through these processes, the residual stress becomes higher and severe. For the prediction of residual stress distribution and shape deformation of final product, Finite element(FE) based model was used. It consists of non-steady state heat transfer analysis, elasto-plastic analysis. thermodynamic analysis and phase transformation kinetics. Successive FEM simulation were applied from ROT process to coil cooling process. In each process simulation, previous process simulation results were used for the next process simulation. The simulation results were matched well with the experimental results.

고강도 열연강판의 기계적 성질과 석출거동에 미치는 권취온도와 합금원소의 영향 (Effect of Coiling Temperature and Alloying Elements on the Mechanical Properties and Precipitation Behavior in High Strength Hot Rolled Steel Sheets)

  • 강성수;이오연;한상호;진광근;성백석
    • 한국재료학회지
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    • 제13권10호
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    • pp.683-690
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    • 2003
  • The high strength low alloy(HSLA) steels microalloyed with Nb, Ti and V have been widely used as the automobile parts to decrease weight of vehicles. The effects of process conditions are investigated in the aspects of the precipitation behavior and the mechanical properties of HSLA steel microalloyed with Nb and Ti using TEM, SANS and mechanical testing. When Ti was added to a 0.07C-1.7Mn steel which was coiled at $500^{\circ}C$, the specimen revealed the property of higher tensile strength of 853.1 MPa and the stretch-flangeability of 60%. The stretch-flangeability was increased up to 97.8% for coiling temperature above $700^{\circ}C$. The precipitation hardening cannot be achieved in the 0.045C-1.65Mn steel which was the lower density of fine precipitates. However, the 0.07C-1.7Mn steels containing Nb and/or Ti which was coiled at X$/^{\circ}C$ have a high precipitates density of $2${\times}$10^{ 5}$/$\mu$㎥. The high strength of these steels was attributed to the precipitation hardening caused by a large volume froction of (Ti, Nb)C precipitates with a size below 5 nm in ferrite matrix.