• 제목/요약/키워드: 알루미늄합금주물

검색결과 14건 처리시간 0.031초

알루미늄-실리콘 합금주물의 공정조직 개량처리에 미치는 희토류 금속의 역할에 관한 평가 (An Assessment of the Role of Rare Earth in the Eutetic Modification of Cast Aluminum-Silicon Alloys)

  • 예병준
    • 한국주조공학회지
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    • 제6권2호
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    • pp.104-115
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    • 1986
  • I A쪽과 II A쪽이 Al-Si 합금의 공정조직개량 처리에 효과적인 것은 잘 알려진 사실이나 Na(Sodium)과 Sr(Strontium)만 상업적으로 쓰여지고 있다. 그러나 휘발성과 산화하기 쉬운점때문에 Na 은 그 양을 정확하게 조절하기가 어렵고 특히 온도가 높은 경우 더욱 곤란하나 Sr 은 휘발성이나 산화성은 없으나 micro-또한 macro-porocity의 주 원인으로 보고 되고 있다. 희토류 금속 (예 : Cerium, Lanthanum,etc )도 개량처리 효과가 있다는 논문들(ref. 2, 3, 4, 5) 이 있고, 계속 연구되어 오고 있으나 그 세부사항과 효율성에 관해 정립된 바가 없다. 이런 연유로 Al-Si 합금의 생산을 위한 개량 처리제로서의 희토류 금속의 역할에 대해 구체적이고 세부적인 개량처리기구의 구명을 위해 이 연구가 이루어졌다. Al-Si 합금 356가 채택된 이유는 상업적 Al 주물의 생산을 감안해서 였다.

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정밀금형 알루미늄 합금 주물에서의 잔류응력 측정에 관한 연구 (On the Measurement of Residual Stresses in Aluminum Alloy Parts Fabricated by Precision Metal Mold Casting)

  • 김채환;문수동;강신일
    • 대한기계학회논문집A
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    • 제23권11호
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    • pp.2087-2095
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    • 1999
  • One of the main causes of unwanted dimensional changes in precision metal mold casting parts is excessive and irregular residual stresses induced by temperature gradients and plastic deformation in the solidifying shell. Residual stresses can also cause stress cracking, and lower the fatigue life and fracture strength of the casting parts. In the present study, aluminum alloy casting system with metal mold equipped with electrical heating elements and water cooling units was designed and the casting specimens were produced to quantify the effects of different cooling conditions on the development of residual stresses. The layer removal method was used to measure the biaxial residual stresses in casting specimens produced from the experiments. The experimental results agreed with Tien-Richmond's theoretical model for thermal stress development for the solidifying metal plate.

알루미늄 합금 주물의 냉각 속도에 따른 기계적 성질 예측 (Effect of Cooling Rate on the Prediction of Mechanical Properties of Al Alloys)

  • 동권식;조인성;황호영
    • 한국주조공학회지
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    • 제32권5호
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    • pp.225-230
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    • 2012
  • In this study, a more practical and simulation approach which can predict the mechanical properties of aluminum alloys is proposed. First, cooling rate, micro-structure, and mechanical properties of casting product were measured through casting experiment. The relation between cooling rate and SDAS decrease exponentially and the linearly decreasing relation exist between SDAS and mechanical properties. Then, the cooling rate was calculated by casting process simulation and the mechanical properties were predicted by using the relations that were derived through experiment. Experimentally measured mechanical properties and predicted values by simulation were in the range of relatively small difference. The mechanical properties of various Al alloys are expected to be predicted by the casting process simulation before actual casting.

정밀금형 알루미늄 합금주조공정시 주물/금형 접촉면에서의 Inverse 열전달해석에 관한 연구 (Inverse Heat Transfer Analysis at the Mold/Casting Interface in the Aluminum Alloy Casting Process with Precision Metal Mold)

  • 문수동;강신일
    • 한국주조공학회지
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    • 제18권3호
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    • pp.246-253
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    • 1998
  • Precision metal mold casting process is a casting method manufacturing mechanical elements with high precision, having heavy/light alloys as casting materials and using permanent mold. To improve dimensional accuracy and the final mechanical properties of the castings, the solidification speed and the cooling rate of the casting should be controlled with the optimum mold cooling system, and moreover, to obtain more accurate control of the whole process interfacial heat transfer characteristic at the mold/casting interface must be studied in advance. In the present study, aluminum alloy casting system with metal mold equipped with electrical heating elements and water cooling system was designed and the temperature histories at points inside the metal mold were measured during the casting process. The heat transfer phenomena at the mold/casting interface was characterized by the heat flux between solidifying casting metal and metal mold, and the heat flux history was obtained using inverse heat conduction method. The effect of mold cooling condition upon the heat flux profile was examined, and the analysis shows that the heat flux value has its maximum at the beginning of the process.

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