鋳造工学
Online ISSN : 2185-5374
Print ISSN : 1342-0429
ISSN-L : 1342-0429
研究論文
AC4Cアルミニウム合金鋳造時のシェル鋳型割れ現象とその予測
董 樹新岩田 靖北條 浩岩堀 弘昭山下 貴平野 春好
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ジャーナル フリー

2010 年 82 巻 2 号 p. 79-85

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抄録
  The occurrence mechanism and the occurrence criterion of cracks in shell molds during aluminum alloy casting were elucidated. Cylindrical shell molds made of silica sand break easily when filled with aluminum alloy melt. The breaking mechanism can be considered as follows. The immediate inner surface of the shell mold undergoes rapid temperature rise from sudden heating by the melt and attempts to expand. This thermal expansion is restrained by the other part of the mold that is still low in temperature. Consequently, compressive stress in the area near the inner surface and tensile stress in the area near the outer surface develop respectively, causing the shell mold to break when the tensile stress exceeds the tensile strength of the shell mold. With some parts of the cylindrical shell mold cut to a thinner thickness, a large tensile stress occurs at the outer surface of the thinner part and a crack is formed in a shorter time after aluminum alloy melt has filled. The criterion for the occurrence of cracks in shell molds can be described by the fracture stress-effective volume relation based on the Weibull's statistical method, which is utilized for the strength evaluation of brittle materials. The fracture stress-effective volume relation of the present shell mold was derived from tensile test results to predict the occurrence of cracks in shell molds.
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© 2010 公益社団法人 日本鋳造工学会
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