日本機械学会論文集
Online ISSN : 2187-9761
ISSN-L : 2187-9761
材料力学,機械材料,材料加工
半溶融過共晶Al – Si 合金の落下鍛造型粘度計による変形挙動解析
奈良 大作熊澤 典良福井 泰好
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2014 年 80 巻 812 号 p. SMM0081

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The aim of this study is to investigate the rheological behavior for a semi-solid forming of Al25 mass % Si alloy, i.e., hypereutectic Al-Si alloy, using a self-made parallel-plate drop-forge viscometer. Drop-forge experiments show individually the features that the viscosity decreased in the early increasing shear rate stage and subsequently the viscosity turned to increase as the shear rate decreased. Thus, the viscosity takes a minimum around the maximum shear rate. The summarized behavior between the viscosity, μ[Pas], and the shear rate, γ [s-1], can be described by a power-law model of μ1.78×107γ-1.5. The decrease in viscosity accompanied with the increase in the shear rate depends on both rises in the temperature and the applied force, not the duration of forging. The convex shape curve is observed between the effective duration and the viscosity and the effective duration reaches a maximum at around μ30 kPas where γ=70 s-1. The origin of the profile is due to the lost of ability to transform the kinetic energy to distortion energy, which is caused by a decrease of deformation resistance accompanied with a decrease of viscosity. Then the viscosity μ30 kPas, which corresponds to the transition point from plastic forming to casting, seems to be the optimum condition for semi-solid forming.

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