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首页> 外文期刊>International Journal Cast Metals Research >Effect of sand dilation on distortions and pattern allowances during steel sand casting
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Effect of sand dilation on distortions and pattern allowances during steel sand casting

机译:砂扩角对钢砂铸造期间扭曲与图案津贴的影响

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Mechanical interactions between the sand mold and casting have a great impact on pattern allowances. In this study, the effect of core expansion on distortions during steel casting is investigated. A hollow steel cylinder is cast using silica and zircon sand cores. The evolution of the cylinder's inner diameter is measured in situ using LVDTs. During solidification, core expansion is found to distort the inner diameter into a barrel-shaped profile, generating the largest expansion at the mid-height. The experiments are simulated using a sequential thermo-mechanical coupling. In the stress analysis, the steel and sand are modeled using an elasto-visco-plastic constitutive law and the Drucker-Prager Cap model, respectively. The simulations reveal that sand dilation due to shear stresses, as opposed to thermal expansion, accounts for the majority of the increase in the inner diameter. The measured and predicted pattern allowances are found to be in excellent agreement.
机译:砂模和铸造之间的机械相互作用对图案津贴产生了很大的影响。 在这项研究中,研究了核心膨胀对钢铸造过程中扭曲的影响。 使用二氧化硅和锆石砂芯铸造中空钢圆筒。 使用LVDT地原位测量圆柱内径的演变。 在凝固过程中,发现核心膨胀将内径扭曲成桶形轮廓,在中高的膨胀中产生最大的膨胀。 使用顺序热机械耦合模拟实验。 在应力分析中,钢和砂分别使用弹性粘塑塑料本构法和德鲁克 - 普拉格帽模型进行建模。 模拟显示由于剪切应力引起的砂扩张,而不是热膨胀,占内径大部分的大部分。 发现测量和预测的模式津贴是非常一致的。

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