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首页> 外文期刊>Materials & design >A design of non-uniform thickness mould for controlling temperature gradient and S/L interface shape in directionally solidified superalloy blade
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A design of non-uniform thickness mould for controlling temperature gradient and S/L interface shape in directionally solidified superalloy blade

机译:定向凝固高温合金叶片中控制温度梯度和S / L界面形状的非均匀厚度模具设计

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The heat transfer behaviors of turbine blade have been simulated using finite element method in three dimensions. The temperature gradient distribution and the solid/liquid (S/L) interface shape evolution were investigated during directional solidification (DS). Numerical results were compared with experimental results and good agreement was found. The experimental results demonstrate that solidification defects, such as freckles and stray grains, were observed on the platform of the blades. Numerical results indicate that this phenomenon should be attributed to a lower axial temperature gradient and a concave S/L interface shape. In order to overcome the shortcomings, two types of non-uniform thickness mould are designed to obtain higher temperature gradient ahead of S/L interface and flat S/L interface, contributing to reducing or eliminating the solidification defects in the blades during direction solidification. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用三维有限元方法对涡轮叶片的传热特性进行了模拟。研究了定向凝固(DS)过程中的温度梯度分布和固/液(S / L)界面形状演变。将数值结果与实验结果进行比较,发现吻合良好。实验结果表明,在叶片平台上观察到了凝固缺陷,例如雀斑和杂散颗粒。数值结果表明,这种现象应归因于较低的轴向温度梯度和凹陷的S / L界面形状。为了克服该缺点,设计了两种不均匀厚度的模具以在S / L界面和平坦的S / L界面之前获得更高的温度梯度,从而有助于减少或消除叶片在方向凝固过程中的凝固缺陷。 (C)2016 Elsevier Ltd.保留所有权利。

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