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Geometric parameter-based optimization of the die profile for the investment casting of aerofoil-shaped turbine blades

机译:基于几何参数的翼型涡轮叶片精铸模具轮廓优化

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摘要

Dimensional accuracy is one of the most important criteria in the investment casting of turbine blades for aero engine applications. Although investment casting is an ideal route for producing net-shaped components, it necessitates accurate determination of the casting die profile. To avoid extensive modifications on the die cavity shape, this study proposes a simple but efficient inverse design method that adjusts certain geometric parameters to establish the die profile. Parameterized modeling is achieved by identifying the geometric parameters that describe the mean camber line of the blade profile. Meanwhile, blade shrinkages at different positions are effectively remedied through the adjustment of the parameters using the inverse iteration algorithm proposed in this paper. The relative positions among the cross-sections can also be varied to rectify the twist deformation of the blade, thereby guaranteeing the dimensional accuracy of the turbine blades. The applicability of this method is validated using numerical simulation data and experimental results.
机译:在航空发动机应用的涡轮叶片的精铸中,尺寸精度是最重要的标准之一。尽管熔模铸造是生产网状零件的理想途径,但必须准确确定铸模轮廓。为了避免对模腔形状进行大量修改,本研究提出了一种简单而有效的逆设计方法,该方法可以调整某些几何参数以建立模具轮廓。通过识别描述叶片轮廓的平均外倾线的几何参数来实现参数化建模。同时,采用本文提出的逆迭代算法通过调整参数可以有效地弥补叶片在不同位置的收缩。横截面之间的相对位置也可以改变以校正叶片的扭曲变形,从而保证涡轮叶片的尺寸精度。使用数值模拟数据和实验结果验证了该方法的适用性。

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