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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Wall thickness monitoring method for wax pattern of hollow turbine blade
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Wall thickness monitoring method for wax pattern of hollow turbine blade

机译:空心涡轮叶片蜡型壁厚监测方法

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摘要

The wall thickness of hollow turbine blade has emerged as a significant cause of blade retirement. The precision of the final wall thickness of blade is mainly inherited from its corresponding wax pattern. The layout scheme of ceramic locators has a great influence on the wall thickness of wax pattern. A good layout of ceramic locators can significantly reduce the wall thickness shifting. To address this issue, a stable locator layout is needed to reduce the error transferring. The main purpose of this study is to find an optimal localization scheme for ceramic core. Firstly, the mathematical model of ceramic core localization was built based on the fixture design theory. Then, the optimal algorithm of locator layout design was studied. The D-optimality criterion has been chosen as optimal design criterion. Finally, two demonstration cases were presented. A localization scheme for real ceramic core was achieved and verified by using Monte-Carlo method. Moreover, the localization scheme was validated through experiments. Both simulation and experimental results indicated that the optimal localization can significantly reduce the input error.
机译:中空涡轮叶片的壁厚已成为导致叶片退役的重要原因。叶片最终壁厚的精度主要源于其相应的蜡纹。陶瓷定位器的布局方案对蜡纹的壁厚影响很大。陶瓷定位器的良好布局可显着减少壁厚偏移。为了解决此问题,需要稳定的定位器布局以减少错误传递。这项研究的主要目的是找到陶瓷芯的最佳定位方案。首先,基于夹具设计理论,建立了陶瓷芯定位的数学模型。然后,研究了定位器布局设计的最佳算法。选择了D优化准则作为优化设计准则。最后,提出了两个示范案例。通过蒙特卡罗方法实现并验证了实际陶瓷芯的定位方案。此外,通过实验验证了定位方案。仿真和实验结果均表明,最佳定位可以显着降低输入误差。

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