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Integration of thermomechanical strains into tolerancing analysis

机译:将热机械应变整合到公差分析中

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To improve the performance of a helicopter turboshaft engine requires optimising the energy yield of the different components, and more particularly controlling clearance between the tips of the high pressure turbine blades and the stator. Dimension-chain tools take into account the manufacturing dispersion of the parts and assembly defects. This ensures the interchangeability of the different components and guarantees that a turbine can carry out different service functions, as the turbine is modelled in infinitely rigid solids. However, this approach does not take thermomechanical effects into account. And yet, the different operating regimes of a helicopter engine make it indispensable that the effects caused by the thermodynamic cycle should be integrated. The aim of this article is to show how using dimension chain and thermomechanical tools can contribute to controlling clearances at the tip of a high pressure turbine blade.
机译:为了改善直升机涡轮轴发动机的性能,需要优化不同部件的能量产率,并且更具体地,控制高压涡轮叶片的尖端与定子之间的间隙。尺寸链工具考虑了零件的制造差异和装配缺陷。这确保了不同部件的互换性,并确保了涡轮机可以执行不同的服务功能,因为涡轮机是用无限刚性的实体建模的。但是,这种方法没有考虑热机械效应。然而,直升飞机发动机的不同运行方式使得必须综合考虑由热力学循环引起的影响。本文的目的是说明使用尺寸链和热机械工具如何有助于控制高压涡轮叶片尖端的间隙。

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