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Use of a Ni60Ti shape memory alloy for active jet engine chevron application: II. Experimentally validated numerical analysis

机译:Ni60Ti形状记忆合金在主动喷气发动机人字形应用中的用途:II。经过实验验证的数值分析

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A shape memory alloy (SMA) composition of Ni60Ti40 (wt%) was chosen for the fabrication of active beam components used as cyclic actuators and incorporated into morphing aerospace structures. The active structure is a variable-geometry chevron (VGC) designed to reduce jet engine noise in the take-off flight regime while maintaining efficiency in the cruise regime. This two-part work addresses the training, characterization and derived material properties of the new nickel-rich NiTi composition, the assessment of the actuation properties of the active beam actuator and the accurate analysis of the VGC and its subcomponents using a model calibrated from the material characterization. The second part of this two-part work focuses on the numerical modeling of the jet engine chevron application, where the end goal is the accurate prediction of the VGC actuation response. A three-dimensional (3D) thermomechanical constitutive model is used for the analysis and is calibrated using the axial testing results from part I. To best capture the material response, features of several SMA constitutive models proposed in the literature are combined to form a new model that accounts for two material behaviors not previously addressed simultaneously. These are the variation in the generated maximum actuation strain with applied stress level and a smooth strain-temperature constitutive response at the beginning and end of transformation. The accuracy of the modeling effort is assessed by comparing the analysis deflection predictions for a given loading path imposed on the VGC or its subcomponents to independently obtained experimental results consisting of photogrammetric data. For the case of full actuation of the assembled VGC, the average error in predicted centerline deflection is less than 6%.
机译:选择了Ni60Ti40(wt%)的形状记忆合金(SMA)成分来制造用作循环致动器的主动梁组件,并将其并入变形的航空航天结构中。主动结构是可变几何人字形(VGC),旨在在起飞飞行状态下降低喷气发动机的噪音,同时保持巡航状态下的效率。这项由两部分组成的工作解决了新型富镍NiTi成分的训练,表征和衍生材料性能,有源束致动器的致动性能评估以及使用通过校准的模型对VGC及其子组件进行准确分析的问题。材料表征。这个由两部分组成的工作的第二部分着重于喷气发动机V形人字形应用程序的数值建模,其最终目标是对VGC驱动响应的准确预测。使用三维(3D)热机械本构模型进行分析,并使用第一部分的轴向测试结果进行了校准。为了最好地捕捉材料响应,将文献中提出的几种SMA本构模型的特征结合起来以形成一个新的该模型说明了先前未同时解决的两种重大行为。这些是在转换的开始和结束时,所产生的最大驱动应变随施加的应力水平的变化以及平滑的应变温度本构响应。通过将施加在VGC或其子组件上的给定加载路径的分析挠度预测与由摄影测量数据组成的独立获得的实验结果进行比较,可以评估建模工作的准确性。对于已组装的VGC的完全致动,预计中心线挠度的平均误差小于6%。

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