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Applications of Lightweight Models Based on Stereo-Lithography for Transonic Wind-Tunnel

机译:基于立体光刻的轻型模型在跨音速风洞中的应用

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摘要

Strength and stiffness of current lightweight models based on stereo-lithography (SL) could not meet experimental requirements of the transonic wind tunnel test. Therefore, a composite structural wind tunnel model is proposed, which is constructed by the internal metal framework and outer photopolymer resin configuration. Taking a lightweight AGARD-B model as an example, its structural strength and stiffness verified results were investigated under transonic wind-tunnel test environments, and its aerodynamic characteristics were also analyzed by comparing with those of the metal models. It is proven that applications of the lightweight models strengthened by metal framework are feasible for the transonic wind tunnel. The results indicate that the aerodynamic characteristics of the lightweight models at small angle of attacks (-2°≤α≤2°) are similar to the metal models and is not interfered by different stiffness, and they have slight disagreement at larger angle of attack (2°<α≤8°). In addition, the method decreases the test models' processing cycle by approximately 69%, weight by approximately 38.9%, and manufacture cost greatly. It increases inherent frequency of the test models by approximately 73.2% avoiding resonance of the test system. The lightweight models based on SL show convenience and promise in preliminary aerodynamic studies and initial selection aircrafts configuration with complex structure.
机译:当前基于立体光刻(SL)的轻型模型的强度和刚度不能满足跨音速风洞测试的实验要求。因此,提出了一种复合结构风洞模型,该模型由内部金属框架和外部光敏聚合物树脂构造构成。以轻型AGARD-B模型为例,在跨音速风洞试验环境下研究了其结构强度和刚度验证结果,并与金属模型进行了比较,分析了其空气动力学特性。实践证明,采用金属框架加固的轻型模型在跨音速风洞中是可行的。结果表明,轻质模型在较小迎角(-2°≤α≤2°)时的空气动力学特性与金属模型相似,并且不受不同刚度的干扰,并且在较大迎角下略有不同(2°<α≤8°)。另外,该方法将测试模型的处理周期减少了约69%,重量减少了约38.9%,并且制造成本大大降低。它将测试模型的固有频率提高了约73.2%,避免了测试系统的共振。基于SL的轻型模型在初步的空气动力学研究和具有复杂结构的初始选择飞机配置中显示出便利性和前景。

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