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EXPERIMENTAL VALIDATION OF COMPLIANT JOINTS IN A DYNAMIC SPAR NUMERICAL MODEL

机译:动态翼梁数值模型中柔顺关节的实验验证

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A dynamic spar numerical model for passive shape change is validated for a single degree of freedom contact-aided compliant mechanism (CCM) in a flapping spar. CCMs are modeled as compliant joints: spherical joints with distributed mass and three axis nonlinear torsional spring-dampers. Several assumptions were made in the original formulation of the model, such as assuming the spars were rigid and a simple damping model for the compliant joints. An experiment was performed to validate the assumptions and tune the model. Four configurations of the leading edge spar were tested: a solid spar, a previously designed CCM at two spatial locations, and a modified version of the CCM. Reflective markers were placed on each configuration, then the spars were inserted into the wing roots of a clamped ornithopter. An array of computer vision cameras was used to track the spar and CCM kinematics as they were flapped. First, a flapping angle function was extracted using a moving average of the flapping cycles. Then, a genetic algorithm was implemented to tune the stiffness and damping parameters for each of the configuration, minimizing the root mean square error between the model and experimental marker kinematics. The model was able to capture the deflection amplitude and harmonics of the CCMs with very good agreement and minimal to no phase shift.
机译:在拍打翼梁中验证了用于被动形状变化的动态SPAR数值模型,用于单一程度的自由度接触兼容兼容机构(CCM)。 CCMS以柔顺的关节为模型:具有分布式质量和三轴非线性扭转弹簧阻尼器的球形接头。在模型的原始制剂中进行了几种假设,例如假设翼梁是刚性的刚性和柔顺关节的简单阻尼模型。进行实验以验证假设并调整模型。测试前缘翼梁的四种配置:固体翼梁,先前在两个空间位置设计的CCM,以及CCM的修改版本。将反射标记放置在每个构型上,然后将翼梁插入夹紧槽孔的翼根中。一系列计算机视觉摄像头用于跟踪翼梁和CCM运动学,因为它们被拖出。首先,使用拍摄周期的移动平均线提取拍打角度函数。然后,实现了遗传算法以调整每个配置的刚度和阻尼参数,最小化模型和实验标记运动学之间的根均方误差。该模型能够以非常良好的协议捕获CCM的偏转幅度和谐波,并且无相移。

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