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Equivalence relationship between a three-axis centrifugal test load and flight load

机译:三轴离心试验载荷与飞行载荷的等效关系

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摘要

For aircraft flying with high accelerations and high acceleration change rates in three-dimensional space, load simulation tests are usually carried out in a three-axis centrifuge with three degrees of freedom. A triaxial centrifugal test that simulates the actual flight environment must reflect the real effect of the flight load on the structure. An acceleration analysis model of a three-axis centrifuge in body coordinates is established to meet this requirement. The spatial distribution of the acceleration and the effects of kinematic parameters on acceleration are analyzed. Using the acceleration analysis model, the displacement equivalence and strain energy equivalence relations of a beam in a centrifugal environment and actual flight environment are studied. Moreover, equivalence relationships meeting requirements are proposed and validated for a specific example. The distribution of the acceleration and the equivalence relations of the two environments are the basis for the ground simulation of flight loads.
机译:对于在三维空间中以高加速度和高加速度变化率飞行的飞机,通常在具有三个自由度的三轴离心机中进行负载模拟测试。模拟实际飞行环境的三轴离心测试必须反映飞行载荷对结构的实际影响。建立了三坐标离心机在人体坐标系中的加速度分析模型来满足这一要求。分析了加速度的空间分布以及运动学参数对加速度的影响。利用加速度分析模型,研究了在离心环境和实际飞行环境中梁的位移当量和应变能当量关系。此外,针对特定示例,提出并验证了满足要求的等价关系。两种环境的加速度分布和当量关系是飞行载荷地面模拟的基础。

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