首页> 外文会议>NASA 24th Space Simulation Conference >NOVEL GUIDED HEAD EXPANDER DESIGN USES CLOSE COUPLED INERTIAL MASSES AND HYDROSTATIC BEARINGS TO MINIMIZE CROSS AXIS MOTION
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NOVEL GUIDED HEAD EXPANDER DESIGN USES CLOSE COUPLED INERTIAL MASSES AND HYDROSTATIC BEARINGS TO MINIMIZE CROSS AXIS MOTION

机译:新型引导式头部扩展器设计使用紧密耦合的惯性质量和静压轴承来最小化横轴运动

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When vertical vibration testing of large test articles is required, it is common to install a head expander on the armature of a shaker. Larger test articles often have a center of gravity that is relatively far above the mounting surface, and these test articles in combination with the armature and head expander, may have multiple structural resonances within the desired test band that do not exist in the intended application. These test configuration driven characteristics are likely to create unwanted cross axis excitation during a vibration test. The difficulty in controlling unwanted cross axis motion usually increases when testing large items. Excessive cross axis motion can “over-test” the test item, creating the risk of damaging the test item or limit the input in the test axis jeopardizing a successful test. At Orbital Sciences request, Team Corporation designed a guided head expander system that greatly reduces the cross axis motion at the test article mounting surface of the head expander. The new design couples large inertial masses to the head expander through high stiffness hydrostatic self-aligning bearings. The entire guided head expander and inertial mass structures have a first resonance higher than the test band of interest, and provides high dynamic stiffness. The head expander and inertial masses are supported by a suspension system with a low first resonance, below the test band. It is interesting to note that this design approach exhibits high “dynamic” stiffness and low static stiffness. Conventional designs for this type of equipment may have relatively high cross axis load ratings which might suggest that they would provide good cross axis motion control, but these designs often suffer from structural resonances within the test band of interest that produce unwanted cross axis motion.
机译:当需要对大型测试物品进行垂直振动测试时,通常在振动筛的电枢上安装一个头部扩展器。较大的测试物品通常具有比安装表面高得多的重心,并且这些测试物品与电枢和头部扩展器结合在一起,可能会在所需测试带内具有多种结构共振,而在预期应用中是不存在的。这些测试配置驱动的特性可能会在振动测试过程中产生不必要的横轴激励。测试大型项目时,控制不必要的横轴运动的难度通常会增加。过多的横轴运动会“过度测试”测试项目,从而产生损坏测试项目或限制测试轴输入的危险,从而损害成功的测试。根据Orbital Sciences的要求,Team Corporation设计了一种引导式头部扩展器系统,该系统可大大减少头部扩展器的测试物品安装表面上的横轴运动。新设计通过高刚度静压自调心轴承将较大的惯性质量耦合到头部膨胀机。整个引导头扩展器和惯性质量结构的第一共振频率高于感兴趣的测试带,并具有较高的动态刚度。磁头扩展器和惯性质量由测试带以下的低第一共振的悬挂系统支撑。有趣的是,这种设计方法表现出较高的“动态”刚度和较低的静态刚度。这种类型的设备的常规设计可能具有相对较高的横轴额定载荷,这可能表明它们将提供良好的横轴运动控制,但是这些设计通常会在目标测试带内遭受结构共振,从而产生不必要的横轴运动。

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