一种振动冲击试验台产生的动态响应预测及试验模态的分析方法

Ilya S. Komarov, Valery Feldshteyn
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摘要

本文介绍了一种基于爆炸作用的振冲台架的动力特性和试验模态的计算预测方法。振冲台架广泛应用于航天器机载设备的地面实验测试中,用于对烟火分离装置运行过程中产生的非静止宽带冲击进行测试。这些台架的工作原理是基于在弹性-惯性元件(谐振器)系统中使用爆炸能量源激发强烈的非平稳宽带振动模式,影响测试对象。利用该分析技术以冲击谱的形式预测振冲架的试验模式,并进行试验前计算,以调整振冲架的特性,确保必要的试验模式的实施。实验数据验证了该方法计算结果的可靠性。关键词:动刚度,初始参数法,冲击载荷,烟火分离手段,地面试验发展,振冲强度,爆炸作用振冲站。
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An analytical method for the dynamic response prediction and produced test modes generated by vibro-shock test benches
This article describes a methodology for the computational forecasting of dynamic characteristics and test modes, implemented by vibro-shock stands of explosive action. Vibro-shock stands are widely used in ground-based experimental testing of onboard equipment of spacecraft for non-stationary broadband impact arising from the operation of pyrotechnic separation means. The principle of operation of these stands is based on the excitation of an intense non-stationary broadband vibration mode using an explosive energy source in a system of elastic-inertial elements (resonator), affecting the test object. The presented analytical technique is used to predict the test modes implemented by the vibro-shock stand in the form of a shock spectrum and for pre-test calculations in order to adjust the characteristics of the stand, ensuring the implementation of the necessary test modes. The reliability of the calculation results performed according to this technique is confirmed by experimental data. Key words: dynamic stiffness, method of initial parameters, shock loading, pyrotechnic separation means, ground experimental development, vibro-shock strength, vibro-shock stands of explosive action.
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