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An investigation of the effect of spring forces on the separation of rocket motor and payload.

机译:弹簧力对火箭发动机和有效载荷分离的影响的研究。

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The purpose of this thesis is to present the methodology and equations used to perform a payload-separation analysis, as well as to provide analysis results of a specific missile system using three different models for the spring or separation force. Specifically, the models considered in this thesis are (1) spring force as a function of frequency, which was recently suggested in literature; (2) the spring force modeled as a function of distance and the springs are fixed on the separating bodies; and (3) the spring force modeled as a function of distance, but the springs are allowed to move along the plane of separation on the ongoing body. The results of the analyses were compared and it was determined that modeling the system with the springs as a function of frequency is not physically realistic. Of the two models with the spring forces being a function of distance, the model with the springs attached to both bodies is found to be conservative with respect to the separation parameters of the bodies.
机译:本文的目的是提供用于进行有效载荷分离分析的方法和方程式,并提供使用三种不同弹簧或分离力模型的特定导弹系统的分析结果。具体来说,本文考虑的模型是:(1)弹簧力与频率的关系,最近在文献中提出; (2)将弹簧力建模为距离的函数,并将弹簧固定在分离体上; (3)将弹簧力建模为距离的函数,但允许弹簧在进行中的物体上沿分离平面移动。比较了分析结果,并确定使用弹簧作为频率函数对系统进行建模在物理上是不现实的。在弹簧力是距离的函数的两个模型中,发现两个弹簧都附有弹簧的模型相对于车身的分离参数是保守的。

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