2013•Applied Mechanics and MaterialsOpen access

Research on the Ballistic Model and Simulation of Sensing Reconnaissance Submunition in Falling Stage

Jun Li, Yun Li, Zhi Yuan Zhang, Guangsheng Liu

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Abstract

To analyze the ballistic characteristics of sensing reconnaissance submunition in falling stage, the dynamic characteristics of sensing reconnaissance submunition is analyzed. Based on force bearing analysis, the particle ballistic model of the reconnaissance submunition in falling stage is built, and the ballistic data is simulated. The results are basically consistent to the result of live fire test, and it can be used to better simulate ballistic characteristics of the submunition. The results can be used to refer to conceptual design and determinate the fire data.

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What this paper is about

To analyze the ballistic characteristics of sensing reconnaissance submunition in falling stage, the dynamic characteristics of sensing reconnaissance submunition is analyzed. Based on force bearing analysis, the particle ballistic model of the reconnaissance submunition in falling stage is built, and the ballistic data is simulated. The results are basically consistent to the result of live fire test, and it can be used to better simulate ballistic characteristics of the submunition. The results can be used to refer to conceptual design and determinate the fire data.

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Available abstract

To analyze the ballistic characteristics of sensing reconnaissance submunition in falling stage, the dynamic characteristics of sensing reconnaissance submunition is analyzed. Based on force bearing analysis, the particle ballistic model of the reconnaissance submunition in falling stage is built, and the ballistic data is simulated. The results are basically consistent to the result of live fire test, and it can be used to better simulate ballistic characteristics of the submunition. The results can be used to refer to conceptual design and determinate the fire data.

Key concepts: Falling (accident), Ballistics, Aerospace engineering, Stage (stratigraphy), Ballistic impact, Ballistic missile, Engineering, Geology

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