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Trigger control characteristics of fuze-recoil simulation system based on electromagnetic launcher

机译:基于电磁发射器的引信-反冲模拟系统的触发控制特性

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摘要

Fuze is the information processing and control unit of the ammunition, so the quality of the fuze becomes one of the most important aspects of ammunition detection. Since using recoil force is a common method to the arm fuze, its dynamic simulation test has always been the focus of the fuze test research. A new fuze recoil environmental simulation method is proposed based on the electromagnetic launcher. Then the trigger control characteristics of the fuze recoil simulation system and the influence of the trigger position on the recoil force are studied. The results of the study show that although the pulse width of the armature force curve can be changed by adjusting the trigger position, due to the limit of the range, there also exists the contradiction that the electromagnetic pulse width gets narrow with the increase of electromagnetic force peak. Thus, it cannot meet the requirements of the fuze launch recoil simulation. In order to make the recoil force close to the actual environment, the multi-stage trigger control characteristics are analyzed, and the influence of trigger position on recoil environmental force characteristics is studied. Then a fuze launch recoil environmental simulation platform is established and continuous electromagnetic force is achieved by using the trigger strategy. Finally, the experiment is performed to simulate the fuze launch recoil environment and show the feasibility and effectiveness of the proposed theoretical analysis. The major research work of this paper includes studying the composition and basic principle of the simulation system, establishing a launch model to analyze the single-stage and multi-stage coil fuze launch recoil characteristics, designing the test device to verify the correctness and validity of the research. This paper draws the conclusions that the feasibility of the fuze launch environmental simulation based on the electromagnetic launcher is verified, the trigger position has a great influence on force peak continuity, the problems of low maximum overload peak and short peak duration in the multi-stage coil fuze launch environmental simulation can be effectively solved through adjusting the trigger position, the system has creative and extensive application prospects.
机译:引信是弹药的信息处理和控制单元,因此引信的质量成为弹药检测最重要的方面之一。由于使用反冲力是手臂引信的一种常用方法,因此其动态仿真测试一直是引信测试研究的重点。提出了一种基于电磁发射器的引信后坐力环境仿真新方法。然后研究了引信后坐力仿真系统的触发控制特性以及触发位置对后坐力的影响。研究结果表明,尽管通过调节触发位置可以改变电枢力曲线的脉冲宽度,但由于范围的限制,还存在电磁脉冲宽度随着电磁场的增加而变窄的矛盾。力峰值。因此,它不能满足引信发射反冲模拟的要求。为了使后坐力接近实际环境,分析了多级触发控制特性,研究了触发位置对后坐力的影响。然后建立引信后坐力环境仿真平台,并通过触发策略获得连续的电磁力。最后,进行了模拟引信后坐力环境的实验,证明了所提出理论分析的可行性和有效性。本文的主要研究工作包括研究仿真系统的组成和基本原理,建立用于分析单级和多级线圈引信发射反冲特性的发射模型,设计测试装置以验证该系统的正确性和有效性。这项研究。得出结论:验证了基于电磁发射器的引信发射环境仿真的可行性,触发位置对力峰值连续性有很大影响,多级最大过载峰值低,峰值持续时间短等问题。通过调节触发位置可以有效解决线圈引信发射环境仿真问题,该系统具有创新性和广阔的应用前景。

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