Reliability analysis and calculation of large caliber naval gun recoil process based on GO methodology and multi-state combination

Xiaojun Zhang, Z. Yao, Lin Zhang, Hongzhen Song, Kai Hui
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Abstract

This This article summarizes the launch mission process of the most advanced large-caliber naval gun in service at this stage, and gives the specific launch mission principle process. Focus on the analysis of the reliability of the rear seat process involving the improved variable resistance parking machine. At the same time, the traditional two-state theory is expanded to provide support for later research on maintenance strategies. The method of combining GO methodology and multi-state theory analyzes the reliability of large-caliber naval guns. First, analyze the principle of the improved variable-resistance parking machine, and establish the GO model of the improved variable-resistance parking machine corresponding to the components of the system and GO operators. Secondly, the GO operation is performed and the corresponding parameter values are substituted into the operator operation rules. At the same time, the technical indicators of continuous firing rate of large-caliber naval guns were verified to show their reliability. Finally, the state transition relationship of the maintenance process is given, which provides a theoretical basis for the formulation of maintenance strategies.
基于GO方法和多状态组合的大口径舰炮后坐过程可靠性分析与计算
本文总结了现阶段现役最先进的大口径舰炮的发射任务流程,并给出了具体的发射任务原理流程。重点分析了涉及改进型变阻停车机的后排座椅过程的可靠性。同时,对传统的两态理论进行了拓展,为后续的维修策略研究提供了支持。将GO方法与多状态理论相结合,对大口径舰炮的可靠性进行了分析。首先,对改进的变阻停车机的工作原理进行了分析,建立了改进变阻停车机对应系统各组成部分和GO操作者的GO模型。其次,执行GO操作,并将相应的参数值代入算子操作规则。同时,对大口径舰炮连续射速技术指标进行了验证,验证了其可靠性。最后给出了维修过程的状态转换关系,为维修策略的制定提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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