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Experimental Analysis Of Shoulder's Receiving Force In Hand-Held Shoulder-Fired Weapon's Automatic Fire Process

机译:手持式肩部武器自动消防过程中肩部接收力的实验分析

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摘要

Weapon-controling ability in automatic fire process affects the firing accuracy pivotally because the reaction velocity of a human body is limited. To overcome such effect and reflect objectively the firing accuracy of automatic fire weapons, it is important to develop intelligent simulation gun carriage of feedback ability .To develop such gun carriage, it is necessary to understand fully the man-gun interactional physicals processing, in course of automatic fire, Especially when shooters are in firing state. Make man-gun interactional model of shooters' being in active condition, According to the mechanical characteristics and moving characteristics. For what is said above, this article has done some research on man-gun interactional force when shooters are in active condition. This article has used piezoelectric pressure transducer and acceleration transducer to form man-gun interactional measuring system, Introduced operational principle and calibration method and carried out man-gun interactional experimental data and worked out, data-processing method and made theoretical analysis of measured motion and force curve. All have laid a foundation to make man-gun interactional model
机译:自动消防过程中的武器控制能力可枢转地影响射击精度,因为人体的反应速度有限。克服这种效果并客观地反映自动消防武器的射击精度,重要的是开发智能仿真枪运输反馈能力。要制定这种枪支,有必要完全了解人员互动体力处理,当时自动火灾,特别是当射击者处于射击状态时。根据机械特性和移动特性,使射击者的人枪互动模型处于活跃状态。对于上文所述,本文在射击者处于活跃状态时对人枪互动力进行了一些研究。本文采用压电压力传感器和加速度传感器来形成人枪互动测量系统,引入了操作原理和校准方法,并进行了人员互动实验数据,并制定了数据处理方法,并对测量运动进行了理论分析,并进行了理论分析力曲线。所有人都奠定了制作人枪互动模型的基础

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