爆炸冲击下独立式设备的动力学分析

Li-qiang Wang
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The factors affecting the toppling of the free-standing equipment were analyzed. Introduction There has been a great increase in advanced equipment adopted in teaching, research, production and other fields in China, such as precision machinery, instruments and apparatus, regulator, checkout and detection equipment, etc. Many of these devices, which are not fixed to the foundation but are placed directly on the table rest or on the ground, are called free-standing equipment. When nuclear explosion and conventional weapon explosion reacting, it will cause strong impact and vibration of the surrounding medium and engineering structure of the protection project, thus cause the free-standing equipment inside the project to slide, shake or even topple over, which will cause damage to the equipment and loss of corresponding functions. 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引用次数: 0

摘要

分析独立设备在爆炸冲击和振动作用下的运动状态,对设备的安全运行具有重要的指导意义。本文建立了爆炸冲击作用下独立式设备的振动运动模型,推导了独立式设备振动运动的控制方程。采用规范推荐的半正弦脉冲来描述爆炸爆炸位置的运动波形。采用解析计算方法求解了水平冲击作用下独立式设备的振动运动控制方程。采用数值计算方法,分析了在水平冲击和垂直冲击耦合作用下独立式设备的运动控制方程。分析了影响独立式设备倾倒的因素。中国在教学、科研、生产等领域采用的先进设备大幅增加,如精密机械、仪器仪表、调节器、检验检测设备等。这些设备中有许多不固定在基础上,而是直接放置在台架或地面上,称为独立式设备。核爆炸与常规武器爆炸反应时,会对防护工程的周围介质和工程结构产生强烈的冲击和振动,从而使工程内部的独立式设备发生滑动、震动甚至倾覆,造成设备的损坏和相应功能的丧失。因此,在运动的基础上研究独立式设备的运动特性,确定影响独立式设备倾覆的因素,对独立式设备的安全工作、保管、隔震和抗震更新设计具有重要的指导意义。基本假设在动力基础上的独立式设备的运动是非常复杂的。为了简化分析,本文将独立设备假设为均质刚体,将地面假设为刚性平面。所采用的模型如图1所示:为设备形状角,θ为设备晃动角。工程结构在冲击作用下产生振动,振动导致独立式设备的基础产生振动。当运动增加到一定程度时,独立式设备会发生晃动或滑动,甚至滑动和晃动。由于篇幅限制,本文只研究了纯振动运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Analysis of Free-standing Equipment under Blast Shock
Analysis of the motion state of the free-standing equipment under blast shock and vibration has important guiding significance for the safety of the equipment. In this paper, the model of shaking motion of the free-standing equipment under blast shock was established, and the governing equations of shaking motion of the free-standing equipment were derived. The semi-sinusoidal pulse recommended by the specification was used to describe the motion waveform of the explosion blast location. Analytical calculation method was used to solve shaking motion governing equations of the free-standing equipment under the impact of horizontal shock. Numerical calculation method was used to analyze the motion governing equations of the free-standing equipment under the coupling effect of horizontal shock and vertical shock. The factors affecting the toppling of the free-standing equipment were analyzed. Introduction There has been a great increase in advanced equipment adopted in teaching, research, production and other fields in China, such as precision machinery, instruments and apparatus, regulator, checkout and detection equipment, etc. Many of these devices, which are not fixed to the foundation but are placed directly on the table rest or on the ground, are called free-standing equipment. When nuclear explosion and conventional weapon explosion reacting, it will cause strong impact and vibration of the surrounding medium and engineering structure of the protection project, thus cause the free-standing equipment inside the project to slide, shake or even topple over, which will cause damage to the equipment and loss of corresponding functions. Therefore, the study of the motion characteristics of the free-standing equipment on the basis of motion and the determination of the factors affecting the toppling of the free-standing equipment are of great guiding significance for the safe work, safekeeping, updated design of the isolation and anti-seismic of the free-standing equipment. Basic Assumption The motion of the free-standing equipment on dynamic foundation is very complicated. In this paper, the free-standing equipment was assumed as a homogeneous rigid body and the ground was assumed as a rigid plane to simplify the analysis. The model adopted is shown in Figure 1: is equipment shape angel and θ is equipment shaking angle. The engineering structure vibrated under impact and vibration result in the foundation of the free-standing equipment vibrated. When the movement increased to a certain extent, the free-standing equipment will shake or slide or even slide and shake. Due to the space limitation, only pure shaking motion was studied in this paper.
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