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首页> 外文期刊>International Journal of Automotive Technology >Lifting Capability and Stress Analyses of the Crane System for a Large-Sized Tactical Wrecker
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Lifting Capability and Stress Analyses of the Crane System for a Large-Sized Tactical Wrecker

机译:用于大型战术残骸的起重机系统的提升能力和应力分析

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摘要

A large-sized tactical wrecker is a special-purpose vehicle that lifts and tows tactical vehicles and heavy loads. It consists of a crane, a post structure, outriggers and a suitable chassis truck, and during its initial design, the structural safety and tipping stability should be preemptively examined in terms of the layout of these components. This paper proposes computer-aided engineering (CAE) methods to evaluate the maximum lifting capacity of the wrecker and the structural safety of its crane during the initial design. The analytical model for the large-sized wrecker is constructed with 236 degrees of freedom by combining the crane system developed using the ADAMS macros with the dynamic model of large chassis truck with an axle suspension. The design parameters for the wrecker model that influence the tipping stability are selected, and then the maximum lifting loads with the corresponding changes are calculated. This parametric study shows that the characteristics of the boom and the layout of the outriggers greatly affect the maximum lifting capacity. Finite element (FE) analyses of the 1st stage boom and the 3rd stage boom show the stresses under the maximum overturning moment condition are within the allowable strength.
机译:一个大型战术残骸是一种专用车辆,升降和扭转战术车辆和重载。它由起重机,柱结构,外臂和合适的底盘卡车组成,在其初始设计期间,应在这些组分的布局方面先发制地检查结构安全性和倾斜稳定性。本文提出了计算机辅助工程(CAE)方法,以评估破坏者的最大提升能力和起重机在初始设计期间的结构安全性。通过将使用ADAMS宏开发的起重机系统与带轴悬架的大型机箱卡车的动态模型相结合,通过组合起重机系统来构造大型残骸的分析模型。选择影响尖端稳定性的破坏者模型的设计参数,然后计算具有相应变化的最大提升负载。该参数学研究表明,吊杆的特性和远端的布局极大地影响了最大提升能力。第一阶段繁荣的有限元(Fe)分析和第3阶段繁荣显示最大推翻时刻条件下的应力在允许的力量范围内。

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