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Design and finite element analysis of a Hydraulic Excavator Boom

机译:液压挖掘机吊杆的设计与有限元分析

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In today's world of growing competition, all industries are trying their best to give the components of high quality with minimum expenditure. So in present work a new semi-elliptical boom has been selected to replace the conventional boom, which is usually made of rectangular. In particular, the study wants to substitute the rectangular section for Semi-elliptical section. This change lightens the weight of the boom. For this purpose, boom with semi-elliptical cross-section has been modeled using cad software pro/E wildfire 4.0. Using VB program automatic calculation module (UPAS), the static force at different working condition of the boom calculated. Then Finite element analysis has been done to determine the static stress at a given load condition using software ANSYS 12. The result shows that total weight is reduced by 5%. The value of maximum stress and displacement is 115.663MPa and 12.885 mm respectively. Thus the structure is capable of withstanding the maximum stress. The structure is failsafe. In this paper only static stress analysis is done.
机译:在当今竞争的世界中,所有行业都在尽力为最低支出提供高质量的组成部分。因此,目前的工作已经选择了新的半椭圆臂以取代传统的繁荣,通常由矩形制成。特别是,该研究希望替代半椭圆形部分的矩形部分。这种变化会降低繁荣的重量。为了这个目的,吊杆与半椭圆形的横截面已被使用CAD软件亲建模/ E野火4.0。使用VB程序自动计算模块(UPAS),计算出不同工作条件的静态力。然后已经完成了有限元分析以使用软件ANSYS 12确定给定负载条件下的静态应力。结果表明总重量减少5%。最大应力和位移的值分别为115.663MPa和12.885毫米。因此,该结构能够承受最大应力。结构是故障选择。在本文中,只完成了静态应力分析。

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