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An analytical model for a clamped isotropic beam under thermal effects

机译:热效应下夹紧各向同性光束的分析模型

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Structures and industrial equipment often operate in environments where temperature variations take place. Although thermal effects may be negligible in some cases, they have caused the unexpected failure of mechanical systems many times. Whether or not temperature has significant effects on the dynamical behavior of such machines and structures depends upon several aspects, amongst which are geometry, material properties and boundary conditions. In this paper we investigate the dynamical behavior of a clamped beam under the influence of a uniform, quasi-statically varying temperature field. An analytical model was used, based on Euler-Bernoulli's beam theory with the introduction of the proper boundary conditions. Temperature effects are included in terms of an axial force that shows up when the beam tends to thermally expand, but this expansion is restrained by the clamping. Preliminary results do not agree with experimental data, since perfect clamping is difficult to achieve in practice. Finally the model is updated with the inclusion of axial and torsional springs connecting the beam to the support. The spring constants were calculated through optimization procedure to minimize the differences between the natural frequencies obtained from the analytical model and the corresponding experimental ones. Agreement with experimental results is reasonable up to the 4th mode of the beam. In the future, this analytical model is to be used for design and simulation of an active controller that accounts for temperature changes in the structure.
机译:结构和工业设备通常在温度变化发生的环境中运行。尽管在某些情况下,热效应可能可以忽略不计,但它们已经造成了很多次机械系统的意外失效。温度是否对这种机器的动力学行为具有显着影响,并且结构取决于几何方面,其中是几何形状,材料性质和边界条件。在本文中,我们研究了夹紧光束在均匀,准静态变化温度场的影响下的动态行为。基于Euler-Bernoulli的光束理论,使用了引入适当的边界条件,使用了分析模型。温度效应在轴向力方面包括出现在梁倾向于热膨胀时,但这种膨胀通过夹紧抑制。初步结果不同意实验数据,因为在实践中难以实现完美夹紧。最后,通过将梁连接到支撑件的轴向和扭转弹簧,更新模型。通过优化程序计算弹簧常数,以最小化从分析模型和相应的实验组获得的自然频率之间的差异。与实验结果的协议是合理的,直到光束的第4个模式。将来,该分析模型用于设计和仿真,该主动控制器占结构中温度变化的影响。

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