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Analysis of thick beams with temperature-dependent material properties under thermomechanical loads

机译:热机械荷载下温度依赖材料特性的厚梁分析

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摘要

This study focuses on the thermoelastic behavior of simply supported thick beams with temperature-dependent material properties under thermomechanical loads. The heat conduction analysis is based on the one-dimensional Fourier's law, and the displacement and stress analysis is based on the two-dimensional thermoelasticity theory. The solution of temperature field across the thickness is obtained. By dividing the beam into a series of thin slices, the temperature and the material properties in each slice are considered to be uniform. The state space method is used to give the displacements and stresses for every slice. The transfer-matrix method is used to give the displacements and stresses for the beam. Finally, an example is conducted to analyze the temperature, displacement, and stress fields in a carbon steel beam. The example reveals that the temperature not only produces displacements and stresses itself but also affects the displacements and stresses induced by the mechanical load.
机译:该研究侧重于在热机械负载下具有温度依赖性材料特性的简单支撑厚梁的热弹性行为。热传导分析基于一维傅立叶定律,并且位移和应力分析基于二维热弹性理论。获得横跨厚度的温度场溶液。通过将光束分成一系列薄片,将每个切片中的温度和材料特性被认为是均匀的。状态空间方法用于为每个切片提供位移和应力。转移矩阵方法用于给出光束的位移和应力。最后,进行一个例子以分析碳钢束中的温度,位移和应力场。该示例揭示了温度不仅产生位移和应力本身,而且还影响机械负荷引起的位移和应力。

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