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An elastic-plastic stress analysis steel-reinforced thermoplastic composite cantilever beam

机译:弹塑性应力分析钢增强热塑性复合材料悬臂梁

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摘要

In the present study an analytical elastic-plastic stress analysis is carried out for a low-density homogeneous polyethylene thermoplastic cantilever beam reinforced by steel fibers. The beam is loaded by a constant single force at its free end. The expansion of the region and the residual stress component of σ{sub}x are determined for 0°, 30°, 45°, 60° and 90° orientation angles. Yielding begins for 0° and 90° orientation angles at the upper and lower surfaces of the beam at the same distances from the free end. However, it starts first at the upper surface for 30° and 45° orientation angles. The elastic-plastic analysis is carried out for both the plastic region which spreads only at the upper surface and the plastic region which spreads at the upper and lower surfaces together. The residual stress components of σ{sub}x and τ{sub}(xy) are also determined. The intensity of the residual stress component is maximum at the upper and lower surfaces of the beam, but the residual stress component of τ{sub}(xy) is maximum on or around the x-axis. The beam can be strengthened by using the residual stresses. The distance between the plastically collapsed point and the free end is calculated for the same load in the beam for 0°, 30°, 45°, 60° and 90° orientation angles.
机译:在本研究中,对钢纤维增强的低密度均质聚乙烯热塑性悬臂梁进行了分析弹塑性应力分析。梁在其自由端受到恒定的单一力加载。对于0°,30°,45°,60°和90°定向角,确定区域的扩展和σ{sub} x的残余应力分量。在距自由端相同距离处,光束的上,下表面在0°和90°定向角处开始屈服。但是,它首先以30°和45°的定向角从上表面开始。对仅在上表面扩展的塑料区域和在上,下表面扩展的塑料区域都进行了弹塑性分析。还确定了σ{sub} x和τ{sub}(xy)的残余应力分量。残余应力分量的强度在梁的上表面和下表面最大,但是τ{sub}(xy)的残余应力分量在x轴上或绕x轴最大。可以通过使用残余应力来加强梁。对于梁在0°,30°,45°,60°和90°定向角下的相同载荷,计算出塑性收缩点与自由端之间的距离。

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