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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Elastic Stability of a Cantilever Beam (Rod) Supported by an Elastic Foundation, With Application to Nano-Composites
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Elastic Stability of a Cantilever Beam (Rod) Supported by an Elastic Foundation, With Application to Nano-Composites

机译:弹性基础支撑的悬臂梁的弹性稳定性及其在纳米复合材料中的应用

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摘要

A simple analytical ("mathematical") predictive model is developed with an objective to establish the condition of elastic stability for a compressed cantilever beam (rod) of finite length lying on a continuous elastic foundation. Based on the developed model, practical guidelines are provided for choosing the adequate length of the beam and/or its flexural rigidity and/or the spring constant of the foundation, so that the beam remains elastically stable. The obtained solution can be used, perhaps with some additional assumptions and modifications, for the assessment of the critical force for high-modulus and low-expansion fibers (including nano-fibers) embedded into a low-modulus and high-expansion medium (matrix). Composite systems are often fabricated at elevated temperatures and operated at lower temperature conditions. It is imperative that an embedded fiber remains elastically stable, i.e., does not buckle as a result of the thermal contraction mismatch of its material with the material of the matrix. If buckling occurs, the functional (e.g., thermal) and/or the structural ("physical") performance of the composite might be compromised.
机译:开发了一种简单的分析(“数学”)预测模型,其目的是为位于连续弹性基础上的有限长度的压缩悬臂梁(杆)建立弹性稳定性条件。基于开发的模型,提供了实用的准则,用于选择梁的适当长度和/或梁的抗弯刚度和/或基础的弹簧常数,以使梁保持弹性稳定。可能会使用获得的解决方案,并可能进行一些附加的假设和修改,以评估嵌入到低模量和高膨胀介质(矩阵)中的高模量和低膨胀纤维(包括纳米纤维)的临界力)。复合系统通常在高温下制造,并在较低温度条件下运行。至关重要的是,嵌入的纤维必须保持弹性稳定,即不会由于其材料与基质材料的热收缩失配而弯曲。如果发生屈曲,则可能损害复合材料的功能(例如,热)和/或结构(“物理”)性能。

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