Destruction of a protective pipe coating under cyclic loading by internal pressure

V. V. Struzhanov, A. Chaikin
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Abstract

An analytical method has been developed for determining the moment of destruction of thin pipe coatings whose material retains elasticity during cyclic changes in internal pressure. The coating material has the property of strain softening, that is, destruction with increasing deformation occurs as stresses drop. The properties of the coating material are described by a convex-concave potential. Due to damage accumulation resulting from fatigue loading, the properties of the coating material change. Hence, the complete deformation curve degenerates. To determine the moment of destruction, the methods of the mathematical theory of catastrophes are used, which make it possible to find all the equilibrium positions of the system and the point of instability of the deformation process. Due to the degeneration of the properties of the coating material, the catastrophe (loss of stability) approaches the parameters of fatigue loading.
内压循环载荷作用下管道保护层的破坏
本文提出了一种测定在内压循环变化中材料保持弹性的薄管涂层的破坏力矩的分析方法。涂层材料具有应变软化的特性,即随着应力的下降,随着变形的增加而发生破坏。涂层材料的性能用凹凸势来描述。由于疲劳载荷引起的损伤积累,涂层材料的性能发生了变化。因此,完全变形曲线退化。为了确定破坏力矩,采用了灾变数学理论的方法,可以找到系统的所有平衡位置和变形过程的不稳定点。由于涂层材料性能的退化,突变(失稳)接近疲劳载荷参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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