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首页> 外文期刊>Journal of Materials Science >Fatigue crack orientation in NR and SBR under variable amplitude and multiaxial loading conditions
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Fatigue crack orientation in NR and SBR under variable amplitude and multiaxial loading conditions

机译:可变振幅和多轴载荷条件下NR和SBR中的疲劳裂纹取向

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The orientations of cracks as they develop in a material indicate the planes that have experienced the maximum damage. For the purpose of fatigue life analysis and prediction, these planes are referred to as the failure or critical planes. In order to study the planes on which cracks develop for different types of loading, the development of cracks was observed during constant and variable amplitude experiments using the multiaxial ring specimen. Two filled rubber materials were compared in this study: NR, which strain crystallizes, and SBR, which does not. Multiaxial test signals composed of alternating blocks of axial and torsion cycles (each of which acts on different critical planes) produced crack orientations that fell between those occurring for signals composed only of axial or of torsion cycles. Plane-specific fatigue damage parameters of cracking energy density and normal strain were evaluated for their ability to predict the experimentally observed planes of crack development.
机译:当裂纹在材料中发展时,其方向表明遭受最大破坏的平面。出于疲劳寿命分析和预测的目的,这些平面称为失效平面或临界平面。为了研究在不同类型的载荷下裂纹所产生的平面,在使用多轴环形试样的恒定和可变振幅实验中观察了裂纹的发展。在本研究中比较了两种填充的橡胶材料:应变结晶的NR和不结晶的SBR。由轴向和扭转循环的交替块组成的多轴测试信号(每个循环作用在不同的临界平面上)产生的裂纹方向介于仅由轴向或扭转循环组成的信号所产生的裂纹方向之间。评估了裂纹能量密度和法向应变的特定于平面的疲劳损伤参数,以预测实验观察到的裂纹发展平面的能力。

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