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Fast prediction of the fatigue behavior of short-fiber-reinforced thermoplastics based on heat build-up measurements: application to heterogeneous cases

机译:基于热堆积测量的短纤维增强热塑性塑料疲劳行为的快速预测:在异质案例中的应用

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Short-fiber-reinforced thermoplastics components for structural applications are usually very complex parts as stiffeners, ribs and thickness variations are used to compensate the quite low material intrinsic stiffness. These complex geometries induce complex local mechanical fields but also complex microstructures due to the injection process. Accounting for these two aspects is crucial for the design in regard to fatigue of these parts, especially for automotive industry. The aim of this paper is to challenge an energetic approach, defined to evaluate quickly the fatigue lifetime, on three different heterogeneous cases: a classic dog-bone sample with a skin-core microstructure and two structural samples representative of the thickness variations observed for industrial components. First, a method to evaluate dissipated energy fields from thermal measurements is described and is applied to the three samples in order to relate the cyclic loading amplitude to the fields of cyclic dissipated energy. Then, a local analysis is detailed in order to link the energy dissipated at the failure location to the fatigue lifetime and to predict the fatigue curve from the thermomechanical response of one single sample. The predictions obtained for the three cases are compared successfully to the Wohler curves obtained with classic fatigue tests. Finally, a discussion is proposed to compare results for the three samples in terms of dissipation fields and fatigue lifetime. This comparison illustrates that, if the approach is leading to a very relevant diagnosis on each case, the dissipated energy field is not giving a straightforward access to the lifetime cartography as the relation between fatigue failure and dissipated energy seems to be dependent on the local mechanical and microstructural state.
机译:用于结构应用的短纤维增强热塑性塑料组件通常是非常复杂的部件,因为加强件,肋骨和厚度变化用于补偿相当低的材料内在刚度。这些复杂的几何形状诱导复杂的局部机械,但由于喷射过程也是复杂的微观结构。这两个方面的核算对于这些部件的疲劳方面的设计至关重要,特别是汽车行业。本文的目的是挑战一种充满活力的方法,定义为快速评估疲劳寿命,在三种不同的异质情况下:具有皮肤核心微观结构的经典犬骨样品和代表工业观察到的厚度变化的两个结构样本。成分。首先,描述一种从热测量中评估耗散能量场的方法,并应用于三个样本,以便将循环负载幅度与循环耗散能量的领域递交。然后,详细说明局部分析,以将在故障位置处的能量链接到疲劳寿命并预测从一个单一样本的热机械响应中的疲劳曲线。将三种情况下获得的预测成功地与经典疲劳试验获得的WOHLER曲线进行比较。最后,建议在耗散场和疲劳寿命方面比较三个样本的结果。这种比较说明,如果该方法导致每种情况的非常相关的诊断,则耗散的能量场并没有直接访问寿命制图,因为疲劳失败和耗散能量之间的关系似乎取决于当地机械和微观结构状态。

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