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首页> 外文期刊>International Journal of Machining and Machinability of Materials >Prediction of critical thrust force for exit-ply delamination during drilling composite laminates: thermo-mechanical analysis
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Prediction of critical thrust force for exit-ply delamination during drilling composite laminates: thermo-mechanical analysis

机译:复合材料层压板钻孔过程中出口层脱层的临界推力预测:热力学分析

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摘要

Drilling damage, such as delamination at the hole exit, is known to adversely affect the load carrying capability of a structure resulting in reduced endurance limits and overall reduction in structural integrity. In this context, the present work studies the influence of temperature of machining on the critical thrust force responsible for delamiantion at the hole exit. An analytical model considering thermo-elastic field equations has been established with the aim of predicting the critical thrust force. The validation of this model has been conducted at room temperature via punching tests carried out on carbon fibre epoxy multi-directional composite laminates. Some difference in predictions exists which are mainly attributed to the variability in ply thicknesses due to the manufacturing process. Such an analysis underscores the need to explicitly account for machining temperature effects on machining damage characterisation.
机译:众所周知,钻孔损坏(例如孔出口处的分层)会对结构的承载能力产生不利影响,从而导致耐久极限降低以及结构完整性整体下降。在这种情况下,本工作研究了加工温度对导致孔出口脱层的临界推力的影响。建立了考虑热弹性场方程的分析模型,旨在预测临界推力。该模型的验证是在室温下通过对碳纤维环氧多向复合材料层压板进行的冲压试验进行的。存在一些预测差异,这主要归因于由于制造工艺而导致的层厚度的变化。这样的分析强调了需要明确考虑加工温度对加工损伤特征的影响。

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