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Workpiece damping and its effect on delamination damage in drilling thin composite laminates

机译:薄复合材料薄板钻孔时的工件阻尼及其对分层损伤的影响

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摘要

The machining of the glass fiber reinforced plastic (GFRP) laminates may generate several kinds of damage. The most serious is the delamination that may occur during drilling, and which severely compromises the mechanical characteristics of the material around the hole. The main cause of delamination is generally held to be the thrust force exerted by the drill point; the most commonly used method for reducing delamination is to place a support under the workpiece. Paradoxically, while this practice does limit delamination, the force exerted by the drill point is actually greater than in unsupported drilling. The presence of the support does influence the delamination mechanism, but exactly how that mechanism works does not seem to be fully understood yet. This study analyzes the differences in delamination mechanisms when drilling with and without a support placed under the workpiece. This investigation has led to hypothesize two main differences in the mechanism. On the basis of this analysis, a new device was designed that counters the hypothesized delamination mechanism. A simple prototype of this device was built, and its effectiveness verified. The results show that the proposed device can drastically reduce delamination.
机译:玻璃纤维增​​强塑料(GFRP)层压板的机加工可能会产生多种损坏。最严重的是在钻孔过程中可能发生分层,这严重损害了孔周围材料的机械特性。一般认为,分层的主要原因是由钻尖施加的推力。最常用的减少分层的方法是在工件下方放置一个支撑。矛盾的是,尽管这种做法确实限制了分层,但钻尖所施加的力实际上比无支撑钻削更大。支撑物的存在确实会影响分层机制,但是该机制的确切工作机制似乎尚未完全被理解。这项研究分析了在有和没有在工件下方放置支撑的情况下进行钻孔时脱层机理的差异。这项研究导致了该机制的两个主要差异。在此分析的基础上,设计了一种新设备来应对假设的分层机制。构建了该设备的简单原型,并验证了其有效性。结果表明,所提出的装置可以大大减少分层。

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