首页> 外文会议>ASME International Manufacturing Science and Engineering Conference >MICROVIA FORMATION FOR MULTI-LAYER PWB BY LASER DIRECT DRILLING: IMPROVEMENT OF DRILLED HOLE QUALITY OF GFRP PLATES
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MICROVIA FORMATION FOR MULTI-LAYER PWB BY LASER DIRECT DRILLING: IMPROVEMENT OF DRILLED HOLE QUALITY OF GFRP PLATES

机译:激光直接钻孔多层PWB微孔形成:GFRP板钻孔质量的提高

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Microvia formation technology using lasers has become the dominant method for drilling microvia that are called blind via-holes (BVHs) in printed wiring boards (PWBs). Laser direct drilling (LDD), which is direct drilling of the outer copper foil by laser, has attracted attention as a novel method. In particular, when copper and resin with different processing thresholds are simultaneously drilled, an overhang defect occurs on the drilled hole. On the other hand, aramid fiber reinforced plastics (AFRP) have been replaced by glass fiber reinforced plastics (GFRP) as the material used for the build-up layer because of its cost performance. Moreover, the PWB quality of the particle incrustations around the drilled holes has problems in the manufacturing process. However, the LDD process of such a composite has not been clarified. Therefore, we investigated it by detailed observation using a high-speed camera. We estimated the overhang length using the finite element method (FEM) and experimentally and analytically evaluated the effects of filler contented build-up layers. As a result, we improved drilled-hole quality by using prototype PWBs made of GFRP with filler in the build-up layer.
机译:使用激光器的微径形成技术已成为钻孔微孔的主导方法,这些方法被称为印刷线板(PWBS)的盲通孔(BVH)。激光直接钻孔(LDD),其通过激光直接钻出外铜箔,引起了一种新方法。特别地,当同时钻出具有不同处理阈值的铜和树脂时,在钻孔上发生悬垂缺陷。另一方面,芳族纤维增强塑料(AFRP)已被玻璃纤维增​​强塑料(GFRP)所代替,因为它的成本性能是用于积聚层的材料。此外,钻孔周围的粒子上的PWB质量在制造过程中存在问题。然而,这种复合材料的LDD过程尚未阐明。因此,我们通过使用高速摄像头进行详细观察来调查它。我们使用有限元方法(FEM)估计了突出长度,并通过实验和分析评估了填料含量堆积层的影响。因此,我们通过使用用填充层的GFRP制成的原型PWB来改善钻孔质量。

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