首页> 外文期刊>Composite Structures >The effects of stacking sequence on drilling machinability of filament wound hybrid composite pipes: Part-2 damage analysis and surface quality
【24h】

The effects of stacking sequence on drilling machinability of filament wound hybrid composite pipes: Part-2 damage analysis and surface quality

机译:堆积顺序对细丝缠绕复合管钻削加工性的影响:第2部分损坏分析和表面质量

获取原文
获取原文并翻译 | 示例

摘要

In the first part of this two-part study, filament wound hybrid composite pipes with various stacking sequences were manufactured and mechanical properties such as hardness, ring tensile strength, and burst strength were experimentally investigated. After determining mechanical properties, drilling tests were performed to research machinability characteristics. The second part of the study consists damage analysis and surface quality examination including ring test damage analysis, push-out delamination analysis, borehole damage examination and borehole surface quality. The experimental data suggested that cutting parameters, stacking sequence, and the use of back-up were impactful on the formation and propagation of various types of damages. Especially, the effect of stacking sequence was remarkable. A larger delamination area was formed in Glass-Glass-Carbon (GGC) sample after the ring tensile tests compared to Glass-Carbon-Glass (GCG) and Carbon-Glass-Glass (CGG) samples. In all cases, the utilization of back-up lead to decrease of delamination with 9-40% reduction in surface roughness. When the back-up is not used during drilling, an excessive push-out delamination occurred in all drilling tests. Moreover, CGG samples represented lower push out delamination. In addition, position of the hole depending on the winding angle plays a key role on damage formation and surface quality.
机译:在这个由两部分组成的研究的第一部分中,制造了具有各种堆叠顺序的细丝缠绕混合复合管,并通过实验研究了机械性能,例如硬度,环抗拉强度和破裂强度。确定机械性能后,进行钻孔测试以研究切削性能。研究的第二部分包括损伤分析和表面质量检查,包括环测试损伤分析,推出分层分析,井眼损伤检查和井眼表面质量。实验数据表明,切割参数,堆垛顺序以及使用备用材料对各种类型的损伤的形成和传播都具有影响。特别地,堆叠顺序的效果显着。与玻璃-碳-玻璃(GCG)和碳-玻璃-玻璃(CGG)样品相比,在环拉伸试验之后,玻璃-玻璃-碳(GGC)样品中形成更大的分层区域。在所有情况下,利用备用材料可减少分层,并减少9-40%的表面粗糙度。当在钻孔过程中不使用支撑时,在所有钻孔测试中都会发生过度的顶出分层。而且,CGG样品代表了较低的推出角分层。另外,取决于缠绕角度的孔的位置在损伤形成和表面质量上起关键作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号