...
首页> 外文期刊>International Journal of Integrated Engineering >Parametric Optimization of Robot-based Single Point Incremental Forming Using Taguchi Method
【24h】

Parametric Optimization of Robot-based Single Point Incremental Forming Using Taguchi Method

机译:基于Taguchi方法的机器人单点增量成型的参数优化

获取原文
           

摘要

Sheet metals forming process is widely used in consumer and industrial products. However, the conventional sheet metal forming has low flexibility and product quality. It also prolongs the time-to-market in producing prototype products that required low costs. Single point incremental forming (SPIF) is one of relatively new sheet metal forming process. The increase interest in new techniques for forming processes and the usage of robotics in the industry has created more researches on the SPIF. Robot-based SPIF is a method of deforming a sheet metal to create designed workpieces by utilising a forming tool that attached to an industrial robot. In this present work, an optimization study for combination of process parameters in robot-based single point incremental forming of aluminum alloy sheet was experimentally investigated using Taguchi method to achieve an excellent surface roughness. A number of forming experiments were conducted using the L18 orthogonal array. Analysis of Variance (ANOVA) was used to identify the most significant process parameters affecting the surface roughness. The results analysis indicates that the optimum process parameters for surface roughness are obtained as 0.3 mm of step size, 150 mm/s of robot speed and 45 degree of wall angle. The most significant process parameter is step size and followed by robot speed. The study revealed the surface quality could be improved by proper selection of process parameters.
机译:钣金成形工艺广泛用于消费品和工业产品。然而,常规的金属板成形具有较低的柔韧性和产品质量。它还延长了生产需要低成本的原型产品的上市时间。单点增量成形(SPIF)是相对较新的钣金成形工艺之一。对形成工艺的新技术和行业中机器人技术的使用的兴趣日益浓厚,因此对SPIF进行了更多研究。基于机器人的SPIF是一种使钣金变形以通过利用附接到工业机器人上的成型工具来生成设计工件的方法。在本工作中,使用Taguchi方法实验研究了基于机器人的铝合金薄板单点增量成形工艺参数组合的优化研究,以实现出色的表面粗糙度。使用L18正交阵列进行了许多成型实验。方差分析(ANOVA)用于确定影响表面粗糙度的最重要的工艺参数。结果分析表明,获得的表面粗糙度的最佳工艺参数为步长0.3 mm,机器人速度150 mm / s和壁角45度。最重要的过程参数是步长,然后是机械手速度。该研究揭示了表面质量可以通过工艺参数的适当选择来改善。

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