首页> 外文期刊>MATEC Web of Conferences >Effect of Process Parameter in Laser Cutting of PMMA Sheet and ANFIS Modelling for Online Control
【24h】

Effect of Process Parameter in Laser Cutting of PMMA Sheet and ANFIS Modelling for Online Control

机译:工艺参数在PMMA板和ANFIS模型中的应用参数对在线控制的影响

获取原文
获取外文期刊封面目录资料

摘要

Laser beam machining (LBM) is a promising and high accuracy machining technology in advanced manufacturing process. In LBM, crucial machining qualities of the end product include heat affected zone, surface roughness, kerf width, thermal stress, taper angle etc. It is essential for industrial applications especially in laser cutting of thermoplastics to acquire output product with minimum kerf width. The kerf width is dependent on laser input parameters such as laser power, cutting speed, standoff distance, assist gas pressure etc. However it is difficult to get a functional relationship due to the high uncertainty among these parameters. Hence, total 81 sets of full factorial experiment were conducted, representing four input parameters with three different levels. The experiments were performed by a continuous wave (CW) CO2 laser with the mode structure of TEM01 named Zech laser machine that can provide maximum laser power up to 500 W. The polymethylmethacrylate (PMMA) sheet with thickness of 3.0 mm was used for this experiment. Laser power, cutting speed, standoff distance and assist gas pressure were used as input parameters for the output named kerf width. Standoff distance, laser power, cutting speed and assist gas pressure have the dominant effect on kerf width, respectively, although assist gas has some significant effect to remove the harmful gas. ANFIS model has been developed for online control purposes. This research is considered important and helpful for manufacturing engineers in adjusting and decision making of the process parameters in laser manufacturing industry of PMMA thermoplastics with desired minimum kerf width as well as intricate shape design purposes.
机译:激光束加工(LBM)是先进制造过程中有希望和高精度的加工技术。在LBM中,最终产品的关键加工品质包括热影响区域,表面粗糙度,Kerf宽度,热应力,锥角等。对于工业应用特别是在热塑性塑料的激光切割中是必不可少的,以获取最小Kerf宽度的输出产品。 Kerf宽度取决于激光输入参数,例如激光功率,切割速度,支座距离,辅助气体压力等,但是由于这些参数之间的高不确定性,难以获得功能关系。因此,进行了81套完整的阶乘实验,代表了具有三种不同水平的四个输入参数。通过连续波(CW)CO2激光器进行实验,该CO 2激光器的TEM01的模式结构可提供最大500W的最大激光功率。该实验使用厚度为3.0mm的聚甲基丙烯酸甲酯(PMMA)片材。激光功率,切割速度,支座距离和辅助气体压力用作名为Kerf宽度的输出的输入参数。支架距离,激光功率,切割速度和辅助气体压力分别对Kerf宽度具有显着效果,尽管辅助气体具有一些显着效果,以消除有害气体。 ANFIS模型已开发用于在线控制目的。该研究被认为是重要的,并有助于制造工程师在PMMA热塑性塑料激光制造工业中的调整和决策过程中,具有所需的最小kerf宽度以及复杂的形状设计目的。

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