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Substituting conventional steel alloys by carbon fibre composites in structural parts of an existing laser cutting equipment

机译:在现有的激光切割设备的结构部件中,用碳纤维复合材料代替常规的钢合金

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摘要

In the present work, a finite element (FE) analysis was employed to validate the use of advanced carbon fibre composites as replacement of traditional low-alloy steel in the construction of the main runway frame structure of a laser cutting equipment currently available in the market. This new composite solution was adopted to increase the current laser equipment precision and cutting speed. The main objective was to enhance the machine cutting performance by using much stiffer and lighter main structural runway frames to support the machine cutting head and all major laser beam mirrors and lens, which allows decreasing dramatically the inertial and vibration efforts developed in service through the use of carbon fibre composites.The paper presents, compares and discusses the mechanical and dynamical behaviour obtained in the FE simulations made by using both solutions, the current one based on a steel frame and the new innovative composite adopted structure. The processing method to be used in the production of the innovative composite structure is also proposed. Finally, as production costs may also have an important impact on final equipment commercial price and acceptation, an economical study considering both manufacturing situations (currently used and new one) are discussed.
机译:在目前的工作中,采用有限元(FE)分析来验证先进碳纤维复合材料在替代目前市场上可买到的激光切割设备的主跑道框架结构中替代传统低合金钢的用途。 。采用这种新的复合解决方案可以提高当前的激光设备精度和切割速度。主要目的是通过使用更硬,更轻的主要结构跑道框架来支撑机器切割头以及所有主要的激光束反射镜和透镜,从而提高机器切割性能,从而大大降低通过使用而在使用中开发的惯性和振动工作量本文介绍,比较和讨论了使用两种解决方案,当前基于钢框架的解决方案和采用新型创新复合材料的解决方案在有限元模拟中获得的力学和动力学行为。还提出了用于生产创新复合结构的加工方法。最后,由于生产成本也可能对最终设备的商业价格和接受程度产生重要影响,因此讨论了同时考虑制造情况(当前使用和新出现的情况)的经济研究。

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