...
首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Design and dynamic optimization of an ultra-precision micro grinding machine tool for flexible joint blade machining
【24h】

Design and dynamic optimization of an ultra-precision micro grinding machine tool for flexible joint blade machining

机译:用于柔性关节刀片加工的超精密微型磨床工具的设计与动态优化

获取原文
获取原文并翻译 | 示例
           

摘要

Ultra-precision micro machine tool (UPMMT) has always been a high-precision machine tool for microscale/mesoscale mechanical components. It has demonstrated many advantages in small footprint, low cost of energy, low operational cost, high machining precision, etc. However, developing UPMMT is always a complicated, labor-consuming work and lacks scientific approach and guidelines. This paper is devoted to introduce a detailed design method of a micro grinding machine tool used for flexible joint blade machining. The micro grinding machine tool was built up with a combined support structure of both advantages of gantry column and single column structure, allowing more work zone and better static stability. In order to improve the dynamic performance of the machine tool, an optimization design method based on sensitivity analysis was proposed. The weakest link of the machine tool structure was identified and selected as the optimization target, and an optimization equation was established with the nature frequency as the optimization goal, mass and size as the constraint condition. The results showed that the first six nature frequencies of the machine tool were increased with different degrees and the first nature frequency was increased by about 10%. The biggest resonance peak of the machine tool was reduced in the x direction by 8.6%, in the y direction by 6.4%, and in the z direction by 10.1%. Based on the optimization results, a prototype was built, and machining tests were carried out on flexible joint blade machining to evaluate the machining performance of this machine tool.
机译:超精密微型机床(UPMMT)一直是微观/ MESCHE机械部件的高精度机床。它表现出很少的占地面积,低能量成本,低运营成本,高机械加工精度等的许多优点。然而,开发蓬勃发展的营地始终是复杂,劳动的工作,缺乏科学的方法和指导。本文致力于引进用于柔性接合刀片加工的微型磨床的详细设计方法。微磨机工具采用龙门柱和单柱结构的两个优点的组合支撑结构,允许更多的工作区和更好的静态稳定性。为了提高机床的动态性能,提出了一种基于灵敏度分析的优化设计方法。识别并选择机床结构的最薄弱链接作为优化目标,并且利用自然频率确定优化方程作为优化目标,质量和尺寸作为约束条件。结果表明,机床的前六种自然频率随着不同程度的增加,第一自然频率增加了约10%。机床的最大共振峰在x方向上减小8.6%,在y方向上达6.4%,z方向为10.1%。基于优化结果,建造了一种原型,在柔性接头刀片机械加工上进行加工试验,以评估该机床的加工性能。

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