首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Machinability comparison of AISI 4340 and Ti-6Al-4V under cryogenic and hybrid cooling environments: A knowledge engineering approach
【24h】

Machinability comparison of AISI 4340 and Ti-6Al-4V under cryogenic and hybrid cooling environments: A knowledge engineering approach

机译:低温和混合冷却环境下AISI 4340和Ti-6Al-4V的可加工性比较:一种知识工程方法

获取原文
获取原文并翻译 | 示例
       

摘要

Efficient removal of heat from the deformation zones in machining of difficult-to-cut materials is vital for attaining viability with respect to cost and productivity. The recently embraced heat removal and lubrication methods include applications of cryogenic fluids and minimum quantity of lubrication. This article presents an experimental investigation, complemented with a fuzzy modeling approach, for comparing the efficacies of using various combinations of CO2 snow and minimum quantity of lubrication in machining two tempers each of AISI 4340 and Ti-6Al-4V. In addition, cutting speed and feed rate are also included as predictor parameters, and their effects on tool damage, machining forces, and specific cutting energy consumption are evaluated. A total of 144 experimental runs are performed for developing the fuzzy knowledge-based model, and additional 20 experiments are conducted for testing its prediction accuracy. The model is also made capable of suggesting optimal settings of the cutting parameters and the most appropriate choice of cooling against various combinations of the objectives. In a nutshell, the cooling option of applying CO2 snow at the rake and flank faces of the tool proved beneficial for machining the titanium alloy while the option of using CO2 snow at the flank face and minimum quantity of lubrication at the rake face outshone the others in the case of the alloy steel. This article claims novelty with regard to machinability comparison of AISI 4340 and Ti-6Al-4V, application of cryogenic cooling to machining of hardened steels, investigation of hybrid cooling (CO2 snow plus minimum quantity of lubrication), and intelligent modeling of cryogenic machining of AISI 4340 and Ti-6Al-4V combined.
机译:在加工难切削的材料时,有效地从变形区中去除热量对于在成本和生产率方面实现可行性至关重要。最近采用的除热和润滑方法包括应用低温流体和最少的润滑量。本文介绍了一项实验研究,辅以模糊建模方法,用于比较在加工AISI 4340和Ti-6Al-4V两种回火时使用各种组合的CO2雪和最小润滑量的效率。此外,切削速度和进给速度也包括在内,作为预测参数,并评估了它们对刀具损坏,加工力和特定切削能耗的影响。总共进行了144个实验运行以开发基于模糊知识的模型,并进行了另外20个实验以测试其预测准确性。该模型还能够建议切削参数的最佳设置以及针对各种物镜组合的最合适的冷却选择。简而言之,事实证明,在工具的前刀面和侧面上施加CO2雪的冷却选项有利于钛合金的加工,而在后刀面上使用CO2雪的选项以及在前刀面上最小量的润滑使其他方法脱颖而出。对于合金钢。本文就AISI 4340和Ti-6Al-4V的可加工性比较,低温冷却在淬硬钢的加工中的应用,混合冷却的研究(CO2积雪和最小润滑量)的研究以及新型的低温加工的智能建模方面提出了新颖性AISI 4340和Ti-6Al-4V结合使用。

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