首页> 外文会议>ASME international manufacturing science and engineering conference >AN INVESTIGATION OF THE EFFECT OF NITROGEN PHASE ON CRYOGENIC MACHINING PERFORMANCE AND A CASE STUDY ON MACHINING OF INCONEL 718 ALLOY
【24h】

AN INVESTIGATION OF THE EFFECT OF NITROGEN PHASE ON CRYOGENIC MACHINING PERFORMANCE AND A CASE STUDY ON MACHINING OF INCONEL 718 ALLOY

机译:氮相对深冷加工性能的影响研究和Inconel 718合金的机加工案例研究

获取原文

摘要

Sustainable manufacturing trends dictate the need for cleaner processes that are environmentally benign and with no adverse health effects. Cryogenic machining in recent times has emerged as such an effective and clean manufacturing process. In this field, a strong collaboration among partnering researches in the EU and US has been established. Prior research has proven that cooling effect in such sustainable machining operation is significant, while the lubrication effect is still either marginal or questionable. The nitrogen phase that is delivered to the cutting zone has a significant effect on this. The constant phase of the delivered fluid is first necessary condition to avoid the occurrence of thermal shocks. The first step in this direction for phase control is to be able to sense and accurately quantify the phase of the cryogenic fluid at the delivery. Therefore, this paper aims at presenting new experimental results on the use of a novel optical nitrogen phase sensor from the investigation of its robustness and response time. Additionally, a case study has been performed to show how the nitrogen phase affects the tribological properties of Inconel 718 alloy against a carbide tool. To examine this, experiments have been performed with a specially designed open tribometer to characterize the macroscopic friction coefficient and heat partition coefficient in the contact surface versus sliding velocity. Also, a simplified FEM model of cryogenic machining has been constructed to simulate the behavior of the machining process when delivering different phases of nitrogen. The delivered cryogenic fluid has been characterized in gas and liquid phases. It has been shown that liquid nitrogen can improve friction conditions more efficiently than gas phase nitrogen. Liquid phase has in general lower temperature and more dominant capability for heat evacuation and better lubrication properties than the gas phase, with the novel sensor being shown as capable of robustly characterizing the phase of the cryogenic fluid in the delivery itself.
机译:可持续的制造趋势表明需要对环境无害且对健康没有不利影响的清洁工艺。近年来,低温加工已成为一种有效且清洁的制造工艺。在这一领域,欧盟和美国的合作研究之间已经建立了强有力的合作关系。先前的研究已经证明,在这种可持续的机加工操作中,冷却效果是显着的,而润滑效果仍然是微不足道的或有问题的。输送到切割区的氮相对此具有重大影响。输送流体的恒定相是避免热冲击发生的第一必要条件。在此方向上进行相位控制的第一步是能够感测并准确地量化输送时低温流体的相位。因此,本文旨在通过研究新型光学氮相传感器的鲁棒性和响应时间来提供新的实验结果。此外,还进行了一个案例研究,以显示氮相如何影响Inconel 718合金相对于硬质合金刀具的摩擦学性能。为了检验这一点,已经使用特殊设计的开放式摩擦计进行了实验,以表征接触表面相对于滑动速度的宏观摩擦系数和热分配系数。而且,已经构造了简化的低温加工有限元模型,以模拟在输送不同阶段的氮气时加工过程的行为。所输送的低温流体已在气相和液相中进行了表征。已经显示,液氮比气相氮可以更有效地改善摩擦条件。与气相相比,液相通常具有较低的温度和更大的排热能力,并且具有比气相更好的润滑性能,该新型传感器显示出能够可靠地表征输送液中低温流体的相的特征。

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