首页> 外文会议>Internation Conference on Advances in Materials and Processing Technologies >Machinability Improvement by Workpiece Preheating During End Milling AISI H13 Hardened Steel
【24h】

Machinability Improvement by Workpiece Preheating During End Milling AISI H13 Hardened Steel

机译:工件在铣削期间的工件预热可加工改善AISI H13硬化钢

获取原文

摘要

Hardened materials like AISI H13 steel are generally regarded as s difficult to cut materials because of their hardness due to intense of carbon content, which however allows them to be used extensively in the hot working tools, dies and moulds. The challenges in machining steels at their hardened state led the way to many research works in amelioration its machinability. In this paper, preheating technique has been used to improve the machinability of H13 hardened steel for different cutting conditions. An experimental study has been performed to assess the effect of work-piece preheating using induction heating system to enhance the machinability of AISI H13. The preheated machining of AISI H13 for two different cutting conditions with TiAlN coated carbide tool is evaluated by examining tool wear, surface roughness and vibration. The advantages of preheated machining are demonstrated by a much extended tool life and stable cut as lower vibration/chatter amplitudes. The effects of preheating temperature were also investigated on the chip morphology during the end milling of AISI H13 tool steel, which resulted in reduction of chip serration frequency. The preheating temperature was maintained below the phase change temperature of AISI H13. The experimental results show that preheated machining led to appreciable increasing tool life compared to room temperature machining. Abrasive wear, attrition wear and diffusion wear are found to be a very prominent mechanism of tool wear. It has been also observed that preheated machining of the material lead to better surface roughness values as compared to room temperature machining.
机译:如Aisi H13钢等硬化材料通常被认为是由于碳含量强的硬度难以切割材料,然而,它们允许它们在热工作工具,模具和模具中广泛使用。在其硬化状态下加工钢材的挑战导致了许多研究工作改善了其可加工性。本文采用预热技术来改善H13硬化钢的加工性,用于不同的切削条件。已经进行了一种实验研究以评估使用感应加热系统的工件预热的作用,以提高AISI H13的可加工性。通过检查工具磨损,表面粗糙度和振动,评估两种不同切割条件的AISI H13的预热加工。预热加工的优点是通过延伸的刀具寿命和稳定的切割作为较低的振动/颤动幅度来证明。在AISI H13刀具钢的端铣期期间还研究了预热温度的影响,这导致减少芯片锯齿频率。将预热温度保持在AISI H13的相变温度以下。实验结果表明,与室温加工相比,预热加工导致了可观的刀具寿命。发现磨损磨损,磨损磨损和扩散磨损是一种非常突出的工具磨损机制。还观察到,与室温加工相比,预热的材料加工导致表面粗糙度值更好。

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