4.7 Article Retracted Publication

被撤回的出版物: Mechanisms involved in the tool life improvement of laser assisted machining 45%SiCp/Al composites (Retracted article. See vol. 155, 2022)

期刊

OPTICS AND LASER TECHNOLOGY
卷 139, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.optlastec.2021.106919

关键词

LAM; Metal matrix composites; Tool life; Wear mechanism

资金

  1. National Key Research Projects of China [2018YFB1107603]
  2. Open Fund of Key Laboratory of Fundamental Science for National Defense of Aeronautical Digital Manufacturing Process of Shenyang Aerospace University [SHSYS201903]
  3. Aviation Fund [2019ZE054005]

向作者/读者索取更多资源

The study found that the tool life of carbide tools is longer in laser assisted machining compared to conventional machining, and abrasive wear is identified as the predominant wear mechanism. The results also showed the development of an improved wear model for predicting average flank wear, and the comparison of forces between particles and cutting tools explained the improvement in tool life.
Published reports indicate that laser assisted machining (LAM) is an emerging manufacturing process for improving the productivity when machining metal matrix composites (MMCs), but there is still debate about whether the LAM is beneficial for improving the tool life, and also many arguments about the tool wear mechanism. This study evaluates the tool life and specific wear mechanisms of the uncoated and coated carbide tools in LAM of 45%SiCp/Al composites. It is discovered that the life of these two carbide tools is longer in LAM than conventional machining (CM) when the cutting temperature increasing from room temperature to 420 degrees C. Based on the results associated with tool wear, an improved archard-type model of abrasive wear in LAM was developed for predicting the average flank wear (VBavr) of two carbide tools. The corresponding experimental results matches well with it. In LAM abrasive wear was found to be the most predominant wear mechanism. An existing wear model associated with a critical value D/h has been used for characterizing the transition from two-body wear to three-body wear about the particles between the flank face of cutting tool and machined surface in LAM of 45%SiCp/Al composites. In addition, mechanisms involved in the tool life improvement of LAM 45% SiCp/Al composite has been explained by comparing a range of normal and tangential forces between particles and flank face of cutting tools with CM.

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