The formation of the cutting tool microgeometry by pulsed laser ablation

被引:4
|
作者
Fedorov, Sergey, V [1 ]
Ostrikov, Evgeny A. [1 ]
Mustafaev, Enver S. [1 ]
Hamdy, Khaled [2 ]
机构
[1] MSTU STANKIN, Vadkovskiy Lane 3a, Moscow 127055, Russia
[2] Menia Univ, El Minia Cairo Aswan Rd, El Minia 61519, Egypt
关键词
Laser ablation; nanosecond marking Nd:YVO4 laser; high-speed steel; hard alloy; microgeometry; cutting edge; SURFACE INTEGRITY; EDGE; COATINGS; WEAR;
D O I
10.1051/meca/2019009
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Laser ablation is considered as an alternative to other methods that allow precise processing of various tool materials and work with both the base material and thin films of wear-resistant coatings. This article presents an investigation of the possibility of setting the microgeometry of the surface of cutting tool made of high-speed steel M2 and hard alloy WCCo3 using ablation with nanosecond infrared marking Nd:YVO4 laser. Dependencies of the width and depth of the resulting tracks on the specified laser power are obtained. It was revealed that their depth depends on a set of several specified factors: power, scanning speed, pulse frequency rate, and a number of passes. The modes with a radiation power of up to 70% are of interest for the treatment of the tool surface using a laser because they have a more predictable profile and more efficient energy distribution. The most uniform and smooth surface were obtained after laser treatment with the following parameters: power 60%, frequency 10 kHz, scanning speed 200 mm/s irrespective of the material being processed. The greater flexibility of the coating material for laser processing was observed. The depth of tracks on the coated (TiAl)N samples is larger than on the uncoated samples. The possibility to obtain a chamfer with the specified width and angle parameters by laser processing based on the obtained dependencies is demonstrated.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] Pulsed laser ablation in liquids: Impact of the bubble dynamics on particle formation
    Reich, Stefan
    Schoenfeld, Patrick
    Wagener, Philipp
    Letzel, Alexander
    Ibrahimkutty, Shyjumon
    Goekce, Bilal
    Barcikowski, Stephan
    Menzel, Andreas
    Rolo, Tomy dos Santos
    Plech, Anton
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2017, 489 : 106 - 113
  • [32] Pulsed laser ablation of aluminum in the presence of nitrogen: Formation of aluminum nitride
    Sharma, AK
    Thareja, RK
    JOURNAL OF APPLIED PHYSICS, 2000, 88 (12) : 7334 - 7338
  • [33] Accurate Micro-Tool Manufacturing by Iterative Pulsed-Laser Ablation
    Warhanek M.
    Mayr J.
    Dörig C.
    Wegener K.
    Lasers in Manufacturing and Materials Processing, 2017, 4 (4) : 193 - 204
  • [34] Pulsed laser ablation of metals
    Lunney, JG
    Jordan, R
    APPLIED SURFACE SCIENCE, 1998, 127 : 941 - 946
  • [35] Pulsed laser ablation of copper
    Jordan, R
    Cole, D
    Lunney, JG
    Mackay, K
    Givord, D
    LASER PROCESSING: SURFACE TREATMENT AND FILM DEPOSITION, 1996, 307 : 823 - 829
  • [36] Dynamics of pulsed laser ablation
    Itzkan, Irving
    Conference Proceedings - Lasers and Electro-Optics Society Annual Meeting-LEOS, 1996,
  • [37] PULSED LASER ABLATION OF SOLIDS
    Stafe, M.
    Negutu, C.
    Puscas, N. N.
    Popescu, I. M.
    ROMANIAN REPORTS IN PHYSICS, 2010, 62 (04) : 758 - 770
  • [38] Formation of an energy-efficient cutting tool path in waterjet and laser cutting CNC machines
    Faizrakhmanov R.A.
    Murzakaev R.T.
    Burylov A.V.
    Shilov V.S.
    Russian Electrical Engineering, 2015, 86 (11) : 651 - 655
  • [39] Nanotwinned diamond cutting tool processed by femtosecond pulsed laser milling with trochoidal trajectory
    Jin, Tianye
    Chen, Junyun
    Zhao, Teng
    Zhao, Qingliang
    Tian, Yongjun
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2021, 294
  • [40] WC-Co cutting tool surface modifications induced by pulsed laser treatment
    Cappelli, E
    Orlando, S
    Pinzari, F
    Napoli, A
    Kaciulis, S
    APPLIED SURFACE SCIENCE, 1999, 138 : 376 - 382