Aluminium Nitride Surface Characterization by Grinding with Laser-Ultrasonic Coupling

被引:0
|
作者
Zhang, He [1 ]
Sun, Cong [1 ,2 ]
Hong, Yuan [1 ]
Deng, Yansheng [3 ]
Ma, Liang [4 ]
机构
[1] Northeastern Univ, Sch Mech Engn & Automat, Shenyang 110819, Peoples R China
[2] Natl Inst Intelligent Robot Shenyang Co Ltd, Shenyang 110015, Peoples R China
[3] Jihua Lab, Foshan 528251, Peoples R China
[4] Xinjiang Inst Engn, Sch Elect & Mech Engn, Urumqi 830023, Peoples R China
基金
中国国家自然科学基金;
关键词
aluminium nitride; laser-ultrasonic-assisted grinding; molecular dynamics; surface hardness; grinding force; MATERIAL REMOVAL MECHANISM; INTEGRITY; CERAMICS;
D O I
10.3390/ma17153772
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Aluminium nitride (AlN) materials are widely used in heat-dissipation substrates and electronic device packages. However, the application of aluminium nitride ceramics is hindered by the obvious anisotropy and high brittleness of its crystals, leading to poor material surface integrity and high grinding force. With the rapid development of microelectronics, the requirements for the material's dimensional accuracy, machining efficiency, and surface accuracy are increasing. Therefore, a new machining process is proposed, combining laser and ultrasonic vibration with grinding. The laser-ultrasonic-assisted grinding (LUAG) of aluminium nitride is simulated by molecular dynamics (MD). Meanwhile, the effects of different processing techniques on grinding force, stress distribution, matrix damage mechanism, and subsurface damage depth are systematically investigated and verified by experiments. The results show that laser-ultrasonic-assisted grinding produces 50% lower grinding forces compared to traditional grinding (TG). The microhardness of AlN can reach more than 1200 HV, and the coefficient of friction and wear is reduced by 42.6%. The dislocation lines of the AlN substrate under this process are short but interlaced, making the material prone to phase transformation. Moreover, the subsurface damage depth is low, realising the substrate's material hardening and wear resistance. These studies not only enhance the comprehension of material build-up and stress damage under the synergistic impact of laser, ultrasonic, and abrasive processing but also indicate that the proposed method can facilitate and realise high-performance machining of aluminium nitride substrate surfaces.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] The laser and laser-ultrasonic hardening of steel surfaces
    Gureev, G. D.
    Gureev, D. M.
    VESTNIK SAMARSKOGO GOSUDARSTVENNOGO TEKHNICHESKOGO UNIVERSITETA-SERIYA-FIZIKO-MATEMATICHESKIYE NAUKI, 2005, (34): : 90 - 94
  • [22] Characterization of thin layers using a frequency domain laser-ultrasonic system
    Gruensteidl, C.
    Roither, J.
    Veres, I. A.
    Reitinger, B.
    Berer, T.
    Gruen, H.
    Burgholzer, P.
    Koestenbauer, H.
    Winkler, J.
    Traxler, H.
    Veres, I. A.
    Berer, T.
    Burgholzer, P.
    2012 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2012, : 1734 - 1737
  • [23] Laser-Ultrasonic Characterization of Strongly Anisotropic Materials by Transient Grating Spectroscopy
    Stoklasova, P.
    Grabec, T.
    Zoubkova, K.
    Sedlak, P.
    Kratky, S.
    Seiner, H.
    EXPERIMENTAL MECHANICS, 2021, 61 (04) : 663 - 676
  • [24] Laser-ultrasonic characterization of the annealing process of low-carbon steel
    Lamouche, G
    Kruger, SE
    Gille, L
    Giguère, N
    Bolognini, S
    Moreau, A
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 22A AND 22B, 2003, 20 : 1681 - 1688
  • [25] Laser-ultrasonic method for vortex measurements
    Zhang, Binqian
    Song, Zhoumo
    Li, Jianying
    Xie, Shuanqin
    Zhang, Hongpeng
    Zhang, Bo
    Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University, 1998, 16 (04): : 584 - 588
  • [26] Characterization of nano-scaled Zn and Ag by laser-ultrasonic method
    Zhang, XR
    Li, Y
    Fei, D
    Xu, JF
    Du, YW
    9TH INTERNATIONAL CONFERENCE ON PHOTOACOUSTIC AND PHOTOTHERMAL PHENOMENA, CONFERENCE DIGEST, 1996, : 295 - 296
  • [27] ROBOTIC LASER-ULTRASONIC INSPECTION OF COMPOSITES
    Neron, C.
    Padioleau, C.
    Blouin, A.
    Monchalin, J-P
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 32A AND 32B, 2013, 1511 : 353 - 359
  • [28] Laser-ultrasonic characterization of fiber reinforced composites:: Effect of the generation laser transverse modes
    Campagne, B
    Levesque, D
    Bescond, C
    Néron, C
    Blouin, A
    Monchalin, JP
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 23A AND 23B, 2004, 23 : 302 - 309
  • [29] The Influence of Mechanical Stresses on the Characteristics of Laser-Ultrasonic Signals in the Vicinity of a Hole in Silicon Nitride Ceramics
    Glazov, A. L.
    Muratikov, K. L.
    TECHNICAL PHYSICS LETTERS, 2021, 47 (08) : 605 - 608
  • [30] Characterization of anisotropic materials with the laser-ultrasonic technique using the "in plane" and the "out of plane" measurements of the sample surface displacement
    Bescond, C
    Massabki, M
    Bertrand, L
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 19A AND 19B, 2000, 509 : 1457 - 1464