Characterization of holding brake friction pad surface after pin-on-plate wear test

被引:3
|
作者
Drago, N. [1 ]
Madruga, D. Gonzalez [2 ]
De Chiffre, L. [1 ]
机构
[1] Tech Univ Denmark, Dept Mech Engn, Bldg 425, DK-2800 Lyngby, Denmark
[2] MAN Diesel & Turbo, Teglholmsgade 41, DK-2450 Copenhagen SV, Denmark
来源
关键词
holding brake friction pad; wear; surface characterization; plateau; segmentation; UNCERTAINTY;
D O I
10.1088/2051-672X/aaabd3
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This article concerns the metrological characterization of the surface on a holding brake friction material pin after a pin-on-plate (POP) wear test. The POP test induces the formation of surface plateaus that affect brake performances such as wear, friction, noise and heat. Three different materials' surfaces have been characterized after wear from data obtained with a focus variation 3D microscope. A new surface characterization approach with plateau identification is proposed, using the number of plateau on the surface, equivalent diameter, length and breadth as measurands. The identification method is based on determining and imposing ISO 27158-2 lower plateau limit (LPL) in material probability curves; and on applying a combined criterion of height segmentation threshold and equivalent diameter threshold. The method determines the criterion thresholds for each material since LPL appears typical by material. The proposed method has allowed quantifying the surface topography at two different levels of wear. An expanded measurement uncertainty of 3.5 mu m for plateau dimensions in the range 50-2000 mu m and one of 0.15 mu m for plateau heights up to 10 mu m have been documented.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Experimental Investigation on the Friction and Wear Characteristics of Palm Seed Powder Reinforced Brake Pad Friction Composites
    Jeganmohan S.
    Sugozu B.
    Kumar M.
    Selvam D.R.
    Jeganmohan, Sudhanraj (sudhantribo@gmail.com), 1600, Springer (101): : 61 - 69
  • [32] The wear properties of CFR-PEEK-OPTIMA articulating against ceramic assessed on a multidirectional pin-on-plate machine
    Scholes, S. C.
    Unsworth, A.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART H-JOURNAL OF ENGINEERING IN MEDICINE, 2007, 221 (H3) : 281 - 289
  • [33] Friction and wear studies on the temperature dependence of brake-pad materials containing brass
    Eddoumy, Fatima
    Kasem, Haytam
    Dufrenoy, Philippe
    Celis, Jean-Pierre
    Desplanques, Yannick
    JA 2013 - JOURNEES ANNUELLES DE LA SF2M 2013 / SF2M ANNUAL MEETING 2013, 2013, 7
  • [34] Phase characterization of debris generated in brake pad coefficient of friction tests
    Hinrichs, Ruth
    Soares, Marcio R. F.
    Lamb, R. G.
    Soares, Marcos R. F.
    Vasconcellos, M. A. Z.
    WEAR, 2011, 270 (7-8) : 515 - 519
  • [35] Friction and wear studies on brake-pad materials based on newly developed resin
    Gurunath, P. V.
    Bijwe, J.
    WEAR, 2007, 263 (7-12 SPEC. ISS.) : 1212 - 1219
  • [36] A Factorial Design to Numerically Study the Effects of Brake Pad Properties on Friction and Wear Emissions
    Wahlstrom, Jens
    ADVANCES IN TRIBOLOGY, 2016, 2016
  • [37] Effect of water spray on friction and wear behaviour of noncommercial and commercial brake pad materials
    El-Tayeb, N. S. M.
    Liew, K. W.
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 208 (1-3) : 135 - 144
  • [38] Tribological behavior of terphenyl self-assembled monolayer studied by a pin-on-plate method and friction force microscopy
    Nakano, M
    Ishida, T
    Numata, T
    Ando, Y
    Sasaki, S
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2004, 43 (7B): : 4619 - 4623
  • [39] Modification of Pin on Disc Test to measure Railway Brake Block Friction Coefficient
    Triono, Agus
    Puja, I. G. N. Wiratmaja
    Soemantri, Satryo B.
    ADVANCED MATERIALS ENGINEERING AND TECHNOLOGY II, 2014, 594-595 : 639 - +
  • [40] Effects of Titanate on Brake Wear Particle Emission Using a Brake Material Friction Test Dynamometer
    Daimon, Emiko
    Ito, Yasuhito
    LUBRICANTS, 2024, 12 (11)