Bench wear testing of common gasoline engine cylinder bore surface piston ring combinations

被引:5
|
作者
Hill, SH
HartfieldWunsch, SE
Tung, SC
机构
[1] GM CORP,MFG CTR,WARREN,MI 48090
[2] GM CORP,CTR RES & DEV,WARREN,MI 48090
来源
TRIBOLOGY TRANSACTIONS | 1996年 / 39卷 / 04期
关键词
wear/failure testing devices; surface roughness; aluminum; automotive tribology; internal combustion engines;
D O I
10.1080/10402009608983614
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In this study, two bench wear tests, the Cameron-Plint modified test (C-P) and the Electro-Mechanical test (LS9), have been used to evaluate common internal combustion engine cylinder bore surface/piston ring pairs. Bore materials tested include cast iron, 390 aluminum, and Nikasil. Piston rings tested include chromium-plated, plasma-sprayed molybdenum, and gas-nitrided stainless steel. Both the CP and LS9 bench weal tests showed the same general trends. Gas-nitrided stainless steel rings provide the lowest overall ring wear and the lowest cast iron bore wear. 390 bore wear is higher than that of cast iron or Nikasil. Chromium-plated or gas-nitrided stainless steel rings provide the best balance of ring and bore wear against 390 aluminum, while molybdenum rings against 390 produce the worst combined wear. Differences in wear rates for 390 aluminum are related to variations in temperature and lubrication rate between. the two testers. Bore wear measurement accuracy is quantified and an improved measurement technique is introduced. An. initial study of surface finish effects shows that an increase in roughness increases the friction coefficient.
引用
收藏
页码:929 / 935
页数:7
相关论文
共 50 条
  • [1] Bench wear testing of common gasoline engine cylinder bore surface/piston ring combinations
    Hill, SH
    HartfieldWunsch, SE
    Tung, SC
    [J]. STLE 1996 ANNUAL MEETING, TECHNICAL PREPRINTS, 1996, : 337 - 343
  • [2] Bench wear testing of common gasoline engine cylinder bore surface/piston ring (vol 39, pg 929, 1996)
    Hill, SH
    HartfieldWunsch, SE
    Tung, SC
    [J]. TRIBOLOGY TRANSACTIONS, 1997, 40 (01): : 207 - 207
  • [3] Modeling of abrasive wear in a piston ring and engine cylinder bore system
    Tung, SC
    Huang, Y
    [J]. TRIBOLOGY TRANSACTIONS, 2004, 47 (01) : 17 - 22
  • [4] Modeling of Abrasive Wear in a Piston Ring and Engine Cylinder Bore System
    Tung, Simon C.
    Huang, Yong
    [J]. TRIBOLOGY & LUBRICATION TECHNOLOGY, 2013, 69 (07) : 42 - 49
  • [5] Wear model for piston ring and cylinder bore system
    Qiu, Yunchao
    Zou, Qian
    Barber, Gary C.
    McCormick, Harold E.
    Zou, Dequan
    Mekari, Milad H.
    [J]. Proceedings of the 2005 Fall Technical Conference of the ASME Internal Combustion Engine Division, 2005, : 569 - 575
  • [6] THE EFFECT OF A FRICTION MODIFIER ON PISTON RING AND CYLINDER BORE FRICTION AND WEAR
    DAVIS, FA
    EYRE, TS
    [J]. TRIBOLOGY INTERNATIONAL, 1990, 23 (03) : 163 - 171
  • [7] BENCH WEAR TESTING OF ENGINE POWER CYLINDER COMPONENTS
    PATTERSON, DJ
    HILL, SH
    TUNG, SC
    [J]. LUBRICATION ENGINEERING, 1993, 49 (02): : 89 - 95
  • [8] On wear model for piston ring and strengthened cylinder wall of engine
    Sun, Jian-min
    Yang, Qing-mei
    [J]. ENGINEERING STRUCTURAL INTEGRITY: RESEARCH, DEVELOPMENT AND APPLICATION, VOLS 1 AND 2, 2007, : 1553 - +
  • [9] PISTON RING LUBRICATION AND CYLINDER BORE WEAR ANALYSIS .1. THEORY
    TING, LL
    MAYER, JE
    [J]. JOURNAL OF LUBRICATION TECHNOLOGY-TRANSACTIONS OF THE ASME, 1974, 96 (03): : 305 - 314
  • [10] Study on Wear Model for Piston Ring and Strengthened Cylinder Wall of Engine
    Sun, Jianmin
    Wei, Haiqiao
    [J]. ADVANCED TRIBOLOGY, 2009, : 756 - +