Determination of Actual Friction Factors in Metal Forming under Heavy Loaded Regimes Combining Experimental and Numerical Analysis

被引:11
|
作者
Maria Camacho, Ana [1 ]
Veganzones, Mariano [1 ]
Claver, Juan [1 ]
Martin, Francisco [2 ]
Sevilla, Lorenzo [2 ]
Angel Sebastian, Miguel [1 ]
机构
[1] UNED, Dept Mfg Engn, Madrid 28040, Spain
[2] Univ Malaga, Dept Civil Mat & Mfg Engn, E-29071 Malaga, Spain
来源
MATERIALS | 2016年 / 9卷 / 09期
关键词
friction; lubricant; FE; tribology; metal alloys; forming; large deformations; experiments; RING COMPRESSION; COEFFICIENT; WEAR;
D O I
10.3390/ma9090751
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
Tribological conditions can change drastically during heavy loaded regimes as experienced in metal forming; this is especially critical when lubrication can only be applied at the early stage of the process because the homogeneous lubricant layer can break along the die-workpiece interface. In these cases, adopting a constant friction factor for the lubricant-surface pair may not be a valid assumption. This paper presents a procedure based on the use of dual friction factor maps to determine friction factors employed in heavy loaded regimes. A finite element (FE) simulation is used to obtain the friction factor map for the alloy UNS A96082. Experiments were conducted using four lubricants (aluminum anti-size, MoS2 grease, silicone oil, and copper paste) to determine the actual friction curves. The experimental procedure is based on the application of lubricant only at the beginning of the first stage of ring compression, and not at intermediate stages as is usual in typical ring compression tests (RCTs). The results show that for small reductions (r(h) < 20%), the conventional RCT can be applied because the tribological conditions remain similar. For large reductions (r(h) > 20%), it is recommended to obtain an average value of the friction factor for every lubricant-surface pair in the range of deformation considered.
引用
收藏
页数:16
相关论文
共 4 条
  • [1] Proposal for an Experimental-Numerical Method for Friction Description in Sheet Metal Forming
    Trzepiecinski, Tomasz
    Lemu, Hirpa G.
    STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING, 2015, 61 (06): : 383 - 391
  • [2] Determination of friction law in metal forming under oil-lubricated condition
    Wang, Z. G.
    Dong, W. Z.
    Osakada, K.
    CIRP ANNALS-MANUFACTURING TECHNOLOGY, 2018, 67 (01) : 257 - 260
  • [3] Experimental analysis and modeling of friction in sheet metal forming considering the influence of drawbeads
    Leocata, Salvatore
    Senner, Thomas
    Reith, Helga
    Brosius, Alexander
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2020, 106 (9-10): : 4011 - 4021
  • [4] Experimental and numerical analysis of the multiphase flow distribution in multi plate wet-clutches for HVT transmissions under actual operating conditions
    Terzi, Stefano
    Milani, Massimo
    Montorsi, Luca
    Manhartsgruber, Bernhard
    2018 GLOBAL FLUID POWER SOCIETY PHD SYMPOSIUM (GFPS), 2018,