Experiments on liquid droplet impingement erosion on a rough surface

被引:34
作者
Fujisawa, N. [1 ]
Takano, S. [2 ]
Fujisawa, K. [1 ]
Yamagata, T. [1 ]
机构
[1] Niigata Univ, Flow Visualizat Res Ctr, Niigata, Japan
[2] Niigata Univ, Grad Sch Sci & Technol, Niigata, Japan
关键词
Liquid droplet erosion; Surface roughness; Erosive mechanism of liquid; Sandpaper; Groove; SEM; RAIN EROSION; IMPACT; MECHANISMS; BEHAVIOR; SOLIDS; DAMAGE;
D O I
10.1016/j.wear.2017.12.003
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Liquid droplet impingement (LDI) erosion on a rough surface was studied experimentally in the initial stage of erosion using spray-jet impingement on various levels of sandpaper roughness and single groove roughness. The experimental results using an aluminum specimen indicated that the incubation period decreased and the erosion rate increased with increasing the relative roughness, defined as the ratio of roughness height to droplet diameter, in a range of small relative roughness. The growth of the erosion rate in a large relative roughness is almost constant for the sandpaper roughness with increasing the relative roughness, while the erosion rate for the groove roughness decreased at large relative roughness. Therefore, the erosion rate of the groove roughness indicated a peak at small relative roughness. This might be due to the influence of smooth surface surrounding the single groove roughness. A scanning electron microscope (SEM) observation for the small relative roughness of groove showed that erosion was started on the sidewall of the grooves and was followed by the penetration of erosion perpendicular to the groove. The erosion initiation points shifted from the sidewall to the bottom of the groove with increasing the relative roughness, which might be due to the effective impact angle variation across the groove.
引用
收藏
页码:158 / 164
页数:7
相关论文
共 32 条
  • [21] HIGH-SPEED IMPACT BETWEEN A LIQUID DROP AND A SOLID SURFACE
    HEYMANN, FJ
    [J]. JOURNAL OF APPLIED PHYSICS, 1969, 40 (13) : 5113 - +
  • [22] Ikohagi T., 2010, P INT S AG MAN MAINT, P47
  • [23] Isomoto Y., 2008, ZAIRYO TO KANKYO, V57, P146
  • [24] Itoh H., 1993, Trans. JPN Soc. Mech. Eng. Part A, V59, P2736, DOI [10.1299/kikaia.59.2736, DOI 10.1299/KIKAIA.59.2736]
  • [25] The effect of initial surface roughness on water droplet erosion behaviour
    Kirols, H. S.
    Kevorkov, D.
    Uihlein, A.
    Medraj, M.
    [J]. WEAR, 2015, 342 : 198 - 209
  • [26] Miyata H., 2008, ZAIRYO TO KANKYO, V57, P138
  • [27] Effective parameters for erosion caused by water droplet impingement and applications to surface treatment technology
    Oka, Y. I.
    Mihara, S.
    Miyata, H.
    [J]. WEAR, 2007, 263 (386-394) : 386 - 394
  • [28] Rochester M. C., 1974, ASTM STP, P128
  • [29] Sanchez-Caldera L.E., 1984, THESIS
  • [30] THE MECHANISM OF CORROSION EROSION IN STEAM EXTRACTION LINES OF POWER-STATIONS
    SANCHEZCALDERA, LE
    GRIFFITH, P
    RABINOWICZ, E
    [J]. JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 1988, 110 (02): : 180 - 184