ISSN   1004-0595

CN  62-1224/O4

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环形管内壁磨粒侵蚀物理过程的研究[J]. 摩擦学学报, 1995, 15(4): 306-309.
引用本文: 环形管内壁磨粒侵蚀物理过程的研究[J]. 摩擦学学报, 1995, 15(4): 306-309.
Theoretical Study in Physical Process of AbraSive Erosion On Annular Pipe Wall[J]. TRIBOLOGY, 1995, 15(4): 306-309.
Citation: Theoretical Study in Physical Process of AbraSive Erosion On Annular Pipe Wall[J]. TRIBOLOGY, 1995, 15(4): 306-309.

环形管内壁磨粒侵蚀物理过程的研究

Theoretical Study in Physical Process of AbraSive Erosion On Annular Pipe Wall

  • 摘要: 对高分子材料的磨粒侵蚀进行了系统的试验研究,为了进一步阐明其物理本质并预测其磨损,通过分析颗粒在环形流场中的轨迹,发现环形和管壁的磨粒侵蚀可以分为两个阶段;即冲击侵蚀阶段和湿磨粒磨损阶段,并以后者为主,对于聚氨酯材料,其磨粒侵蚀第二阶段的磨损机理主要是由于滑动摩擦引起的表面疲劳磨损。

     

    Abstract: The abrasive erosion of polymers has been intensively investigated.In order to reveal the mechanism of abrasive erosion further and to predicate the wear of material,it is necessary to study the physical process theoretically.Based upon analysising the particale trajectories in annular fluid field,it has been found that the abrasive erosion of annular pipe is deve-loped in two stages:impact erosion stage and wet abrasion stage,Moreover,the later is themain wear process. The wear mechanism of wet abrasion for the polyurethane is rnainly as-cribed to surfacial fatigue wear resulting from the sliding friction. On the basis of this result,atheoretical wear equation of abrasive erosion in annular pipe has been derived,in which wearrate of polyurethane is proportional to surface energy per unit area and to an exponent of 3 ofthe flow velocity,however ,it is inversely proportional to an exponent of 3 of the tensitlestrength. This theoretical result which reveals the basic correlation among the material property,running condition and wear characteristic is in accord with the experimental data obtainedpreviously and can be used for predicting the wear of material.

     

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