首页> 外文会议>9th International Conference on Metal Forming Sep 9-11, 2002 The University of Birmingham, UK >Effects of surface-topography directionality and lubrication condition on frictional behaviour during plastic deformation
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Effects of surface-topography directionality and lubrication condition on frictional behaviour during plastic deformation

机译:表面形貌方向和润滑条件对塑性变形过程中摩擦性能的影响

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摘要

Surface-topography, friction and plasticity form a complex system at the interface of a plastic deformation operation. Surface-topography before deformation affects the frictional behaviour at the interface, which in turn affects the level and distribution of plastic deformation. The surface-topography after deformation operations is determined by a combination of the initial surface-topography, the frictional behaviour at the interface and the level and distribution of the plastic deformation. Friction testing with the asymmetric friction upsetting (AFU) test machine and subsequent surface-topography analysis help to further clarify the relationship between surface-topography, interface friction and plasticity. The frictional conditions during testing are controlled via lubricant viscosity, film thickness, surface roughness, and deformation velocity. High and low viscosity lubricants are used in conjunction with a range of test speeds to produce frictional conditions in the boundary, mixed and hydrodynamic lubrication regimes. The effect of initial surface-topography was examined by preparing five different initial specimen surfaces and recording the surface-topographies before testing. Five surface conditions were used: as received, etched, coarse ground perpendicular to test direction, coarse ground parallel to test direction and polished. A correlation between surface-topography directionality and frictional resistance has previously been observed by testing specimens with grooves machined into the surface at a range of angles [A newly developed test method for characterization of frictional conditions in metal forming, in: Proceedings of the Eighth International Conference on Metal Forming, Krakow, 2000, pp. 91-97; Steel Res. 69 (1998) (4-5) 154-160; Beurteilung des Schmierungsverhaltens unterschiedlich texturierter Oberflaechen mit Hilfe des Streifenziehversuches, Diplomarbeit Universitaet, Gesamthochschule Duisburg, 1996]. In the current work coarse grinding is used in place of machined grooves. The scale of the effect from the surface-topography directionality is compared to the scale of the effect of lubricants, arithmetic roughness value and friction regime. Results indicate that arithmetic roughness value and lubrication regime have greater influence than directionality. These results can be explained via the application of lubrication regime theory and the importance of each component in determining the lubrication condition.
机译:表面形貌,摩擦和可塑性在塑性变形操作的界面处形成了一个复杂的系统。变形之前的表面形貌会影响界面处的摩擦行为,进而影响塑性变形的程度和分布。变形操作后的表面形貌由初始表面形貌,界面处的摩擦行为以及塑性形变的程度和分布共同决定。使用非对称摩擦up粗(AFU)测试机进行的摩擦测试以及随后的表面形貌分析有助于进一步阐明表面形貌,界面摩擦和可塑性之间的关系。通过润滑剂粘度,膜厚,表面粗糙度和变形速度来控制测试过程中的摩擦条件。高粘度和低粘度润滑剂与各种测试速度结合使用,可在边界润滑,混合润滑和流体动力润滑方式中产生摩擦条件。通过准备五个不同的初始样品表面并在测试前记录表面形貌来检查初始形貌的影响。使用了五个表面条件:接收时,蚀刻后,垂直于测试方向的粗磨,平行于测试方向的粗磨并抛光。表面形貌方向性与摩擦阻力之间的相关关系先前已通过以下方式进行了观察:在带有一定角度范围的表面上加工凹槽的试样上进行测试[一种用于表征金属成形中摩擦条件的新开发的测试方法,见:第八届国际会议论文集金属成型会议,克拉科夫,2000年,第91-97页;钢铁资源69(1998)(4-5)154-160;杜塞尔多夫理工大学文凭,杜伊斯堡大学文凭,1996年]。在当前工作中,使用粗磨代替加工槽。将表面形貌方向性的影响程度与润滑剂,算术粗糙度值和摩擦状态的影响程度进行比较。结果表明,算术粗糙度值和润滑方式比方向性影响更大。这些结果可以通过润滑方式理论的应用以及每个组件在确定润滑条件中的重要性来解释。

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