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The Load-Scanning Test - Evaluation of a Universal Tribological Model Test in View of Sheet Bulk Metal Forming

机译:负荷扫描试验 - 载体散装金属成形视图中普遍摩擦学模型试验的评价

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Combining the loading conditions of two different classes of forming operations, in sheet bulk metal forming processes, contact pressures ranging from a few hundred MPa up to loads exceeding 2,500 MPa are experienced. With the additional need for an enhanced control of the material flow, which is best implemented by locally adapted frictional properties of the contact tool/workpiece, sheet bulk metal forming represents a challenge to tribology. As a consequence, the evaluation of the friction and wear properties of different surface modifications and lubricants within a variety of loading conditions is required. The load-scanning test is a universal tribological model test. Its most distinctive feature is the ability to assess the friction and wear behaviour of a tribological pairing within a whole range of contact loads in a single test run. The simple and quick test method also allows the investigation of plastic contacts. Due to these features, the load-scanning test is of particular interest with regard to the quantitative and qualitative evaluation of the application potentials and limits of use of tribological measures intended for sheet bulk metal forming. Like any model test, the load-scanning test has also specific drawbacks. In some test setups, the stress distribution in the contact area may be non-uniform. Further, the maximum realizable contact pressure may be limited by low yield strengths of the tested materials in combination with the insufficient flow restriction of the contact geometry and/or the moderate machine force. By comparison to other test methods and by giving examples of its application in different scenarios, the present paper discusses the potentials and limitations of the load-scanning test against the background of sheet bulk metal forming.
机译:组合两种不同类形成操作的负载的条件下,在片材块状金属成形过程,直至负载超过2500兆帕接触压力范围从几百兆帕经历。通过额外的需要增强材料流动的控制,这是由接触工具/工件的局部适应的摩擦性能来实现的,块散装金属形成代表了摩擦学的挑战。结果,需要评估不同表面修饰和润滑剂在各种负载条件下的摩擦性能。负载扫描测试是一种通用的摩擦学模型测试。其最独特的特点是能够在单个测试运行中评估摩擦系数在整个接触载荷范围内的摩擦和磨损行为。简单快速的测试方法还允许调查塑料触点。由于这些特征,关于对料理散装金属成形的应用势的定量和定性评估以及用于塑料金属成形的摩擦措施的使用限制,负载扫描测试特别感兴趣。与任何模型测试一样,负载扫描测试也具有特定的缺点。在一些测试设置中,接触面积中的应力分布可能是不均匀的。此外,最大可实现的接触压力可以通过测试材料的低屈服强度与接触几何形状和/或中等机械力的流量限制的低屈服强度限制。通过与其他测试方法的比较和通过在不同场景中赋予其应用的示例,本文讨论了负载扫描测试对块散装金属成形背景的潜在和限制。

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