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Characterizing the frictional interface between PCBN and 1018 steel for friction stir welding numerical models

机译:用于摩擦搅拌焊接数值模型PCBN和1018钢之间的摩擦界面

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摘要

Quantitative understanding of frictional phenomena between the tool and the workpiece is essential for accurate modeling of the Friction Stir Welding (FSW) process. A method of measuring the tool-workpiece interface is proposed that allows frictional measurements to be made in a non-oxidizing environment under extreme conditions. The ranges of temperature, velocity and normal force are 100-600°C, 75-400 surface feet per minute, and 100-600 lbf, respectively. Data is gathered at different parameter level combinations to provide enough data to create an empirical model representing the data. Two different friction modes are observed which have distinct characteristics. One mode, Coulomb friction, has frictional force proportional to normal force while the other, plastic shear deformation friction, has frictional force independent of normal force. A linear statistical model has been developed to characterize each of the frictional modes for the Polycrystalline Cubic Boron Nitride (PCBN) tool and 1018 steel work piece interface as functions of temperature, velocity, and normal force.
机译:对工具与工件之间的摩擦现象的定量理解对于摩擦搅拌焊接(FSW)工艺的精确建模至关重要。提出了一种测量工具工件界面的方法,其允许在极端条件下在非氧化环境中进行摩擦测量。温度,速度和正常力的范围分别为100-600°C,35-400°/分钟,分别为100-600 LBF。数据以不同的参数级别组合收集,以提供足够的数据以创建表示数据的实证模型。观察到两种不同的摩擦模式,其具有不同的特征。一种模式,库仑摩擦,具有与正常力成比例的摩擦力,而另一个塑料剪切变形摩擦,具有与正常力无关的摩擦力。已经开发了线性统计模型,以表征多晶立方体氮化物(PCBN)工具的摩擦模式和1018钢工件接口作为温度,速度和正常力的功能。

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