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Development of New PM Iron-Based Materials for Self-Lubricating Bearings

机译:新型PM自润滑轴承铁基材料的开发

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Using PM technologies, new antifriction materials based on iron powder with different addition elements were developed in order to obtain self-lubricated bearings with improved tribological features. The elemental powder mixtures were blended for 2 hours in a 3D homogenization device, were compacted at a pressure of 500 MPa, and then sintered in dry hydrogen atmosphere at different temperatures for different maintaining times. The effect of technological parameters on physical properties (density and dimensional changes) was presented in this study. The mechanical and tribological properties (tensile strength, hardness, impact energy, friction coefficient, and wear rate) related to addition elements were evaluated. The tribological behaviour of the selected iron-based alloys was analysed by pin on disc tests without lubrication. Also, the wear surface scars and the microstructure of the wear surfaces were investigated.
机译:使用PM技术,开发了具有不同添加元素的基于铁粉的新型减摩材料,以获得具有改进的摩擦学特性的自润滑轴承。将元素粉末混合物在3D均质设备中混合2小时,在500 MPa的压力下压实,然后在不同温度的干燥氢气氛中烧结不同的保持时间。在这项研究中提出了技术参数对物理性质(密度和尺寸变化)的影响。评估了与添加元素有关的机械和摩擦学性能(拉伸强度,硬度,冲击能,摩擦系数和磨损率)。选定的铁基合金的摩擦学性能在不润滑的情况下通过针盘测试进行了分析。而且,研究了磨损表面的伤痕和磨损表面的微观结构。

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