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Investigations on tailored forming components as tribologically loaded machine elements

机译:研究定制的成型零件作为摩擦载荷的机器元件

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摘要

To fulfil future trends of machine elements, the surface and part properties need to be enhanced. To advance machine elements, the application of tailored forming technology offers new possibilities. With this approach, it is possible to design and manufacture machine elements consisting of two or more different metallic materials with improved performance and functionality specially adapted to their respective application. The process chain starts with the joining of different materials to multi-metal work pieces, which are subsequently formed close to the final contour. The properties of the joining zone can be improved by thermal and mechanical treatment accompanying the forming process.Exemplary multi-metal components with a boundary zone subjected to rolling contact fatigue were investigated. Thus, an axial bearing, a shaft with an integrated raceway, a bearing bushing/angular contact ball bearing and a bevel gear wheel were in the focus of this research. Here, the highly stressed areas are reinforced with a higher strength material, while the rest of the part consists of a lower grade material. In case of the shaft, the raceway acts like the inner ring of a bearing and should resist rolling contact fatigue and mechanical wear. The process route was set up and simulations regarding the fatigue life in dependence of the layer thickness of the material acting as raceway were performed. First fatigue tests were executed to prove the reliability of the described concept.
机译:为了满足机械元件的未来趋势,需要增强表面和零件的性能。为了提高机械元件的质量,量身定制的成型技术的应用提供了新的可能性。通过这种方法,可以设计和制造由两种或更多种不同的金属材料组成的机械元件,它们具有特别适合其各自应用的改进的性能和功能。该工艺链始于将不同的材料连接到多金属工件上,然后在靠近最终轮廓的位置进行成型。可以通过在成形过程中进行热处理和机械处理来改善连接区域的性能。研究了边界区域遭受滚动接触疲劳的示例性多金属部件。因此,轴向轴承,具有集成滚道的轴,轴承衬套/角接触球轴承和锥齿轮是本研究的重点。在这里,高应力区域用较高强度的材料增强,而其余部分则由较低等级的材料构成。对于轴,滚道的作用就像轴承的内圈,应能抵抗滚动接触疲劳和机械磨损。建立了工艺路线,并进行了有关疲劳寿命的仿真,该疲劳寿命取决于充当滚道的材料的层厚。首先进行了疲劳测试,以证明所描述概念的可靠性。

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