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INTEGRATING FRICTION-STIR BACK EXTRUSION TO POWDER METALLURGY

机译:将摩擦搅拌背挤压粉末冶金

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Reducing fuel consumption has been a driving factor for researchers and manufacturers to continually develop improved methods for reducing the weight of automobiles or lightweighting. These vehicle lightweighting demands have directed researchers to look to using materials that are typically more difficult to manufacture in their studies. As a result, friction stir processing techniques are being looked at more closely. There are advantages to using friction stir methods. Dissimilar metals can be welded and fine-grained products can be created using friction stir methods to name a few. It can be an ideal solution for manufacturing high-conductive metals and alloys. Foamed aluminum tube similar to the one shown by Yoshiko Hangai et al can be formed using the proposed process which could be used to develop lightweight automobile components. This paper provides preliminary results and insights gained when fine metal powders were used in a friction stir back extrusion (FSBE) setup. The tooling consisted of a D2 tool steel die with an H13 rotating probe mounted in a CNC mill. Within the die, commercially pure aluminum powder was topped by an aluminum cap with a milled pocket in the center. This pocket was used to locate the spin tool in the center of the cap and reduce the potential for the tool to drift and deflect. The cap was also used for compacting the powdered aluminum. X-ray diffraction indicated that Al_(13)Fe_4 was formed, indicating that the temperature within the die reached a minimum of 800°C and also indicated that the powder had the potential to partially sinter and melt.
机译:降低燃料消耗一直是研究人员和制造商的驱动因素,以不断开发改进的方法来减少汽车的重量或轻量化。这些车辆的轻量价要求对研究人员来看,寻求使用通常更难以在研究中制造的材料。结果,摩擦搅拌加工技术正在更密切地看。使用摩擦搅拌方法有优点。可以焊接多样化的金属,可以使用摩擦搅拌方法创建细粒产品以命名几个。它可以是制造高导电金属和合金的理想解决方案。可以使用可用于开发轻质汽车部件的所提出的方法来形成类似于Yoshiko Hangai等人所示的泡沫铝管。本文提供了在摩擦搅拌背挤出(FSBE)设置中使用细金属粉末时获得的初步结果和洞察力。该工具由D2工具钢模具组成,安装在CNC磨机中的H13旋转探针。在模具中,商业纯的铝粉末在中心的铝帽上饰有铝帽。该袋用于定位盖子中心的旋转工具,并减少工具漂移和偏转的可能性。帽还用于压实粉末铝。 X射线衍射表明,形成Al_(13)Fe_4,表明模头内的温度达到至少800℃,并且还表明粉末有可能部分烧结并熔化。

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