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Influence of welding current on carbide/matrix interface properties in MMCs

机译:焊接电流对MMC中碳化物/基体界面性能的影响

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Metal matrix composites (MMCs) are used to increase lifetime of parts of machines in environments where they undergo severe conditions, for instance abrasive wear or impact. When a metal matrix composite is manufactured, reactions between matrix and carbides take place and a reaction zone between matrix and carbides, the interface, is formed. It is shown in the literature, that the interface has an influence on the mechanical properties of MMC. Therefore, it is important to understand, how the interface develops, whose influences on the development exist and how the interface affects the mechanical properties of the MMC. Also the composition of the interface needs to be observed. The aim of this work is to give a qualitative description of the mechanical behaviour of carbide/matrix interface in relation with the interfacial reactivity at this interface. Furthermore, a selected MMC hard-facing alloy based on 60 wt.% WC/W_2C and Ni matrix was manufactured by plasma transferred arc (PTA) process at variation of welding current to estimate the composition of the interface and mechanical properties of the whole composite material. A special designed single impact test (SIT) enabled investigation of impact wear behaviour at high single loads. The evaluation of interface properties was supported by optical microscopy, SEM, XRD investigations and hardness tests. In the literature damage mechanisms under impact are pointed out to decohesion and cracking of hard phases based on interface properties. In the SIT investigations of MMC hardfacing alloy based on 60 wt.% WC/W_2C and Ni matrix it can be shown that welding current is controlling the formation of the carbide/matrix interface and furthermore the dominating wear mechanisms under high single loads in SIT.
机译:金属基复合材料(MMC)用于延长机器零件在恶劣条件下(例如磨料磨损或撞击)的使用寿命。当制造金属基复合材料时,在基体与碳化物之间发生反应,并在基体与碳化物之间形成反应区域,即界面。在文献中表明,界面对MMC的机械性能有影响。因此,重要的是要了解界面如何发展,存在对发展的影响以及界面如何影响MMC的机械性能。还需要观察界面的组成。这项工作的目的是定性描述碳化物/基体界面的机械行为及其在该界面的界面反应性。此外,在焊接电流变化的情况下,通过等离子转移弧(PTA)工艺,制备了基于60 wt。%WC / W_2C和Ni基体的MMC硬面合金,以估算复合材料的界面组成和力学性能材料。特殊设计的单次冲击试验(SIT)能够研究高单载荷下的冲击磨损行为。界面性能的评估得到了光学显微镜,SEM,XRD研究和硬度测试的支持。在文献中,冲击下的破坏机理指出了基于界面性质的硬相的内聚和破裂。在基于60 wt。%WC / W_2C和Ni基体的MMC堆焊合金的SIT研究中,可以看出,焊接电流正在控制SIT中高单载荷下碳化物/基体界面的形成,并控制着主要的磨损机理。

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