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Sliding Behavior of Secondary Phase SiC Embedded Alloyed Layer Doped Ti6A14V Surfaces Ensuing Electro Discharge Machining

机译:二次相嵌入合金层的滑动行为掺杂Ti6a14V表面,随着电放电加工

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The enhancement in process efficiency achievable by additive mixed electrical discharge machining during the processing of metal/alloy surfaces is a known facet. Nonetheless, its influence on the surface characteristics of the material remains scarcely evaluated. Hence, the evolution in tribological behavior of electrical discharge machined Ti6A14V surfaces become the focal point of the present investigation. The process got assisted by silicon carbide powder (SiC, green, 1-10 μm) dispersed dielectric (de-ionized water) used as an insulator and the discharge medium. A computerized pin-on-disk tribometer (PoDT) was used to quantify the wear behavior of the developed surfaces. The experimentations varied based on distinction in the chosen speed (1.256 ms~(-1) (V I) and 1.884 ms~(-1) (V2)) and load (50 N and 100 N) conditions, respectively. The results depict that the tribological characteristics of the base material were enhanced by the surface doped heavily alloyed recast layer with secondary hard phases (SiC). At increased load (100 N), a catastrophic shift in wear mechanism caused by galling, led to the resultant delamination. The aftermath situation of implementing hard abrasives for surface modification is that at severe conditions (load/speed), the spalling of layers can have destructive effects on the mating surfaces.
机译:在金属/合金表面加工过程中,通过附加混合电放电加工可实现的工艺效率的增强是已知的刻面。尽管如此,它对材料的表面特性的影响仍然几乎没有评价。因此,电气放电加工Ti6a14V表面的摩擦学行为的演变成为本研究的焦点。该过程得到了用作绝缘体和放电介质的碳化硅粉末(SiC,绿色,1-10μm)分散的电介质(去离子水)辅助。使用计算机化的磁盘摩擦计(PODT)来量化发达表面的磨损行为。实验基于所选择的速度(1.256ms〜(-1)(V i)和1.884ms〜(-1)(v2))和载荷(50n和100n)条件的区别而变化。结果描绘了用次级硬相(SiC)的表面掺杂的掺杂严重合金素额增强了基础材料的摩擦学特性。在增加的载荷(100n)时,通过磨损引起的磨损机制的灾难性变化导致得到的分层。实现表面改性的硬磨料的后果情况是,在严重条件下(负载/速度),层的剥落可能对配合表面具有破坏性影响。

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