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首页> 外文期刊>Scientific reports. >Tuning apparent friction coefficient by controlled patterning bulk metallic glasses surfaces
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Tuning apparent friction coefficient by controlled patterning bulk metallic glasses surfaces

机译:通过控制的图案化散装金属眼镜表面调谐明显的摩擦系数

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Micro-honeycomb structures with various pitches between adjacent cells were hot-embossed on Zr35Ti30Cu8.25Be26.75 bulk metallic glass surface. The effect of pitch geometry on the frictional behavior of metallic glass surface was systematically investigated. The results revealed that all textured metallic glass surfaces show a reduction in friction coefficient compared to smooth surface. More intriguingly, the friction coefficient first decreased and then increased gradually with increasing pitches. Such unique behavior can be understood fundamentally from the perspective of competing effects between contact area and local stress level with increasing pitches. This finding not only enhance the in-depth understanding of the mechanism of the significant role of surface topography on the frictional behavior of metallic glass surface, but also opens a new route towards other functional applications for bulk metallic glasses.
机译:微蜂窝结构具有相邻细胞之间的各种间距的结构在Zr35Ti30Cu8.25Be26.75散装金属玻璃表面上进行热压花。系统研究了俯仰几何对金属玻璃表面摩擦行为的影响。结果表明,与光滑的表面相比,所有纹理金属玻璃表面都显示出摩擦系数的降低。更具吸引力,摩擦系数首先降低,然后随着音高的增加而逐渐增加。从接触面积与局部应力水平之间的竞争效应的角度,可以从根本上理解这种独特的行为,随着音高的增加。这一发现不仅提高了对表面形貌对金属玻璃表面摩擦行为的重要作用的深入了解,而且还为散装金属玻璃的其他功能应用开辟了新的路线。

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