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首页> 外文期刊>Conference Papers in Science >Tribological Characteristics of the Magnesium Matrix-Glassy Carbon Particles Composite Manufactured by Different Casting Methods
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Tribological Characteristics of the Magnesium Matrix-Glassy Carbon Particles Composite Manufactured by Different Casting Methods

机译:不同铸造方法制备的镁基玻璃态碳颗粒复合材料的摩擦学特性

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A particulate composite with a magnesium matrix (Mg3Al) and glassy carbon particles (GCp) obtained under industrial conditions from a gravity cast and pressure die cast suspension was examined. The influence of the casting procedure on the microstructure and mechanical properties was revealed. Sliding friction tests by the pin-on-disc method for different loads (2.3, 5, and 9.3 N) and speeds (0.06, 0.09, and 0.14 m/s) were performed. Regardless of the technology, the sliding friction coefficient’s value strongly depended on the load and speed. Its value was changing (0.35–0.13) and was usually higher for the pressure die cast material, yet the wear resistance of the composite processed in that way was considerably better compared with the gravity cast. The results of the worn surface observation by SEM with EDS showed an influence of the initial Mg3Al-GCp composite’s microstructure on the processes of its wear.
机译:研究了在工业条件下由重力铸造和压铸悬浮液获得的具有镁基体(Mg3Al)和玻璃碳颗粒(GCp)的颗粒复合材料。揭示了铸造工艺对组织和力学性能的影响。通过销盘法对不同的载荷(2.3、5和9.3 N)和速度(0.06、0.09和0.14μm/ s)进行了滑动摩擦测试。无论采用哪种技术,滑动摩擦系数的值都很大程度上取决于负载和速度。它的值在变化(0.35-0.13),对于压铸材料通常更高,但是与重力铸造相比,以这种方式加工的复合材料的耐磨性要好得多。用EDS扫描电镜观察磨损表面的结果表明,初始Mg3Al-GCp复合材料的微观结构对其磨损过程有影响。

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