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Synthesis, characterization, and wear and friction properties of variably structured SiC/Si elements made from wood by molten Si impregnation

机译:熔融硅浸渍木材制成的可变结构SiC / Si元素的合成,表征以及磨损和摩擦性能

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摘要

We have synthesized pre-shaped SiC/Si ceramic material elements from charcoal (obtained from wood) by impregnation with molten silicon, which takes place in a two-stage process. In the first process, a porous structure of connected micro-crystals of β-SiC is formed, while, in the second process, molten Si totally or partly infiltrates the remaining open regions. This process forms a dense material with cubic (β-)SiC crystallites, of which the majority is imbedded in amorphous Si. The synthesis of preshaped "sprocket" elements demonstrates that desired shapes of such a dense SiC/Si composite ceramic material can be achieved, thus suggesting new industrial applications. The structure and composition of numerous as-synthesized samples were characterized in detail by using a wide range of techniques. Wear and friction properties were also investigated, with polished samples. The properties found for the present samples are very promising for abrasive applications and for new generation brake systems. © 2011 Elsevier Ltd.
机译:我们通过用熔融硅浸渍木炭(从木材中获得)合成了预成形的SiC / Si陶瓷材料元素,该过程分两步进行。在第一步骤中,形成连接的β-SiC的微晶的多孔结构,而在第二步骤中,熔融的Si全部或部分地渗入剩余的开口区域。该过程形成具有立方(β-)SiC微晶的致密材料,其中大部分嵌入非晶硅中。预成形“链轮”元件的合成表明,可以实现这种致密SiC / Si复合陶瓷材料的所需形状,从而提出了新的工业应用。通过使用多种技术,详细表征了许多合成样品的结构和组成。还对抛光样品进行了磨损和摩擦性能研究。本样品的性能对于磨料应用和新一代制动系统非常有前途。 ©2011爱思唯尔有限公司。

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