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Nanocomposites TiB2-Cu: Consolidation and erosion behavior

机译:纳米复合材料TiB2-Cu:固结和腐蚀行为

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摘要

In this work we report consolidation and erosion behavior of TiB2-Cu nanocomposites showing increased stability during electric erosion in high-current arc discharge. Composite powders containing nanoparticles of titanium diboride distributed in copper matrix were synthesized using high-energy ball milling and then shock wave consolidated to obtain fully dense compact electrode material with retention of the size of particulate inclusions. Copper weight losses by evaporation in composite electrodes were 10 times lower compared to pure copper electrodes and arc spot size was about an order of magnitude increased indicating distribution of arc on a larger surface. Porous Cu-depleted layer was formed on the surface of composite electrode and no copper melt was observed to squeeze out on the surface so that the electrode held its shape and size. The improved erosion resistance of the electrode material is believed to be due to its nanocomposite structure. (c) 2005 Springer Science + Business Media, Inc.
机译:在这项工作中,我们报告了TiB2-Cu纳米复合材料的固结和腐蚀行为,在大电流电弧放电中的电腐蚀过程中显示出更高的稳定性。使用高能球磨法合成包含分布在铜基质中的二硼化钛纳米颗粒的复合粉末,然后进行冲击波固结,以获得完全致密的致密电极材料,并保留了颗粒内含物的大小。与纯铜电极相比,复合电极中蒸发引起的铜重量损失要低10倍,电弧点的尺寸大约增加一个数量级,表明电弧在较大的表面上分布。在复合电极的表面上形成了多孔的贫铜层,没有观察到铜熔体挤出表面,从而使电极保持了其形状和尺寸。认为电极材料的改善的耐腐蚀性是由于其纳米复合结构。 (c)2005年Springer Science + Business Media,Inc.

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