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Some Physicochemical Phenomena Observed During Fabrication of Mg-C Cast Composites

机译:Mg-C铸造复合材料制备过程中观察到的一些理化现象

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摘要

Some effects acquired in composites processed under industrial conditions were presented. Glassy carbon particles (GCp) and short carbon fibers were applied in magnesium matrix composites fabricated by suspension casting. As the matrix magnesium alloys with Al and without Al but with Zn, Zr and rare earth elements (RE) were used. The main interest was focused on the behavior of the reinforcing components, depending on the magnesium alloying elements. The observation of the stirred suspensions during their industrial processing detected an effect of carbon components' migration to the top of the crucible, suggesting segregation processes. Experiments with unmixed suspensions performed by way of remelting the composites with uniformly distributed reinforcement showed that the segregation effect depends on the magnesium matrix composition. In the case of the alloy with Al, two zones with (top) and without reinforcement can be formed. For the alloys with Zn, Zr, and RE, an additional zone of segregated carbon reinforcement can appear directly at the bottom of the crucible. The SEM/EDS examination also showed some differences in the influence of the magnesium matrix on the carbon reinforcement dependent on the applied alloying elements. The most destructive effect was detected for the Al-containing alloy and minor defects in GCp were formed when Gd with Nd were applied.
机译:介绍了在工业条件下加工的复合材料中获得的一些效果。玻碳颗粒(GCp)和短碳纤维被应用到通过悬浮铸造制备的镁基复合材料中。作为具有Al和不具有Al但具有Zn,Zr和稀土元素(RE)的镁合金作为基体合金。主要兴趣集中在增强成分的行为上,具体取决于镁合金元素。在搅拌悬浮液的工业加工过程中观察到,发现了碳组分向坩埚顶部迁移的影响,暗示了分离过程。通过用具有均匀分布的增强物的重熔复合物的方式对未混合的悬浮液进行的实验表明,偏析效果取决于镁基质的组成。对于含Al的合金,可以形成两个带(顶部)和不带补强区。对于具有Zn,Zr和RE的合金,另外的隔离碳增强区可以直接出现在坩埚底部。 SEM / EDS检查还显示,取决于所应用的合金元素,镁基体对碳增强材料的影响存在一些差异。对于含铝合金,检测到的破坏力最大,当添加Gd和Nd时,GCp中形成了较小的缺陷。

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