为了充分发挥陶瓷和金属的各自优势 ,同时避免它们的各自劣势 ,文章采用鲜有报道的多孔陶瓷骨架压渗工艺制备双连续相金属 /陶瓷复合材料。首先采用有机泡沫浸渍法制备 Si C多孔陶瓷骨架 ,然后将纯金属 A l压渗到骨架中 ,为了改善压渗效...为了充分发挥陶瓷和金属的各自优势 ,同时避免它们的各自劣势 ,文章采用鲜有报道的多孔陶瓷骨架压渗工艺制备双连续相金属 /陶瓷复合材料。首先采用有机泡沫浸渍法制备 Si C多孔陶瓷骨架 ,然后将纯金属 A l压渗到骨架中 ,为了改善压渗效果 ,还对助渗剂进行研究。结果表明 ,纯金属 A l可以压渗进入陶瓷骨架中 ,使用助渗剂可得到更好的效果。该材料应用前须进一步改善压渗工艺 。展开更多
Specimens of ZM5 magnesium alloy were dipped into the mixed powder of Al and Zn at (390±5) ℃ for 8 h in argon gas protective environment and subjected to surface diffusion alloying processing (SDAP). The ero...Specimens of ZM5 magnesium alloy were dipped into the mixed powder of Al and Zn at (390±5) ℃ for 8 h in argon gas protective environment and subjected to surface diffusion alloying processing (SDAP). The erosion wear behaviors of ZM5 magnesium alloy before and after SDAP were investigated in two different erosion wear environments: oil and quartz environment; tap water and quartz environment. The surfaces of erosion wear specimens exhibited cutting scratch grooves in the oil and quartz environment. Corrosive attack was weak and cutting wear mechanism was responsible for the mass loss. When the erosion wear medium was changed to tap water and quartz environment, corrosion pits and cracks were obviously observed after erosion wear test. The corrosion from tap water and the scour from quartz intensified mass losses. Compared with the untreated specimens, the application of SDAP improved the erosion wear resistance in the same environment.展开更多
基金Project (2011JY009) supported by Education Department of Shaanxi Province, China
文摘Specimens of ZM5 magnesium alloy were dipped into the mixed powder of Al and Zn at (390±5) ℃ for 8 h in argon gas protective environment and subjected to surface diffusion alloying processing (SDAP). The erosion wear behaviors of ZM5 magnesium alloy before and after SDAP were investigated in two different erosion wear environments: oil and quartz environment; tap water and quartz environment. The surfaces of erosion wear specimens exhibited cutting scratch grooves in the oil and quartz environment. Corrosive attack was weak and cutting wear mechanism was responsible for the mass loss. When the erosion wear medium was changed to tap water and quartz environment, corrosion pits and cracks were obviously observed after erosion wear test. The corrosion from tap water and the scour from quartz intensified mass losses. Compared with the untreated specimens, the application of SDAP improved the erosion wear resistance in the same environment.