材料科学
立方氧化锆
铸造
冶金
复合材料
化学工程
陶瓷
工程类
作者
Hyun‐Hee Choi,Bong‐Gu Kim,Min Gyu Kim,Eun‐Hee Kim,Jong‐Young Kim,Jung Hun Kim,Jeong Hun Son,SeungCheol Yang,Byung-Il Yang,Yun‐Ki Byeun,Yeon‐Gil Jung
摘要
Abstract Sand‐casting molds suffer from surface defects and low strength. An organic–inorganic binder conversion process, wherein an organic binder is converted to an inorganic binder, has been proposed to increase the application temperature of the sand‐casting mold and simplify the manufacturing process for precision casting. However, the usable temperature of the typical SiO 2 –Na 2 O binder system is limited to approximately 1000°C owing to the low liquefaction temperature of the compound. The resulting glass phase (Na 2 SiO 3 ) exhibits low viscosity, and the casting of large objects results in low strength. Therefore, in this study, we propose a SiO 2 –Na 2 O–ZrO 2 ternary inorganic binder system; the addition of zirconia (ZrO 2 ) into sodium silicate (Na 2 SiO 3 ) as an inorganic binder was expected to increase the operating temperature of the mold and improve its mechanical properties. The results confirmed that the addition of ZrO 2 improved the mechanical properties by preventing the formation of Na 2 SiO 3 . In addition, a higher sintering temperature corresponded to smaller and larger amounts of Na 2 SiO 3 and Na 2 ZrSiO 5 , respectively, and thus a higher strength. Therefore, we expect our developed ternary inorganic binder system to be highly advantageous for producing molds for high‐temperature and precision casting.
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