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A New Dewaxing Method and Its Effect on the Properties of Low-Pressure Injection Molded Ceramics

机译:一种新的脱蜡方法及其对低压注塑陶瓷性能的影响

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A new dewaxing method for low-pressure injection molded ceramics is presented. Supercritical extraction with carbon dioxide was used to remove paraffin wax from the ceramic green parts. The composition of organic additives for low-pressure injection molding feedstock and the extraction condition for the green parts were investigated. Moreover, the properties of sintered ceramic samples dewaxed by supercritical carbon dioxide were compared with those by thermal dewaxing. The results show that the new binder system containing 50wt% paraffin wax, 35% bee wax and 15% stearic acid fulfills the requirements of both low-pressure injection molding feedstocks and supercritical dewaxing, where the feedstock has high fluidity, low viscosity and quick solidification. The efficient extraction condition for supercritical dewaxing from the green parts is at 30MPa pressure and 45°C. Under this condition, defect free ceramic green parts can be obtained. Dewaxing methods have significant influence on the properties of sintered parts. The mechanical properties of the sintered sample can be improved by supercritical dewaxing. With this method, the bending strength of sintered samples (σ = 331.6 MPa) is higher than that obtained by thermal treatment (σ = 312.3MPa). The sintered samples dewaxed by supercritical CO_2 have shown the property of higher density and less distortion compared to the thermal dewaxing method. Moreover, with supercritical extraction the dewaxing time can be reduced to about one tenth of the time required by thermal dewaxing.
机译:提出了一种新的低压注塑陶瓷的脱蜡方法。用二氧化碳超临界萃取用于从陶瓷生坯零件中除去石蜡。研究了低压注塑成型原料的有机添加剂的组成和绿色零件的提取条件。此外,通过热脱蜡将通过超临界二氧化碳脱蜡脱蜡的烧结陶瓷样品的性质。结果表明,含有50wt%石蜡,35%蜂蜡和15%硬脂酸的新粘合剂系统满足低压注塑原料和超临界脱蜡的要求,其中原料具有高流动性,低粘度和快速凝固。从绿色零件的超临界脱蜡的有效提取条件为30MPa压力和45℃。在这种情况下,可以获得缺陷陶瓷绿色零件。脱蜡方法对烧结部件的性质产生显着影响。通过超临界的脱蜡可以提高烧结样品的机械性能。通过这种方法,烧结样品(σ= 331.6MPa)的弯曲强度高于通过热处理获得的弯曲强度(σ= 312.3MPa)。通过超临界CO_2脱蜡的烧结样品已经示出了与热脱蜡法相比较高密度和较少的变形性的性质。此外,通过超临界提取,可以将脱蜡时间减少到热脱蜡所需的约十分之一。

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