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陶瓷材料以其优异的耐高温、高强度、耐磨损、耐腐蚀等性能被广泛应用在各个领域中.本文介绍了几种主要的陶瓷成形加工技术的特点和进展. 相似文献
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氮化硅陶瓷具有高强度、高硬度、耐高温、耐腐蚀、导热性好、摩擦系数小、热膨胀系数小、抗热震性好等优点,是耐高温、耐磨的理想结构材料之一。由于氮化硅硬度大.难以用传统的加工方法进行加工,限制了其在一些领域的广泛应用。陶瓷注射成形的出现为氮化硅陶瓷再添生机,氮化硅注射成形不仅可净尺寸成形各种形状复杂的异形件.而且成形产品具有较高的表面光洁度和尺寸精度。本文较详细介绍了陶瓷注射成形的工艺过程及Si3N4陶瓷注射成的研究讲展.最后对Si3N4陶脊沣射成形枯术讲行了展望. 相似文献
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Particle Packing in Ceramic Injection Molding 总被引:3,自引:0,他引:3
Jadith K. Wright Mohan J. Edirisinghe Jian G. Zhang Julian R. G. Evans 《Journal of the American Ceramic Society》1990,73(9):2653-2658
The shrinkage of ceramic injection molding suspensions caused by pyrolytic removal of the organic vehicle was measured for initial ceramic volume fractions from 0.48 to 0.64. Shrinkage was inversely related to initial ceramic volume fraction V , and maximum volume fraction after pyrolysis V *,max was 0.65. The factors which restrict shrinkage are discussed. The maximum volume fraction, obtained from semiempirical equations relating the viscosity of suspensions to volume fraction of powder ( V max ) was 0.73 to 0.76. Both the viscosity of the suspensions and the shrinkage on removal of the organic vehicle can be interpreted in terms of a free volume of fluid over and above that needed to fill interstices between contacting particles. Thermomechanical measurements also show that the free-volume concept helps to interpret the transition from fluid to quasi-solid properties as the organic vehicle is removed by pyrolysis from a molded body. 相似文献