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가압-진공 하이브리드 주입 성형에 의한 알루미나의 성형에 미치는 다단 가압의 영향Effect of Step Pressure on Shape Forming of Alumina by Pressure-Vacuum Hybrid Slip Casting

Other Titles
Effect of Step Pressure on Shape Forming of Alumina by Pressure-Vacuum Hybrid Slip Casting
Authors
조경식이현권우병준
Issue Date
2013
Publisher
한국세라믹학회
Keywords
Alumina; Slip casting; Shape forming; Pressure slip casting; Vacuum slip casting
Citation
한국세라믹학회지, v.50, no.2, pp.142 - 148
Journal Title
한국세라믹학회지
Volume
50
Number
2
Start Page
142
End Page
148
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/2223
DOI
10.4191/kcers.2013.50.2.142
ISSN
1229-7801
Abstract
Conventional cold isostatic pressing, slip casting, and filter pressing are not completely suitable for fabricating large plates because of disadvantages such as the high cost of equipment and formation of density gradient. These problems could be avoided by employing pressure-vacuum hybrid slip casting (PVHSC). In the PVHSC, the consolidation occurs not only by the compression of the slip in casting room, but also by vacuum sucking of the dispersion medium around the mold. We prepared the alumina bodies by the PVHSC in a static- or stepwise-pressure manner for loading up to 0.5 MPa using an aqueous slip. The green bodies were dried at 30oC with 40 ~ 80% relative humidity. Under static pressure, casting induced a density gradient in the formed body, resulting in cracking and distortion after the firing. However, the stepwise pressure loading resulted in green bodies with homogeneous density, and the minimization of the appearance of those defects in final products. Desirable drying results were obtained from the cast bodies dried with 80% RH environment humidity. When sintered at 1650oC for 4 h, the alumina plate made by stepwise-pressure casting reached full density (> 99.7% relative density).
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College of Engineering (Department of Materials Science and Engineering)
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