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- W2116764833 abstract "A factorial design of experiment is one in which a variable is evaluated at all levels of all other variables. This type of experiment was applied to the unit operations in body preparation and forming by extrusion. Drying and firing unit operations were not considered, and the variance due to these operations was minimized by duplication. The variables or factors were (1) particle-size distribution at three levels, (2) water of plasticity at two levels, (3) entrapped air at two levels, and (4) two replications. Analysis of variance was used to determine the significant effects. It was found that 95%. 0f the total variance of the drying shrinkage was accounted for by the particle-size distribution, water of plasticity, and two interactions; 95% of the total variance of the dry modulus of rupture was accounted for by particle-size distribution, water of plasticity, entrapped air, and two interactions; 52% of the total variance of the firing shrinkage was accounted for by the particle-size distribution; 87% of the total variance of the fired modulus of rupture was accounted for by the particle-size distribution, water of plasticity, entrapped air, and three interactions. Since a tunnel kiln makes it possible to control the firing operation closely and with no changes in composition, close control of the particle-size distribution, water of plasticity, and entrapped air should make it possible to produce more uniform ware. The slope constants for the factors were also determined which show the most efficient path leading to the development of optimum conditions necessary for maximizing a desired property." @default.
- W2116764833 created "2016-06-24" @default.
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- W2116764833 date "1958-03-01" @default.
- W2116764833 modified "2023-09-27" @default.
- W2116764833 title "Factorial Design of Experiments in Ceramics, l" @default.
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- W2116764833 doi "https://doi.org/10.1111/j.1151-2916.1958.tb15451.x" @default.
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