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Ceramic is one of promising materials for pressure housings because ceramic has higher compressive strength than titan alloys. However, as the tensile strengths of ceramics are only a fraction of the compressive strength, common design methods for pressure housings of metals can not be directly applied to ceramic pressure housings. We will propose a new design method to coupling ceramic hemisphere...
Ceramics are promising materials for use in pressure housings because they have higher compressive strength than titanium alloys. However, because their tensile strengths are typically only a fraction of the compressive strength, common design methods for pressure housings of metals are not directly applicable to ceramic pressure housings. Results of finite element analysis (FEA) of a through hole...
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