From the figure shown, Material 1 (brown) is enclosed inside Material 2 (grey). If there would be a load directly applied on material 2, what should be the minimum inside diameter of material 2, so that there is no contact pressure between the material 1 and material 22 Force P = 357.5 kN Diameter of Material 1-88.75 mm %3D Poisson's Ratio - 0.355 !3! Modulus of Elasticity of Mat 2 = 88.56 x 10 9 N/m^2

Refrigeration and Air Conditioning Technology (MindTap Course List)
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ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter42: Heat Gains And Heat Losses In Structures
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From the figure shown, Material 1 (brown) is enclosed inside Material 2 (grey). If there would be a load directly applied
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on material 2, what should be the minimum inside diameter of material 2, so that there is no contact pressure between
the material 1 and material 2?
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Force P = 357.5 kN
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%3D
Diameter of Material 1 = 88.75 mm
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Poisson's Ratio = 0.355
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Modulus of Elasticity of Mat. 2 88.56 x 10 A9 N/m^2
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Transcribed Image Text:From the figure shown, Material 1 (brown) is enclosed inside Material 2 (grey). If there would be a load directly applied iscussions on material 2, what should be the minimum inside diameter of material 2, so that there is no contact pressure between the material 1 and material 2? Grades Force P = 357.5 kN People %3D Diameter of Material 1 = 88.75 mm Pages Poisson's Ratio = 0.355 Syllabus Modulus of Elasticity of Mat. 2 88.56 x 10 A9 N/m^2 Quizzes Modules BigBlueButton Collaborations Badges Google Drive Office 365 Chat TLP Manila Librany Video Presentation Canvas LMS Satisfactory Sunvey ILP STUDENTS COVID-19
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