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Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating

Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating PDF Author: John R. Davidson
Publisher:
ISBN:
Category :
Languages : en
Pages : 60

Book Description
A method to determine the optimum thicknesses of insulation and load-carrying structure has been applied to insulated compression plates subjected to aerodynamic heating. The optimum design results in the lowest combined weight of insulation and load-carrying plate. Load parameters which included the imposed load, insulation conductivity and density, and flight time were found for design strength criteria of compressive yield, compressive buckling, and postbuckling failure. Charts of optimum total weight were prepared for 2024-T3 aluminum alloy, HK3lA magnesium alloy, 17-7 PH stainless steel, and Inconel X for each design criterion. The results show that 17-7 PH stainless steel and Inconel X are most efficient for compressive yield stress and that HK3lA magnesium is most efficient for buckling. HK31A magnesium is also most efficient for the postbuckling failure criterion except under conditions of light loading and long flight periods; under such conditions uninsulated Inconel X may be superior for environmental temperature less than 1,200 F. Insulated magnesium is more efficient than insulated aluminum because the lower density of magnesium permits the use of thick plates with large heat capacity. When more than one failure mode was applied to a design, it was found that the minimum weight structure was one in which all modes of failure occurred at the design load.

Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating

Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating PDF Author: John R. Davidson
Publisher:
ISBN:
Category :
Languages : en
Pages : 60

Book Description
A method to determine the optimum thicknesses of insulation and load-carrying structure has been applied to insulated compression plates subjected to aerodynamic heating. The optimum design results in the lowest combined weight of insulation and load-carrying plate. Load parameters which included the imposed load, insulation conductivity and density, and flight time were found for design strength criteria of compressive yield, compressive buckling, and postbuckling failure. Charts of optimum total weight were prepared for 2024-T3 aluminum alloy, HK3lA magnesium alloy, 17-7 PH stainless steel, and Inconel X for each design criterion. The results show that 17-7 PH stainless steel and Inconel X are most efficient for compressive yield stress and that HK3lA magnesium is most efficient for buckling. HK31A magnesium is also most efficient for the postbuckling failure criterion except under conditions of light loading and long flight periods; under such conditions uninsulated Inconel X may be superior for environmental temperature less than 1,200 F. Insulated magnesium is more efficient than insulated aluminum because the lower density of magnesium permits the use of thick plates with large heat capacity. When more than one failure mode was applied to a design, it was found that the minimum weight structure was one in which all modes of failure occurred at the design load.

Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating

Optimum Design of Insulated Compression Plates Subjected to Aerodynamic Heating PDF Author: John R. Davidson
Publisher:
ISBN:
Category : Aerodynamic heating
Languages : en
Pages : 53

Book Description


Optimum Design of Insulated Tension Members Subjected to Aerodynamic Heating

Optimum Design of Insulated Tension Members Subjected to Aerodynamic Heating PDF Author: John R. Davidson
Publisher:
ISBN:
Category : Aerodynamics
Languages : en
Pages : 46

Book Description


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