2018DergiPark (Istanbul University)Open access

Determining Thermal Properties of A383.1 Aluminum Alloy Depends on Temperature

Osman İpek, Orhan Serçe, Murat Koru

Open full text 0 citations

Abstract

Thermal diffusivity and thermal conductivity areimportant parameters for determining products thermal work conditions andproduction parameters for high quality products. There is two main method fordetermining these parameters: steady-state and transient measurement methods.Laser Flash Method (LFA) is a nonsteady-state measuring method which is widely usedfor measuring thermal diffusivity (α) of solid homogeneous and opaquematerials. In this study, thermal diffusivity of A383.1 aluminum alloydetermined with laser flash method depend on temperature. For this, 25.4 mmdiameter and 1 mm thickness experiment specimens prepared from A383.1 aluminumalloy and measured their thermal diffusivity with LFA method at 30 C° to 400C°. For calculating thermal conductivity (λ) of materials, test specimen’sdensity (ρ) measured with helium pycnometer and heat capacity (Cp) measuredwith Differential Scanning Calorimeter (DSC) test device. Thermal diffusivityand thermal conductivity results obtained from tests and calculations presentedsystematically in this paper.

Open-access reader

About this research paper

What this paper is about

Thermal diffusivity and thermal conductivity areimportant parameters for determining products thermal work conditions andproduction parameters for high quality products. There is two main method fordetermining these parameters: steady-state and transient measurement methods.Laser Flash Method (LFA) is a nonsteady-state measuring method which is widely usedfor measuring thermal diffusivity (α) of solid homogeneous and opaquematerials. In this study, thermal diffusivity of A383.1 aluminum alloydetermined with laser flash method depend on temperature. For this, 25.4 mmdiameter and 1 mm thickness experiment specimens prepared from A383.1 aluminumalloy and measured their thermal diffusivity with LFA method at 30 C° to 400C°. For calculating thermal conductivity (λ) of materials, test specimen’sdensity (ρ) measured with helium pycnometer and heat capacity (Cp) measuredwith Differential Scanning Calorimeter (DSC) test device. Thermal diffusivityand thermal conductivity results obtained from tests and calculations presentedsystematically in this paper.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Thermal diffusivity and thermal conductivity areimportant parameters for determining products thermal work conditions andproduction parameters for high quality products. There is two main method fordetermining these parameters: steady-state and transient measurement methods.Laser Flash Method (LFA) is a nonsteady-state measuring method which is widely usedfor measuring thermal diffusivity (α) of solid homogeneous and opaquematerials. In this study, thermal diffusivity of A383.1 aluminum alloydetermined with laser flash method depend on temperature. For this, 25.4 mmdiameter and 1 mm thickness experiment specimens prepared from A383.1 aluminumalloy and measured their thermal diffusivity with LFA method at 30 C° to 400C°. For calculating thermal conductivity (λ) of materials, test specimen’sdensity (ρ) measured with helium pycnometer and heat capacity (Cp) measuredwith Differential Scanning Calorimeter (DSC) test device. Thermal diffusivityand thermal conductivity results obtained from tests and calculations presentedsystematically in this paper.

Key concepts: Thermal diffusivity, Laser flash analysis, Thermal conductivity, Thermal conductivity measurement, Materials science, Thermal transmittance, Composite material, Alloy

Related papers

Back to paper searchBrowse research topicsOriginal source
Determining Thermal Properties of A383.1 Aluminum Alloy Depends on Temperature — Research Paper | ScholarLens