2009Heat treatment of metalsRequires access

Effect of solid solution time on microstructure and properties of 7003 aluminum alloy

Weng Xiaohong

Open publisher page 0 citations

Abstract

The microstructure and properties of 7003 aluminum alloy with and without ageing for different solid solution time were investigated respectively by means of microhardness tester,electronic tensile machine,optical microscope(OM),scanning electron microscopy(SEM)and energy dispersive X-ray spectrometer(EDS).The results show that the solid solubility of the second-phase increases with increase of solid solution time,and then new second-phases separate out and grow,hence the strengthening of the second phases decreases firstly and then increases.Therefore,the strength and microhardness of 7003 aluminum alloy decrease firstly and then increase.The strength and micro-hardness of the aged 7003 aluminum alloy are evidently higher than those of the one without ageing,and the samples solutioned at 743 K for 70 min and then aged at 393 K for 50 h are of the highest strength and microhardness.Its microhardness,tensile strength,yield strength and elongation are 118 HV0.1,347.0 MPa,286.1 MPa,15.5%,respectively.

About this research paper

What this paper is about

The microstructure and properties of 7003 aluminum alloy with and without ageing for different solid solution time were investigated respectively by means of microhardness tester,electronic tensile machine,optical microscope(OM),scanning electron microscopy(SEM)and energy dispersive X-ray spectrometer(EDS).The results show that the solid solubility of the second-phase increases with increase of solid solution time,and then new second-phases separate out and grow,hence the strengthening of the second phases decreases firstly and then increases.Therefore,the strength and microhardness of 7003 aluminum alloy decrease firstly and then increase.The strength and micro-hardness of the aged 7003 aluminum alloy are evidently higher than those of the one without ageing,and the samples solutioned at 743 K for 70 min and then aged at 393 K for 50 h are of the highest strength and microhardness.Its microhardness,tensile strength,yield strength and elongation are 118 HV0.1,347.0 MPa,286.1 MPa,15.5%,respectively.

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

The microstructure and properties of 7003 aluminum alloy with and without ageing for different solid solution time were investigated respectively by means of microhardness tester,electronic tensile machine,optical microscope(OM),scanning electron microscopy(SEM)and energy dispersive X-ray spectrometer(EDS).The results show that the solid solubility of the second-phase increases with increase of solid solution time,and then new second-phases separate out and grow,hence the strengthening of the second phases decreases firstly and then increases.Therefore,the strength and microhardness of 7003 aluminum alloy decrease firstly and then increase.The strength and micro-hardness of the aged 7003 aluminum alloy are evidently higher than those of the one without ageing,and the samples solutioned at 743 K for 70 min and then aged at 393 K for 50 h are of the highest strength and microhardness.Its microhardness,tensile strength,yield strength and elongation are 118 HV0.1,347.0 MPa,286.1 MPa,15.5%,respectively.

Key concepts: Indentation hardness, Alloy, Materials science, Ultimate tensile strength, Microstructure, Scanning electron microscope, Optical microscope, Elongation

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of solid solution time on microstructure and properties of 7003 aluminum alloy — Research Paper | ScholarLens