Experimental research on compressing 7075 Al alloy ring under hydrostatic pressure
Liliang Wang
Abstract
Liliang Wang
Abstract
Through axial compression experiments of rings with variant shape factors and different hydrostatic pressures,the effect of hydrostatic pressure on the compression limit of an aluminum alloy 7050 ring was obtained.With observation of meridional sections of deformed samples,the deformation and fracture feature when the compression limit is exceeded under different hydrostatic pressures is analyzed.The experimental results show that the compression limit of an Al alloy ring increases as the hydrostatic pressure increases,and the increase displays linearity in a certain pressure range.The research verified that the formability of the aluminum alloy 7075 ring in the compression process was remarkably improved by employing hydrostatic pressure.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Through axial compression experiments of rings with variant shape factors and different hydrostatic pressures,the effect of hydrostatic pressure on the compression limit of an aluminum alloy 7050 ring was obtained.With observation of meridional sections of deformed samples,the deformation and fracture feature when the compression limit is exceeded under different hydrostatic pressures is analyzed.The experimental results show that the compression limit of an Al alloy ring increases as the hydrostatic pressure increases,and the increase displays linearity in a certain pressure range.The research verified that the formability of the aluminum alloy 7075 ring in the compression process was remarkably improved by employing hydrostatic pressure.
Key concepts: Materials science, Hydrostatic pressure, Compression (physics), Alloy, Hydrostatic equilibrium, Formability, Composite material, Deformation (meteorology)