Method for determining Vickers hardness of materials by Vickers instrumented indentation work ratio and martens hardness
Jialian Wang
Abstract
Jialian Wang
Abstract
The problem of Vickers morphology is not clear due to the Vickers hardness does not recognize during the traditional Vickers hardness testing. The instrumented indentation test were analyzed by employing dimensional theorem and finite element method, meanwhile, combined with the finite element numerical results of Vickers hardness, the approximate function relationships among Vickers indentation work ratio(We/Wt), martens hardness and Vickers hardness were revealed. Based on the relationships, a new method was then proposed to determine the Vickers hardness of materials by Vickers indentation work ratio and martens hardness, and its accuracy was analyzed. The results show that, compared with ISO14577, this method has higher accuracy.
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.
The problem of Vickers morphology is not clear due to the Vickers hardness does not recognize during the traditional Vickers hardness testing. The instrumented indentation test were analyzed by employing dimensional theorem and finite element method, meanwhile, combined with the finite element numerical results of Vickers hardness, the approximate function relationships among Vickers indentation work ratio(We/Wt), martens hardness and Vickers hardness were revealed. Based on the relationships, a new method was then proposed to determine the Vickers hardness of materials by Vickers indentation work ratio and martens hardness, and its accuracy was analyzed. The results show that, compared with ISO14577, this method has higher accuracy.
Key concepts: Vickers hardness test, Indentation, Materials science, Indentation hardness, Finite element method, Composite material, Knoop hardness test, Metallurgy