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      Measurement of hardness and elastic modulus by load and depth sensing indentation: Improvements to the technique based on continuous stiffness measurement

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          An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments

          The indentation load-displacement behavior of six materials tested with a Berkovich indenter has been carefully documented to establish an improved method for determining hardness and elastic modulus from indentation load-displacement data. The materials included fused silica, soda–lime glass, and single crystals of aluminum, tungsten, quartz, and sapphire. It is shown that the load–displacement curves during unloading in these materials are not linear, even in the initial stages, thereby suggesting that the flat punch approximation used so often in the analysis of unloading data is not entirely adequate. An analysis technique is presented that accounts for the curvature in the unloading data and provides a physically justifiable procedure for determining the depth which should be used in conjunction with the indenter shape function to establish the contact area at peak load. The hardnesses and elastic moduli of the six materials are computed using the analysis procedure and compared with values determined by independent means to assess the accuracy of the method. The results show that with good technique, moduli can be measured to within 5%.
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            Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology

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              The relation between load and penetration in the axisymmetric boussinesq problem for a punch of arbitrary profile

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Journal of Materials Research
                Journal of Materials Research
                Springer Science and Business Media LLC
                0884-2914
                2044-5326
                June 14 2021
                March 09 2021
                June 14 2021
                : 36
                : 11
                : 2137-2153
                Article
                10.1557/s43578-021-00131-7
                0aafbb0d-b0b5-4b95-8df5-024b74648a43
                © 2021

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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