A viscoelastic solid was contacted by a pointed indenter using low-frequency large-amplitude sinusoidal load functions to determine its contact stiffness in a manner similar to that of the continuous stiffness measurement (CSM) technique but in a quasi-static condition. The contact stiffness of a viscoelastic solid determined by the CSM technique, or the dynamic stiffness, is known, from previous CSM-based studies, to overestimate the quasi-static contact stiffness. The contact stiffness of a viscoelastic solid determined in a quasi-static manner is thus hypothesized to help predict the contact depth more accurately. A new analysis procedure based on truncated Fourier series fitting was developed specifically to process the large amplitude sinusoidal indentation data. The elastic modulus of the material characterized in this work was in agreement with that determined by dynamic mechanical analysis, thereby providing evidence for the validity of the present method in characterizing other viscoelastic materials.
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Purdue Univ, Food Sci Dept, 745 Agr Mall Dr, W Lafayette, IN 47907 USA
Univ Idaho, Dept Anim Vet & Food Sci, 875 Perimeter Dr MS 2312, Moscow, ID 83844 USAPurdue Univ, Food Sci Dept, 745 Agr Mall Dr, W Lafayette, IN 47907 USA
Yazar, Gamze
Smith, Brennan
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Univ Idaho, Dept Anim Vet & Food Sci, 875 Perimeter Dr MS 2312, Moscow, ID 83844 USA
USDA ARS SRRC Food Proc & Sensory Qual, 1100 Allen Toussaint Blvd, New Orleans, LA 70124 USAPurdue Univ, Food Sci Dept, 745 Agr Mall Dr, W Lafayette, IN 47907 USA
Smith, Brennan
Kokini, Jozef L.
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Purdue Univ, Food Sci Dept, 745 Agr Mall Dr, W Lafayette, IN 47907 USAPurdue Univ, Food Sci Dept, 745 Agr Mall Dr, W Lafayette, IN 47907 USA