A temperature model has been developed that describes the ice strength in a multiaxial stress state over a wide spectrum of negative temperatures, The model takes into account the anomalous behavior of ice under high hydrostatic pressure, when its strength reaches a maximum, and then gradually decreases with the pressure increase It has been shown that strength of ice under high hydrostatic pressure is described by an extended Drucker-Prager (parabolic) strength crite rion with only three fundamental parameters, ice cohesion, internal friction angle, and ice melting pressure, which all have a definite physical meaning and are functions of temperature, The model has been verified using test data on the strength of iceberg ice and laboratory-made polycrystalline freshwater ice under triaxial compression at strain rates between 10(-3) and 10(-5) s(-1) over the temperature range between -1 degrees C and -40 degrees C.
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Chongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
Chongqing Univ, Sch Civil Engn, Chongqing, Peoples R ChinaChongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
Tang, Yang
Zhang, Hailong
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Chongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
China Construct Seventh Engn Div Co Ltd, Zhengzhou, Peoples R ChinaChongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
Zhang, Hailong
Xu, Jiang
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State Key Lab Coal Mine Disaster Dynam & Control, Chongqing, Peoples R ChinaChongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
Xu, Jiang
Okubo, Seisuke
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Chongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R ChinaChongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China
Okubo, Seisuke
Liu, Xinrong
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Chongqing Univ, Sch Civil Engn, Chongqing, Peoples R ChinaChongqing Univ Arts & Sci, Sch Civil Engn, Chongqing, Peoples R China