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Interface Shear Response of JSC-1A, GRC-3, and JSC-Mars1 Regolith Simulants

Journal of aerospace engineering, v.31 no.2, 2018년, pp.04018003 -   

David Frost, J. (Elizabeth and Bill Higginbotham Professor, School of Civil and Environmental Engineering, Georgia Institute of Technology, 790 Atlantic Dr., Atlanta, GA 30332.) ,  Martinez, Alejandro (Assistant Professor, Dept. of Civil and Environmental Engineering, Univ. of California Davis, 3116 Ghausi Hall, Davis, CA 95616 (corresponding author).)

초록이 없습니다.

참고문헌 (35)

  1. 10.1061/40339(206)54 Allen C. C. Jager K. M. Morris R. V. Lindstrom D. J. Lindstrom M. M. and Lockwood J. P. (1998). “JSC MARS-1: A Martian soil simulant.” Proc. Space 98 ASCE Reston VA 469-476. 

  2. Alshibli, Khalid A., Hasan, Alsidqi. Strength Properties of JSC-1A Lunar Regolith Simulant. Journal of geotechnical and geoenvironmental engineering, vol.135, no.5, 673-679.

  3. Barmapopoulos I. H. Ho T. Y. K. Jardine R. J. and Anh-Minh N. (2008). “The large displacement shear characteristics of granular media against concrete and steel interfaces.” Proc. Characterization and Behavior of Interfaces IOS Press Amsterdam Netherlands 16-23. 

  4. Bernold, Leonhard E.. Experimental Studies on Mechanics of Lunar Excavation. Journal of aerospace engineering, vol.4, no.1, 9-22.

  5. Bolton, M. D.. The strength and dilatancy of sands. Géotechnique, vol.36, no.1, 65-78.

  6. Brumund, WF, Leonards, GA. Experimental Study of Static and Dynamic Friction Between Sand and Typical Constuction Materials. Journal of testing and evaluation, vol.1, no.2, 162-165.

  7. 10.1109/CDC.1999.827937 Canudas de Wit C. and Tsiotras P. (1999). “Dynamic tire friction model for vehicle traction control.” Proc. Conf. on Decisions and Control IEEE Piscataway NJ 3736-3741. 

  8. DeJong J. T. (2001). “Investigation of particulate-continuum interface mechanics and their assessment through a multi-friction sleeve penetrometer attachment.” Ph.D. dissertation Georgia Institute of Technology Atlanta 360. 

  9. DeJong, Jason T., Westgate, Zachary J.. Role of Initial State, Material Properties, and Confinement Condition on Local and Global Soil-Structure Interface Behavior. Journal of geotechnical and geoenvironmental engineering, vol.135, no.11, 1646-1660.

  10. Dove J. E. Frost J. D. Han J. and Bachus R. C. (1997). “The influence of geomembrane surface roughness in interface strength.” Proc. Geosynthetics 1997 Industrial Fabrics Association International St. Paul MN 863-876. 

  11. Espinoza, R. D., Bourdeau, P. L., Muhunthan, B.. Unified Formulation for Analysis of Slopes with General Slip Surface. Journal of geotechnical engineering, vol.120, no.7, 1185-1204.

  12. Frost, J. David, DeJong, Jason T.. In Situ Assessment of Role of Surface Roughness on Interface Response. Journal of geotechnical and geoenvironmental engineering, vol.131, no.4, 498-511.

  13. Frost J. D. Hebeler G. L. and Martinez A. (2012). “Cyclic multi-piezo-friction sleeve penetrometer testing for liquefaction assessment.” Proc. 4th Int. Conf. (ISC’4) on Geotechnical and Geophysical Site Characterization Vol. 1 CRC Press Boca Raton FL 629-636. 

  14. 10.1061/9780784479179.001 Frost J. D. and Martinez A. (2014). “Advances in development of axial-torsional multi-sleeve penetrometer for extra-terrestrial studies.” Proc. Earth and Space 2014 ASCE Reston VA 1-9. 

  15. 10.1061/9780784479971.014 Frost J. D. and Martinez A. (2016). “Axial-torsional interface shear studies using GRC-3 lunar simulant and textured penetrometer sleeves.” Proc. Earth and Space 2016 ASCE Reston VA 1-11. 

  16. Ghionna V. and Jamiolkowski M. (1991). “A critical appraisal of calibration chamber testing of sands.” Proc. 1st Int. Symp. on Calibration Chamber Testing (ISOCCT1) Elsevier New York 13-39. 

  17. He, Chunmei, Zeng, Xiangwu, Wilkinson, Allen. Geotechnical Properties of GRC-3 Lunar Simulant. Journal of aerospace engineering, vol.26, no.3, 528-534.

  18. Hebeler G. L. (2005). “Multi scale investigations of interface behavior.” Ph.D. dissertation Georgia Institute of Technology Atlanta. 

  19. Hebeler, G. L., Martinez, A., Frost, J. D.. Shear zone evolution of granular soils in contact with conventional and textured CPT friction sleeves. KSCE journal of civil engineering, vol.20, no.4, 1267-1282.

  20. Iai, Masafumi, Luna, Ronaldo. Direct Shear Tests on JSC-1A Lunar Regolith Simulant. Journal of aerospace engineering, vol.24, no.4, 433-441.

  21. Jiang, M., Xi, B., Arroyo, M., Rodriguez-Dono, A.. DEM simulation of soil-tool interaction under extraterrestrial environmental effects. Journal of terramechanics, vol.71, 1-13.

  22. King, R.H., Van Susante, P., Gefreh, M.A.. Analytical models and laboratory measurements of the soil-tool interaction force to push a narrow tool through JSC-1A lunar simulant and Ottawa sand at different cutting depths. Journal of terramechanics, vol.48, no.1, 85-95.

  23. Koerner, Robert M, Soong, Te-Yang. Geosynthetic reinforced segmental retaining walls. Geotextiles and geomembranes : an official journal of the International Geotextile Society, vol.19, no.6, 359-386.

  24. Lehane, B. M., Jardine, R. J., Bond, A. J., Frank, R.. Mechanisms of Shaft Friction in Sand from Instrumented Pile Tests. Journal of geotechnical engineering, vol.119, no.1, 19-35.

  25. Martinez A. and Frost J. D. (2017a). “Numerical comparison of vane shear and torsional interface shear tests.” Proc. 19th Int. Conf. on Soil Mechanics and Geotechnical Engineering International Society for Soil Mechanics and Geotechnical Engineering London. 

  26. Martinez, A., Frost, J.D.. Particle‐scale effects on global axial and torsional interface shear behavior. International journal for numerical and analytical methods in geomechanics, vol.41, no.3, 400-421.

  27. ASTM Geotech. Test. J. Martinez A. 409 38 4 2015 Experimental study of shear zones formed in sand-steel interfaces during axial and torsional shear tests 

  28. Characterization summary of JSC-1A bulk Lunar mare regolith stimulant Orbitec 2007 

  29. Sture, Stein, Costes, Nicholas C., Batiste, Susan N., Lankton, Mark R., AlShibli, Khalid A., Jeremic, Boris, Swanson, Roy A., Frank, Melissa. Mechanics of Granular Materials at Low Effective Stresses. Journal of aerospace engineering, vol.11, no.3, 67-72.

  30. Sullivan, R., Anderson, R., Biesiadecki, J., Bond, T., Stewart, H.. Cohesions, friction angles, and other physical properties of Martian regolith from Mars Exploration Rover wheel trenches and wheel scuffs. Journal of geophysical research : JGR. E : Planets, vol.116, no.e2, E02006-.

  31. Pipejacking and microtunneling Thomson J. C. 273 1993 

  32. Uesugi, Morimichi, Kishida, Hideaki. Frictional Resistance at Yield between Dry Sand and Mild Steel. Soils and foundations, vol.26, no.4, 139-149.

  33. Wilkinson, A., DeGennaro, A.. Digging and pushing lunar regolith: Classical soil mechanics and the forces needed for excavation and traction. Journal of terramechanics, vol.44, no.2, 133-152.

  34. Yamamuro, Jerry A., Lade, Poul V.. Drained Sand Behavior in Axisymmetric Tests at High Pressures. Journal of geotechnical engineering, vol.122, no.2, 109-119.

  35. Zeng, Xiangwu, He, Chunmei, Oravec, Heather, Wilkinson, Allen, Agui, Juan, Asnani, Vivake. Geotechnical Properties of JSC-1A Lunar Soil Simulant. Journal of aerospace engineering, vol.23, no.2, 111-116.

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