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冲击球压技术是基于赫兹接触理论发展起来的研究材料力学性能的新方法,尽管起步较晚,但是对材料力学性能特征和变化的研究是非常有效的.概述了近40年利用冲击球压技术分析材料局部损伤和评价材料弹塑性特征的理论和研究进展,重点阐述了利用冲击球压技术和赫兹接触理论评价材料恢复系数和动态硬度特征及变化的可行性、敏感性和精确性.结合研究现状对冲击球压技术中隐含的问题进行了划分,并展望了未来冲击球压技术的发展方向.

参考文献

[1] Johnson K L.Contact mechanics[M].London:cambridge University Press,1985
[2] Lawn BR;Deng Y;Lloyd IK;Janal MN;Rekow ED;Thompson VP .Materials Design of Ceramic-based Layer Structures for Crowns.[J].Journal of Dental Research: Official Publication of the International Association for Dental Research,2002(6):433-438.
[3] Jr A F;Roberts S G .Surface mechanical analyses by Hertzian indentation[J].Ceramica,2004,50:94.
[4] Green I .Poisson ratio effects and critical valus in spherical and cylindrical Hertzian contacts[J].International Journal of Applied Mechanics and Engineering,2005,10(03):451.
[5] Ssubhash G;Maiti S;Geubelle P H et al.Recent advances in dynamic indentation fracture,impact damage and fragmention of ceramics[J].Journal of the American Ceramic Society,2008,91(09):2777.
[6] Iyer K A .Relationships between multiaxial stress states and internal fracture patterns in sphere-impacted silicon carbide[J].International Journal of Fracture,2007,146:1.
[7] Feng Z;Tzeng Y;Field J E .Solid particle impact of CVD diamond films[J].Thin Solid Films,1992,212(1-2):35.
[8] Fischer-Cripps A. C. .The Hertzian contact surface[J].Journal of Materials Science,1999(1):129-137.
[9] Tabor D.The Hardness of metals[M].Oxford:clarendon Press,1951
[10] Clough R B;Webb S C;Armstrong R W .Dynamic hardness mrasurements using a dropped ball:With application to 1018 steel[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2003,A360:396.
[11] Oka Y I;Yoshida T .Practical estimation of erosion damage carsed by solid particle impact Part 2:Mechanical properties of materials directly associated with erosion damage[J].Wear,2005,259:102.
[12] Amirthan G;Udayakumar A;Prasad B et al.Solid particle erosion studied on biomorphic Si/SiC ceramic composites[J].Wear,2010,268(1-2):145.
[13] Beppu M et al.Damage evaluation of concrete plates by high-vilocity impact[J].International Journal of Impact Engineering,2008,35:1419.
[14] KohlhOfer W;Penny R K .Dynamic hardness testing of metals[J].International Journal of Pressure Vessels and Piping,1995,61:65.
[15] Kleis I;Hussainova I .Investigation of particle-wall impact process[J].Wear,1999,233-235:168.
[16] Levin B F;Dupont J N;Marder A R .Indentation analysis of sub-surface deformation in ductile materials after solid particle erosion[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2000,A283:203.
[17] Adler T A;Dogan 0 N .Damage by indentation and single impact of hard particles on a high chromium white cast iron[J].Wear,1997,203-204:257.
[18] Hock H K Xu;Wei Lanhua;Nitin P Padture et al.Effect of microstructural coarsening on Hertzian contact damage in silicon nitride[J].Journal of Materials Science,1995,30:869.
[19] Knight C G;Swain M V et al.Impact of small steel spheres on glass surfaces[J].Journal of Materials Science,1977,12:1573.
[20] Carpinteri A;Chiaia B;Invernizzi S .Numerical analysis of indentation fracture in quasi-brittle materials[J].Engineering Fracture Mechanics,2004,71:567.
[21] Bhowmick S et al.Fatigure and debris generation at indentation-induced cracks in silicon[J].ACTA MATERIALIA,2009,57:582.
[22] Rosenberg Z et al.Analytical solution of the spherical cavity espansion process[J].International Journal of Impact Engineering,2009,36(02):193.
[23] Satapathy S. .Dynamic spherical cavity expansion in brittle ceramics[J].International Journal of Solids and Structures,2001(32/33):5833-5845.
[24] Hussainova I;Küarsepp J;Shcheglov I .Investigation of impact of solid particles against hardmetal and cermet targets[J].Tribology International,1999,32t:337.
[25] Wu C Y;Li L Y;Thornton C .Rebound behavior of spheres for plastic impacts[J].International Journal of Impact Engineering,2003,28:929.
[26] Constantinides, G;Tweedie, CA;Holbrook, DM;Barragan, P;Smith, JF;Van Vlietl, KJ .Quantifying deformation and energy dissipation of polymeric surfaces under localized impact[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):403-412.
[27] Constantinides, G.;Tweedie, C. A.;Savva, N.;Smith, J. F.;Van Vliet, K. J. .Quantitative Impact Testing of Energy Dissipation at Surfaces[J].Experimental Mechanics,2009(4):511-522.
[28] Zhang X;Vu-Quoc L .Modeling the dependence of the coefficient of restitution on the impact velocity in elasto-plastic collisions[J].International Journal of Impact Engineering,2002,27:317.
[29] Papini M;Spelt J K .Organic coating removal by particle impactp[J].Wear,1997,213:185.
[30] Almasri A H et al.Effect of strain rate on the dynamic hardness in metals[J].ASME Journal of Engineering Materials and Technology,2007,129:505.
[31] Jamari J;Schipper D J .Plastic deformation and contact area of an elastic-plastic contact of ellipsoid bodies after unloading[J].Tribology,2007,40:1311.
[32] Momher A W .Damage to rocks and cementitious materials from solid imact[J].Rock Mechanics and Rock Engineering,2004,37(01):57.
[33] Armelin H S;Banthia N .Mechanics of aggregate rebound in shotcrete-(Part Ⅰ)[J].Materials and Structures,1998,31:91.
[34] Goretta K C;Burdt M L et al.Solid-particle erosion of portland cement and concrete[J].Wear,1999,224:106.
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