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Schmidt hammer exposure dating for brick masonry


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Amaral, PM, Rosa, LG, and Fernandes, JC, 1999. Determination of Schmidt rebound hardness consistency in granite. International Journal of Rock Mechanics and Mining Sciences 36: 833−837, DOI: 10.1016/S0148-9062(99)00040-6.AmaralPMRosaLGFernandesJC,1999Determination of Schmidt rebound hardness consistency in graniteInternational Journal of Rock Mechanics and Mining Sciences3683383710.1016/S0148-9062(99)00040-6Open DOISearch in Google Scholar

Aydin, A and Basu, A, 2005. The Schmidt hammer in rock material characterization. Engineering Geology 81: 1−14. DOI: 10.1016/j.enggeo.2005.06.006.AydinABasuA,2005The Schmidt hammer in rock material characterizationEngineering Geology8111410.1016/j.enggeo.2005.06.006Open DOISearch in Google Scholar

Aydin, A, 2009. ISRM Suggested method for determination of the Schmidt hammer rebound hardness: Revised version. International Journal of Rock Mechanics and Mining Sciences 46(3): 627−634, DOI: 10.1016/j. ijrmms.2008.01.020.AydinA,2009ISRM Suggested method for determination of the Schmidt hammer rebound hardness: Revised versionInternational Journal of Rock Mechanics and Mining Sciences46362763410.1016/j.ijrmms.2008.01.020Open DOISearch in Google Scholar

Betts, MW and Latta, MA, 2000. Rock surface hardness as an indication of exposure age: an archeological application of the Schmidt hammer. Archaeometry 42(1): 209−223. DOI: 10.1111/j.1475-4754.2000.tb00877.x.BettsMWLattaMA,2000Rock surface hardness as an indication of exposure age: an archeological application of the Schmidt hammerArchaeometry42120922310.1111/j.1475-4754.2000.tb00877.xOpen DOISearch in Google Scholar

Brozovsky, J, Zach, J, and Brozovsky, JJr, 2008. Determining the strength of solid burnt bricks in historical structures. 9th International Conference on NDT of Art, Jerusalem, Israel, May 25−30.BrozovskyJZachJBrozovskyJJr,2008Determining the strength of solid burnt bricks in historical structures9th International Conference on NDT of ArtJerusalem, IsraelMay 25−30Search in Google Scholar

Cultrone, G., Sebastian, E, Elert, K, de la Torre, MJ, Cazalla, O, and Rodriguez-Navarro, C. 2004. Influence of mineralogy and firing temperature on the porosity of bricks. Journal of the European Ceramic Society 24: 547−564, DOI: 10.1016/S0955-2219(03)00249-8.CultroneG.SebastianEElertKde la TorreMJCazallaORodriguez-NavarroC.2004Influence of mineralogy and firing temperature on the porosity of bricksJournal of the European Ceramic Society2454756410.1016/S0955-2219(03)00249-8Open DOISearch in Google Scholar

Day, MJ, 1980. Rock hardness: field assessment and geomorphic importance. Professional Geographer 32(1): 72−81. DOI: 10.1111/j.0033-0124.1980.00072.x.DayMJ,1980Rock hardness: field assessment and geomorphic importanceProfessional Geographer321728110.1111/j.0033-0124.1980.00072.xOpen DOISearch in Google Scholar

Debailleux, L, 2018. Schmidt hammer rebound hardness tests for the characterization of ancient fired clay bricks. International Journal of Architectural Heritage 13(2): 288−297. DOI: 10.1080/15583058.2018.1436204.DebailleuxL,2018Schmidt hammer rebound hardness tests for the characterization of ancient fired clay bricksInternational Journal of Architectural Heritage13228829710.1080/15583058.2018.1436204Open DOISearch in Google Scholar

De Puy, GW, 1965. Petrographic investigations of rock durability and comparisons of various test procedures. Engineering Geology 2(2): 31−46.De PuyGW1965Petrographic investigations of rock durability and comparisons of various test proceduresEngineering Geology223146Search in Google Scholar

Elert, K, Cultrone, G, Navarro, CR, and Pardo, ES, 2003. Durability of bricks used in the conservation of historic buildings. Influence of composition and microstructure. Journal of Cultural Heritage 4: 91−99, DOI: 10.1016/S1296-2074(03)00020-7.ElertKCultroneGNavarroCRPardoES,2003Durability of bricks used in the conservation of historic buildings. Influence of composition and microstructureJournal of Cultural Heritage4919910.1016/S1296-2074(03)00020-7Open DOISearch in Google Scholar

Fort, R, Alvarez de Buergo, M, and Perez-Monserrat, EM, 2013. Non-destructive testing for the assessment of granite decay in heritage structures compared to quarry stone. International Journal of Rock Mechanics and Mining Sciences 61: 296−305, DOI: 10.1016/j.ijrmms.2012.12.048.FortRAlvarez de BuergoMPerez-MonserratEM,2013Non-destructive testing for the assessment of granite decay in heritage structures compared to quarry stoneInternational Journal of Rock Mechanics and Mining Sciences6129630510.1016/j.ijrmms.2012.12.048Open DOISearch in Google Scholar

Guglielmin, M, Worland, M.R, Convey, P, and Cannone, N, 2012. Schmidt Hammer studies in the maritime Antarctic: Application to dating Holocene deglaciation and estimating the effects of macro lichens on rock weathering. Geomorphology 155−156: 34−44, DOI: 10.1016/j.geomorph.2011.12.015.GuglielminMWorlandM.RConveyPCannoneN,2012Schmidt Hammer studies in the maritime Antarctic: Application to dating Holocene deglaciation and estimating the effects of macro lichens on rock weatheringGeomorphology155−156344410.1016/j.geomorph.2011.12.015Open DOISearch in Google Scholar

Hoehne, R, 1910. The modern way of burning brick. Clay Record 37(5): 21−22.HoehneR,1910The modern way of burning brickClay Record3752122Search in Google Scholar

Iqbal, M, 2016. Diagnostic approach for quantifying the soiling level and the aging of limestone façade. Journal of Building engineering 7: 292−299, DOI: 10.1016/j.jobe.2016.07.008.IqbalM,2016Diagnostic approach for quantifying the soiling level and the aging of limestone façadeJournal of Building engineering729229910.1016/j.jobe.2016.07.008Open DOISearch in Google Scholar

Laefer, DF, 2001. Prediction and assessment of ground movement and building damage induced by adjacent excavation. Ph.D. diss., Urbana, University of Illinois; pp. 803..LaeferDF,2001Prediction and assessment of ground movement and building damage induced by adjacent excavationPh.D. dissUrbanaUniversity of Illinoispp803Search in Google Scholar

Laefer, DF, 2004. Emergence, development and prevalence of brick noggin in American vernacular structures. 4th International Seminar on Structural Analysis of Historical Constructions, Padova, Italy, November 10−13.LaeferDF,2004Emergence, development and prevalence of brick noggin in American vernacular structures4th International Seminar on Structural Analysis of Historical ConstructionsPadova, ItalyNovember 10−13Search in Google Scholar

Laefer, DF, Boggs, J, and Cooper, N, 2004. Engineering properties of historic brick: variability considerations as a stationary versus nonstationary kiln types. Journal of the American Institute for Conservation 43(3): 255−272.LaeferDFBoggsJCooperN,2004Engineering properties of historic brick: variability considerations as a stationary versus nonstationary kiln typesJournal of the American Institute for Conservation43325527210.2307/4129639Search in Google Scholar

Mathews, JA, Owen, G, Winkler, S, Vater, AE, Wilson, P, Mourne, RW, and Hill, JL, 2016. A rock-surface microweathering index from Schmidt hammer R-values and its preliminary application to some common rock types in Southern Norway. Catena 143: 35−44, DOI: 10.1016/j.catena.2016.03.018.MathewsJAOwenGWinklerSVaterAEWilsonPMourneRWHillJL,2016A rock-surface microweathering index from Schmidt hammer R-values and its preliminary application to some common rock types in Southern NorwayCatena143354410.1016/j.catena.2016.03.018Open DOISearch in Google Scholar

Matysek, P, and Latka, D, 2012. Comments on the application of the sclerometric method in the diagnostics of brick masonry. 8th International Conference on Structural Analysis of Historical Constructions, Wroclaw, Poland, October 15−17.MatysekP,LatkaD,2012Comments on the application of the sclerometric method in the diagnostics of brick masonry8th International Conference on Structural Analysis of Historical ConstructionsWroclaw, PolandOctober 15−17Search in Google Scholar

McCarroll, D, 1994. The Schmidt Hammer as a measure of degree of rock surface weathering and terrain age. In Beck, C. (Ed.), Dating in exposed and surface contexts. University of New Mexico Press, Albuquerque: 29−45.McCarrollD,1994The Schmidt Hammer as a measure of degree of rock surface weathering and terrain ageInBeckC.EdDating in exposed and surface contextsUniversity of New Mexico PressAlbuquerque2945Search in Google Scholar

Owen, G, Mathews, JA, and Albert, P, 2007. Rates of Holocene chemical weathering, “Litle Ice Age” glacial erosion and implications for Schmidt-hammer dating at a glacier-foreland boundary, Fabergstolsbreen, southern Norway. The Holocene 17(6): 829−834, DOI: 10.1177/0959683607081419.OwenGMathewsJAAlbertP,2007Rates of Holocene chemical weathering, “Litle Ice Age” glacial erosion and implications for Schmidt-hammer dating at a glacier-foreland boundary, Fabergstolsbreen, southern NorwayThe Holocene17682983410.1177/0959683607081419Open DOISearch in Google Scholar

Perez-Monserrat, EM, Agua, F, Fort, R, Alvarez de Buergo, MA, Conde, JF, and García-Heras, M, 2017. Effect of manufacturing methods on the decay of ceramic materials: A case study of bricks in modern architecture of Madrid (Spain). Applied Clay Science 135: 136−149, DOI: 10.1016/j.clay.2016.09.015.Perez-MonserratEMAguaFFortRAlvarezde Buergo, MACondeJFGarcía-HerasM,2017Effect of manufacturing methods on the decay of ceramic materials: A case study of bricks in modern architecture of Madrid (Spain)Applied Clay Science13513614910.1016/j.clay.2016.09.015Open DOISearch in Google Scholar

Pope, G, Meierding, TC, and Paradise, TR, 2002. Geomorphology’s role in the study of weathering of cultural stone. Geomorphology 47(2): 211−225, DOI: 10.1016/S0169-555X(02)00098-3.PopeG, Meierding, TC,ParadiseTR,2002Geomorphology’s role in the study of weathering of cultural stoneGeomorphology47221122510.1016/S0169-555X(02)00098-3Open DOISearch in Google Scholar

Rhodes, D. 1968. Kilns: design, construction and operation. London. Chilton Book Company: pp. 291.RhodesD.1968Kilns: design, construction and operationLondonChilton Book Companypp291Search in Google Scholar

Roknuzzaman, M, Hossain, MB, Mostazid, MI, and Haque, MR, 2017. Application of rebound hammer method for estimating compressive strength of bricks. Journal of Civil Engineering Research 7(3): 99−104, DOI: 10.5923/j.jce.20170703.02.RoknuzzamanMHossainMBMostazidMIHaqueMR,2017Application of rebound hammer method for estimating compressive strength of bricksJournal of Civil Engineering Research739910410.5923/j.jce.20170703.02Open DOISearch in Google Scholar

Sachpazis, CI, 1990. Correlating Schmidt hardness with compressive strength and young’s modulus of carbonate rocks. Bulletin of Engineering Geology and Environment 42(1): 75−83.SachpazisCI,1990Correlating Schmidt hardness with compressive strength and young’s modulus of carbonate rocksBulletin of Engineering Geology and Environment421758310.1007/BF02592622Search in Google Scholar

Sanchez, K, and Tarranza, N, 2014. Reliability of rebound hammer test in concrete compressive strength estimation. International Journal of Advances in Agricultural and Environmental Engineering 1(2): 198−202.SanchezK,TarranzaN,2014Reliability of rebound hammer test in concrete compressive strength estimationInternational Journal of Advances in Agricultural and Environmental Engineering1219820210.15242/IJAAEE.C1114040Search in Google Scholar

Sanjurjo, J, Mosquera, D, and Vidal-Romani, JR, 2009. Assessing the age-weathering correspondence of cosmogenic 21Ne dated Pleistocene surfaces by the Schmidt hammer. Earth Surface Processes and Landforms 34: 1121–1125, DOI: 10.1002/esp.1802.SanjurjoJMosqueraDVidal-RomaniJR,2009Assessing the age-weathering correspondence of cosmogenic 21Ne dated Pleistocene surfaces by the Schmidt hammerEarth Surface Processes and Landforms341121112510.1002/esp.1802Open DOISearch in Google Scholar

Schueremans, L, Cizer, Ö, Janssens, E, Serré, G, and Van Balen, K, 2011. Characterization of repair mortars for the assessment of their compatibility in restoration projects. Research and practice 25: 4338−4350.SchueremansLCizerÖJanssensESerréGVan BalenK,2011Characterization of repair mortars for the assessment of their compatibility in restoration projectsResearch and practice254338435010.1016/j.conbuildmat.2011.01.008Search in Google Scholar

Shakesby, RA, Mathews, JA, and Owen, G, 2006. The Schmidt hammer as a relative-age dating tool and its potential for calibrated-age dating in Holocene glaciated environments. Quaternary Science Reviews 25: 2846−2867.ShakesbyRAMathewsJAOwenG,2006The Schmidt hammer as a relative-age dating tool and its potential for calibrated-age dating in Holocene glaciated environmentsQuaternary Science Reviews252846286710.1016/j.quascirev.2006.07.011Search in Google Scholar

Sharma, PK, Khandelwal, M, and Singh, TN, 2011. A correlation between Schmidt hammer rebound numbers with impact strength index, slake durability index and P-wave velocity. International Journal of Earth Science 100(1): 189−195.SharmaPKKhandelwalMSinghTN,2011A correlation between Schmidt hammer rebound numbers with impact strength index, slake durability index and P-wave velocityInternational Journal of Earth Science100118919510.1007/s00531-009-0506-5Search in Google Scholar

Stahl, T, Winkler, S, Quigley, M, Bebbington, M, Duffy, B, and Duke, D, 2013. Schmidt hammer exposure‐age dating (SHD) of late Quaternary fluvial terraces in New Zealand. Earth surface processes and landforms 38(18): 1838−1850, DOI: 10.1002/esp.3427.StahlT, Winkler, S, Quigley, M, Bebbington, M, Duffy, B,DukeD,2013Schmidt hammer exposure‐age dating (SHD) of late Quaternary fluvial terraces in New ZealandEarth surface processes and landforms38181838185010.1002/esp.3427Open DOISearch in Google Scholar

Stella, G, Fontana, D, Gueli, AM, and Troja, SO, 2014. Different approaches to date bricks from historical buildings. Geochronometria 41(3): 256−264, DOI: 10.2478/s13386-013-0157-y.StellaG, Fontana, D, Gueli, AM,TrojaSO,2014Different approaches to date bricks from historical buildingsGeochronometria41325626410.2478/s13386-013-0157-yOpen DOISearch in Google Scholar

Tomkins, MD, Dortch, JM, and Hughes, PD, 2016. Schmidt Hammer exposure dating (SHED): Establishment and implications for the retreat of the last British Ice Sheet. Quaternary Geochronology 33: 46−60, DOI: 10.1016/j.quageo.2016.02.002.TomkinsMDDortchJMHughesPD,2016Schmidt Hammer exposure dating (SHED): Establishment and implications for the retreat of the last British Ice SheetQuaternary Geochronology33466010.1016/j.quageo.2016.02.002Open DOISearch in Google Scholar

Tomkins, MD, Huck, JJ, Dortch, JD, Hughes, PD, Kirkbride, MP, and Barr, ID, 2018. Schmidt Hammer exposure dating (SHED): Calibration procedures, new exposure age data and online calculator. Quaternary Geochronology 44: 55−62, DOI: 10.1016/j.quageo.2017.12.003.TomkinsMDHuckJJDortchJDHughesPDKirkbrideMPBarrID,2018Schmidt Hammer exposure dating (SHED): Calibration procedures, new exposure age data and online calculatorQuaternary Geochronology44556210.1016/j.quageo.2017.12.003Open DOISearch in Google Scholar

Winkler, S, 2005. The Schmidt hammer as a relative-age dating technique: potential and limitations of its application on Holocene moraines, Mt. Cook National Park, Southern Alps, New Zealand. Journal of Geology and Geophysics 48: 105−116, DOI: 10.1080/00288306.2005.9515102.WinklerS,2005The Schmidt hammer as a relative-age dating technique: potential and limitations of its application on Holocene moraines, Mt. Cook National Park, Southern Alps, New ZealandJournal of Geology and Geophysics4810511610.1080/00288306.2005.9515102Open DOISearch in Google Scholar

Yasar, E, and Erdogan, Y, 2004. Estimation of rock physico mechanical properties using hardness methods. Engineering Geology 71(3): 281−288, DOI: 10.1016/S0013-7952(03)00141-8.YasarE,ErdoganY,2004Estimation of rock physico mechanical properties using hardness methodsEngineering Geology71328128810.1016/S0013-7952(03)00141-8Open DOISearch in Google Scholar

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