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10篇 您的检索式:作者名="Wonganan"
    题名 作者 年代 出处 被引量
1PEGylated adenoviruses: from mice to monkeys显示文摘Wonganan P Croyle MA 2010Viruses2010,2,:1
2Activation of rift oblique and rift parallel pre-existing fabrics during ex- tension and their effect on deformation style: examples from the rifts of Thailand显示文摘Morley C K Wonganan N Komasawan A 2004Journal of Structural Geolo- gy2004,26,10:1
3PEGylated adenoviruses: from mice to monkeys显示文摘Wonganan P Croyle M A 2010Viruses2010,2,:1
4The effect of the acidsensitivity of 4-(N)-stearoyl gemcitabine-loaded micelles on drug resistance caused by RRMI overexpression显示文摘Zhu S Wonganan P Lansakara P D S P 2013Biomaterial S2013,34,9:1
5Activation of rift oblique and rift parallel pre existing fabrics during extension and their effect on deformation style:examples from the rifts of Thailand显示文摘Morley C K Haranya C Phoosongsee W Pongwapee S Kornsawan A Wonganan N 0,,:1
6Potent vasorelaxant analogs from chemical modification and biotransformation of isosteviol显示文摘Wonganan O Tocharus C Puedsing C 2013EurJMedChem2013,62,:1
7Just getting into cells is not enough: mechanisms underlying 4-(N)-stearoyl gemcitabi- ne solid lipid nanoparticle's ability to overcome gemcitabine resis- tance caused by RRM1 overexpression显示文摘Wonganan P1 Lansakara-P DS Zhu S 2013J Control Release2013,169,12:1
8F'EGylated adenoviruses:from mice to monkeys显示文摘Wonganan P Croyle MA 2010Viruses2010,2,:1
9Permian and Triassic radiolaria from Northwest Thailand:Paleogeographical implications 显示文摘Feng Qinglai Kitsana Malila Nutthawut Wonganan 2005Revue de micropleontologie2005,48,:1
10Ancient Materials and Substitution Materials Used in Thai Historical Masonry Structure Preservation显示文摘The historical structures of Thailand are some of the most fascinating ancient sites in Asia.Their architectures reveal past cultures,traditions,knowledge,and expertise.Masonry materials are the major materials used to construct the historical structures in Thailand.One of the essential problem of Thai historical structure preservation is a shortage of engineering properties data for the structural stability assessment.Moreover,the in-depth engineering properties and the suitable substitution materials for Thai historical preservation are rarely found.Therefore,the engineering properties of the ancient masonry materials have to be explored together with the development of suitable substitute materials.This paper presents the physical and engineering properties of ancient materials and substitution materials for the preservation of Thailand’s historical structures.The ancient materials,including brick and mortar,are collected from historical places in the Bangkok and Ayutthaya Provinces.The physical and engineering properties of the masonry materials,such as the chemical composition,mineralogical composition,density,porosity,absorption,water vapor transmission,compressive strength,and modulus of elasticity,were evaluated in the laboratory.Fly ash was used as a pozzolanic material to partially replace the slaked lime to restore the historical mortar.The binder to sand ratio was controlled at 1:3 by weight.The slaked lime was substituted by fly ash at the rates of 10–30%by weight of binder.The engineering properties of the substitution mortars were also evaluated and compared with the ancient masonry materials.A masonry prism was also constructed to evaluate the compressive strength and the modulus of elasticity of the masonry structures.The physical and engineering properties of the ancient masonry materials obtained in this study can be included in a database for the preservation of Thailand’s historical masonry structures.The use of fly ash to partially replace the slaked lime could decrease the setting time and increase the compressive strength of historical repair mortar.The empirical equation obtained from this study could be used to predict the compressive strength of the masonry prisms of Thailand’s historical structures.Natthanan Wonganan Chainarong Athisakul Peerasit Mahasuwanchai Weerachart Tangchirapat Raktipong Sahamitmongkol Sutat Leelataviwat 2021Journal of Renewable Materials2021,9,2:0
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