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6篇 您的检索式:作者名="Qiushuo Wang"
    题名 作者 年代 出处 被引量
1Study of the antifungal activity of Bacillus vallismortis ZZ185 in vitro and identification of its antifungal components显示文摘Zhenzhen Zhao Qiushuo Wang Kaimei Wang Kemp Brian Changhong Liu Yucheng Gu 2009Bioresource Technology2009,,1:1
2Study of the antifungal activity of Bacillus vaUisortis ZZ185 in vitro and identication of its antifungal components显示文摘Zhao Zhenzhen Wang Qiushuo Wang Kaimei 2010Bioresoure Technol2010,101,1:1
3Study of the antifungal activity of Bacillus vallismortis ZZ185 in vitro and identification of its antifungal components显示文摘Zhenzhen Zhao Qiushuo Wang Kaimei Wang Kemp Brian Changhong Liu Yucheng Gu 2009Bioresource Technology2009,,1:1
4Study of the antifungal activity of Bacillus vallismortis ZZ185 in vitro and identification of its antifungal components显示文摘ZHAO Zhenzhen WANG Qiushuo WANG Kaimei 2010Bioresource Technology2010,101,:1
5Study of the antifungal activity of Bacillus vallismortis ZZ185 in vitro and identification of its antifungal components显示文摘Zhao zhenzhen Wang qiushuo Wang kaimei 2010Bioresource Technology2010,101,1:1
6Characterization of the Flexural Behavior of Bamboo Beams显示文摘Bamboo is a renewable and environmentally friendly material often used for construction.This study investigates the flexural behavior of bamboo beams through theoretical and finite element(FE)analyses.Considering the material’s nonlinearity,a method of calculating load-deflection curves is proposed and validated via FE analysis.The interfacial slippage dominated by the shear stiffness of the interface between two bamboo poles significantly influences the flexural behavior of double-pole bamboo beams.Thus,the load-deflection curves for different shear stiffnesses can be obtained via theoretical and FE analyses.Subsequently,a novel configuration using diagonal steel bands to avoid slippage is presented.An inclination angle of 45°is suggested to adequately develop the stiffness and bearing capacity of the steel band.Limin Tian Jianpeng Wei Jiping Hao Qiushuo Wang 2021Journal of Renewable Materials2021,9,9:0
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