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11篇 您的检索式:作者名="Pengjun Luo"
    题名 作者 年代 出处 被引量
1High-yield production of a low-temperature-active polygalacturonase for papaya juice clarification显示文摘Tao Tu Kun Meng Yingguo Bai Pengjun Shi Huiying Luo Yaru Wang Peilong Yang Yuhong Zhang Wei Zhang Bin Yao 2013Food Chemistry2013,,3:1
2A xylanase with broad pH and temperature adaptability from Streptomyces megasporus DSM 41476, and its potential application in brewing industry 显示文摘QIU Zhenhua SHI Pengjun LUO Huiying 2010Enzyme and Microbial Technology2010,46,6:1
3Gene cloning, expression and characterization of an α-galactosidase from Pedobacter nyackensis MJ11 CGMCC 2503 with potential as an aquatic feed additive显示文摘Xiaodan Liu Kun Meng Yaru Wang Pengjun Shi Tiezheng Yuan Peilong Yang Huiying Luo Yingguo Bai Bin Yao 2009World Journal of Microbiology and Biotechnology2009,,9:1
4A novel highly acidic β-mannanase from the acidophilic fungus Bispora sp. MEY-1: gene cloning and overexpression in Pichia pastoris显示文摘Huiying Luo Yaru Wang Hui Wang Jun Yang Yuhui Yang Huoqing Huang Peilong Yang Yingguo Bai Pengjun Shi Yunliu Fan Bin Yao 2009Applied Microbiology and Biotechnology2009,,3:1
5Acidicβ-mannanase from Penicillium pinophilum C1:Cloning,characterization and assessment of its potential for animal feed application显示文摘Cai Hongying Shi Pengjun Luo Huiyang 2011Journal of Bioscience and Bioengineering2011,112,6:1
6Cloning, expression, and characterization of a new xylanase with broad temperature adaptability from Streptomyces sp. S9显示文摘Ning Li Kun Meng Yaru Wang Pengjun Shi Huiying Luo Yingguo Bai Peilong Yang Bin Yao 2008Applied Microbiology and Biotechnology2008,,2:1
7Molecular and biochemical characterization of a novel xylanase from the symbiotic Sphingobacterium sp. TN19显示文摘Junpei Zhou Huoqing Huang Kun Meng Pengjun Shi Yaru Wang Huiying Luo Peilong Yang Yingguo Bai Zhigang Zhou Bin Yao 2009Applied Microbiology and Biotechnology2009,,2:1
8A novel thermophilic xylanase from Achaetomium sp. Xz-8 with high catalytic efficiency and application potentials in the brewing and other industries显示文摘Liang Zhao Kun Meng Pengjun Shi Yingguo Bai Huiying Luo Huoqing Huang Yaru Wang Peilong Yang Bin Yao 2013Process Biochemistry2013,,12:1
9Gene cloning and expression of a new acidic family 7 endo-β-1,3-1,4-glucanase from the acidophilic fungus Bispora sp. MEY-1显示文摘Huiying Luo Jun Yang Peilong Yang Jiang Li Huoqing Huang Pengjun Shi Yingguo Bai Yaru Wang Yunliu Fan Bin Yao 2010Applied Microbiology and Biotechnology2010,,4:1
10The clinical performance evaluation of novel protein chips for eleven biomarkers detection and the diagnostic model study显示文摘Yuan Luo Xu Zhu Pengjun Zhang 2015Int J Clin Exp Med2015,8,20:1
11Mechanical Performance Evaluation of Multi‑Point Clinch–Adhesive Joints of Aluminum Alloy A5052‑H34 and High‑Strength Steel JSC780显示文摘The clinch–adhesive process,which combines mechanical clinching and adhesive bonding,is one of the most applied pro-cesses for joining aluminum alloy and steel in the manufacturing of vehicle bodies.In this hybrid process,the clinching joints and adhesive bonds are coupled and influenced by each other,posing challenges to the process design and joining strength evaluation.To understand the influence of the clinching process on the performance of the adhesive layer,this study analyzes the mechanical behavior of clinch–adhesive joints between high-strength steel JSC780 and aluminum alloy A5052-H34 with different stack-up orientations and varying numbers of clinching points.The results reveal that,under the steel-on-top condition,the clinching process causes a discontinuous distribution of the adhesive layer,which significantly decreased the bonding strength.In contrast,under the aluminum-on-top condition,the clinching process has a lesser impact on the distribution of the adhesive layer,resulting in much higher strength than the steel-on-top condition.Simulation mod-els are constructed to quantify the effect of clinching points on the performance of the adhesive layer.The results highlight the need to consider diverse cohesive zone model parameters for the different stack orientations and clinching points in the design of clinch–adhesive aluminum alloy/steel structures.Yunwu Ma Reika Akita Yohei Abe Peihao Geng Pengjun Luo Seiichiro Tsutsumi Ninshu Ma 2023Automotive Innovation2023,6,3:0
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