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10篇 您的检索式:作者名="Xinyan Bi"
    题名 作者 年代 出处 被引量
1Damping properties of ethylene-vinyl acetate rubber/nitrile butadiene rubber blends 显示文摘Shi Xinyan Bi Weina 2011Journal of Macromolecular Science ( part B ) : Physics2011,50,2:1
2Damping properties of blends based on EVM显示文摘Shi Xinyan Bi Weina Zhao Shugao 2011Journal of Macromolecular Science (Part B) : Physics2011,50,10:1
3DMA analysis of the damping of ethylene-vinyl acetate/acrylonitrile butadiene rub- ber blends 显示文摘Shi Xinyan Bi Weina Zhao Shugao 2012Journal of Applied Polymer Science2012,124,3:1
4Optical Imaging of Surface-Immobilized Oligonucleotide Probes on DNA Microarrays Using Liquid Crystals显示文摘Siok Lian Lai Shisheng Huang Xinyan Bi 2009Langmuir2009,25,1:1
5Damping properties of blends based on EVM显示文摘Shi Xinyan Bi Weina Zhao Shugao 2011Journal of Macromolecular Science (Part B) : Physics2011,50,10:1
6Damping properties of ethylene-vinyl ace- tate rubber/nitrile butadiene rubber blends显示文摘Shi Xinyan Bi Weina 2011Journal of Macro- molecular Science(Part B) : Physics2011,50,2:1
7Influence of annealing conditions on selective oxidation of boron in BH steel sheets显示文摘Annealing experiments were conducted on BH steel to which 10 × 10- 6boron was added. The annealing temperature,holding time,H2 content,and dew point were varied in the experiments in order to investigate their influences on the selective oxidation of boron. A higher annealing temperature and longer holding time is found to lead to a higher concentration of boron at the extreme surface,which reaches saturation after the steel sheet is held for a critical period of time that depends on the annealing temperature. The effect of H2 content on the selective oxidation of boron depends on the annealing temperature and dew point. It has almost no influence on the external oxidation of boron when the sheet is annealed at 820 ℃ in an atmosphere with a dew point of- 40 ℃. At a dew point of- 10 ℃,a lower H2 content results in a lower peak value of boron in the subsurface area but deeper internal oxidation of boron. An increase in the dew point from- 40 ℃ to- 10 ℃ can significantly promote internal oxidation of boron at depths of 50- 200 nm from the surface. With the suppression of external oxidation of boron as well as manganese and silicon,a relatively clean surface with reduced and refined oxides can be achieved by increasing the dew point.JIN Xinyan WANG Guodong BI Wenzhen WANG Li 2014Baosteel Technical Research2014,8,4:1
8Investigation of a novel spot defect on a hot dip galvanized high-silicon AHSS sheet显示文摘Improving the galvanizability of high silicon advanced high strength steels(AHSS) is a practical technical challenge. In this study,spot defects on an industrial hot dip galvanized(GI) sheet of an AHSS with1.5 % Si has been studied in-depth. The surface morphologies of spot defects before and after partial and complete removal of the Zn layer,as well as the interface between the outermost coating layer and the sheet substrate were characterized using optical microscopy(OM),scanning electron microscopy(SEM),a 3-D optical profiler,energy dispersive spectroscopy(EDS) and focused ion beam(FIB) analysis. The most outstanding spot defect on the normally coated area of the steel sheet has a diameter of approximately 500 μm,with the following characteristics.In the central region of the spot defect,Zn is barely coated and the sheet substrate is covered by a thin silicon oxide film with dispersed Zn-Fe intermetallics. At the periphery of the spot defect,a burst structure of Zn-Fe intermetallics forms on the sheet substrate. Outside the spot defect where the Zn layer is normally coated,there is a continuous Fe2Al5 inhibition layer between the Zn coating and the sheet substrate. These results indicate that a silicon oxide film forms on the substrate during annealing prior to hot dipping,thus preventing the formation of the Fe2Al5 inhibition layer during hot dipping. This causes spot defects on high Si AHSS sheets.BI Wenzhen JIN Xinyan WANG Li 2015Baosteel Technical Research2015,9,3:1
9Effect of heating temperature on the microstructure evolution of a Zn-Al-Mg coating on press-hardened steel显示文摘This paper addresses the microstructure evolution in the Zn-1.2Al-1.2Mg coating of press-hardened steel during heat treatment at temperatures ranging from 600 ℃ to 900 ℃.The presence of aluminum in the coating leads to substantial variation in the chemical composition and microstructure within the heat-treated layer.As the heat treatment temperature increases, the original Fe_(2)Al_(5) barrier layer between the coating layer and steel substrate is progressively dissolved and replaced by the aggregates of a new(FeAl) phase.At higher heat treatment temperatures, the(FeAl) phase gradually migrates to the subsurface layer of the coating.Meanwhile, Zn/Fe interdiffusion induces Γ-Fe_(3)Zn_(10)-phase formation in the original coating layer and α-Fe(Zn) solid solution formation at the zinc-substrate interface.These microstructure features suppress the high-temperature oxidation and evaporation of Zn.BI Wenzhen JIN Xinyan WEI Xicheng 2023Baosteel Technical Research2023,17,1:0
10A post-modification strategy to precisely construct dual-atom sites for oxygen reduction electrocatalysis显示文摘Dual-atom catalysts(DACs) afford promising potential for oxygen reduction electrocatalysis due to their high atomic efficiency and high intrinsic activity.However,precise construction of dual-atom sites remains a challenge.In this work,a post-modification strategy is proposed to precisely fabricate DACs for oxygen reduction electrocatalysis.Concretely,a secondary metal precursor is introduced to the primary single-atom sites to introduce direct metal-metal interaction,which ensures the formation of desired atom pair structure during the subsequent pyrolysis process and allows for successful construction of DACs.The as-prepared FeCo-NC DAC exhibits superior oxygen reduction electrocatalytic activity with a half-wave potential of 0,91 V vs.reversible hydrogen electrode.Zn-air batteries equipped with the FeCo-NC DAC demonstrate higher peak power density than those with the Pt/C benchmark.More importantly,this post-modification strategy is demonstrated universal to achieve a variety of dual-atom sites.This work presents an effective synthesis methodology for precise construction of catalytic materials and propels their applications in energy-related devices.Juan Wang Xinyan Liu Chang-Xin Zhao Yun-Wei Song Jia-Ning Liu Xi-Yao Li Chen-Xi Bi Xin Wan Jianglan Shui Hong-Jie Peng Bo-Quan Li Jia-Qi Huang 2024Journal of Energy Chemistry2024,90,3:0
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