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宝钢技术研究(英文版)
宝钢技术研究(英文版)

翁国强

季刊

1674-3458

bstr@baosteel.com

021-26648493

201900

上海市宝山区富锦路655号科技大楼806室

宝钢技术研究(英文版)/Journal Baosteel Technical Research
查看更多>>以“推进科技创新,展示科研成果,促进技术交流,跟踪报道热点,为宝钢科技发展与进步服务”为办刊宗旨,以宝钢科研创新、学术研究、新产品开发、工业设备革新等研发成果以及前沿技术研究等为主要报道内容,以国内外钢铁冶金及相关领域技术人员和企业经营管理人员,以及大专院校师生等为读者对象。
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    Research and development of 3PP coating steel pipes

    FANG WenqiMA YuanHUI Linlin
    1-11页
    查看更多>>摘要:The industrial application of an exterior three-layer anticorrosive polypropylene coating system(3PP)on large-diameter(larger than φ600 mm)steel pipes was developed using an experimental process simulation study and the optimization of raw materials inspection,steel pipe surface pretreatments,and water cooling control on a coating application process.The coating properties meet ISO standard 21809 on buried or submerged 3PP pipelines used in the petroleum and natural gas industries.Differential scanning calorimetry and X-ray diffraction were used to analyze the crystallinities and grain sizes of polypropylene(PP)top coats with different cooling rates.Increasing the melt cooling rate reduces the crystallinity and grain size of the PP top coat and enhances its strength and toughness.

    Sol-gel synthesis of nanometer silicon/silicon suboxide/carbon anode material

    QIN TongWANG ZhengLI Zhengzheng
    12-18页
    查看更多>>摘要:A stacked Si/SiOx/C composite anode material with carbon-coated structure was prepared by sol-gel method combined with carbothermal reduction using organic silicon.The results of X-ray diffractometry,scanning electron microscopy,and elemental analysis show that the Si/SiOx/C material is a secondary particle with a porous micronanostructure,and the presence of nanometer silicon does not affect the carbothermal reduction and carbon coating.Electrochemical test results indicate that the specific capacity and first coulombic efficiency of SiOx/C composite with nanometer silicon can be increased to 1 946.05 mAh/g and 76.49% ,respectively.The reversible specific capacity of Si/SiOx/C material blended with graphite is 749.69 mAh/g after 100 cycles at a current density of 0.1 C,and the capacity retention rate is up to 89.03% .Therefore,the composite has excellent electrochemical cycle stability.

    Effect of Ni content on the weldability of middle-chromium hyperpure ferritic stainless steels 00Cr21Ti

    ZHANG XinbaoWANG ZhibinSUN MingshanYAN Zhifeng...
    19-26页
    查看更多>>摘要:Excellent weldability substantially contributes to the intrinsic quality of steels,while appropriate chemical composition plays a primary role in the essential weldability of steels.The poor weldability of ferritic stainless steels could be improved through modification with minor alloy elements while minimally increasing the cost.Therefore,studying the effect of minor alloy elements on the weldability of steels is of considerable importance.In this study,several steels of middle-chromium hyperpure ferritic stainless 00Cr21Ti with different Ni content(0.3% ,0.5% ,0.8% ,and 1.0% )were developed,and their weldabilities of butt joint samples welded using the metal inert gas welding process,including the influence of welded joints on the microstructure,tensile performance,corrosion resistance,and fatigue property,were investigated.Results show that the steels with w(Ni)≥0.8% exhibit excellent mechanical properties compared with those with low-Ni content steels,further,their impact toughness at normal atmospheric temperature meets the industrial application standard and the fatigue property is similar to that of 304 austenitic stainless steel.Moreover,results show that the corrosion resistance of all the samples is almost at the same level.The results acquired in this study are supposed to be useful for the optimization of the chemical composition of stainless steels aiming to improve weldability.

    Analysis of spot defects on the surface of a cold-rolled Fe-36%Ni alloy strip

    TIAN YuxinWANG YuZHU Yincun
    27-31页
    查看更多>>摘要:Many spot defects were found on the surface of a cold-rolled Fe-36% Ni alloy strip produced in a factory,which seriously affected the surface quality of the product.Through metallographic microscopy and scanning electron microscopy analyses,it was found that the spot defects were caused by the residual oxide layer on the surface of the cold-rolled Fe-36% Ni alloy strip after hydrogen annealing.By properly increasing the grinding amount of the blank before cold rolling to remove the oxide layer,the spot defects on the surface of the cold-rolled strip were effectively eliminated,and the surface quality of the product was ensured.

    Investigation and improvement of tiny spot defects on hot-dip galvanized automotive steel sheets

    GE ZhiyongYANG BoYANG Jiwu
    32-38页
    查看更多>>摘要:The causes of tiny spot defects on the surface of hot-dip galvanized automotive steel sheets were studied using scanning electron microscopy(SEM)and energy dispersive spectrometer(EDS),and effective control measures were introduced.The results show that rubbing against the top roller after galvanizing is easy due to the local thickness of tiny spot defect location coating;therefore,the surface morphology is different from the normal part.Three kinds of defects,namely zinc slag,small slivers,and pitting,are likely to cause local thickening of the coating after galvanizing,leading to the formation of tiny spots.Therefore,resolving the three types of defects can effectively control the generation of tiny spot defects.Among them,due to the hereditary nature of the small sliver defect,focusing on its control and supervision is necessary.

    Design and application of thickness measurement calibration system based on laser displacement sensor

    SUN JinYU Zijin
    39-46页
    查看更多>>摘要:This study aims to improve the accuracy and safety of steel plate thickness calibration.A differential noncontact thickness measurement calibration system based on laser displacement sensors was designed to address the problems of low precision of traditional contact thickness gauges and radiation risks of radiation-based thickness gauges.First,the measurement method and measurement structure of the thickness calibration system were introduced.Then,the hardware circuit of the thickness system was established based on the STM32 core chip.Finally,the system software was designed to implement system control to filter algorithms and human-computer interaction.Experiments have proven the excellent performance of the differential noncontact thickness measurement calibration system based on laser displacement sensors,which not only considerably improves measurement accuracy but also effectively reduces safety risks during the measurement process.The system offers guiding significance and application value in the field of steel plate production and processing.

    Contributions to Baosteel Technical Research wanted

    47-48页