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低品质煤泥浮选过程强化研究进展及其思考 被引量:66
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作者 桂夏辉 邢耀文 +1 位作者 曹亦俊 刘炯天 《煤炭学报》 EI CAS CSCD 北大核心 2021年第9期2715-2732,共18页
“富煤、缺油、少气”的一次能源赋存条件决定了我国煤炭的基础能源地位,与此同时,煤炭作为当前最主要的碳排放源,如何为实现碳达峰、碳中和做出煤炭贡献是整个行业迫切需要思考和解决的关键问题。我国煤炭资源禀赋条件差,高含杂低品质... “富煤、缺油、少气”的一次能源赋存条件决定了我国煤炭的基础能源地位,与此同时,煤炭作为当前最主要的碳排放源,如何为实现碳达峰、碳中和做出煤炭贡献是整个行业迫切需要思考和解决的关键问题。我国煤炭资源禀赋条件差,高含杂低品质煤资源储量丰富,随着优质煤炭资源的逐渐消耗与国家“双碳”战略的实施,低品质煤大规模分选提质已成为保障国家能源安全和煤炭行业高质量绿色发展的战略选择。目前重介质选煤技术的快速发展与推广使得粗粒低品质煤分选日趋成熟,但细粒低品质煤(低阶/氧化难浮煤、高灰难选煤等)浮选仍面临着严峻挑战,低品质煤泥浮选的基本作用原理与过程强化亟需研究。从低品质煤泥难浮难选机理、低品质煤泥浮选界面调控及流动强化3个方面对低品质煤浮选研究现状进行了系统讨论,最后提出了未来低品质煤浮选过程强化的新发展方向与技术体系,主要包括基于多尺度微纳力学解析的低品质煤浮选分离新原理、基于单分子力谱融合深度学习的浮选药剂分子智能定向筛选设计、基于能量精准适配的调浆-浮选流场精细化构建、煤系固废资源化利用与规模化消纳及低品质煤浮选界面-流体协同强化全链条智能化示范工程建设,上述关键科学与技术问题的解决将为我国煤炭行业高质量发展和国家“双碳”战略实施提供新的助力。 展开更多
关键词 低品质煤 浮选 界面调控 流动强化 表界面力学
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Interface microstructure and mechanical properties of selective laser melted multilayer functionally graded materials 被引量:7
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作者 WANG Di DENG Guo-wei +4 位作者 YANG Yong-qiang CHEN Jie WU Wei-hui WANG Hao-liang TAN Chao-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1155-1169,共15页
Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufactu... Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufacturing highlights the capability in manufacturing FGMs with a high geometrical complexity and manufacture flexibility.In this work,the 316L/CuSn10/18Ni300/CoCr four-type materials FGMs were fabricated using SLM.The microstructure and properties of the FGMs were investigated to reveal the effects of SLM processing parameters on the defects.A large number of microcracks were found at the 316L/CuSn10 interface,which initiated from the fusion boundary of 316L region and extended along the building direction.The elastic modulus and nano-hardness in the 18Ni300/CoCr fusion zone decreased significantly,less than those in the 18Ni300 region or the CoCr region.The iron and copper elements were well diffused in the 316L/CuSn10 fusion zone,while elements in the CuSn10/18Ni300 and the 18Ni300/CoCr fusion zones showed significantly gradient transitions.Compared with other regions,the width of the CuSn10/18Ni300 interface and the CuSn10 region expand significantly.The mechanisms of materials fusion and crack generation at the 316L/CuSn10 interface were discussed.In addition,FGM structures without macro-crack were built by only altering the deposition subsequence of 316L and CuSn10,which provides a guide for the additive manufacturing of FGM structures. 展开更多
关键词 selective laser melting multilayer functionally graded material interfacial characterization crack defects mechanical properties
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Preparation and characterization of different surface modified SiCp reinforced Al-matrix composites 被引量:11
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作者 LÜ Pin-hui WANG Xiao-feng +2 位作者 DONG Cui-ge PENG Chao-qun WANG Ri-chu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2567-2577,共11页
The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with C... The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with Cu,Ni and Cu/Ni,respectively,was carried out by electroless plating method.SiCp/Al composites were prepared by hot pressed sintering followed by hot extrusion.The results show that the surface modification of SiC particles plays an effective role,which is relative to the type of surface coating,and the interfacial bonding become stronger in the following order:untreated SiCp<Ni(Cu)-coated SiCp<Ni/Cu-coated SiCp.The Ni/Cu-coated SiCp/Al composites exhibit the best comprehensive mechanical properties,with ultimate tensile strength(σUTS)and fracture strain(εf)of 389 MPa and 6.3%,respectively.Compared with that of untreated-SiCp/Al composites,theσUTS andεf are enhanced by 19.3%and 57.5%. 展开更多
关键词 SiCp/Al composite surface modification electroless plating mechanical properties interfacial bonding
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