采用冷金属过渡(Cold metal transfer,CMT)焊接技术在Q345钢表面堆焊高Cr合金钢,以期对Q345进行表面强化。结果表明,CMT焊接技术在Q345钢表面堆焊高Cr合金钢方法可行,并且焊缝结合良好,无明显裂纹。组织主要是铁素体和珠光体,堆焊组织...采用冷金属过渡(Cold metal transfer,CMT)焊接技术在Q345钢表面堆焊高Cr合金钢,以期对Q345进行表面强化。结果表明,CMT焊接技术在Q345钢表面堆焊高Cr合金钢方法可行,并且焊缝结合良好,无明显裂纹。组织主要是铁素体和珠光体,堆焊组织以马氏体和残余奥氏体为主。CMT焊接热输入低、热影响区小、界面处基体稀释率低。堆焊层硬度平均值为490 HV0.2,基体组织硬度平均值为182 HV0.2,复合板的冲击吸收能量为35 J。主要的断口形貌为撕裂棱和解理,基体和堆焊层的界面发现裂纹分叉。展开更多
NiO/SDC composites and Ni/SDC cermets for solid oxide fuel cell (SOFC) anode applications were prepared from nickel oxide (NiO) and samada doped ceria (SDC) powders by the powder metallurgy process. The physical...NiO/SDC composites and Ni/SDC cermets for solid oxide fuel cell (SOFC) anode applications were prepared from nickel oxide (NiO) and samada doped ceria (SDC) powders by the powder metallurgy process. The physical and mechanical properties, as well as the microstructure of the NiO/SDC composites and the Ni/SDC cermets were investigated. It is shown that the sintedng temperature of the NiO/SDC composites and NiO content plays an important role in determining the microstructure and properties of the NiO/SDC composites, which, in turn, influences the microstructure, electrical conductivity, and mechanical properties of the Ni/SDC cermets. The present study demonstrated that composition and tprocess parameters must be appropriately selected to optimize the microstructure and the properties of NiO/SDC materials for solid oxide fuel cell applications.展开更多
通过甘氨酸硝酸盐法合成出添加0~6 mol%La_2O_3-CaO的NiO-SDC(Sm0.2Ce0.8O1.9)复合阳极(La_2O_3-CaO/NiO-SDC)粉体,以SDC为电解质、BSCF(Ba0.5Sr0.5Co0.8Fe0.2O3-δ)为阴极构建SOFC单电池。考察了La_2O_3-CaO添加对Ni-SDC阳极微观组织...通过甘氨酸硝酸盐法合成出添加0~6 mol%La_2O_3-CaO的NiO-SDC(Sm0.2Ce0.8O1.9)复合阳极(La_2O_3-CaO/NiO-SDC)粉体,以SDC为电解质、BSCF(Ba0.5Sr0.5Co0.8Fe0.2O3-δ)为阴极构建SOFC单电池。考察了La_2O_3-CaO添加对Ni-SDC阳极微观组织和电化学性能等的影响;以乙醇为燃料气测定单电池的电化学性能和阳极的抗积碳性能。实验结果表明,La_2O_3-CaO/NiO-SDC复合阳极主要由NiO和SDC相组成,而La_2O_3和CaO的存在状态与其加入量有关。La_2O_3-CaO的加入,使复合阳极的电导率有所降低。添加少量La_2O_3-CaO阳极的SOFC单电池在乙醇燃料中的电池性能有所增加,800℃时添加2 mol%La_2O_3-CaO的Ni-SDC阳极的单电池最大输出功率为377.79 m W·cm-2,而Ni-SDC阳极单电池的最大输出功率仅158.86 m W·cm-2。此外,La_2O_3-CaO的添加有效减少了Ni-SDC阳极单电池在乙醇燃料中的积碳,提高了电池的运行稳定性。展开更多
Ni-Ag/TiC composite coating was prepared on the 45 steel substrates by means of laser cladding. Microstructure and wear properties of composite coatings were analyzed using optical microscopy, field emission scanning ...Ni-Ag/TiC composite coating was prepared on the 45 steel substrates by means of laser cladding. Microstructure and wear properties of composite coatings were analyzed using optical microscopy, field emission scanning electron microscopy and wear machine. The experimental results show that defects, such as cracks and pores, do not occur in the laser-cladded Ni-Ag/TiC composite coating and 45 steel substrate, and they present good metallurgical bonding between them. Compared with Ni/TiC composite coating, micro- hardness values of the two coatings do not present evident differences. The wear experiment result shows that Ni-Ag/TiC composite coated with Ag possesses low friction coefficient and good wear resistance compared with Ni/TiC composite coating.展开更多
基金National Magnetic Confinement Fusion Program(2014GB121001)National Natural Science Foundation of China(51474083)+1 种基金The Foundation of Laboratory of Nonferrous Metal Material Processing Engineering of Anhui Province(15CZS08031)“111” Project of China(B18018)
基金This work was financially supported by the National Key Fundamental Research and Development Program of China (No. G2000026409).
文摘NiO/SDC composites and Ni/SDC cermets for solid oxide fuel cell (SOFC) anode applications were prepared from nickel oxide (NiO) and samada doped ceria (SDC) powders by the powder metallurgy process. The physical and mechanical properties, as well as the microstructure of the NiO/SDC composites and the Ni/SDC cermets were investigated. It is shown that the sintedng temperature of the NiO/SDC composites and NiO content plays an important role in determining the microstructure and properties of the NiO/SDC composites, which, in turn, influences the microstructure, electrical conductivity, and mechanical properties of the Ni/SDC cermets. The present study demonstrated that composition and tprocess parameters must be appropriately selected to optimize the microstructure and the properties of NiO/SDC materials for solid oxide fuel cell applications.
文摘通过甘氨酸硝酸盐法合成出添加0~6 mol%La_2O_3-CaO的NiO-SDC(Sm0.2Ce0.8O1.9)复合阳极(La_2O_3-CaO/NiO-SDC)粉体,以SDC为电解质、BSCF(Ba0.5Sr0.5Co0.8Fe0.2O3-δ)为阴极构建SOFC单电池。考察了La_2O_3-CaO添加对Ni-SDC阳极微观组织和电化学性能等的影响;以乙醇为燃料气测定单电池的电化学性能和阳极的抗积碳性能。实验结果表明,La_2O_3-CaO/NiO-SDC复合阳极主要由NiO和SDC相组成,而La_2O_3和CaO的存在状态与其加入量有关。La_2O_3-CaO的加入,使复合阳极的电导率有所降低。添加少量La_2O_3-CaO阳极的SOFC单电池在乙醇燃料中的电池性能有所增加,800℃时添加2 mol%La_2O_3-CaO的Ni-SDC阳极的单电池最大输出功率为377.79 m W·cm-2,而Ni-SDC阳极单电池的最大输出功率仅158.86 m W·cm-2。此外,La_2O_3-CaO的添加有效减少了Ni-SDC阳极单电池在乙醇燃料中的积碳,提高了电池的运行稳定性。
基金Funded by the Natural Science Foundation of Zhejiang Province(LY12E02003)the National Natural Science Foundation of China(No.51204064)the Training Program of the Major Research Plan of the National Natural Science Foundation of China(No.91023030)
文摘Ni-Ag/TiC composite coating was prepared on the 45 steel substrates by means of laser cladding. Microstructure and wear properties of composite coatings were analyzed using optical microscopy, field emission scanning electron microscopy and wear machine. The experimental results show that defects, such as cracks and pores, do not occur in the laser-cladded Ni-Ag/TiC composite coating and 45 steel substrate, and they present good metallurgical bonding between them. Compared with Ni/TiC composite coating, micro- hardness values of the two coatings do not present evident differences. The wear experiment result shows that Ni-Ag/TiC composite coated with Ag possesses low friction coefficient and good wear resistance compared with Ni/TiC composite coating.