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金属陶瓷太阳能选择性吸收涂层的研究(特邀)
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作者 杨帆 侯文杰 +1 位作者 董建文 江绍基 《光子学报》 EI CAS CSCD 北大核心 2022年第9期89-95,共7页
选用金属陶瓷作为吸收材料,基于多层薄膜的光学干涉理论,设计了Cu/Zr-ZrO_(2)(HMVF)/Zr-ZrO_(2)(LMVF)/Al_(2)O_(3)四层结构的太阳能选择性吸收涂层。采用磁控溅射法,在4英寸Si基片上制备出与设计参数相符的样品,其在太阳辐射主要波段(3... 选用金属陶瓷作为吸收材料,基于多层薄膜的光学干涉理论,设计了Cu/Zr-ZrO_(2)(HMVF)/Zr-ZrO_(2)(LMVF)/Al_(2)O_(3)四层结构的太阳能选择性吸收涂层。采用磁控溅射法,在4英寸Si基片上制备出与设计参数相符的样品,其在太阳辐射主要波段(300~1500 nm)具有高于96%的平均吸收率,58°大角度入射情况下在该波段仍能保持92%以上的平均吸收率。经过300℃高温退火6 h后,该吸收涂层仍然保持了预期的选择性吸收特性。 展开更多
关键词 太阳能 多层金属陶瓷 选择性吸收 多层薄膜的光学干涉 磁控溅射
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Evolution of microstructure and mechanical properties in multi-layer 316L-TiC composite fabricated by selective laser melting additive manufacturing
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作者 Sasan YAZDANI Suleyman TEKELI +2 位作者 Hossein RABIEIFAR Ufuk TASCI Elina AKBARZADEH 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期2973-2991,共19页
In this study,the microstructure and mechanical properties of a multi-layered 316L-TiC composite material produced by selective laser melting(SLM)additive manufacturing process are investigated.Three different layers,... In this study,the microstructure and mechanical properties of a multi-layered 316L-TiC composite material produced by selective laser melting(SLM)additive manufacturing process are investigated.Three different layers,consisting of 316L stainless steel,316L-5 wt%TiC and 316L-10 wt%TiC,were additively manufactured.The microstructure of these layers was characterized by optical microscopy(OM)and scanning electron microscopy(SEM).X-ray diffraction(XRD)was used for phase analysis,and the mechanical properties were evaluated by tensile and nanoindentation tests.The microstructural observations show epitaxial grain growth within the composite layers,with the elongated grains growing predominantly in the build direction.XRD analysis confirms the successful incorporation of the TiC particles into the 316L matrix,with no unwanted phases present.Nanoindentation results indicate a significant increase in the hardness and modulus of elasticity of the composite layers compared to pure 316L stainless steel,suggesting improved mechanical properties.Tensile tests show remarkable strength values for the 316L-TiC composite samples,which can be attributed to the embedded TiC particles.These results highlight the potential of SLM in the production of multi-layer metal-ceramic composites for applications that require high strength and ductility of metallic components in addition to the exceptional hardness of the ceramic particles. 展开更多
关键词 multilayer metal-ceramic composites selective laser melting functionally graded materials 316 L stainless steel TIC
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