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金属复合陶瓷
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  “金属复合陶瓷”译为未确定词的双语例句
     NiCr-Cr 3C 2 ,FeCrAl and 45CT are there kinds of coating material for boiler tubes. The results obtained in oxidation experiments show that they possess much better resistance to oxidation than 20G dose;
     对 Ni Cr、Cr3C2 金属复合陶瓷涂层材料、Fe Cr Al涂层材料和国外通用的 4 5 CT涂层材料在 75 0℃下的高温氧化动力学规律进行了研究 ,并和 2 0 G钢作了对比。
短句来源
     By adopting low temperature(<300℃)plasma P-CVD technology,form a BN-SIN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface; improve ring surface hardness and wear resistance,lower friction factor.
     利用低温( <30 0℃ )等离子化学气相沉积技术 ,在活塞环表面生成一层双向扩散的微晶体与网状结构并存的氮化硼—氮化硅金属复合陶瓷层 ,提高环的表面硬度、耐磨性 ,降低摩擦系数。
短句来源
     By adopting low temperature(<300℃)plasma P-CVD technology, form a BN-SiN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface,thus improving ring surface hardness and wear resistance, and lowering friction factor.
     利用低温(<300℃)等离子化学气相沉积技术,在活塞环表面生成一层双向扩散的微晶体与网状结构并存的氮化硼—氮化硅金属复合陶瓷层,提高环的表面硬度、耐磨性,降低摩擦系数。
短句来源
     These metal-coated alumina micro-powders will be used for advanced metal/alumina composites with a three-dimensional metallic network structure, and the heterogeneous precipitation-thermal reduction process can be applied for fabrication of metallized ceramic composites for ceramic-metal seal.
     Ni、FeNi包裹氧化铝复合结构球形微粉可应用于制备连续金属Ni或FeNi合金相三维网络结构氧化铝/金属复合陶瓷. 非均相沉淀—热还原工艺可应用于陶瓷/金属封接中金属化层材料的制备.
短句来源
  相似匹配句对
     The Preparation of Metal/Ceramic Composite Tubes
     金属-陶瓷复合管的制造
短句来源
     CERAMIC NANOCOMPOSITES
     纳米复合陶瓷
短句来源
     Metal Composite Membranes
     金属复合
短句来源
     Study of Promoting the Gas-Permeability of Porous Ceramic-Metal Composite
     提高陶瓷-金属复合多孔材料透气性的研究
短句来源
     STUDY ON COMPOSITE PIPE OF METAL-CERAMIC MADE BY SHS METHOD
     高温合成金属-陶瓷耐蚀复合钢管研究
短句来源
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NiCr-Cr 3C 2 ,FeCrAl and 45CT are there kinds of coating material for boiler tubes. The results obtained in oxidation experiments show that they possess much better resistance to oxidation than 20G dose; furthermore, SEM and XRD have been applied to analyze their mechanisms of oxidation.

对 Ni Cr、Cr3C2 金属复合陶瓷涂层材料、Fe Cr Al涂层材料和国外通用的 4 5 CT涂层材料在 75 0℃下的高温氧化动力学规律进行了研究 ,并和 2 0 G钢作了对比。采用扫描电镜以及 X衍射仪等对氧化产物的形貌和相组成进行了分析

By adopting low temperature(<300℃)plasma P-CVD technology,form a BN-SIN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface;improve ring surface hardness and wear resistance,lower friction factor.After forming the ceramics layer on chrome piston ring surface,heat conduction factor improves by 42% in normal temperature and rising exponentially,thus lowers ring working temperature,decreases distortion,improves air-proof and as a result improves the overall...

By adopting low temperature(<300℃)plasma P-CVD technology,form a BN-SIN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface;improve ring surface hardness and wear resistance,lower friction factor.After forming the ceramics layer on chrome piston ring surface,heat conduction factor improves by 42% in normal temperature and rising exponentially,thus lowers ring working temperature,decreases distortion,improves air-proof and as a result improves the overall performance of the engine.Ceramics P-CVD piston ring can save fuel oil efficiently,prolong service life and lower engine emission.

利用低温( <30 0℃ )等离子化学气相沉积技术 ,在活塞环表面生成一层双向扩散的微晶体与网状结构并存的氮化硼—氮化硅金属复合陶瓷层 ,提高环的表面硬度、耐磨性 ,降低摩擦系数。在镀铬环表面生成复合陶瓷层后 ,常温下导热系数可提高 42 % ,并随温度升高呈指数规律上升 ,从而减少环的工作温度 ,减少形变 ,提高气密性 ,改善发动机整体性能。使用渗浸陶瓷活塞环 ,发动机可高效节油 ,提高使用寿命 ,改善尾气排放。

By adopting low temperature(<300℃)plasma P-CVD technology, form a BN-SiN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface,thus improving ring surface hardness and wear resistance, and lowering friction factor. After forming the ceramics layer on chrome piston ring surface, heat conduction factor improves by 42% in normal temperature and rises exponentially, thus lowering ring working temperature, decreasing distortion, and improving air-proof, and as...

By adopting low temperature(<300℃)plasma P-CVD technology, form a BN-SiN metal compound ceramics layer with two-way spreading micro-crystal and web structure on piston ring surface,thus improving ring surface hardness and wear resistance, and lowering friction factor. After forming the ceramics layer on chrome piston ring surface, heat conduction factor improves by 42% in normal temperature and rises exponentially, thus lowering ring working temperature, decreasing distortion, and improving air-proof, and as a result improving the overall performance of the engine. Ceramics P-CVD piston ring can save fuel oil efficiently, prolong service life and lower engine emission.

利用低温(<300℃)等离子化学气相沉积技术,在活塞环表面生成一层双向扩散的微晶体与网状结构并存的氮化硼—氮化硅金属复合陶瓷层,提高环的表面硬度、耐磨性,降低摩擦系数。在镀铬环表面生成复合陶瓷层后,常温下导热系数可提高42%,并随温度升高呈指数规律上升,从而减少环的工作温度,减少形变,提高气密性,改善发动机整体性能。使用渗浸陶瓷活塞环,发动机可高效节油,提高使用寿命,改善尾气排放。

 
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