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      مشاهده مورد 
      •   صفحهٔ اصلی
      • نشریات انگلیسی
      • Journal of Ultrafine Grained and Nanostructured Materials
      • Volume 53, Issue 1
      • مشاهده مورد
      •   صفحهٔ اصلی
      • نشریات انگلیسی
      • Journal of Ultrafine Grained and Nanostructured Materials
      • Volume 53, Issue 1
      • مشاهده مورد
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      Combustion-aminolysis synthesis and characterization of CrN/Cu composites

      (ندگان)پدیدآور
      Chu, AiminZhao, YupingRafi, ud-dinTian, LiGuo, ShiboXu, HongmeiZhang, Huajian
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      نوع مدرک
      Text
      Research Paper
      زبان مدرک
      English
      نمایش کامل رکورد
      چکیده
      CrN/Cu composite powders were synthesized by employing a novel two-step technique. Firstly, the Cr2O3+CuO precursors were prepared by the solution combustion synthesis (SCS) method using cupric nitrate, urea, and chromium nitrate as initial materials. Subsequently, the SCS precursors were calcined at 850 °C in NH3 for 6 h, and transformed to CrN/Cu composite powders. The composite powders consist of the uniform subsphaeroidal particles with the particle size ranging from 200 to 300 nm. After the friction-wear test, the removal volume of the sintered CrN/Cu composite specimen (0.0218 mm3) is almost 80 times smaller than that of the sintered pure copper specimen (1.6634 mm3). The addition of CrN can improve the tribological performance of sintered copper significantly. Moreover, the electrical conductivity of the sintered CrN/Cu composite specimen is high to 85.6% of IACS (International Annealed Copper Standard).
      کلید واژگان
      CrN/Cu composite powder
      precursor
      Solution Combustion Synthesis
      Aminolysis
      Tribological performance

      شماره نشریه
      1
      تاریخ نشر
      2020-06-01
      1399-03-12
      ناشر
      University of Tehran
      سازمان پدید آورنده
      Hunan Provincial Key Defense Laboratory of High Temperature Wear-resisting Materials and Preparation Technology, School of Materials Science and Engineering, Hunan University of Science and Technology, Xiangtan, China.
      School of Civil and Engineering, Hunan University of Science and Technology, Xiangtan, China.
      Materials Division, PINSTECH, Post Office Nilore, Islamabad, Pakistan.
      Hunan Provincial Key Defense Laboratory of High Temperature Wear-resisting Materials and Preparation Technology, School of Materials Science and Engineering, Hunan University of Science and Technology, Xiangtan, China.
      Hunan Provincial Key Defense Laboratory of High Temperature Wear-resisting Materials and Preparation Technology, School of Materials Science and Engineering, Hunan University of Science and Technology, Xiangtan, China.
      Hunan Provincial Key Defense Laboratory of High Temperature Wear-resisting Materials and Preparation Technology, School of Materials Science and Engineering, Hunan University of Science and Technology, Xiangtan, China.
      Hunan Provincial Key Defense Laboratory of High Temperature Wear-resisting Materials and Preparation Technology, School of Materials Science and Engineering, Hunan University of Science and Technology, Xiangtan, China.

      شاپا
      2423-6845
      2423-6837
      URI
      https://dx.doi.org/10.22059/jufgnsm.2020.01.01
      https://jufgnsm.ut.ac.ir/article_76817.html
      https://iranjournals.nlai.ir/handle/123456789/438653

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