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安徽省自然科学基金(50072003)

作品数:2 被引量:1H指数:1
相关作者:任萍萍斯庭智刘宁尤显卿更多>>
相关机构:合肥工业大学更多>>
发文基金:安徽省自然科学基金更多>>
相关领域:化学工程一般工业技术更多>>

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A New-type of Cermets Cutter with Nano-TiN Addition:Microstructure, Mechanical and Cutting Properties
2006年
The microstructure and mechanical properties of a new-type of cermets cutter (tool A) with nano-TiN modification and its cutting properties in cutting gray cast iron are investigated. SEM and TEM observations of the microstructure of the above material reveal that nano-TiN modified cermets possess a finer microstructure than conventional cermets. In the cutting tests, for comparison, cemented carbide cutter (YG8, tool B) was also utilized. The cutting results show that the cutting properties of tool A are superior to those of tool B. It is also found that the predominant failure mode of tool A is normal wear and micro-spalling under lower cutting quantities, and that chipping occurs under higher cutting quantities. SEM analysis reveals that cohesion, oxidation and diffusion wear become very apparent at a higher cutting speed. On the contrary, grain wear also exists but is not apparent.
刘宁
关键词:金属陶瓷
纳米TiN改性Al_2O_3-TiC复合陶瓷的力学性能被引量:1
2004年
通过添加粒径为50~80nm的TiN,改善了Al_2O_3-TiC复合陶瓷的力学性能。以15%(质量分数,下同)的TiN取代15%TiC,制备了纳来TiN改性Al_2O_3-TiC复合陶瓷。结果表明:70%Al_2O_3-15%TiC-15%TiN复合陶瓷的抗弯强度和断裂韧性分别为618 MPa和7.12 MPa·m^(1/2),比70%Al_2O_3-30%TiC的性能(567 MPa和4.96 MPa·m_(1/2))明显提高,特别是断裂韧性提高了64%。纳米TiN改性Al_2O_3-TiC复合陶瓷韧性的提高主要是由于材料致密度的提高和晶粒的细化所致,它的增韧方式为微裂纹、裂纹桥接和偏转。
尤显卿斯庭智任萍萍刘宁
关键词:纳米氮化钛微裂纹
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