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先进陶瓷模具:设计、制造与性能 英文版

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  • 大小:40.53 MB
  • 语言:英文版
  • 格式: PDF文档
  • 阅读软件: Adobe Reader
资源简介
先进陶瓷模具:设计、制造与性能 影印版 英文版
作者:许崇海 著
出版时间:2016年版
内容简介
  《先进陶瓷模具:设计、制造与性能(英文版)》是作者结合多年从事陶瓷模具研究的相关成果撰写而成。在全面综述国内外陶瓷模具及相关研究进展的基础上,主要介绍了先进陶瓷模具设计技术、制造工艺与性能研究的新进展。书中首先阐述了计算智能技术如BP神经网络、遗传算法、免疫算法及其混合算法等在陶瓷模具材料组分与制备工艺优化设计方面的应用,并将有限元方法用于陶瓷模具结构优化设计,对冷热挤压模具及其挤压过程的热应力进行了计算与分析;基于设计结果,研制了氧化铝基、氧化锆基和碳氮化钛基微纳复合陶瓷模具材料,并详细介绍了其力学性能、微观结构与增韧补强机理;考虑到实际应用的需要,又进一步介绍了所研制的三种微纳复合陶瓷模具材料的摩擦与磨损特性。《先进陶瓷模具:设计、制造与性能(英文版)》既有陶瓷模具材料与结构设计方面的理论分析与模拟计算,又有材料性能与摩擦磨损应用,反映了陶瓷模具领域近期的研究成果。《先进陶瓷模具:设计、制造与性能(英文版)》可供普通高等学校机械类、材料类专业研究生和高年级本科生阅读,也可供机械工程、材料加工工程、模具材料、模具设计与制造等相关领域的研究人员、工程技术人员参考。
目录
Preface
Chapter 1 State of the Art of Ceramic Dies
1.1 Introduction
1.2 Composition, processing technology and mechanical property of ceramic die materials
1.2.1 Al203 based ceramics
1.2.2 Zr02 based ceramics
1.2.3 Sialon ceramics
1.2.4 Si3N4 ceramics
1.2.5 Cermets
1.3 Engineering performance of ceramic dies
1.3.1 Drawing die
1.3.2 Extrusion die
1.3.3 Punching die
1.4 Surface modification techniques and their application in ceramic dies
1.4.1 Surface coating,
1.4.2 Surfacecomposite
1.4.3 Surface plating
1.5 Nanocomposite ceramics and the application in dies
1.5.1 Composition and mechanicalproperty of nanocomposite ceramics
1.5.2 Application ofnanocomposite ceramics in dies
References
Chapter 2 Optimum Design of Ceramic Die Materials with Computational Intelligence
2.1 Introduction
2.2 Optimization based on the BP algorithm
2.2.1 BP algorithm
2.2.2 Experimental data
2.2.3 Compositions optimization for ceramic die material
2.2.4 Optimization of hot pressing parameters
2.3 Optimization based on immune algorithm
2.3.1 Immune algorithm
2.3.2 Experimental data
2.3.3 Compositions optinuzation for cermet die material
2.4 Optimization with the hybrid GA-BP method
2.4.1 GA-BP I algorithm
2.4.2 GA-BP II algorithm
2.4.3 Compositions optimization for ceramic die material
2.4.4 Optimization of hot pressing parameters
2.5 Optimization with the hybrid IGA method
2.5.1 Process of IGA
2.5.2 Compositions optimization based on IGA
2.5.3 Optimization result
2.6 Optimization with the combined algorithm of BP, GA and IA
2.6.1 Experimental data
2.6.2 Optimization ofthe hot pressing process
2.6.3 Optimization ofthe flexural strength and hardness
References
Chapter 3Optimum Design of the Structure of Combined
Ceramic-steel Die
3.1 Introduction
3.2 Structural optimization design ofthe cold extrusion combined ceramic-steel die
3.2.1 Selection ofcomponent
3.2.2 Determination ofparameters
3.2.3 Modeling
3.2.4 Orthogonal test
3.3 Thermal stress analysis ofcold extrusion die
3.3.1 Process offinite element analysis
3.3.2 Distribution oftemperature field
3.3.3 Distribution ofstress field
3.3.4 Structural optimization
3.4 Thermal stress analysis ofthe combined die at the hot extruding
3.4.1 Distribution of temperature field
……
Chapter 4 Al203 Based Nano-micro Composite Ceramic Die Material
Chapter 5 Zr02 Based Nano-nucro Composite Ceramic Die Materials
Chapter 6 Ti(C,N) Based Nano-micro Composite Cermet Die Material
Chapter 7 Friction and Wear Behayior of Ceramic Die Materials
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