Dissertation > Excellent graduate degree dissertation topics show

Microstructure and Properties of A356 Matrix Composites Synthesized under the Pulsed Magnetic Field

Author: WangChangQin
Tutor: ZhaoYuTao
School: Jiangsu University
Course: Materials Science
Keywords: A356 matrix composites Pulse magnetic field In situ reaction Strengthening and Toughening Solidification microstructure Mechanical properties
CLC: TB331
Type: Master's thesis
Year: 2009
Downloads: 121
Quote: 0
Read: Download Dissertation

Abstract


The in-situ (Al2O3+Al3Zr)p/A356 and (ZrB2+Al3Zr)p/A356 are successfully prepared from A356-Zr(CO32, A356-(K2ZrF6+KBF4) systems via melt in-situ reaction under pulsed magnetic field. The Optical Microscope (OM), Scanning Electron Microscope (SEM), EDS, X-ray Diffractomer (XRD) and electronic universal testing machine are used to determine the solidification structures of the as-prepared composites, the morphologies and distributions of the in situ reinforcement particles in the aluminum matrix and the mechanism of pulsed magnetic field is investigated. The mechanical properties of the composites are investigated and their nature and mechanisms are analyzed.The results show that the best proportion of strengthening and toughening elements are 0.02% Sr, 0.2% A1-5Ti-1B and 0.3% RE in the A356 matrix alloy, the reinforcements synthesized from A356-Zr(CO32and A356-(K2ZrF6+KBF4) systems by melt in-situ reaction under pulsed magnetic field are Al2O+Al3Zr and Al3Zr+ZrB2, respectively. With the assistance of the pulsed magnetic field, the process of the melt in situ reaction is accelerated, and the nucleation ratio of the in situ particles increased, the particles fined, and the microstructure of the composites optimized the over-all properties of the composites improved. Furthermore, the process of reaction is stable, and there is no need of mechanical stirring, therefore it plays a role in industrial production and application of composite. The mechanism of the in situ reaction by the pulsed magnetic field is due to the micro turbulent action force initiated by the pulsed magnetic field, the different stress status among the particles and the macro vibration and the stirring force of the melt.The SEM results of the composites fabricated from A356-Zr(CO32 reaction system under pulsed magnetic field indicates that the in situ reinforcement particles Al2O3 and Al3Zr are well distributed in the aluminum matrix, the size is fine, between 0.5 and 1μm, and some are nano-sized, the interfacial banding between the in-situ Al3Zr particle and matrix is good as well. The morphologies of Al3Zr are particulate-shape or spheroid-shape; the morphologies of Al2O3 are mainly particulate-shape. When strengthening and toughening element Sr, Al-5Ti-1B and RE are added, the structure of matrix and reinforcements are refined at the same time, the volume fraction of the particles is increased and the distributions of the particles are uniform, the size is between 0.1 and 0.3μm, as well as, the eutectic Si is modified. In the composite prepared from A356-(K2ZrF6+KBF4) system, the particles are fine and blunt, and the diffusion is uniformly.The mechanical properties test results show that the tensile intensity and yield intensity of (Al3Zr+Al2O3)p/A356 composite and (Al3Zr+ZrB2)p/A356 composite are enhanced with the incensement of the pulsed magnetic field intensity. For (Al3Zr+Al2O3)p/A356 composite, when the magnetic intensity is 0.07T,σb andσs of the composite are up to 395.12MPa and 338.25MPa, increased by 14.05%and 20.94% respectively which coMPared with the composite with no magnetic field .For (Al3Zr+ZrB2)p/A356 composite,σb andσs increased by 16.14% and 19.07% respectively, are up to 390.55MPa and 333.87MPa. With the time of the pulsed magnetic field increasing,σb andσs are increasing and then decreasing. Especially when the time is up to 20min, theσb andσs of (Al3Zr+Al2O3)p/A356 composite are 393.82MPa and 331.96MPa, respectively, and increased by 13.68% and 18.69% which coMPared with composites with no magnetic field; theσb andσs of (Al3Zr+ZrB2)p/A356 composite are increased by 19.25% and 20.13% respectively, reached up to 401.03MPa and 336.83MPa .The tensile strength of composite increased by 11.01% than composite under zero-magnetic field ,and is up to 384.56MPa with the addition of Sr, Al-5Ti-1B and RE; on the basis of above ,when the pulsed magnetic field is added ,the tensile strength of the composite increased 18.92%,reached up to 411.97MPa.The strength mechanisms of the as-prepared aluminum matrix composites are Orowan strength, dispersion strength, fine-grained strength, solid -solution strength and dislocation.

Related Dissertations

  1. Reactive Hot-Pressing and Mechanical Properties of (ZrB2-ZrO2)/BN Composites,TB332
  2. Research on Welding Characteristics of CO2 Laser-GMA Hybrid Welding for Ultra-Low Carbon Bainitic Steel,TG456.7
  3. Microstructure and Mechanical Properties of Mg-Zn-Y-Zr Alloys,TG146.22
  4. Study on the Recycling of Post-Consumer Polyester Textiles,X791
  5. Fabricationand Properties of SiC-AlN Multiphase Ceramics Prepared by Gelcasting,TQ174.62
  6. Synthesis of Polysulfones and Modification for Epoxy Adhesives,TQ433.437
  7. Pyrazine derivatives based on the assembly of coordination polymers and Properties,O633.5
  8. Structure and Characterization of Room Temperature Self-crosslinked Acrylonitrile-butadiene-styrene,TQ325.2
  9. The Research on Extrusion Parameters Through the Plate Billet of Magnesium Alloy,TG379
  10. Modification of Talc Powder and Its Reinforcing and Toughening on Recycled Polypropylene,TQ325.14
  11. Effect of Adding ZrO 2 Nanopowder on Microstructure and Mechanical Properties of Carbon Steel,TB383.1
  12. Preparation of Surface-functionalized Graphene and Its Influence on the Mechanical Properties of Nanocomposite Materials,TB332
  13. Preperation of Low Friction and Wear Resistant High-Purity Alumina Ceramic,TQ174.1
  14. Reaction Sintering Preparation of Titaniferous Compound Ceramic Composites by Two-step Method,TQ174.1
  15. The Study of Forming Process and Properties of PTT/PET Skin-Core Composite Monofilament with Large Diameter,TQ340.64
  16. Research on Structure and Mechanical Property of Hook and Loop Fastener,TE931.2
  17. Studies of the Key Technology of Capacitor Bidirectional Charging System Based on SCR-switched,TM53
  18. Rolled Mg-Zn-Ce-Zr (Mn) alloy microstructure and mechanical properties of,TG339
  19. Simulated lunar ambient temperature magnesium alloy microstructure and mechanical properties of,TG146.22
  20. Shanghai Comprehensive Test of mechanical properties of clay and constitutive modeling,TU411.3
  21. A Study on the Fullerene Nanocomposites,TB383.1

CLC: > Industrial Technology > General industrial technology > Materials science and engineering > Composite materials > Metal composite materials
© 2012 www.DissertationTopic.Net  Mobile