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Fabrication and Properties of Nano and Micron Hybrid Al2O3Particles Dispersion Strengthened Copper Base Composites
Author: YangXueRui
Tutor: TianBaoHong
School: Henan University of Science and Technology
Course: Materials Science
Keywords: hybrid reinforced Al2O3-ODSC composites dynamicrecrystallization constitutive equations processing map
CLC: TB333
Type: Master's thesis
Year: 2013
Downloads: 6
Quote: 0
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Abstract
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Because of high performance with high electrical and thermal conductivity, highstrength and hardness, as well as excellent thermal stability, the Al2O3-oxidationdispersion strengthened copper (ODSC) composites have been widely applied in thefields of resistance welding as electrode, electrical contact materials replacing thesilver-based composites, integrated circuit lead frame and so on. Recently, the study ofAl2O3-ODSC composites is mainly focused on the manufacturing technology and theproperties, while the hot deformation behaviors of Al2O3-ODSC composites have notbeen widely investigated at home and abroad.The nano and micron hybrid Al2O3-ODSC composites were prepared by vacuumhot-press sintering and internal oxidation method under the condition of sinteringtemperature of950℃for2hrs, compaction pressure of30MPa and vacuum of5×10-3Pa in this paper. The effects of different Al2O3content on the microstructure andproperties of Al2O3-ODSC composites were discussed respectively. The hotdeformation behaviors of the composites were carried out with a Gleeble-1500Dthermal simulator with isothermal compression test. On the basis of the above results,the hyperbolic sine constitutive equations were established based on the dynamicmaterial model (DMM). The processing maps of the composites were also establishedfor the optimizing processing parameters of the ODSC composites during thermaldeformation. The friction and wear experiment were carried out on the hightemperature atmosphere tribo-tester, the effects of the temperature and chemicalcomposition of the composites on the wear rate and friction coefficient were alsoinvestigated, respectively.The results show that:(1) The relative densities of the ODSC,0.3%Al2O3-ODSC,0.6%Al2O3-ODSC and0.9%Al2O3-ODSC composites as sintered are higher than97%with the adding Al2O3dispersion uniformly distributed in the ODSC matrix. The hardness and the electrical conductivity are about162.5176.5HV and63.858.1%IACS, respectively. The hardness increases with the increase of the Al2O3content while the electrical conductivity decreases.(2) The true stress-strain curves ofthe ODSC composites present the typical dynamic recrystalization characteristics.With the strain increasing, at beginning the true stress increases quickly and thendecreases slowly till reaching a stable condition. According to the calculations of thethermal deformation activation energy, the hyperbolic sine constitutive equations ofthe ODSC composites were established respectively. Based on the processing mapswhich were calculated and constructed according to the dynamic material model, theoptimal processing parameters of the ODSC composites during thermal deformationwere proposed and the rheological instability zones were also determined, respectively.(3) The wear rate of the Al2O3-ODSC composites increase slightly and the frictioncoefficient decrease with the Al2O3content increase. The wear rate and the frictioncoefficient decrease with the temperature increase and especially reduce sharply abovethe temperature of300℃. The wear mechanisms of the Al2O3-ODSC composites aremainly in the form of adhesive wear and abrasive wear.
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CLC: > Industrial Technology > General industrial technology > Materials science and engineering > Composite materials > Metal - non-metallic composite materials
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