Dissertation > Excellent graduate degree dissertation topics show
Study on Reparation and Performance of Laser-Modified Tic/β-Ti Composite Coatings
Author: GuanXiangZuo
Tutor: ZhangChunHua;ZhangSong
School: Shenyang University of Technology
Course: Materials Science
Keywords: Titanium Alloy Laser-cladding In-situ Fromed Frictional Wear
CLC: TB33
Type: Master's thesis
Year: 2009
Downloads: 102
Quote: 2
Read: Download Dissertation
Abstract
|
Titanium alloy has excellent property,although Ti6Al4V alloy is a well-know commercial titanium based alloy for aeronautical and aerospace industry,the wear resisting property should be explored,in order to widen the application scope,the paper uses laser melt in-suit forming reaction technology to prepare TiC reinforcedβ-Ti composite coating on Ti6Al4V alloy.Mechanism of in-suit forming reaction coating on the surface of Ti6Al4V alloy and frictional wear property are studied by Scanning Electron Microscope, X-ray Diffraction,Schematic of Wearing Test Machine,Micro Hardness Tester and other equipments.Thermodynamics analysis shows that using Cr3C2-Ti powder to transform TiC particles reinforced titanium based composite by laser-cladding process is feasible.The reaction is spontaneous.Though designing the ratio of Cr3C2-Ti powder,the paper prepares successfully TiC particles reinforced titanium based composite coating by laser irradiation in controlled atmosphere processing booth.Alloying component of coating dilutes by controlling alloying element of substrate with appropriate processing parameter,The substrate of composite depends on the ratio of the melt alloy powder,β-Ti which is suitable to displaying the wear resisting property was formed in laser melt,freezing,crystallizing replacement by controlling the ratio.The frictional wear property of the TiC/β-Ti composite in comparison with Ti6Al4V alloy is studied.The results show that the abrasion of Ti6Al4V alloy is characterized as sticking abrasion,the abrasion of TiC/β-Ti composite coating inverts to lightness abrasion. The result of the observation of the grinding crack and the grinding of the composite coating shows that during the wear process,the in-situ formed TiC particle shows little tendency to peel off from the matrix andβ-Ti substrate which is rich of Cr is able to deformed simultaneously,thus TiC particles and it might have good compatibility.The abrasion mechanism of the composite coating may be a series of micro-plough, push-millings and micro-cracking.In the experiment,there is an optimal volume fraction of the reinforced TiC particles.After laser-cladding process,the wear resisting property increases 3.4 times to substrate.
|
Related Dissertations
- Study on Laser Surface Modification of Two Kinds of Super-alloys,TG174.4
- Evaluation of Biocompatibility of Titanium Alloy Coating by Polyurethane,R318.08
- Research on Laser Cladding 4169 Superalloy Coating,TG174.44
- Valve material surface modification layer prepared a variety of techniques Study,TG174.44
- NiTi alloy coated stainless steel surface preparation,TG174.44
- Medical magnesium alloy surface laser cladding Zr 60 Ti 6 Cu 19 Fe 5 Al 10 amorphous coating,TG174.44
- Study on the Friction Performance of MAO Film on TC4 Titanium Alloy,TG174.451
- Research on Constitutive Equations for TC6 and Microstructure Simulation of Blade,TG316
- The Research on the Non-equilibrium Microstructure of Ti6Al4V Alloy,TG146.23
- Finite Numerical Simulation of Temperature in Feeding Powder Laser Cladding,TG174.44
- Research of Technology and Properties of Laser Cladding on Ni/WC-Y2O3 Surface of 35CrMo Steel,TG174.44
- Study on Uniformity and Tribological Behavior of DLC Film on Surface of Ceramics,TG174.453
- Control System and Laser Cladding Detection of Hardware Research,TG174.4
- Research on the Software of Laser Cladding Control and Detection System,TP182
- Electron beam welded joints under fatigue properties and residual stress of,TG405
- Simulation and Experiment Research of Fatigue Life Improvement of Titanium Alloy by Laser Shock Processing,TG665
- The in situ synthesis of composite particles enhanced laser cladding of nickel-based layer,TG174.44
- Titanium - aluminum alloy electrodeposition in ionic liquid,TG146.23
- Study of Super-hard Multi-constituent Composite Nitride Reactive Films,TG174.4
- Research on Alloy Design and Preparation of Ti-12.5Zr-10Nb-2.5Sn Alloy for Dental Restoration,TG146.23
- Research of Technology and Properties of Laser Cladding on Ni/Al2 O3-La2O3 Surface of 38CrMoAl Steel,TG174.44
CLC: > Industrial Technology > General industrial technology > Materials science and engineering > Composite materials
© 2012 www.DissertationTopic.Net Mobile
|