Dissertation > Excellent graduate degree dissertation topics show
Research on Composite Hard Anodic Oxidation of Aluminum Alloys and Mechanism
Author: YangYongZe
Tutor: ChenSuiYuan
School: Northeastern University
Course: Materials Science
Keywords: 2024 Al-Cu alloy hard anodizing pulse power supply heat treatment co-deposition
CLC: TG174.44
Type: Master's thesis
Year: 2009
Downloads: 102
Quote: 0
Read: Download Dissertation
Abstract
|
In this paper, hard anodizing and composite anodic oxidation on 2024 Al-Cu alloy and heat treatment technology of the oxide film were investigated to obtain a novel technique of preparing anodizing film with excellent wear properties and low friction coefficient, which settle experimental and theoretical foundation of application of composite anodic oxidation technique.Basing on sulfuric acid, oxalic acid and sulfamic acid as basic electrolyte, the effect of bath solution components, anodizing temperature and four kinds of power waveforms on hardness and thickness of the hard anodizing layer on 2024 Al-Cu alloy was investigated. This experiment indicated that hardness of the pulse power oxide film was higher than that of the single-direct-current power, especially a hard film with hardness of more than 400HV could be obtained for double pulse power at 10℃.The hard anodizing film with hardness of about 400HV was fabricated by employing direct current power and treated it under protection of hydrogen atmosphere in a temperature range of 100-400℃.The results showed that a trend of great increase of hardness and the decrease of toughness with increasing heat-treatment temperature, the optimized temperature was 250℃, the samples with hardness of 606HV and minimum wear loss of 11mg possessed high hardness and toughness of the surface and good anti-wear properties. It had been found that structure units of the oxide film became rather tightness and some void flaws declined and thin-long pipes in the cross-section ranged close with increasing temperature via analysis of micro-images of the anodizing layer. In order to improve the hardness and wear properties, composite hard anodic oxidation and co-depositing secondary phase in the film were applied. The experimental results proved that the film was strengthened by direct current composite hard anodic oxidation with adding SiC particles. When adding content of SiC reached to 12g/L, the hardness of oxide film was enhanced from about 400HV to 440HV, the wore loss of oxide declined to 8mg from 25mg; the hardness of the composite hard anodizing film obtained by direct current composite anodic oxidation with adding into PTFE solid lubricating material had been changed a little, hardness of composite hard anode oxide film with adding into PTFE 25ml/L was still about 400HV, whereas average friction coefficient was less than 0.1 and the lowest wore loss was 7mg. Nano-SiC inlayed into an oxide film were exposed gradually in the process of friction, owing to the ability to bear most loads, they played an important role in improvement of wear properties of the oxide film, PTFE solid lubricating material composite in the oxide film contacting with a counter-body could form an lubricating layer, which decreased the friction coefficient and played a self-lubricating part to protect the anodizing film.
|
Related Dissertations
- Study on Key Technology and Its Physiological Basis of Virus Elimination and Rapid Propagation of Phalaenopsis,S682.31
- Study on the Subsurface Crack of Supporting Roller Made of Austempered Ductile Iron,TG156.3
- Thermophysics Research on Postharvest Spherical Fruit during Heat Treatment,S66
- Research on the Microstructures and Properties of Semi-solid ZL201 Alloy Die Forging,TG146.21
- The Research on Rolling and Heat Treatment Technology of AZ31 Magnesium Alloy Thin Sheet,TG166.4
- The Design and Implementation of Control System for Wire-steel Heat Treatment Direct-fired Furnace,TP273
- Study on Process Method and Parameter Optimization of the Remained-heat Treatment of Marine Heavy Forgings,TG316
- Reseach on Wear Resistance and Contact Fatigue Performance of Alloy Cast Steel for Roller,TG333.17
- Study on Liquid Crystalline Properties and Fiber Forming Technology of Poly (p-Phenylene Terephthalamide) Solution,TQ340.6
- Synthesis and Electromagnetic Properties of Co/SiO2 Composite Powder,TB383.1
- AZ31 Magnesium Alloy Electroless Ni-P Amorphous Plating and Its Crystallization,TG174.44
- Fea Analysis of Residual Stress for Heat Treatment of Oil Casing,TG156.3
- Microstructure and Properties of chromium cast iron grinding balls,TG115
- 23MnB Shoe quality control of heat treatment,TG156
- Cutting Tool Vacuum Heat Treatment Expert System Based on Cross-Hybrid Reasoning,TP182
- An Analysis and Improvement Measurements on Production Logistics in BaoSteel Heavy Plate,F259.2
- Experimental Study of Yellow Phosphorus Slag Glass - Ceramics,TQ171.733
- Electroless Deposition of Ni-W-P Coating on AZ91D Magnesium Alloy,TQ153.1
- Electrodeposited Rare Earth-Iron Group Magnetic Films and Their Magnetism,TB383.2
- Study of the Laser Surface Treatment of Inconel 718 Alloy,TG174.4
- Effects of Alloying and Heat Treatment on the Microstructure and Property of AZ91D Magnesium Alloy Prepared by the Lfc Process,TG166.4
CLC: > Industrial Technology > Metallurgy and Metal Craft > Metallurgy and Heat Treatment > Metal corrosion protection,metal surface treatment > Corrosion control and protection > Metal surface protection technology > Metal complex layer of protection
© 2012 www.DissertationTopic.Net Mobile
|