Dissertation > Excellent graduate degree dissertation topics show
Manufacture and Property Research on FeAl Based Porous Material
Author: HeYuanZhang
Tutor: XuHong;LiuJingLei
School: East China University of Science and Technology
Course: Chemical Process Equipment
Keywords: FeAl porous material sintering mechanical alloying corrosion
CLC: TF124.5
Type: Master's thesis
Year: 2012
Downloads: 108
Quote: 0
Read: Download Dissertation
Abstract
|
Porous material, as a kind of excellent functional structure materials, is widely used in various occasions, such as gas liquid filtration, separation, coal gasfication, flue gas purification, catalyst carrier, et al. At high temperatures oxidizing and sulfidizing corrosion environment, the conventional materials are difficult to meet the increasing challenges. FeAl based porous material gets more and more attention for its excellent resistant and mechanical manufacture performances.This paper studied the controllable preparation of FeAl intermatellic compounds porous materials by the means of elemental powder solid phase diffusion followed by high temperature reaction sintering technology. Fe/Al composite powders were produced by high-energy ball milling. By the means of DSC, XRD and SEM, the microstructure evolution of Fe/Al powders affected by milling time and milling rotational speed was studied. The effect of process parameters on volume expansion, porosity, phase response as well as the hole forming were investigated. High temperature oxidation, sulfidation and porous material permeability experiment device were built for the properties characterization of the prepared FeAl based porous material. Result showed that, at 600℃after 50h air oxidation, the FeAl porous material had a weight gain of 0.06%, far better than the 0.15% weight gain of 316L porous material; at 600℃after 60h sulfidation, FeAl porous material had a weight gain of 0.13%, far better than the 5.3%weight gain of 316L porous material. The most probable pore size of prepared FeAl porous material was 8μm and the permeability was 0.7×10-12m2. The prepared porous material manufactured by elemental powder solid phase diffusion followed by high temperature reaction sintering process had excellent comprehensive performance.
|
Related Dissertations
- Preparation and Tribological Properties of TZ3Y20A-SrSO4 Ceramic Matrix Composites,TB332
- Preparation of Micro-Arc Oxidation Ceramic Coating on Mg Alloy and the Research of Galvanic Corrosion,TG174.453
- Anti-corrosion Property of Flake Zinc Epoxy Coating Doped with Rare Earth in SRB,TQ630.1
- Temperature and Pressure Drop Analysis and Its Application in CO2 Corrosion Evaluation of Subsea Pipeline,TE832
- Research on Electrochemical Synthesis and Application of Conductive Polyaniline,O633.21
- Research on Caster Oil-based Cold Rolling Oil,TE666
- Influence of Various PH and the Treating Time on Mechanical Property and Surface Structure of Ni-ti Orthodontic Wire,R783.5
- Lithium anode material calcined alumina crucible Development,TQ174.6
- Research on Fabrication of Sc2O3 Nanopowders and Transparent Ceramics,TQ174.1
- Study of the Preparation and Properties of the Trivalent Chromium Black Passivation with Non-cobalt Sulfate System,TG174.4
- Electroless Ni-Pon the Bulk Nanocrystalline Ingot Iron,TQ153.1
- The Research on Preparation Technology and Sintering Behavior of Rare Earth Aluminates (Dy3Al5O12、 NdAlO3、LaAl11O18),TB383.3
- Study on Corrosion Resistance and Condensation Property of Ni-P/Nano SiO2 Composite Coatings,TG174.4
- Studies on Hard Films of Stainless Steel by Magnetron Sputtering,TG174.44
- Study on Amorphous Formation Ability and Performance of Pt-Pd-Cu-P Alloys,TG139.8
- Reaction Sintering Preparation of Titaniferous Compound Ceramic Composites by Two-step Method,TQ174.1
- Study of the Effect of High Voltage Transmission Lines on Buried Metal Pipeline Corrosion,TE988
- Test Proof of Studying on Space Tank’s Crack Enlargement Effects under Over-Loading,O346.1
- Removal of Dye Elements from Colored Effluents by Porous Material,X791
- Study on the Photoluminescence of Porous Silicon Prepared by Anodization Methods with Positron Annihilation Technique,TN304.12
CLC: > Industrial Technology > Metallurgical Industry > Metallurgical Technology > Powder metallurgy (metal ceramic technology ) > Powder molding, sintering and post-processing > Sintering process
© 2012 www.DissertationTopic.Net Mobile
|