Advanced Materials Thermal and Environmental Barrier Coatings Solid Oxide Fuel Cells Custom Compositions

Similar documents
Technical Ceramics Advanced Material Solutions

PHYSICAL PROPERTIES OF La 0.9 Sr 0.1 Cr 1-X Ni X O 3-δ (X = 0-0.6) SYNTHESIZED VIA CITRATE GEL COMBUSTION

Ceramic Processing Research

FRAUNHOFER INSTITUTE FOR CERAMIC TECHNOLOGIES AND SYSTEMS IKTS BUSINESS DIVISION MATERIALS AND PROCESSES

INC. MEL Chemicals Inc management system in the USA meets the requirements of ISO/TS 16949:2002.

CERECO. Specialized knowledge in ceramic processing. Innovative Ceramic products

Arch. Metall. Mater., Vol. 61 (2016), No 2B, p

Ceramics for Energy Storage and Conversion. Dr. Doreen Edwards Dean of Engineering Prof. of Materials Science & Engineering

GAS TURBINE LOW CONDUCTIVITY THERMAL BARRIER COATING VALIDATION AND DEMONSTRATION

Alternative Thermal Barrier Coatings for Diesel Engines

A Novel Metal Supported SOFC Fabrication Method Developed in KAIST: a Sinter-Joining Method

Characterization of Dc Plasma Spray Torch and Synthesis of Lanthanum Zirconate for Thermal Barrier Coatings by Ball Milling Method

Development of Nano-Structured Solid Oxide Fuel Cell Electrodes

Sintering Behavior of Porous Nanostructured Sr-Doped Lanthanum Manganite as SOFC Cathode Material

Correlating Thermal Barrier Coating Microstructure Between Engine Run Combustion Hardware and Furnace Cycle Testing

ESL ElectroScience, 416 East Church Road, King of Prussia, PA Abstract

Anodes for Direct Hydrocarbon Solid Oxide Fuel Cells (SOFC s) Challenges in materials selection and deposition

SOLID OXIDE FUEL CELLS: Sr-DOPED LANTHANUM MANGANITES PROPERTIES

A0606. Functional SOFC Interfaces Created by Aerosol-Spray Deposition

PEROVSKITES FOR USE AS SULFUR TOLERANT ANODES. A dissertation submitted to the. Graduate School. Of the University of Cincinnati

Europium-doped Pyrochlores for Use as Thermographic Phosphors in Thermal Barrier Coatings

Content. I. Application of TBC database

Development of Novel Anode Material for Intermediate Temperature SOFC (IT-SOFC)

O 4. coating on the oxidation behavior of Fe-20Cr ferritic stainless steels for SOFC interconnects

Diamond Micron Powders

Fuel Cell - What is it and what are the benefits? Crina S. ILEA, Energy Lab, Bergen

Advances in Low Temperature Coatings for Solid Oxide Fuel Cell Components

Element diffusion in SOFCs: multi-technique characterization approach

Thermal Conductivity and Sintering Behavior of Hafnia-based Thermal Barrier Coating Using EB-PVD

Chapter 7. Evaluation of Electrode Performance by. Electrochemical Impedance

Electrolytes: Stabilized Zirconia

Ti Titanium. Leading the Way in the Production of Plasma Atomized Spherical Metal Powders. Specialists in Powders for Additive Manufacturing

Evaluation of Cathode Materials for Low Temperature ( C) Solid Oxide Fuel Cells

EVALUATION OF INTERCONNECT ALLOYS AND CATHODE CONTACT COATINGS FOR SOFC STACKS

Characterization of SrAlO:Dy nano phosphors

Fabrication of Calcium Doped PlSZT Ceramics using High Planetary Mill Method

Screen-printed La 0.1 Sr 0.9 TiO 3-δ - Ce 1-x Gd x O 2-δ anodes for SOFC application

Structure Control of Plasma Sprayed Zircon Coating by Substrate Preheating and Post Heat Treatment

SUPPLEMENTARY INFORMATION

Low Temperature Synthesis of Spinel Powders by Mechanical Grinding

SOFC Powders and Unit Cell Research at NIMTE. Jian Xin Wang, Jing Shao, You Kun Tao, Wei Guo Wang

Solid oxide fuel cells

CONTENTS INTRODUCTION EXPERIMENTAL

Ionic Conductivity and Solid Electrolytes II: Materials and Applications

Av. Prof. Lineu Prestes, Cidade Universitária (USP) CEP São Paulo - Brazil

DISCLAIMER. Portions of this document may be illegible electronic image products. Images are produced from the best available original document.

New technologies and strategies for fuel cells and hydrogen technologies in the phase of recycling and dismantling

ZYZ. High Temperature Yttria Stabilized Zirconia Insulation. Advanced Fibrous Ceramics

Effect of Nano-Sized Fe 2 O 3 on Microstructure and Hydration Resistance of MgO-CaO Refractories

MICROWAVE DIELECTRIC PROPERTIES AND DOPING MECHANISMS OF La-DOPED Ba 0.8 Sr 0.2 TiO 3

THE EFFECT OF SOL-GEL TECHNIQUE ON THE ALUMINIUM SiCp COMPOSITE

DHT-4A - ACID SCAVENGER FOR POLYMERS UNIQUE PRODUCTS THROUGH UNIQUE TECHNOLOGIES

Materials Science and Engineering Department, University of Pittsburgh, Pittsburgh, PA, 15261

THERMAL RESISTANCE AND PHASE TRANSITIONS STUDIES FOR SOME COMPOSITE MATERIALS BASED ON Al 20 3

Powder Production. Powder production methods for ceramic powders can be classified as; - Mechanical - Chemical

CERAMIC MATERIALS I. Asst. Prof. Dr. Ayşe KALEMTAŞ

Simultaneous Multilayer Coating for Batteries

FRAUNHOFER INSTITUTE FOR CERAMIC TECHNOLOGIES AND SYSTEMS IKTS CENTER OF COMPETENCE POWDER TECHNOLOGY

Preparation and characterization of metal supported solid oxide fuel cells with screen-printed electrodes and thin-film electrolyte

PRODUCTION OF Ti-Zr-Ni ALLOYS BY POWDER METALLURGY FOR NICKEL METAL HYDRIDE BATTERIES

Lanthanum ferromanganites thin films by sol gel process. Influence of the organic/inorganic R ratio on the microstructural properties

To explore the ability of the DVD technology to create dense, pinhole-free metal oxide

Preparation of BaO-PbO-Nd 2 O 3 -TiO 2 Powders by Hydrothermal Synthesis

Advanced materials for SOFCs

Conductivity of Sr, Na and Li Doped BaCeO 3

Advances in Materials for Solid Oxide Fuel Cells

PIM Technology. a powder technology for complex small engineering parts

Testing SOFCs with Blends of Hydrogen and Methane

Final publishable summary report Executive Summary

CHAPTER 4 SYNTHESIS, CHARACTERIZATION AND MICROENCAPSULATION PROCESS OF THE NANO SILICA

Powders by Solution-Combustion Technique. MnO 3±δ. and Nd 0.70

as N (12) Patent Application Publication (10) Pub. No.: US 2005/ A1 117 u/ s (19) United States Hickey et al. (43) Pub. Date: Mar.

1. Introduction. 2. Objectives

CHAPTER 7 MICRO STRUCTURAL PROPERTIES OF CONCRETE WITH MANUFACTURED SAND

Electrical Property of Thick Film Electrolyte for Solid Oxide Fuel Cell

s t c u d o r P n o r c i M 1 DI micron brochure.indd 1 2/10/2014 3:53:18 PM

R. Costa*, G. Schiller, K. A. Friedrich & R.Costa 1, F. Han 1, P. Szabo 1, V. Yurkiv 2, R. Semerad 3, L.Dessemond 4

LASER SURFACE ALLOYING (LSA) OF ALUMINIUM (AA 1200) WITH TiB 2 FOR HARDNESS IMPROVEMENT Paper (802)

Composite Ni Ba(Zr 0.1 Ce 0.7 Y 0.2 )O 3 membrane for hydrogen separation

6. DENSIFICATION BY ULTRA-HIGH PRESSURE SINTERING (UHP)

Journal of Alloys and Compounds

R. Costa* 1, F. Han 1, P. Szabo 1, V. Yurkiv 2, R. Semerad 3, L.Dessemond 4

We are IntechOpen, the world s leading publisher of Open Access books Built by scientists, for scientists. International authors and editors

SiC/Aluminum Composites Fabricated by in situ Processing using Reactive Infiltration Aid

3D EBSD of SOEC materials at Risoe DTU

XRF S ROLE IN THE PRODUCTION OF MAGNESIUM METAL BY THE MAGNETHERMIC METHOD

Chapter 3. Synthesis and characterization. of GDC electrolyte material

Study of structural and electrical properties of transitional metal doped Lead Zirconate Titanate piezoelectric compounds

PROCESS CONTROL OF THERMAL BARRIER COATING SYSTEM BY CURRENT VARIANT CHANGES TO ALTER THE MICROSTRUCTURAL AND MECHANICAL CHARACTERISTICS

Novel High-Temperature Proton and Mixed-Proton Electron Conductors for Fuel Cells and H 2 -Separation Membranes

FABRICATION OF 316L STAINLESS STEEL FOAMS VIA POWDER METALLURGY TECHNIQUE

atoms g/mol

Influence of Rare Earths on the Sintering of Zirconia-Yttria. Experimental

Gas Sensing Potential of Strontia Doped Yttria Stabilized Zirconia

D. Ehrt*, H. T. Vu, A. Herrmann and G. Völksch

These two types of analysis can therefore show uniformity of filler content, identity of filler, and concentration of filler.

Glass and Composite seals for the joining of YSZ to metallic. interconnect in Solid Oxide Fuel Cells

Design and Fabrication of Air breathing Solid Oxide Fuel Cell and its performance testing using Hydrogen gas

THE MORPHOLOGY OF SOME YBCO SUPERCONDUCTOR MATERIALS.

Development of LSCF: CGO Composite Cathodes for SOFCs by Suspension Spraying and Sintering

Transcription:

Advanced Materials Thermal and Environmental Barrier Coatings Solid Oxide Fuel Cells Custom Compositions

Advanced Materials With over 50 years of advanced ceramic expertise, Skyworks Solutions, through its Trans-Tech advanced materials product line, is the industry leader in technical ceramic materials. With our in-house manufacturing capability, we can deliver materials that range from custom particle size distributions for thermal barrier coatings and fuel cells, to machined precision components. Because we are an independent material supplier, our customers can rest assured that their proprietary material compositions will be kept confidential. Thermal and Environmental Barrier Coatings (TBCs and EBCs) Our ingots continue to be the industry standard for EB-PVD. Because of our material purity and uniform density, we are able to achieve a controlled meltpool with minimal eruptions and spits. Ingots for EB-PVD PWA 36361 (approved supplier) GE A50TF299 (approved supplier) Custom compositions, including the challenging pyrochlore forming rare earth zirconates and hafnates Thermal Spray Powders PWA 1375 (conforms) GE A50TF278 (conforms) Custom Compositions, including spray dry and sinter manufacturing processes which produces structurally stable spherical particles with excellent flow properties and high chemical purity Fuel In Electron Electrical Current Generated O2 Air In Solid Oxide Fuel Cells (SOFC) With cost levels set for the commercialization of solid oxide fuel cells, you can turn to the Trans-Tech Advanced Materials product line for a low-cost, solid-state reaction manufacturing process to help achieve your goals. We offer the complete ceramic oxide solution: H2O Cathode: Conductive perovskites, including alkalineearth doped lanthanide manganites, cobaltite, nickelates and ferrites as well as solid solutions of the above compositions Excess Fuel and Water CerMet Anode Electrolyte Ceramic Cathode Unused Gases Electrolyte: Stabilized zirconia (YSZ), as well as lanthanide or yttria doped ceria Anode Powder: Homogeneous blend of nickel oxide and YSZ Interconnects: Lanthanide chromites and specialty ceramic formulations

Custom Compositions Need a custom composition? We have a team of experienced material scientists with expertise in synthesis and analysis of ceramic oxides. When combined with our in-house analytical capabilities, the Trans-Tech Advanced Materials product line is the obvious choice for all your custom composition needs. In addition, our diverse inventory of raw materials and access to a variety of suppliers allows us to secure laboratory batches from one to 100 kilograms in just a few weeks. Our Capabilities In-house Analysis Scanning electron microscope (SEM) with (EDAX) energy dispersive X-ray capability X-Ray diffraction (XRD) X-Ray fluorescence (XRF) Particle size distribution using laser light scattering Surface area analysis using BET method High temperature electrical conductivity (up to 1000 C) Thermogravimetric Analysis (TGA) Dilatometer for thermal expansion coefficient determination Optical microscopy Production Our high volume, solid state reaction manufacturing process allows us to provide low cost materials and large homogeneous batch sizes. Typical powders range in particle sizes (D 50 ) below two microns and have surface areas up to eight m2/g. Standard forming methods can also be used to produce a variety of custom component shapes. Homogeneous lot sizes up to 3600 kgs Production capacity in excess of 500,000 kgs per year Urethane lined vibratory energy mills with ultra low wear media provide tight particle size distributions while minimizing media contamination Batch AND continuous kilns up to 1700 C in a variety of atmospheres

Trans-Tech Advanced Materials Powder Portfolio Thermal Barrier Coatings Yttria stabilized zirconia Monoclinic lanthanum aluminate oxides Cubic or tetragonal stabilized zirconia with multiple stablizer options Cubic or tetragonal stabilized hafnia with multiple stablizer options Solid solutions of the above zirconias and hafnias Lanthanide zirconate pyrochlores provides lower thermal conductivity Lanthanide hafnate pyrochlores provides higher operating temperatures Other TBC compositions by request Environmental Barrier Coatings Barium strontium aluminum silicate Ytterbium silicate Lutetium silicate Solid Oxide Fuel Cell Materials Manganites Ferrites Ferrite-cobaltites Cobaltites Doped ceria Specialty Aluminate Powders Garnets Y 3 (YAG) Y 3 :Ln 3+ (doped-yag) Ln 3 Spinels MgAl 2 (pure and doped) ZnAl 2 M II Al 2 Perovskites YAlO 3 (YAP) LnAlO 3 Specialty Aluminum Oxides LiAlO 2 Cordierite Dielectric Oxides Ba 1-x Sr x TiO 3 BaZrO 3 Ba-Ti-O x powders Ba-Ln-Ti-O powders Specialty Dielectrics Titanates, niobates, tantalates SrZrO 3 Specialty Hexagonal Ferrite Powders and Ceramic Products M-Type Ba O 19 Ba-2x M II x MIV O x 19 Z-Type Fe 24 1 ( Z) Fe 24 1 ( Z) M II Fe O 2 24 41 (MII Z) 2 Y-Type Ba 2 Ba 2 Sr 2 Sr 2 W-Type Ba Ba BaNi 2 BaMn 2 Biomedical Materials Hydroxylapatite Ca 10 (P ) 6 (OH) 2 β-tcp Ca 3 (P ) 2 SrTiO 3 CaTiO 3 CaCuTi 4

5520 Adamstown Road, Adamstown, MD 21710 Phone: 301.695.9400 Fax: 301.695.7065 Email: transtech@skyworksinc.com www.trans-techinc.com BRO363-13A 6/13