ARDC Research Link Australia Research Link Australia   BETA Research
Link
Australia
  • ARDC Newsletter Subscribe
  • Contact Us
  • Home
  • About
  • Feedback
  • Explore Collaborations
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation

Need help searching? View our Search Guide.

Advanced Search

Current Selection
Field of Research : Ceramics
Field of Research : Materials Engineering Not Elsewhere Classified
Clear All
Filter by Field of Research
Ceramics (11)
Materials Engineering Not Elsewhere Classified (11)
Materials Engineering (10)
Condensed Matter Physics - Electronic and Magnetic Properties; Superconductivity (3)
Solid State Chemistry (2)
Alloy Materials (1)
Chemical Engineering Not Elsewhere Classified (1)
Chemistry Of Catalysis (1)
Nanotechnology (1)
Other Electronic Engineering (1)
Filter by Socio-Economic Objective
Other (5)
Electricity transmission (3)
Energy storage (3)
Ceramics (2)
Ceramics, glass and industrial mineral products (2)
Energy distribution not elsewhere classified (2)
Cement and concrete materials (1)
Chemical sciences (1)
Energy transformation (1)
Inorganic industrial chemicals (1)
Integrated circuits and devices (1)
Integrated systems (1)
Metals (composites, coatings, bonding, etc.) (1)
Navy (1)
Other non-ferrous metals (e.g. copper,zinc) (1)
Renewable energy (1)
Renewable energy not elsewhere classified (e.g. geothermal) (1)
Solar-thermal electric (1)
Telecommunications (1)
Filter by Funding Provider
Australian Research Council (11)
Filter by Status
Closed (11)
Filter by Scheme
Discovery Projects (6)
Linkage Projects (3)
Linkage Infrastructure, Equipment and Facilities (2)
Filter by Country
Australia (11)
Filter by Australian State/Territory
NSW (8)
ACT (3)
QLD (3)
VIC (2)
WA (2)
  • Researchers (42)
  • Funded Activities (11)
  • Organisations (28)
  • Funded Activity

    Discovery Projects - Grant ID: DP0666771

    Funder
    Australian Research Council
    Funding Amount
    $200,000.00
    Summary
    Development of conductive buffer layers for RABiTS-based coated conductors. YBCO coated conductor has already been identified and developed as far as second generation HTS wire in power applications. Major advances have been made in the last 10 years in coated conductor development mainly in all aspects: substrate, buffer layer and YBCO layer. The research on conductive buffers layer will improve and expand the R&D on coated conductor in Australia. On the economic side, dramatic advantages and s .... Development of conductive buffer layers for RABiTS-based coated conductors. YBCO coated conductor has already been identified and developed as far as second generation HTS wire in power applications. Major advances have been made in the last 10 years in coated conductor development mainly in all aspects: substrate, buffer layer and YBCO layer. The research on conductive buffers layer will improve and expand the R&D on coated conductor in Australia. On the economic side, dramatic advantages and savings could be achieved if the coated conductors can be put to use. Superconductivity can have a significant role in deregulated electricity markets and in lessening CO2 emissions and other environmental impacts.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP0984525

    Funder
    Australian Research Council
    Funding Amount
    $390,000.00
    Summary
    Understanding nanostructure in lead-containing piezoceramics - the key to improved and environmentally-friendly materials. Lead-containing piezoelectric ceramics form the basis of multi-billion dollar industries, posing an increasingly serious environmental threat due to the toxicity of lead. By obtaining a detailed understanding of how their properties arise from their nanoscale structure and chemistry, our research will lead to improvements in existing materials and aid the quest for environme .... Understanding nanostructure in lead-containing piezoceramics - the key to improved and environmentally-friendly materials. Lead-containing piezoelectric ceramics form the basis of multi-billion dollar industries, posing an increasingly serious environmental threat due to the toxicity of lead. By obtaining a detailed understanding of how their properties arise from their nanoscale structure and chemistry, our research will lead to improvements in existing materials and aid the quest for environmentally-friendly alternatives. We will use a methodology for the elucidation of local structure and dynamics in which we are world leaders. The project will further enhance our standing in the field, provide excellent research training for students and early-career researchers and highlight the power and potential of Australia's new Synchrotron and OPAL research reactor.
    Read more Read less
    More information
    Funded Activity

    Linkage Projects - Grant ID: LP0990083

    Funder
    Australian Research Council
    Funding Amount
    $450,000.00
    Summary
    Investigation of novel magneto-optic materials exhibiting high Faraday figure of merit. Magneto-optical materials have a wide range of potential applications in consumer products, telecommunications and defence. Nanotechnologies based on these materials offer an even broader range of emerging applications. Understanding and participating in the development of magneto-optic technologies will therefore be critical to maintaining Australia's knowledge base and expertise in future technological adv .... Investigation of novel magneto-optic materials exhibiting high Faraday figure of merit. Magneto-optical materials have a wide range of potential applications in consumer products, telecommunications and defence. Nanotechnologies based on these materials offer an even broader range of emerging applications. Understanding and participating in the development of magneto-optic technologies will therefore be critical to maintaining Australia's knowledge base and expertise in future technological advances. Given the early stages of development of these technologies, Australia's expertise in material science and the patent rights held by Australian companies in this area, Australia has the opportunity to make major contributions to this field, and the potential to capitalise on the application of these technologies in niche markets.
    Read more Read less
    More information
    Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0989858

    Funder
    Australian Research Council
    Funding Amount
    $857,230.00
    Summary
    Fabrication Facilities of Atomic-Scale and Nanostructured Materials for the Development of Novel Devices, Sensors, and Biomedical Components. Australia's energy, mining, metallurgical, defence, biomedical industries are spearheading the advancement of technologies in the global competitive market. They are the engines of Australian economy's strength. Future progress of these industries will be largely driven by advances in materials. The installation of the proposed facilities will add a new .... Fabrication Facilities of Atomic-Scale and Nanostructured Materials for the Development of Novel Devices, Sensors, and Biomedical Components. Australia's energy, mining, metallurgical, defence, biomedical industries are spearheading the advancement of technologies in the global competitive market. They are the engines of Australian economy's strength. Future progress of these industries will be largely driven by advances in materials. The installation of the proposed facilities will add a new dimension to high-level research performance and significantly enhance the capability for the development of advanced materials and biomedical components in Australia. The continual development of advanced material and biomedical components will potentially provide a sustainable means for meeting the increasing global challenge for the industries.
    Read more Read less
    More information
    Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0989123

    Funder
    Australian Research Council
    Funding Amount
    $575,000.00
    Summary
    Spark Plasma Sintering (SPS) Facility for Advanced Materials Processing. The establishment of the first Spark Plasma Sintering (SPS) facility would significantly enhance Australia's capacity in manufacturing of advanced materials, especially the more sophisticated and specialized materials, which is a National Research Priority. This facility will benefit a large number of researchers and projects in Australia's premier research organisations and will also meet the needs of organisations outside .... Spark Plasma Sintering (SPS) Facility for Advanced Materials Processing. The establishment of the first Spark Plasma Sintering (SPS) facility would significantly enhance Australia's capacity in manufacturing of advanced materials, especially the more sophisticated and specialized materials, which is a National Research Priority. This facility will benefit a large number of researchers and projects in Australia's premier research organisations and will also meet the needs of organisations outside the consortium. It will allow Australian researchers to remain at the leading edge of research and enhance collaborations in advanced materials nationwide. The successful outcomes of these activities will underpin the advancement in many areas of research and technology developments in the country.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP0879738

    Funder
    Australian Research Council
    Funding Amount
    $320,000.00
    Summary
    Geopolymers for nuclear applications. With the pressing need for the reduction of Greenhouse emissions from electricity generation in Australia, one option that must be seriously considered is nuclear energy. However, the issue of waste storage is a highly significant one that must be addressed. Geopolymeric cements are expected to perform much better than traditional Portland cements in nuclear applications, both for solidification of radioactive wastes and also for the construction of undergro .... Geopolymers for nuclear applications. With the pressing need for the reduction of Greenhouse emissions from electricity generation in Australia, one option that must be seriously considered is nuclear energy. However, the issue of waste storage is a highly significant one that must be addressed. Geopolymeric cements are expected to perform much better than traditional Portland cements in nuclear applications, both for solidification of radioactive wastes and also for the construction of underground waste storage bunkers. This project will use Australia's strong existing knowledge in geopolymers research, and apply it to the development of materials to fill the need for environmentally secure waste storage solutions.
    Read more Read less
    More information
    Funded Activity

    Linkage Projects - Grant ID: LP0991794

    Funder
    Australian Research Council
    Funding Amount
    $180,000.00
    Summary
    New Generation Lead-free Piezoelectric Ceramics for Acoustic Sensor Technologies. Cooperative research between University of NSW and Thales Australia to design new Lead-free piezoceramics is of critical importance to Australia's strategic leadership in underwater acoustic technology. This area has been identified by the Department of Defence to be a critical defence capability and essential to Australia's exploration of oil, gas, and minerals. Improved and new transducer components will provide .... New Generation Lead-free Piezoelectric Ceramics for Acoustic Sensor Technologies. Cooperative research between University of NSW and Thales Australia to design new Lead-free piezoceramics is of critical importance to Australia's strategic leadership in underwater acoustic technology. This area has been identified by the Department of Defence to be a critical defence capability and essential to Australia's exploration of oil, gas, and minerals. Improved and new transducer components will provide significant economic benefit to Australia through increased export of sonar technology, particularly to Europe and all Restriction of Hazardous Substances (RoHS) compliant countries. The project will produce highly skilled graduates ensuring an on-going basis for Australia's future innovation in this area.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP0559872

    Funder
    Australian Research Council
    Funding Amount
    $722,708.00
    Summary
    Improvement of Critical Current Density of High Temperature Superconductors by Reforming Microstructure at Nanoscale. Strengthening Australia's capability and leading position in this frontier technology; Providing human resources for the superconductivity technology industries in Australia; Transferring new technology gained from this research to the superconductivity technology industries in Australia; Generating patents to enrich Australian intellectual property base; Strengthening the c .... Improvement of Critical Current Density of High Temperature Superconductors by Reforming Microstructure at Nanoscale. Strengthening Australia's capability and leading position in this frontier technology; Providing human resources for the superconductivity technology industries in Australia; Transferring new technology gained from this research to the superconductivity technology industries in Australia; Generating patents to enrich Australian intellectual property base; Strengthening the collaborations between Australia and other countries, such as Japan where research is also at the forefront in this field; Providing training for Australian research students and engineers.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP0987142

    Funder
    Australian Research Council
    Funding Amount
    $330,000.00
    Summary
    Controlled synthesis of well-aligned single crystalline one-dimensional semiconducting nanomaterials for energy application. This proposal is at the forefront of a number of important fields, and therefore the outcomes are expected to be of great interest to a broad spectrum of industry sectors, including advanced materials, nanotechnology, and sustainable energy. The novel synthetic methods and the targeting material system could lead to advanced materials for energy application. The outcomes o .... Controlled synthesis of well-aligned single crystalline one-dimensional semiconducting nanomaterials for energy application. This proposal is at the forefront of a number of important fields, and therefore the outcomes are expected to be of great interest to a broad spectrum of industry sectors, including advanced materials, nanotechnology, and sustainable energy. The novel synthetic methods and the targeting material system could lead to advanced materials for energy application. The outcomes of this project will place Australian researchers among the pioneering groups in this area and will benefit several major technology-related fields including materials manufacture technology and sustainable energy.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP0881739

    Funder
    Australian Research Council
    Funding Amount
    $330,000.00
    Summary
    High Performance Coated Conductors by Chemical Solution Deposition. Strengthening Australia¡|s capability and leading position in this frontier technology; Providing human resources for the superconductivity technology industries in Australia; Transferring new technology gained from this research to the superconductivity technology industries in Australia; Generating patents to enrich Australian intellectual property base; Strengthening the collaborations between Australia and other countri .... High Performance Coated Conductors by Chemical Solution Deposition. Strengthening Australia¡|s capability and leading position in this frontier technology; Providing human resources for the superconductivity technology industries in Australia; Transferring new technology gained from this research to the superconductivity technology industries in Australia; Generating patents to enrich Australian intellectual property base; Strengthening the collaborations between Australia and other countries, such as Japan where research is also at the forefront in this field; Providing training for Australian research students and engineers.
    Read more Read less
    More information

    Showing 1-10 of 11 Funded Activites

    • 1
    • 2
    Advanced Search

    Advanced search on the Researcher index.

    Advanced search on the Funded Activity index.

    Advanced search on the Organisation index.

    National Collaborative Research Infrastructure Strategy

    The Australian Research Data Commons is enabled by NCRIS.

    ARDC CONNECT NEWSLETTER

    Subscribe to the ARDC Connect Newsletter to keep up-to-date with the latest digital research news, events, resources, career opportunities and more.

    Subscribe

    Quick Links

    • Home
    • About Research Link Australia
    • Product Roadmap
    • Documentation
    • Disclaimer
    • Contact ARDC

    We acknowledge and celebrate the First Australians on whose traditional lands we live and work, and we pay our respects to Elders past, present and emerging.

    Copyright © ARDC. ACN 633 798 857 Terms and Conditions Privacy Policy Accessibility Statement
    Top
    Quick Feedback