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Professor Michael Swain is an internationally recognized research leader in the areas of Dental and Biomaterials research, nano-mechanics of materials and the role of disease state on the properties of biological tissue. Michael Swain has made significant contributions in a range of research areas over the past thirty years. In the 1970’s he made many significant contributions in the area of indentation deformation and fracture of brittle materials. During the 1980’s he was part of the development of advanced ceramic materials and made significant contributions in the microstructure property relations of partially stabilised zirconia ceramics as well as ceramic composites. During the 1990’s he was involved with the development of nano-indentation and its ability to characterise the properties of materials. He assisted in pioneering the use of small spherical tipped indenters in this area and showed their relevance for more critically characterising the elastic-plastic behaviour of materials. This approach is now being implemented in most commercial nano-indentation systems. He was recently co-editor of a special edition of the Journal of Materials Research devoted exclusively with developments in this field. For the past decade Michael has focussed his research to a greater extent in the area of biomaterials with an emphasis on teeth and dental materials. In the field of dental materials the rapid developments in the field of advanced ceramic applications has been the basis of a number of PhD theses and many publications listed. In addition modelling of the stresses developed during functional loading has been investigated to understand the consequence of all ceramic designs, selection of materials and their shape. Another area has been the use of nano-indentation to determine the mechanical properties of teeth and the influence of disease state on their properties. Three other areas of recent research have been associated with the selection and assessment of coatings for a heart pump (with VentraCor), that has recently been approved for clinical usage, the development of a number of patents associated with devices to measure the visco-elastic properties of biological tissue, and numerical modeling of the deformation and calcified tissue remodeling about loaded teeth and dental implants.
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论文共 320 篇作者统计合作学者相似作者
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CRC Press eBookspp.440-450, (2023)
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CRC Press eBookspp.451-463, (2023)
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CRC Press eBookspp.464-473, (2023)
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CRC Press eBookspp.347-359, (2023)
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Qiu-Lan Li, Ying-Yu Jiang,Ya-Ru Wei,Michael V. Swain,Mian-Feng Yao, Da-Sheng Li, Ting Wei,Yu-Tao Jian,Ke Zhao,Xiao-Dong Wang
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