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Titlebook: Contact Problems for Soft, Biological and Bioinspired Materials; Feodor M. Borodich,Xiaoqing Jin Book 2022 Springer Nature Switzerland AG

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书目名称Contact Problems for Soft, Biological and Bioinspired Materials
编辑Feodor M. Borodich,Xiaoqing Jin
视频video
概述Provides ground-breaking research topic.Work describes effective analytical models and schemes for analysis of soft materials, biocontacts.Written by leading research experts
丛书名称Biologically-Inspired Systems
图书封面Titlebook: Contact Problems for Soft, Biological and Bioinspired Materials;  Feodor M. Borodich,Xiaoqing Jin Book 2022 Springer Nature Switzerland AG
描述.This book contains contributions from leading researchers in biomechanics, nanomechanics, tribology, contact mechanics, materials science and applications on various experimental techniques including atomic force microscopy (AFM) for studying soft, biomimetic and biological materials and objects. Biologists, physicists, researchers applying methods of contact mechanics and researchers testing materials using indentation techniques along with many other applied scientists will find this book a useful addition to their libraries. Moreover, several reviews in this book are written as introductions to several important and rather sophisticated research areas such as depth-sensing indentation, studying of biological cells by AFM probes, mechanics of adhesive contact and contact between viscoelastic (hereditary elastic) solids. The book containing new theoretical models, results of experimental studies and numerical simulations, along with reviews of above mentioned areas of contact mechanics in application to biological systems, would be beneficial for researchers in many areas of biology, medicine, engineering, mechanics and biomimetics.  .
出版日期Book 2022
关键词Contact Mechanics; Bio-material; soft viscoelstic materials; biomimetics; biological systems
版次1
doihttps://doi.org/10.1007/978-3-030-85175-0
isbn_softcover978-3-030-85177-4
isbn_ebook978-3-030-85175-0Series ISSN 2211-0593 Series E-ISSN 2211-0607
issn_series 2211-0593
copyrightSpringer Nature Switzerland AG 2022
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Rudolf O. Meudt,Malte Hinselmannerials exhibit time-dependent or a very large non-linear strain behaviour known as viscoelasticity/viscoplasticity and hyper elasticity or viscous-hyper elasticity respectively. A comparative study using nano-indentation of polymeric materials has been performed through combined experimental and Fin
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Rudolf O. Meudt,Malte Hinselmannliving organisms is huge. They may be hard and soft, elastic and viscoelastic, quite often sizes of constitutive parts are within micro or nano scales and they can be considered as structured biocomposite materials. The traditional methods of materials testing are not applicable to evaluating mechan
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