24小时热门版块排行榜    

查看: 1700  |  回复: 11
【奖励】 本帖被评价4次,作者lrj9987增加金币 3.25
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

lrj9987

木虫 (正式写手)


[资源] 【资源】生物材料领域重要综述

近年来生物材料领域很经典的综述。
欢迎下载,评价
http://d.namipan.com/d/f0c0fa320 ... 3c086c291f6cf83c901
回复此楼

» 猜你喜欢

» 本主题相关商家推荐: (我也要在这里推广)

» 本主题相关价值贴推荐,对您同样有帮助:

已阅   关注TA 给TA发消息 送TA红花 TA的回帖

zoujie

铁杆木虫 (职业作家)



小木虫(金币+0.5):给个红包,谢谢回帖交流
支持楼主!!!!!!!!!!!!!
5楼2009-06-30 11:41:31
已阅   关注TA 给TA发消息 送TA红花 TA的回帖
查看全部 12 个回答

zhangwj

荣誉版主 (职业作家)


200多页的超过25M的综述,本版有人共享过。

★ ★
小木虫(金币+0.5):给个红包,谢谢回帖交流
薰衣草儿(金币+1,VIP+0):谢谢提醒~ 6-27 17:21
Biological materials: Structure and mechanical properties
Marc André Meyers, a, , Po-Yu Chena, Albert Yu-Min Lina and Yasuaki Sekia

aMaterials Science and Engineering Program, Department of Mechanical and Aerospace Engineering, University of California, San Diego, La Jolla, CA 92093, United States


Available online 18 May 2007.

Abstract
Most natural (or biological) materials are complex composites whose mechanical properties are often outstanding, considering the weak constituents from which they are assembled. These complex structures, which have risen from hundreds of million years of evolution, are inspiring Materials Scientists in the design of novel materials.

Their defining characteristics, hierarchy, multifunctionality, and self-healing capability, are illustrated. Self-organization is also a fundamental feature of many biological materials and the manner by which the structures are assembled from the molecular level up. The basic building blocks are described, starting with the 20 amino acids and proceeding to polypeptides, polysaccharides, and polypeptides–saccharides. These, on their turn, compose the basic proteins, which are the primary constituents of ‘soft tissues’ and are also present in most biominerals. There are over 1000 proteins, and we describe only the principal ones, with emphasis on collagen, chitin, keratin, and elastin. The ‘hard’ phases are primarily strengthened by minerals, which nucleate and grow in a biomediated environment that determines the size, shape and distribution of individual crystals. The most important mineral phases are discussed: hydroxyapatite, silica, and aragonite.

Using the classification of Wegst and Ashby, the principal mechanical characteristics and structures of biological ceramics, polymer composites, elastomers, and cellular materials are presented. Selected systems in each class are described with emphasis on the relationship between their structure and mechanical response. A fifth class is added to this: functional biological materials, which have a structure developed for a specific function: adhesion, optical properties, etc.

An outgrowth of this effort is the search for bioinspired materials and structures. Traditional approaches focus on design methodologies of biological materials using conventional synthetic materials. The new frontiers reside in the synthesis of bioinspired materials through processes that are characteristic of biological systems; these involve nanoscale self-assembly of the components and the development of hierarchical structures. Although this approach is still in its infancy, it will eventually lead to a plethora of new materials systems as we elucidate the fundamental mechanisms of growth and the structure of biological systems.

Article Outline
1. Introduction and basic overview of mechanical properties
2. Hierarchical organization of structure
3. Multifunctionality and self-healing
4. Self-organization and self-assembly
5. Basic building blocks (nano and microstructure of biological materials)
5.1. Molecular units
5.2. Biominerals
5.2.1. Biomineralization
5.2.2. Nucleation
5.2.3. Morphology
5.3. Proteins (polypeptides)
5.3.1. Collagen
5.3.2. Keratin
5.3.3. Actin and myosin
5.3.4. Elastin
5.3.5. Resilin and abductin
5.3.6. Other proteins
5.4. Polysaccharides
5.4.1. Chitin
5.4.2. Cellulose
6. Biological ceramics and ceramic composites
6.1. Sponge spicules
6.2. Shells
6.2.1. Nacreous shells
6.2.1.1. Growth of abalone (Haliotis rufescens) nacre
6.2.1.2. Mechanical properties of abalone nacre
6.2.2. Conch (Strombus gigas) shell
6.2.3. Giant clam (Tridacna gigas)
6.3. Shrimp hammer
6.4. Marine worm teeth
6.5. Bone
6.5.1. Structure
6.5.2. Elastic properties
6.5.3. Strength
6.5.4. Fracture and fracture toughness of bone
6.6. Teeth
6.6.1. Structure and properties
6.6.2. Growth and hierarchical structure of elephant tusk
6.7. Nano-scale effects in biological materials
6.8. Multi-scale effects
7. Biological polymers and polymer composites
7.1. Ligaments
7.2. Silk
7.3. Arthropod exoskeletons
7.4. Keratin-based materials: hoof and horn
8. Biological elastomers
8.1. Skin
8.2. Muscle
8.3. Blood vessels
8.3.1. Non-linear elasticity
8.3.2. Residual stresses
8.4. Mussel byssus
8.5. Cells
8.5.1. Structure and mechanical properties
8.5.2. Mechanical testing
8.5.3. Cell motility, locomotion, and adhesion
9. Biological cellular materials
9.1. Basic equations
9.2. Wood
9.3. Beak interior
9.3.1. Toucan and hornbill beaks
9.3.2. Modeling of interior foam (Gibson–Ashby constitutive equations)
9.4. Feather
10. Functional biological materials
10.1. Gecko feet and other biological attachment devices
10.2. Structural colors
10.2.1. Photonic crystal arrays
10.2.2. Thin film interference
10.3. Chameleon
11. Bioinspired materials
11.1. Traditional biomimetics
11.1.1. Aerospace materials
11.1.2. Building designs
11.1.3. Fiber optics and micro-lenses
11.1.4. Manufacturing
11.1.5. Water collection
11.1.6. Velcro
11.1.7. Gecko feet
11.1.8. Abalone
11.1.9. Marine adhesives
11.2. Molecular-based biomimetics
12. Summary and conclusions
Acknowledgements
References
3楼2009-06-27 12:37:55
已阅   关注TA 给TA发消息 送TA红花 TA的回帖

lrj9987

木虫 (正式写手)


怎么关注的人不多???
6楼2009-07-01 11:53:17
已阅   关注TA 给TA发消息 送TA红花 TA的回帖
引用回帖:
Originally posted by lrj9987 at 2009-7-1 11:53:
怎么关注的人不多???

请看三楼~
7楼2009-07-01 12:35:24
已阅   关注TA 给TA发消息 送TA红花 TA的回帖
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[基金申请] 投票:  有多少人是今天查系统知道结果的? +16 爱看书的可乐 2026-08-26 18/900 2026-08-28 17:09 by winsaint
[基金申请] 为什么资助数各大高校都创新高,自己申请怎么就这么难 +11 Kittylucky 2026-08-27 12/600 2026-08-28 16:26 by lyxiaomc
[基金申请] 麻烦专家们看看评委们的意见(F口面上) +4 gdd2018 2026-08-28 9/450 2026-08-28 14:22 by jklily
[基金申请] 基金系统什么内容也没有 30+4 winsaint 2026-08-27 9/450 2026-08-28 11:06 by maolC
[基金申请] 怎么查啊 +6 huang1991js 2026-08-26 6/300 2026-08-28 08:42 by winsaint
[基金申请] 面上合作单位盖章 +5 ssyjh 2026-08-27 5/250 2026-08-27 20:50 by gdfollow
[基金申请] 基金未中,这种答复是模板吗? +5 zhaosm1982 2026-08-27 6/300 2026-08-27 16:00 by lfy8008
[基金申请] 看板上这么多中的,有点像50人群里49个人都是骗子的那种感觉…… +5 a089 2026-08-26 6/300 2026-08-27 14:05 by jonewore
[基金申请] 为什么 国际(地区)合作与交流项目 没有放榜? 10+3 majunge000 2026-08-26 11/550 2026-08-27 08:42 by 北京莱茵编辑
[基金申请] 2026年的国家社科基金项目通讯评审的新规则与新动向、新挑战 +7 process2012 2026-08-23 10/500 2026-08-26 19:23 by hmhminy
[基金申请] 范进中举一文的中心思想 +9 炎黄贵胄 2026-08-22 10/500 2026-08-26 15:40 by semaglutide
[基金申请] 2026年8月25日国自然放榜前突然收到列入评审专家邮件,有关系吗? +25 木水思豆 2026-08-25 28/1400 2026-08-26 14:53 by draco1987
[基金申请] 出来了 +9 trojank 2026-08-26 9/450 2026-08-26 14:25 by 宝贝虫子
[基金申请] 今天务委会开完了,明天出结果吗 +19 angus9576 2026-08-25 23/1150 2026-08-26 10:03 by zp519
[基金申请] 牛来!米来!面来! +8 beefly 2026-08-26 8/400 2026-08-26 08:37 by xuzhipiao
[基金申请] 在坚冰还盖着北海的时候,我看到了怒放的梅花。 (金币+10) +6 ziyangfang 2026-08-25 9/450 2026-08-25 20:26 by huagongfeihu
[基金申请] 明天应该可查了!? +6 chengyan1220 2026-08-23 6/300 2026-08-25 19:45 by zfd97
[基金申请] 某些机构,以效率低为荣,以效率低作为存在感 +9 yuleib84 2026-08-25 10/500 2026-08-25 17:14 by alexon
[基金申请] 没有任何消息-是不是就凉了 +9 图啦图啦 2026-08-24 10/500 2026-08-25 11:59 by 南海小哥
[教师之家] 跳槽后在研项目怎么办? +5 简单化xn 2026-08-22 10/500 2026-08-23 12:38 by 简单化xn
信息提示
请填处理意见