| 查看: 521 | 回复: 1 | |||
| 【奖励】 本帖被评价1次,作者imrsfb增加金币 0.8 个 | |||
[资源]
【最新综述】骨头Bone和珠母贝Nacre的变形断裂行为
|
|||
|
Deformation and Fracture Mechanisms of Bone and Nacre Annual Review of Materials Research Vol. 41: 41-73 (Volume publication date August 2011) First published online as a Review in Advance on April 4, 2011 DOI: 10.1146/annurev-matsci-062910-095806 Rizhi Wang1 and Himadri S. Gupta2 1Department of Materials Engineering, University of British Columbia, Vancouver V6T 1Z4, Canada; email: rzwang@interchange.ubc.ca 2School of Engineering and Materials Science, Queen Mary, University of London, London E1 4NS, United Kingdom; email: h.gupta@qmul.ac.uk Abstract: Bone and nacre are the most-known biological hard tissues to materials researchers. Although highly mineralized, both bone and nacre are amazingly tough and exhibit remarkable inelasticity, properties that are still beyond the reach of many modern ceramic materials. Very interestingly, the two hard tissues seem to have adopted totally different structural strategies for achieving mechanical robustness. Starting from a true nanocomposite of the mineralized collagen fibril and following up to seven levels of hierarchical organization, bone is built on a structure with extreme complexity. In contrast, nacre possesses a structure of surprising simplicity. Polygonal mineral tablets of micrometer size are carefully cemented together into a macroscopic wonder. A comparative analysis of the structure-property relations in bone and nacre helps us to unveil the underlying mechanisms of this puzzling phenomenon. In this review, we critically compare the various levels of structures and their mechanical contributions between bone and nacre, with a focus on inelasticity and the toughening process. We demonstrate that, although nacre and bone differ from each other in many aspects, they have adopted very similar deformation and toughening mechanisms. 文章下载地址: http://www.annualreviews.org/doi ... atsci-062910-095806 [ Last edited by imrsfb on 2011-9-19 at 20:29 ] |
» 收录本帖的淘帖专辑推荐
材料科学最新前沿热点 |
» 猜你喜欢
间充质干细胞(MSC)用 化学成分限定培养基鉴定方法
已经有0人回复
投稿求助
已经有2人回复
生物物理、生物化学与分子生物学论文润色/翻译怎么收费?
已经有93人回复
重磅邀约|2026 生物医药产业发展大会
已经有0人回复
精准破局,免疫致远|2026 肿瘤精准治疗诺奖得主国际对话活动
已经有0人回复
【科研投稿分享】Scopus收录,BM生物功能材料期刊收稿范围(附免APC窗口期)
已经有2人回复
【科研投稿】Scopus收录,BM生物功能材料期刊(豁免APC窗口期2026年12月31日前)
已经有1人回复
【生物功能材料英文期刊】Scopus收录,2026年12月31日前免APC
已经有1人回复
【生物功能材料英文期刊】Scopus收录,免APC的宝藏期刊
已经有1人回复
组织再生生物材料专题(适配再生医学、免疫材料方向)Scopus期刊,免APC
已经有1人回复
【BM特刊征稿】生物功能凝胶(2026免APC,Scopus收录)
已经有2人回复
» 本主题相关价值贴推荐,对您同样有帮助:
《材料的高温变形与断裂》经典教材【已查重】
已经有312人回复
讨教,讨教:铝合金中变形不均匀问题的探讨
已经有9人回复
请教不均匀接头变形
已经有9人回复
人为什么有血有肉有骨头?
已经有36人回复
【问题求助】右股骨头缺血性坏死早期怎么治疗?
已经有16人回复
【求助】2010.12.13 cctv新闻台22点~22点30分的新闻中的“木头”变“骨头”是什么工艺
已经有11人回复
【讨论】《怎样给猎狗分骨头?》(转载)
已经有3人回复
【求助】股骨头打钛钉术后排尿困难
已经有3人回复
2楼2011-12-27 12:53:22









回复此楼