期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
粉煤灰小型空心砌块的试验研究 被引量:1
1
作者 鄢朝勇 《房材与应用》 1999年第1期19-20,34,共3页
以原状湿排粉煤灰为主要原料,加入骨料、复合胶结料与外加剂,采用自然养护工艺,研制成新型免蒸粉煤灰小型空心砌块,其性能优良,满足国家有关标准要求。
关键词 粉煤灰空心砌块 免蒸 复合交结料 外加剂
下载PDF
The Micromechanics of Biological and Biomimetic Staggered Composites 被引量:1
2
作者 Sacheen Bekah Reza Rabiei Francois Barthelat 《Journal of Bionic Engineering》 SCIE EI CSCD 2012年第4期446-456,共11页
Natural materials such as bone, tooth and nacre achieve attractive properties through the "staggered structure", which consists of stiff, parallel inclusions of large aspect ratio bonded together by a more ductile a... Natural materials such as bone, tooth and nacre achieve attractive properties through the "staggered structure", which consists of stiff, parallel inclusions of large aspect ratio bonded together by a more ductile and tougher matrix. This seemingly simple structure displays sophisticated micromechanics which lead to unique combinations of stiffness, strength and toughness. In this article we modeled the staggered structure using finite elements and small Representative Volume Elements (RVEs) in order to explore microstructure-property relationships. Larger aspect ratio of inclusions results in greater stiffiless and strength, and also significant amounts of energy dissipation provided the inclusions do not fracture in a brittle fashion. Interestingly the ends of the inclusions (the junctions) behave as crack-like features, generating theoretically infinite stresses in the adjacent inclusions. A fracture mechanics criterion was therefore used to predict the failure of the inclusions, which led to new insights into how the interfaces act as a "'soft wrap" for the inclusions, completely shielding them from excessive stresses. The effect of statistics on the mechanics of the staggered structure was also assessed using larger scale RVEs. Variations in the microstructure did not change the modulus of the material, but slightly decreased the strength and significantly decreased the failure strain. This is explained by strain localization, which can in turn be delayed by incorporating waviness to the inclusions. In addition, we show that the columnar and random arrangements, displaying different deformation mechanisms, lead to similar overall prop- erties. The guidelines presented in this study can be used to optimize the design of staggered synthetic composites to achieve mechanical performances comparable to natural materials. 展开更多
关键词 biological materials biomimetics representative volume element fracture mechanics finite element analysis
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部