欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
蛤蜊贝壳交叉铺层微结构研究
期刊名称:稀有金属材料与工程. 2007, 36: 731-733
时间:0
分类:TG146.11[金属学及工艺—金属材料;一般工业技术—材料科学与工程;金属学及工艺—金属学]
作者机构:[1]College of Resource and Environment Science, Chongqing University, Chongqing 400044, China
相关基金:Projects (10572157, 10272119) supported by the National Natural Science Foundation of China
相关项目:昆虫鞘翅多尺度非均匀微结构及仿生研究
关键词:
黄铜, 加热铝, 金属材料, 微观结构, brass H62, pre-loaded stress, heating rate, failure temperature, local thermal inconsistency
中文摘要:
Corresponding author: CHEN Bin; Tel: +86-23-65103597; E-mail: bchen@cqu.edu.cn
同期刊论文项目
昆虫鞘翅多尺度非均匀微结构及仿生研究
期刊论文 26
同项目期刊论文
胫骨的层状微结构研究
鲍鱼壳珍珠层无机文石片的层状微结构研究
金龟子外甲壳异型纤维结构分析
Investigation to interlaced microstructure of aragonite sheets of Chamidae shell
An elastoplastic constitutive description based on an ellipsoidal void model
A viscous-elastoplastic constitutive model incorporating with phase transformation and application t
Circumcolumnar microstructure of Tumblebug cuticle and biomimetic application
Investigation on screwy microstructure of Solid-trough shell
Hydroxyapatite-sheet Microstructure of Shinbone
Constitutive description of casting aluminum alloy based on cylindrical void-cell model
Investigation to the effect of heating-rate on the failure temperature of pre-loaded brass H62.
Lambdoidal reinforced microstructure of mactridae shell
Helicoidal microstructure of Scarabaei cuticle and biomimetic research
Finite element analysis of ring strain sensor
Research of helicoidal layup of clam shell
Research on the hybrid fiber-reinforced microstructure of chafer cuticle
Observation on Hydrophilidae cuticle and analysis of maximum pullout force of branched fiber
Sheet-layer Microstructure and Toughness Mechanism of Shinbone
Research of Herringbone Structure of Fragum Unedo Shell
Research on the curving aragonite sheets in Clam’s shell
Hydroxyapatite-Sheet Parallel Microstructure of Shinbone
A constitutive model for casting magnesium alloy ZL101 based on the analysis of spherical void evolu
Nonclassical constitutive model involving void evolution of casting magnesium alloy
Research of the Herringbone Microstructure of Rufescens’s Shell
Constitutive description of casting aluminum alloy based on cylindrical void-cell model