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制造科学技术的发展与未来
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作者 韩玥 王晖 唐红梅 《国防技术基础》 2002年第6期11-13,共3页
工程化技术是使科研成果转化为实用产品的重要技术,工程化技术在提高产品可靠性、降低成本、缩短生产周期等方面起着重要作用。为促进国防科技领域工程化技术水平的提高,我刊专门开辟了“工程化技术”专栏,为广大科技人员提供一个学术... 工程化技术是使科研成果转化为实用产品的重要技术,工程化技术在提高产品可靠性、降低成本、缩短生产周期等方面起着重要作用。为促进国防科技领域工程化技术水平的提高,我刊专门开辟了“工程化技术”专栏,为广大科技人员提供一个学术交流和获取相关知识的园地。该栏目主要涉及了先进的工程化设计技术、制造技术、可靠性、环境适应性、标准化、计量、质量管理、安全性、测试等方面的内容,欢迎广大科技人员踊跃投稿,对栏目的建设提出宝贵意见。 展开更多
关键词 制造科学技术 制造 发展趋势 制造工艺
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Magnetization of microorganism cells by thermal decomposition method 被引量:5
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作者 ZHANG DeYuan ZHANG WenQiang CAI Jun 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第5期1275-1280,共6页
The bio-limited forming technology, a new technology organically integrating microbiology, manufacturing science and materials science, is used in the manufacturing of magnetic or conductive microstructures of differe... The bio-limited forming technology, a new technology organically integrating microbiology, manufacturing science and materials science, is used in the manufacturing of magnetic or conductive microstructures of different standard shapes. This paper explores the feasibility of magnetizing microorganism with thermal decomposition method. The principle of thermal decomposition of iron pentacarbonyl has been adopted to investigate the cells of Spirulina (a type of nature micro-helical microorganism) coated with pure iron. Further analysis have been conducted on the observations results of hollow micro-helical magnetic particles form, components and the phase structure obtained by using various tools including optical microscopy, scanning electron microscopy (SEM), energy dispersive X-ray detector (EDX), transmission electron microscopy (TEM), and X-ray diffraction analysis (XRD). Results showed that Spirulina cells could be coated with iron particles after the completion of thermal decomposition process, with well-kept shape of natural helixes and consistent components of different sampling points on the surface layer and thickness of layer. After the heat treatment at 700°C, the type of the surface iron layer formed was α-Fe. The paper also investigates the kinetics of the cell magnetization technology by thermal decomposition. 展开更多
关键词 BIO-MANUFACTURING bio-limited forming hollow micro-helical magnetic particles Fe(CO)5 thermal decomposition
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