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SYNTHETIC STRESSLIFE TESTING OF MECHATRONIC PRODUCTS UNDER VARIABLE STRESS SPECTRUM
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作者 王少萍 《Chinese Journal of Aeronautics》 SCIE EI CSCD 2000年第2期95-99,共5页
Mechatronic products usually endure the variable stress spectrum when they operate in certain operational condition and environmental condition, which obey the Weibull distribution. In accordance with the features of ... Mechatronic products usually endure the variable stress spectrum when they operate in certain operational condition and environmental condition, which obey the Weibull distribution. In accordance with the features of mechatronic product, this paper analyzes the failure mode, its corresponding sensitive stress and the design principles of life testing profiles. Based on the above analyses, this paper presents a synthetic stress life testing method based on the hybrid Weibull distribution and its statistical method under variable stress spectrum to evaluate the reliability and life indices of mechatronic products. Because the mechatronic products have many characteristics such as high price, long life and small testing samples, the synthetic stress life testing method under variable load spectrum can simulate the real various spectra, decrease the life testing time and reduce the testing samples. So it is effective to carry out the life testing to mechatronic products. The application results of hydraulic pumps indicate that this method can easily handle the experimental data under variable amplitude spectrum, obtain the high precision parameters point estimation and confidence interval estimation and reduce the testing cost greatly. 展开更多
关键词 synthetic stress life testing hybrid Weibull distribution mechatronic products
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基于集群纳米机器技术和合成生命化学的动态人工细胞
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作者 程晓雯 汪琛 +5 位作者 刘东 廖玉婷 王彬 张雪 郑浩 卢元 《Science China Materials》 SCIE EI CAS CSCD 2023年第5期2090-2099,共10页
人工细胞构筑在基础和应用生物技术研究中具有重要意义.然而,现有的人工细胞区室化的构建往往是静态的,与动态的自然细胞存在差距.基于此,我们通过前沿磁控纳米机器技术和无细胞转录-翻译溶液化学系统来构筑一个可编程控制的动态人工细... 人工细胞构筑在基础和应用生物技术研究中具有重要意义.然而,现有的人工细胞区室化的构建往往是静态的,与动态的自然细胞存在差距.基于此,我们通过前沿磁控纳米机器技术和无细胞转录-翻译溶液化学系统来构筑一个可编程控制的动态人工细胞.通过物理控制二维或三维磁场的方向、强度和频率,基于不同形态的DNA和磁性颗粒产生不同形貌的簇、链和片等区室化排列.这些不同形貌的动态人工细胞结构呈现出特殊的转录-翻译性能.集群机器人技术和合成生命化学的融合利用可为构筑富有想象力的人工细胞提供新的研究范式,并为生命过程的理解和颠覆性的生物应用提供重要支撑. 展开更多
关键词 artificial cell COMPARTMENTALIZATION dynamic swarm nanorobotics synthetic life chemistry
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