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基于全关联矩阵的可变功能机械功能耦合分析 被引量:5
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作者 余远文 邓益民 +1 位作者 杨鹏 殷习 《宁波大学学报(理工版)》 CAS 2014年第4期88-93,共6页
针对可变功能机械设计分析的需要,提出了功能与零件的直接关联、间接关联及全关联概念,建立了功能与零件的直接关联矩阵,通过分析功能直接关联零件的设计变更可能性传播来定量描述功能与零件的间接关联值,从而确定功能与零件的全关联矩... 针对可变功能机械设计分析的需要,提出了功能与零件的直接关联、间接关联及全关联概念,建立了功能与零件的直接关联矩阵,通过分析功能直接关联零件的设计变更可能性传播来定量描述功能与零件的间接关联值,从而确定功能与零件的全关联矩阵.在此基础上,提出功能耦合度的概念,构建了功能耦合矩阵,以综合耦合度评价可变功能机械的结构紧凑性,分析了可变功能机械各零件对系统功能的影响程度,为此类机械的设计分析提供了定量依据.最后通过对多功能组合钳的实例分析,说明所提出方法的可行性及其意义. 展开更多
关键词 可变功能机械 设计分析 全关联矩阵 功能耦合度
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基于广义集合的可变功能机械功能耦合性分析
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作者 余远文 邓益民 《机械制造》 2015年第2期77-80,共4页
针对可变功能机械的功能耦合性分析及量化问题,从能量流、信号流和物料流的角度分析了系统各功能之间耦合性产生的原因。在此基础上,构建了系统行为结构的广义有向图模型,定义了各功能的广义集合,描述了广义集合的交集、并集运算法则。... 针对可变功能机械的功能耦合性分析及量化问题,从能量流、信号流和物料流的角度分析了系统各功能之间耦合性产生的原因。在此基础上,构建了系统行为结构的广义有向图模型,定义了各功能的广义集合,描述了广义集合的交集、并集运算法则。通过借鉴Jaccard相似性系数概念,给出了可变功能机械的功能耦合度表达式。以多功能榨汁机为例,说明了上述模型和方法的有效性。 展开更多
关键词 可变功能机械 行为 广义集合 功能耦合度
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triple-node motif signal amplification bistable system the Fitz Hugh–Nagumo neuron
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作者 丁万祥 顾长贵 梁晓明 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第2期189-192,共4页
It has been found that a triple-node feed-forward motif has a function of signal amplification, where two input nodes receive the external weak signal and jointly modulate the response of the third output node [Liang ... It has been found that a triple-node feed-forward motif has a function of signal amplification, where two input nodes receive the external weak signal and jointly modulate the response of the third output node [Liang et al.,Phys. Rev. E 88(2013) 012910]. We here show that the signal amplification can be further enhanced by adding a link between the two input nodes in the feed-forward motif. We further reveal that the coupling strength of the link regulates the enhancement of signal amplification in the modified feed-forward motif. We finally analyze the mechanism of signal amplification of such simple structure. 展开更多
关键词 A Simple Structure for Signal Amplification
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Coupled thermal-mechanical analysis of two ITER-like first wall mockups under heat shock of plasma disruptions
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作者 HUANG ShengHong ZHAO YongQiang WANG WeiHua 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第3期476-487,共12页
The first wall of the fusion reactor is a plasma-facing component and is a key link to maintain the integrity of structure during thermal shock induced by plasma disruptions. Be and W/Cu functionally graded materials ... The first wall of the fusion reactor is a plasma-facing component and is a key link to maintain the integrity of structure during thermal shock induced by plasma disruptions. Be and W/Cu functionally graded materials are two kinds of important plas- ma-facing materials (PFM) of first wall in fusion reactor currently. Previous researches seldom comparatively evaluated the normal servicing and heat shock resistance performance of first walls with those two kinds of PFMs. And also there lacks cou- pled thermal/mechanical analysis on the heat shock process in consideration of multiple thermal/mechanical phenomena, such as material melting, solidification, evaporation, etc., which is significant to further understand the heat shock damage mecha- nism of the first wall with different PFMs. With the aim of learning more detailed mechanical mechanism of thermal shock damage and then improving the thermal shock resistance performance of different first wall designs, the coupled ther- mal/mechanical response of two typical ITER-like first walls with PFM of Be and functionally graded W-Cu respectively un- der the heat shock of 1 2 GW/m2 are computed by the finite element method. Special considerations of elastic-plastic defor- mation, material melting, and solidification are included in numerical models and methods. The mechanical response behaviors of different structures and materials under the normal servicing operation as well as plasma disruption conditions are analyzed and investigated comparatively. The results reveal that heat is mainly deposited on the PFM layer in thc high energy shock pulse induced by plasma disruptions, resulting in complex thermal stress change as well as mechanical itTeversible damage of thermal elastic and plastic expansion, contraction and yielding. Compared with the first wall with Be PFM, which mitigates the damages from heat shock at most only in the PFM layer with cost of whole PFM layer plastic yielding, the first wall with graded W-Cu PFM is demonstrated to be possessed both of higher heat shock resistance performance and normal servicing performance, provided its material gradient and cooling capacity are well optimized under practical loading conditions. 展开更多
关键词 first wall plasma facing component plasma disruptions thermal shock resistance finite element method
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