SEM microfractography of near-threshold fatigue crack propagation were carried out in the dual-phase steels of 3 martensite morphologies and 6 volume fractions of martensite (V_m). All of them are featured by cyclic c...SEM microfractography of near-threshold fatigue crack propagation were carried out in the dual-phase steels of 3 martensite morphologies and 6 volume fractions of martensite (V_m). All of them are featured by cyclic cleavage characteristics in near-threshold region,i.e.,main- ly controlled by mode Ⅱ stress.In the higher ΔK regions,the fracture surfaces are character- ized by mixed modes including cyclic cleavage facets,two types of secondary cracks and striations,etc..The roughness-induced crack closure of fracture surface is attributed primarily to extreme high fatigue crack growth threshold values.展开更多
The uniformity of threshold voltage and threshold current in the In2 Se3 nanowire-based phase change memory (PCM) devices is investigated. Based on the trap-limited transport model, amorphous layer thickness, trap d...The uniformity of threshold voltage and threshold current in the In2 Se3 nanowire-based phase change memory (PCM) devices is investigated. Based on the trap-limited transport model, amorphous layer thickness, trap density, and trap depth are considered to clarify their influences upon the threshold voltage and threshold current through simulations.展开更多
基于条件预充电技术,设计了一种高速低功耗真单相时钟触发器。在存在冗余开关活动的关键路径中,通过增加场效应管和控制条件,控制内部节点的冗余预充电活动;通过消除冗余结构,消除冗余的场效应管,从而改善电路结构,降低功耗和总功耗延...基于条件预充电技术,设计了一种高速低功耗真单相时钟触发器。在存在冗余开关活动的关键路径中,通过增加场效应管和控制条件,控制内部节点的冗余预充电活动;通过消除冗余结构,消除冗余的场效应管,从而改善电路结构,降低功耗和总功耗延时积。通用电路分析程序(simulation program with integrated circuit emphasis,HSPICE)仿真结果表明,在100 MHz的工作频率与低阈值电压下,触发器功耗低至158.6127 nW、总功耗延时积低至0.048735 fJ,电路具有正确的逻辑功能,且在功耗、延迟方面均优于近几年提出的电路。展开更多
针对传统奇异值阈值(Singular Value Thresholding,SVT)数据恢复算法在对电力负荷数据恢复中忽视数据先验信息以及大规模数据计算效率低等问题,提出一种基于相空间重构与自适应变步长的改进SVT的数据恢复算法.为解决传统SVT容易忽视数...针对传统奇异值阈值(Singular Value Thresholding,SVT)数据恢复算法在对电力负荷数据恢复中忽视数据先验信息以及大规模数据计算效率低等问题,提出一种基于相空间重构与自适应变步长的改进SVT的数据恢复算法.为解决传统SVT容易忽视数据先验信息的问题,引入相空间重构算法将原始缺失数据映射到高维空间,利用数据间的关联性和结构特征,为后续数据恢复算法提供先验知识;结合对数与Sigmoid函数构建变步长基础函数,并利用等比项提高前期步长,构建自适应变步长SVT算法,克服传统SVT在大规模数据情况下计算效率低的问题.结合多项公用电力负荷数据集及多种常用电力负荷数据恢复算法进行对比实验分析,结果表明,改进SVT算法可获得更好的数据恢复效果,收敛速度、精度以及稳定性得到提升,具有较强的工程实用性.展开更多
文摘SEM microfractography of near-threshold fatigue crack propagation were carried out in the dual-phase steels of 3 martensite morphologies and 6 volume fractions of martensite (V_m). All of them are featured by cyclic cleavage characteristics in near-threshold region,i.e.,main- ly controlled by mode Ⅱ stress.In the higher ΔK regions,the fracture surfaces are character- ized by mixed modes including cyclic cleavage facets,two types of secondary cracks and striations,etc..The roughness-induced crack closure of fracture surface is attributed primarily to extreme high fatigue crack growth threshold values.
基金supported by the National Basic Research Program of China(Grant No.2011CBA00604)
文摘The uniformity of threshold voltage and threshold current in the In2 Se3 nanowire-based phase change memory (PCM) devices is investigated. Based on the trap-limited transport model, amorphous layer thickness, trap density, and trap depth are considered to clarify their influences upon the threshold voltage and threshold current through simulations.
文摘基于条件预充电技术,设计了一种高速低功耗真单相时钟触发器。在存在冗余开关活动的关键路径中,通过增加场效应管和控制条件,控制内部节点的冗余预充电活动;通过消除冗余结构,消除冗余的场效应管,从而改善电路结构,降低功耗和总功耗延时积。通用电路分析程序(simulation program with integrated circuit emphasis,HSPICE)仿真结果表明,在100 MHz的工作频率与低阈值电压下,触发器功耗低至158.6127 nW、总功耗延时积低至0.048735 fJ,电路具有正确的逻辑功能,且在功耗、延迟方面均优于近几年提出的电路。
文摘针对传统奇异值阈值(Singular Value Thresholding,SVT)数据恢复算法在对电力负荷数据恢复中忽视数据先验信息以及大规模数据计算效率低等问题,提出一种基于相空间重构与自适应变步长的改进SVT的数据恢复算法.为解决传统SVT容易忽视数据先验信息的问题,引入相空间重构算法将原始缺失数据映射到高维空间,利用数据间的关联性和结构特征,为后续数据恢复算法提供先验知识;结合对数与Sigmoid函数构建变步长基础函数,并利用等比项提高前期步长,构建自适应变步长SVT算法,克服传统SVT在大规模数据情况下计算效率低的问题.结合多项公用电力负荷数据集及多种常用电力负荷数据恢复算法进行对比实验分析,结果表明,改进SVT算法可获得更好的数据恢复效果,收敛速度、精度以及稳定性得到提升,具有较强的工程实用性.
基金the scholarship support from the Chinese Scholarship Councilthe financial supports from the National Natural Science Foundation of China (No. 52071207)+2 种基金the China Postdoctoral Science Foundation (Nos. 2019TQ0193, 2019M661497)the National Key Research and Development Program of China (No. 2018YFB1106302)Anhui Provincial Engineering Research Center of Aluminum Matrix Composites, China (No. 2017WAMC002)