The set-valued optimization problem with constraints is considered in the sense of super efficiency in locally convex linear topological spaces. Under the assumption of iccone-convexlikeness, by applying the seperatio...The set-valued optimization problem with constraints is considered in the sense of super efficiency in locally convex linear topological spaces. Under the assumption of iccone-convexlikeness, by applying the seperation theorem, Kuhn-Tucker's, Lagrange's and saddle points optimality conditions, the necessary conditions are obtained for the set-valued optimization problem to attain its super efficient solutions. Also, the sufficient conditions for Kuhn-Tucker's, Lagrange's and saddle points optimality conditions are derived.展开更多
High-efficiency abrasive process with CBN grinding wheel is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, mi...High-efficiency abrasive process with CBN grinding wheel is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, milling and planning. The difficult-to-grinding materials can also be ground by means of this method with high performance. In the present paper, development status and latest progresses on high-efficiency abrasive machining technologies with CBN grinding wheel relate to high speed and super-high speed grinding, quick point-grinding, high efficiency deep-cut grinding, creep feed deep grinding, heavy-duty snagging and abrasive belt grinding were summarized. The efficiency and parameters range of these abrasive machining processes were compared. The key technologies of high efficiency abrasive machining, including grinding wheel, spindle and bearing, grinder, coolant supplying, installation and orientation of wheel and workpiece and safety defended, as well as intelligent monitor and NC grinding were investigated. It is concluded that high efficiency abrasive machining is a promising technology in the future.展开更多
基于^(133)Ba与^(131)I具有能量特性相近的γ射线、半衰期较长的特点,探索一种^(133)Ba代替^(131)I通过实验估算碘盒中^(131)I探测效率的简易方法。依据某碘检测仪取样和探测装置进行了实验和探测效率估算,同时在近似实验条件下利用超...基于^(133)Ba与^(131)I具有能量特性相近的γ射线、半衰期较长的特点,探索一种^(133)Ba代替^(131)I通过实验估算碘盒中^(131)I探测效率的简易方法。依据某碘检测仪取样和探测装置进行了实验和探测效率估算,同时在近似实验条件下利用超级蒙特卡罗核模拟软件系统(Super Monte Carlo Program for Nuclear and Radiation Simulation,SuperMC)程序进行了模拟计算,计算的探测效率对于蒙特卡罗(Monte Carlo,MC)模拟结果与实验估算结果在6.0%以内相符,说明这种简易实验方法可以用来估算碘盒中^(131)I探测效率。展开更多
基金Supported by the National Natural Science Foundation of China (10461007)the Science and Technology Foundation of the Education Department of Jiangxi Province (GJJ09069)
文摘The set-valued optimization problem with constraints is considered in the sense of super efficiency in locally convex linear topological spaces. Under the assumption of iccone-convexlikeness, by applying the seperation theorem, Kuhn-Tucker's, Lagrange's and saddle points optimality conditions, the necessary conditions are obtained for the set-valued optimization problem to attain its super efficient solutions. Also, the sufficient conditions for Kuhn-Tucker's, Lagrange's and saddle points optimality conditions are derived.
文摘High-efficiency abrasive process with CBN grinding wheel is one of the important techniques of advanced manufacture. Combined with raw and finishing machining, it can attain high material removal rate like turning, milling and planning. The difficult-to-grinding materials can also be ground by means of this method with high performance. In the present paper, development status and latest progresses on high-efficiency abrasive machining technologies with CBN grinding wheel relate to high speed and super-high speed grinding, quick point-grinding, high efficiency deep-cut grinding, creep feed deep grinding, heavy-duty snagging and abrasive belt grinding were summarized. The efficiency and parameters range of these abrasive machining processes were compared. The key technologies of high efficiency abrasive machining, including grinding wheel, spindle and bearing, grinder, coolant supplying, installation and orientation of wheel and workpiece and safety defended, as well as intelligent monitor and NC grinding were investigated. It is concluded that high efficiency abrasive machining is a promising technology in the future.
基金Supported by the National Natural Science Foundation of China(61175127)the Natural Science Foundation of Jiangxi Province(20122BAB201003)the Science and Technology Foundation of the Education Department of Jiangxi Province(GJJ12010)
文摘基于^(133)Ba与^(131)I具有能量特性相近的γ射线、半衰期较长的特点,探索一种^(133)Ba代替^(131)I通过实验估算碘盒中^(131)I探测效率的简易方法。依据某碘检测仪取样和探测装置进行了实验和探测效率估算,同时在近似实验条件下利用超级蒙特卡罗核模拟软件系统(Super Monte Carlo Program for Nuclear and Radiation Simulation,SuperMC)程序进行了模拟计算,计算的探测效率对于蒙特卡罗(Monte Carlo,MC)模拟结果与实验估算结果在6.0%以内相符,说明这种简易实验方法可以用来估算碘盒中^(131)I探测效率。