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    • 2. 发明申请
    • NEW LEAKAGE PROTECTION METHOD AND DEVICE HAVING LIVE/NEUTRAL WIRE IDENTIFICATION FUNCTION
    • 新型漏电保护方法及具有实时/中性线识别功能的装置
    • WO2014128562A3
    • 2015-02-26
    • PCT/IB2014000486
    • 2014-02-20
    • WU WEI
    • WU WEI
    • H02H11/00H02H3/26
    • H02H3/162H02H3/14H02H11/002
    • A leakage protection method and device having a live/neutral wire identification function that identify the live wire and neutral wire of an input power source by means of a live/neutral wire identification device 1. If the live/neutral wires are discovered to be erroneously connected, the connections between the live wire L' and the neutral wire N' of an electric device and the live wire L and the neutral wire N of the power source are immediately adjusted directly or indirectly; or, the connection of a surface leakage signal pickup device 2 is adjusted; or, a main circuit switch K is made such that the main circuit switch cannot close the circuit or that the main circuit switch breaks the circuit immediately after closing the circuit, so that a user must correct the connections of the live/neutral wires of the power source; the surface leakage signal pickup device 2 is arranged such that said device is always connected to the neutral wire N of the power source and to the surface F of the electric device, so as to always monitor the electric potential of the surface F of the electric device over the neutral wire N of the power source. When the electric device surface leaks electricity, the leakage signal pickup device 2 immediately drives an electromagnetic tripping device 3 to break the main circuit switch 3, thereby breaking the connection between the electric device and the power source. The method and device of the present invention can remove leakage before a human body experiences an electric shock, thereby eliminating potential accidents; leakage accidents due to connection errors are prevented; electric device surface leakage can be effectively prevented even when the electric device is not connected to ground.
    • 一种具有实时/中性线识别功能的漏电保护方法和装置,其通过实时/中性线识别装置1识别输入电源的带电线和中性线。如果发现有活/中性线错误 连接时,直接或间接地直接调整电气设备的电线L'和中性线N'与电力线L和电力线N之间的连接; 或者,调整表面泄漏信号拾取装置2的连接; 或者,主电路开关K被制成使得主电路开关不能关闭电路,或者主电路开关在闭合电路之后立即断开电路,使得用户必须校正线路中的直线/中线的连接 能量源; 表面泄漏信号拾取装置2被布置成使得所述装置总是连接到电源的中性线N和电气装置的表面F,以便始终监视电气的表面F的电位 装置在电源的中性线N上。 当电气设备表面泄漏电力时,泄漏信号拾取装置2立即驱动电磁脱扣装置3使主电路开关3断开,从而破坏电气装置与电源之间的连接。 本发明的方法和装置可以在人体经历电击之前消除泄漏,从而消除潜在的事故; 防止连接错误导致的泄漏事故; 即使电气设备未连接到地面,也可以有效地防止电气设备表面泄漏。
    • 3. 发明申请
    • METHOD OF ELECTRICITY LEAKAGE DETECTION AND PREVENTION OF ELECTRICAL EQUIPMENT'S OUTER SURFACE AND SYSTEM THEREOF
    • 电气泄漏检测方法及防止电气设备外表面及其系统
    • WO2013067729A3
    • 2013-07-04
    • PCT/CN2011083810
    • 2011-12-12
    • WU WEI
    • WU WEI
    • H02H3/14
    • H01H47/005H02H3/14H02H3/16H02H3/162
    • A method of electricity leakage detection and prevention of electrical equipment's outer surface and system thereof. The method and system are used for detecting and preventing electricity leakage of the electrical equipment's outer surface caused by defective insulation and power supply connection faults. By monitoring the current path (2) formed between the electrical equipment neutral line (Nu') and the electrical equipment's outer surface (G') and monitoring the current value thereof, an electricity leakage of the outer surface of electrical equipment can be detected without human intervention, and the connection between the electrical equipment and the power supply can subsequently be cut off and an alarm activated. In the system, a power supply path (5) is set up to ensure a source of power, and thereby normal operation, even when the power supply connection fails. According to the method and system, the electricity leakage of the outer surface can be correctly detected and the alarm can be activated or the connection between the electrical equipment and the power supply can be cut even if the electrical equipment's outer surface is free. With the advantage of simple construction and low cost, the system can be widely used.
    • 一种泄漏检测和防止电气设备外表面的方法及其系统。 该方法和系统用于检测和防止由于绝缘和电源连接故障导致的电气设备外表面的漏电。 通过监测电气设备中性线(Nu')和电气设备外表面(G')之间形成的电流路径(2)并监测其电流值,可以检测到电气设备外表面的漏电而无需 人为干预,电气设备和电源之间的连接可以随后被切断并且报警被激活。 在该系统中,即使在电源连接失败的情况下,也设置供电路径(5)以确保电源,从而正常工作。 根据该方法和系统,即使电气设备的外表面是空闲的,也可以正确地检测外表面的漏电,并且可以启动报警器,也可以切断电气设备和电源之间的连接。 该系统结构简单,成本低,可广泛应用于系统。
    • 10. 发明申请
    • CATALYST SUPPORT MATERIALS WITH OXYGEN STORAGE CAPACITY (OSC) AND METHOD OF MAKING THEREOF
    • 具有氧气储存能力的催化剂支持材料(OSC)及其制备方法
    • WO2012088373A2
    • 2012-06-28
    • PCT/US2011066715
    • 2011-12-22
    • PACIFIC IND DEV CORPWU WEILI YUNKUILACHAPELLE JEFFERY
    • WU WEILI YUNKUILACHAPELLE JEFFERY
    • B01J23/63
    • B01J23/63B01D53/945B01D2255/102B01D2255/1023B01D2255/2063B01D2255/2065B01D2255/2068B01D2255/20715B01D2255/2092B01D2255/407B01D2255/908B01J21/04B01J21/066B01J35/002B01J35/023B01J35/1014B01J35/1019B01J35/1023B01J35/1028B01J35/1038B01J35/1042B01J35/1061B01J37/0018B01J37/0045B01J37/009B01J37/0205B01J37/0207B01J37/0215B01J37/0221B01J37/0236B01J37/031B01J37/04B01J37/06B01J37/08B01J2523/00Y02A50/2324Y02T10/22B01J2523/31B01J2523/3706B01J2523/3712B01J2523/3725B01J2523/48
    • A new type of catalyst support with oxygen storage capacity (OSC) and methods of making the same are disclosed. The composition ratio is x(Ce1-wZrw02) : yM : zL : (1 -x-y-z)AI203, where Ce1-wZrw02 is the oxygen storage composition with stabilizer Zr02, molar ratio (w) in the range of 0 to about 0.8, and a weight ratio (x) of about 0.05 to about 0.8; M is an interactive promoter for oxygen storage capacity with a weight ratio (y) of 0 to about 0.10; and L is a stabilizer for the support Al203 with weight ratio (z) of from 0 to about 0.10. In some cases, M or L can act as both OSC promoter and thermal stabilizer. The weight percentage range of ceria-zirconia and other metal and rare earth oxides (x+y+z) is from about 5 to about 80% relative to total oxides. Combining platinum group metals (PGM) and adhesive with the catalyst supports, a new wash coat made therefrom is provided that comprises a mixture of catalyst support materials according to the relationship (a)RE-Ce- Zr02 + (3)CZMLA + (1 -a-ß)RE-AI203, where RE-Ce-Zr02 is a commercial OSC material of rare earth elements stabilized ceria zirconia having a weight ratio (a) ranging from 0 to about 0.7; CZMLA is the catalyst support material of the present disclosure having a weight ratio (ß) ranging from about 0.2 to about 1 such that (a+ß) 203 is rare earth element stabilized alumina having a weight ratio equal to (1 -a-ß). The new wash coat made therefrom exhibits a lower activation temperature compared with traditional formulation of wash coat by at least 50°C. The new wash coat made therefrom also requires less RE-Ce-Zr02 oxide and/or less PGM in the formulation of emission control catalyst for gasoline and diesel engines.
    • 公开了一种具有储氧能力的新型催化剂载体(OSC)及其制备方法。 组成比为x(Ce1-wZrw02):yM:zL:(1-氧)Al2O3,其中Ce1-wZrw02是具有稳定剂ZrO2的储氧组合物,摩尔比(w)在0至约0.8的范围内,以及 重量比(x)为约0.05至约0.8; M是氧储存容量的互动促进剂,重量比(y)为0至约0.10; L是载体Al 2 O 3的稳定剂,重量比(z)为0至约0.10。 在某些情况下,M或L可以充当OSC促进剂和热稳定剂。 二氧化铈 - 氧化锆和其他金属和稀土氧化物(x + y + z)的重量百分比范围相对于总氧化物为约5至约80%。 将铂族金属(PGM)和粘合剂与催化剂载体组合,提供由其制备的新的涂层,其包括根据(a)RE-Ce-ZrO 2 +(3)CZMLA +(1)的关系的催化剂载体材料的混合物 -a-β)RE-Al 2 O 3,其中RE-Ce-ZrO 2是重量比(a)为0至约0.7的稀土元素稳定的氧化铈氧化锆的商业OSC材料; CZMLA是本公开的催化剂载体材料,其重量比(β)为约0.2至约1,使得(a +β)203是重量比等于(1-a-β)的稀土元素稳定的氧化铝 )。 由此形成的新的洗涂层与传统的洗衣剂配方相比表现出比起至少50℃更低的活化温度。 由此制备的新型洗涂层在汽油和柴油发动机的排放控制催化剂配方中也需要较少的RE-Ce-ZrO 2氧化物和/或更少的PGM。