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    • 2. 发明专利
    • TENT
    • AU2003255105A1
    • 2004-03-11
    • AU2003255105
    • 2003-08-08
    • GAO XIN WEI
    • GAO XIN WEI
    • E04H15/28
    • The present invention relates to a tent including a tent frame and a canvas which covers the periphery of the tent frame, characterized in that the tent frame includes an umbrella-type frame for supporting the canvas and includes a spreader frame for spreading and opening the umbrella-type frame, the spreader frame being positioned in an inner side of an upper part of the umbrella-type frame, the umbrella-type frame including an upper central head in the middle and ribs distributed evenly around the upper central head and hinged to the upper central head, the spreader frame including a lower central head in the middle and spreaders distributed evenly around the lower central head and hinged to the lower central head, outside ends of the spreaders being hinged to upper parts of the ribs. During use, the present apparatus can be pitched and closed like a folding umbrella, is handy and easy to assemble and disassemble, can be adjusted in size in accordance with necessity, and is also substantially advantageous in that it saves time and labor.
    • 3. 发明公开
    • A PHASE SWITCH AND A STANDING WAVE LINEAR ACCELERATOR WITH THE PHASE SWITCH
    • STEELWELLEN-LINEARBESCHLEUNIGER MIT PHASENSCHALTER
    • EP1715730A1
    • 2006-10-25
    • EP04733523.7
    • 2004-05-18
    • MIAN YANG GAO XIN QU TWIN PEAK TECHNOLOGY DEVELOP.
    • YAO, Chongguo, Room 304, Unit A
    • H05H9/04
    • H05H9/04
    • A phase switch (energy switch) comprising a three-cavity system (an end-coupled cavity + a side-passed accelerate cavity + an end-coupled cavity) and a separate single couple cavity is disclosed. The phase shift between the adjacent accelerate cavities is π when the three-cavities system is disordered (state '0'); and a microwave pass through the three-cavities system to the adjacent accelerate cavities, the phase between the adjacent accelerate cavities is change to 2π (or 0) when the single couple cavity is disordered (state '1'). When the state 0 changes to state 1, the field phase in the structure behind the system is changed to π, thereby to switch the phase. In the two states, the entire structure operates in π/2 mode, that is very stable. That is very important for the medical accelerator. The detaining components have been moved outside the cavity when the single couple cavity or the three-cavity system is in the operate state, without warring about high frequency breakdown. By changing couple between the two end-coupled cavities in the three-cavity system and the adjacent accelerate cavities and between the cavities in the system, the relative field-strength in the acceleration section besides the switching is changed while the phase reverses. It can be used for 6Mev accelerator middle-energy or high-energy accelerator.
    • 公开了一种包括三腔系统(端耦合腔+侧通加速腔+端耦合腔)和单独耦合腔的相位开关(能量开关)。 当三腔系统无序(状态'0')时,相邻加速腔之间的相移为 - 。 并且微波通过三腔系统到相邻的加速腔,当单耦合空腔无序(状态'1')时,相邻加速腔之间的相位变为2(或0)。 当状态0变为状态1时,系统后面的结构中的场相位变为À,从而切换相位。 在这两个状态下,整个结构以À/ 2模式运行,非常稳定。 这对于医疗加速器非常重要。 当单耦合空腔或三腔系统处于工作状态时,锁定部件已经移动到腔体外部,而不会导致高频击穿。 通过在三腔系统中的两个端部耦合空腔和相邻加速腔之间以及系统中的空腔之间改变耦合,除了开关之外的加速部分中的相对场强在相位反转时改变。 可用于6Mev加速器中能或高能加速器。
    • 7. 发明申请
    • ELECTROCHEMICAL DESALINATION SYSTEM AND METHOD
    • 电化学脱盐系统及方法
    • WO2011041013A1
    • 2011-04-07
    • PCT/US2010/042505
    • 2010-07-20
    • GENERAL ELECTRIC COMPANYNIU, RanYANG, HaiBARBER, John, H.HU, MinXIONG, RihuaCAI, WeiGAO, XinLIU, Yunfeng
    • NIU, RanYANG, HaiBARBER, John, H.HU, MinXIONG, RihuaCAI, WeiGAO, XinLIU, Yunfeng
    • C02F1/469
    • C02F1/4691C02F2103/08C02F2201/46135C02F2201/4614C02F2209/005
    • An electrochemical desalination system (10) includes a first and a second electrochemical device (12, 14) and a controller (18). The first and second electrochemical devices (12, 14) each comprises a electrochemical desalination module comprising at least one pair of electrodes (32, 33, 34, 35) and a compartment between each pair of electrodes (32, 33, 34, 35) for receiving an electrolyte solution. Each of the first and second electrochemical desalination devices comprises a plurality of successive operation cycles. Each cycle comprises a charging mode of operation for charging each pair of electrodes (32, 33, 34, 35) and for adsorbing ions in the electrolyte solution on the electrodes, and a discharging mode of operation for discharging the pair of electrodes (32, 33, 34, 35) and for desorbing ions from the pair of electrodes (32, 33, 34, 35). One of the first and second electrochemical desalination devices is in a discharging mode and the at least one pair of electrodes release electrical current, while the other of the first and second electrochemical desalination devices is in a charging mode of operation and receives the electrical current released from said one of the first and second electrochemical desalination device.
    • 电化学脱盐系统(10)包括第一和第二电化学装置(12,14)和控制器(18)。 第一和第二电化学装置(12,14)各自包括电化学脱盐模块,其包括至少一对电极(32,33,34,35)和每对电极(32,33,34,35)之间的隔室, 用于接收电解质溶液。 第一和第二电化学脱盐装置中的每一个包括多个连续的操作循环。 每个循环包括用于对每对电极(32,33,34,35)充电并用于将电解质中的离子吸附在电极上的充电操作模式,以及用于将一对电极(32,33,34) 33,34,35),并且用于从一对电极(32,33,34,35)解吸离子。 第一和第二电化学脱盐装置之一处于放电模式,并且至少一对电极释放电流,而第一和第二电化学脱盐装置中的另一个处于充电操作模式并且接收释放的电流 从所述第一和第二电化学脱盐装置中的一个。
    • 10. 发明申请
    • MILLING DEVICE WITH ADJUSTABLE MILLING OPERATION
    • 具有可调磨削操作的铣削装置
    • WO2012003877A1
    • 2012-01-12
    • PCT/EP2010/059872
    • 2010-07-09
    • FREWITT FABRIQUE DE MACHINES SAGAO, XinVIRDIS, Antoine
    • GAO, Xin
    • B02C4/42B02C4/26B02C18/26B02C18/06
    • B02C25/00B02C4/26B02C4/42B02C18/062B02C18/144B02C18/24B02C18/26B02C2023/165
    • A milling device (1) for performing a milling operation comprising a milling unit (2) comprising a housing (3) defining a milling chamber (16) that can be filled with a material to be milled, a rotor assembly (4) rotatably mounted in the housing (3), and a screen assembly (13) for fractionating the material milled by the rotor assembly (4) in movement and extending below the rotor assembly (4); and a drive unit (20) adapted for controlling the movements of the rotor assembly (4) relative to the screen assembly (13) during the milling operation; wherein said drive unit (20) is configured to produce an oscillating movement of the rotor assembly (4), the oscillating movement having an oscillation angle that can be varied during the milling operation when controlling the movements of the rotor assembly (4) relative to the screen assembly (13). The milling device (1) has improved milling efficiency.
    • 一种用于执行铣削操作的铣削装置(1),其包括铣削单元(2),所述铣削单元(2)包括限定可被待铣削材料填充的铣削室(16)的壳体(3),转子组件(4) 在所述壳体(3)中,以及筛网组件(13),用于分级由所述转子组件(4)铣削的材料移动并延伸到所述转子组件(4)的下方; 以及驱动单元(20),其适于在所述铣削操作期间控制所述转子组件(4)相对于所述筛网组件(13)的运动; 其中所述驱动单元(20)构造成产生所述转子组件(4)的摆动运动,所述摆动运动具有摆动角度,所述摆动角度在所述铣削操作期间可以在控制所述转子组件(4)相对于 屏幕组件(13)。 铣削装置(1)具有提高的铣削效率。