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    • 6. 发明申请
    • POSITIVE ELECTRODE OF LITHIUM SECONDARY BATTERY AND METHOD FOR PRODUCING THE SAME
    • 锂二次电池的正电极及其制造方法
    • US20110027649A1
    • 2011-02-03
    • US12934316
    • 2009-03-23
    • Takeshi Abe
    • Takeshi Abe
    • H01M4/60B05D5/12
    • H01M4/131H01M4/0404H01M4/1391H01M4/621H01M4/622Y10T29/49115
    • The present invention provides a positive electrode (30) for lithium secondary batteries, including: a barrier layer, having a conductive material and at least one type of water-insoluble polymer that is soluble in organic solvents but insoluble in water, as a binder; and a positive electrode active material layer, being a positive electrode active material layer (35) stacked on the barrier layer, and having a positive electrode active material and at least one type of aqueous polymer that is insoluble in organic solvents but soluble or dispersible in water, as a binder. A content of the water-insoluble polymer in the barrier layer is 55 to 85 mass % with respect to 100 mass % of a total amount of the conductive material plus the water-insoluble polymer.
    • 本发明提供一种用于锂二次电池的正极(30),包括:阻挡层,具有导电材料和至少一种可溶于有机溶剂但不溶于水的水不溶性聚合物作为粘合剂; 和正极活性物质层,作为层叠在阻挡层上的正极活性物质层(35),具有正极活性物质和不溶于有机溶剂但可溶于或分散于其中的至少一种水性聚合物 水,作为粘合剂。 相对于导电材料的总量加上水不溶性聚合物的100质量%,阻挡层中的水不溶性聚合物的含量为55〜85质量%。
    • 7. 发明授权
    • Device for judging types of liquid in container and control method therefor
    • 用于判断集装箱液体类型的装置及其控制方法
    • US07466236B2
    • 2008-12-16
    • US10564472
    • 2004-07-14
    • Takeshi AbeYasuhiko ShinozawaTomohide MachidaKouichiro Yamada
    • Takeshi AbeYasuhiko ShinozawaTomohide MachidaKouichiro Yamada
    • G08B21/00
    • G01N27/22
    • [Theme] To provide a device or a judging method for judging the type of liquid inside a container that can be applied to containers of various shapes and can be applied to cases where the remaining amounts of liquids in containers differ. [Solution Means] This invention's device for judging the type of liquid inside a container is equipped with: a plate capacitor 1, wherein two plate electrodes 1a and 1b are positioned in opposing manner; a container supporting member 3, holding, in a region besides the region sandwiched between plate electrodes 1a and 1b, a non-conductive container 2 that can contain a liquid in its interior; an oscillation circuit 4, containing capacitor 1; and a control part 5, detecting the oscillation frequency of the oscillation circuit; and container supporting member 3 is arranged to adjust the distance from plate electrode 1a to container 2 in accordance with the size of container 2. Also, a third electrode 18, of the same electric potential as plate electrode 1b, is disposed in contact with a bottom part of container 2.
    • [主题]提供一种用于判断可用于各种形状的容器的容器内的液体类型的装置或判断方法,并且可以应用于容器中剩余液体量不同的情况。 [解决方案]本发明的用于判断容器内的液体类型的装置配备有:平板电容器1,其中两个板电极1a和1b以相对的方式定位; 容器支撑构件3,在夹在板电极1a和1b之间的区域之外的区域中,保持在其内部可以容纳液体的非导电容器2; 包含电容器1的振荡电路4; 以及控制部5,检测振荡电路的振荡频率; 并且容器支撑构件3被布置成根据容器2的尺寸调节从板电极1a到容器2的距离。而且,与板电极1b相同的电位的第三电极18被布置成与 集装箱2的底部。
    • 8. 发明授权
    • Apparatus for determining type of liquid in a container and method for controlling the apparatus
    • 用于确定容器中液体类型的装置和用于控制装置的方法
    • US07405667B2
    • 2008-07-29
    • US10584331
    • 2004-12-22
    • Takeshi AbeYasuhiko ShinozawaYoshinobu MiyagiKouichiro YamadaTomohide Machida
    • Takeshi AbeYasuhiko ShinozawaYoshinobu MiyagiKouichiro YamadaTomohide Machida
    • G08B17/00
    • G01N25/18
    • A technique for quickly determining the type of liquid in a container externally regardless of the material of the container, preferably contactlessly. A halogen heater 102 and an infrared thermopile 103 are disposed outside an electrically conductive container 101 made of aluminum, for example. The surface temperature of the container 101 is measured when the halogen heater 102 is off, followed by the turning-on of the halogen heater 102 for two seconds, for example. The surface temperature of the container 101 is then measured, and a difference from the previous result of measurement is calculated. If the difference is smaller than a threshold value, the liquid in the container is determined to be a safe liquid consisting primarily of water, and a blue lamp is activated. If the difference is greater than the threshold value, the liquid in the container cannot be determined to be a safe liquid consisting primarily of water, and a red lamp is activated, indicating abnormality.
    • 无论容器的材料如何,在外部快速确定容器中液体的类型的技术,优选非接触式地。 卤素加热器102和红外热电堆103例如设置在由铝制成的导电性容器101的外侧。 当卤素加热器102关闭时,测量容器101的表面温度,然后例如卤素加热器102接通两秒钟。 然后测量容器101的表面温度,并且计算与先前测量结果的差。 如果差小于阈值,则容器中的液体被确定为主要由水组成的安全液体,蓝色灯被激活。 如果该差大于阈值,则容器中的液体不能确定为主要由水组成的安全液体,并且红灯亮起,表示异常。
    • 9. 发明申请
    • Multi-chamber noise control system
    • 多室噪声控制系统
    • US20080144852A1
    • 2008-06-19
    • US11638826
    • 2006-12-14
    • Robert G. RebandtMing-te ChengTakeshi Abe
    • Robert G. RebandtMing-te ChengTakeshi Abe
    • G10K11/16
    • G10K11/178G10K2210/1282G10K2210/129G10K2210/3224
    • A noise control system is operable within a box-like structure provided by the dual bulkhead plenum of the vehicle dashboard positioned within the transfer path along which the noise is being transmitted from the source of the generated noise to the receiver of the noise in the passenger compartment of an automobile. The plenum is divided into discrete chambers into each of which is provided a counter noise generating apparatus to create a counteracting noise offsetting the noise generated at the source. The acoustic resonance of the chambers amplifies the noise control energy. The geometry of the individual chambers can be varied to optimize the packaging and sound control or shaping strategy. The sound energy permitted to pass through the plenum to the driver's side of the passenger compartment can be tuned to be different than the noise received in the passenger's side.
    • 噪声控制系统可在由位于传送路径内的车辆仪表板的双隔板增压室所提供的盒状结构中操作,沿着该传输路径将噪声从所产生的噪声的源传送到乘客的噪声的接收器 汽车隔间 增压室被分成分立的室,其中每个都设置有反噪声产生装置,以产生抵消在源处产生的噪声的抵消噪声。 室的声共振放大噪声控制能量。 可以改变各个室的几何形状以优化包装和声音控制或成形策略。 允许通过通风室到乘客舱驾驶员侧的声能可以被调节为与乘客侧面接收的噪音不同。