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    • 92. 发明申请
    • CONTINUOUSLY VARIABLE TRANSMISSION
    • 连续可变传输
    • WO2016082133A1
    • 2016-06-02
    • PCT/CN2014/092305
    • 2014-11-26
    • GM GLOBAL TECHNOLOGY OPERATIONS LLC
    • DUAN, ChengwuHUANG, Ying
    • F16H9/24F16H9/18F16G5/18
    • F16H9/24F16G5/18F16G13/04F16G13/08F16H9/18F16H55/30F16H55/56
    • The CVT includes a first pulley (30) and a second pulley (32). Each of the first pulley and the second pulley includes a first sheave (38), a second sheave (40), and a pulley axle (44) operatively coupled between the first sheave and the second sheave. The first sheave can move relative to the second sheave along the pulley axle. Each of the first sheave and the second sheave includes a sheave body (50) and a plurality of sheave teeth (58) protruding from the sheave body. The CVT further includes an endless rotatable device (34) operatively coupled between the first pulley and the second pulley. The endless rotatable device includes a plurality of pins (80) interconnecting at least two of the links. The endless rotatable device further includes a plurality of device teeth (90) each coupled to the pins.
    • CVT包括第一滑轮(30)和第二滑轮(32)。 第一滑轮和第二滑轮中的每一个包括可操作地联接在第一滑轮和第二滑轮之间的第一滑轮(38),第二滑轮(40)和滑轮轴(44)。 第一滑轮可以沿着滑轮轴相对于第二滑轮移动。 第一滑轮和第二滑轮中的每一个包括滑轮体(50)和从滑轮体突出的多个滑轮齿(58)。 CVT还包括可操作地联接在第一滑轮和第二滑轮之间的无限可旋转装置(34)。 无端可旋转装置包括互连至少两个连杆的多个销钉(80)。 无限可旋转装置还包括多个装置齿(90),每个装置齿与销相连。
    • 93. 发明申请
    • MODE TRANSITION CONTROL IN A CVT WITH FIXED GEAR FUNCTIONALITY
    • 具有固定齿轮功能的CVT中的模式转换控制
    • WO2016082132A1
    • 2016-06-02
    • PCT/CN2014/092302
    • 2014-11-26
    • GM GLOBAL TECHNOLOGY OPERATIONS LLC
    • HUANG, YingDUAN, Chengwu
    • F16H9/24F16H61/02F16G5/20F16G1/28
    • F16H61/66272F16G1/28F16G5/20F16H9/18F16H9/24F16H55/171F16H55/56F16H61/66236F16H61/66259F16H2059/465F16H2061/0087F16H2061/009
    • A vehicle includes a power plant, continuously variable transmission (CVT), drive wheels, sensors, and controller. The CVT achieves a fixed gear/positive engagement and friction drive modes, and includes an input member that receives input torque from the power plant, an output member, and a variator assembly having drive and driven variator pulleys. The pulleys are connected to each other via an endless rotatable drive element, and to a respective one of the input and output members. Pulley actuators change a CVT speed ratio. The controller calculates a relative slip of the pulleys using measured speeds and displacements from the sensors, reduces the relative slip until the relative slip is below a calibrated speed limit or within a calibrated speed range via actuator control signal to the pulley actuators, and commands the fixed gear/positive engagement mode via positive engagement control signals to the CVT until the relative slip reaches zero.
    • 车辆包括发电厂,无级变速器(CVT),驱动轮,传感器和控制器。 CVT实现了固定齿轮/正接合和摩擦驱动模式,并且包括接收来自发电厂,输出构件和具有驱动和驱动变速器滑轮的变速器组件的输入扭矩的输入构件。 滑轮通过无限可旋转的驱动元件和输入和输出构件中的相应的一个彼此连接。 滑轮执行器更改CVT变速比。 控制器使用来自传感器的测量速度和位移计算滑轮的相对滑差,减小相对滑差,直到相对滑差低于校准速度极限,或者通过致动器控制信号到滑轮致动器的校准速度范围内,并命令 固定齿轮/正接合模式通过正接合控制信号到CVT,直到相对滑差达到零。
    • 94. 发明申请
    • COMBINATION OF PLASMA COATING AND SPRAY COATING FOR LITHIUM BATTERY ELECTRODE FABRICATION
    • 等离子体涂料和喷涂涂料用于锂电池电极制造的组合
    • WO2016082120A1
    • 2016-06-02
    • PCT/CN2014/092255
    • 2014-11-26
    • GM GLOBAL TECHNOLOGY OPERATIONS LLCYU, Zhiqiang
    • YU, ZhiqiangGAYDEN, Xiaohong Q.WU, Qiang
    • H01M4/04H01M4/13
    • H01M4/625H01M4/0419H01M4/139H01M4/622H01M10/0525
    • An atmospheric plasma spray device is used to direct a stream of plasma-heated, particulate, lithium battery electrode materials to form a porous layer of the electrode particles on a surface of a compatible current collector metal foil. Subsequently, a non-plasma spray device is used to direct a stream of droplets of an aqueous solution of a polymeric binder material onto and into the porous layer of electrode particles. Water evaporates from the droplets of binder solution as the droplets infiltrate the porous electrode material and coat the electrode particles and current collector surface. When the water (or other solvent) has evaporated from the dispersed droplets of polymer material, the polymer binder bonds the particles to each other and to the current collector surface. The polymer spray may immediately follow the deposition of the electrode particles, or follow later, even at a downstream spray location.
    • 大气等离子体喷射装置用于引导等离子体加热的颗粒状锂电池电极材料流,以在相容的集电器金属箔的表面上形成电极颗粒的多孔层。 随后,使用非等离子体喷射装置将聚合物粘合剂材料的水溶液流引导到电极颗粒的多孔层上。 当液滴渗透多孔电极材料并涂覆电极颗粒和集电器表面时,水从粘合剂溶液的液滴中蒸发掉。 当水(或其它溶剂)从分散的聚合物材料的液滴中蒸发出来时,聚合物粘合剂将颗粒彼此粘结并聚集到集电器表面。 聚合物喷雾可以立即跟随电极颗粒的沉积,或者甚至在下游喷涂位置跟随。
    • 100. 发明申请
    • SYSTEMS AND METHODS FOR REINFORCED ADHESIVE BONDING
    • 用于增强粘合粘结的系统和方法
    • WO2015154234A1
    • 2015-10-15
    • PCT/CN2014/074943
    • 2014-04-09
    • GM GLOBAL TECHNOLOGY OPERATIONS LLCYANG, Xin
    • YANG, XinZHANG, JingLI, YongqiangWANG, JeffYANG, David
    • C09J5/00
    • C09J11/04C08K3/08C08K7/18C09J5/00C09J5/06C09J2205/102C09J2400/163
    • A bonding system comprising a first substrate, a first substrate (110) having a first contact surface (115) including a plurality of grooves (140), a second substrate (120) having a second contact surface (125), an adhesive (200) in contact with the first contact surface (115), and the second contact surface (125), and a plurality of solder balls (300) positioned at least partially in the adhesive (200) and in contact with the first contact surface (115). A bonding method comprising applying, on a first contact surface (115) including a plurality of grooves (140) an adhesive (200), positioning,at least partially in the adhesive (200), each of a plurality of solder balls (300), connecting, to a portion of the adhesive (200)opposite the first contact surface (115), a second contact surface (125), and applying heat to the first contact surface (115) such that at least one of the plurality of solder balls (300) reaches a solder-ball bonding temperature whereat the solder ball bonds to the first contact surface (115).
    • 一种接合系统,包括第一基板,具有包括多个凹槽(140)的第一接触表面(115)的第一基板(110),具有第二接触表面(125)的第二基板(120),粘合剂(200) )与所述第一接触表面(115)和所述第二接触表面(125)接触并且至少部分地位于所述粘合剂(200)中并且与所述第一接触表面(115)接触的多个焊球(300) )。 一种接合方法,包括在包括多个凹槽(140)的第一接触表面(115)上施加至少部分地在所述粘合剂(200)中定位多个焊球(300)中的每一个的粘合剂(200) ,连接到与第一接触表面(115)相对的粘合剂(200)的一部分,第二接触表面(125),并且向第一接触表面(115)施加热量,使得多个焊料 球(300)达到焊球接合温度,焊球与第一接触面(115)接合。