会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • Continuous in-line manufacturing process for high speed coating deposition via a kinetic spray process
    • 连续的在线制造工艺,用于通过动力喷涂工艺进行高速涂层沉积
    • US20060040048A1
    • 2006-02-23
    • US10924270
    • 2004-08-23
    • Taeyoung HanZhibo ZhaoBryan GillispieJohn SmithJohn Rosen
    • Taeyoung HanZhibo ZhaoBryan GillispieJohn SmithJohn Rosen
    • B05D1/08B05D1/12B05C5/00
    • C23C24/04B05B7/00
    • An improved kinetic spray system and a method for using the same in a high speed manufacturing environment are disclosed. The improved kinetic spray nozzle system comprises: a gas/powder exchange chamber connected to a first end of a powder/gas conditioning chamber having a length along a longitudinal axis of equal to or greater than 20 millimeters; a converging diverging supersonic nozzle, the supersonic nozzle having a converging section separated from a diverging section by a throat, the diverging section comprising a first portion and a second portion, with the first portion having a cross-sectional area that increases along a length of the first portion and with the second portion having a substantially constant cross-sectional area along a length of the second portion; and the converging section connected to a second end of the powder/gas conditioning chamber opposite the first end. The method includes: use of the disclosed nozzle system with the addition of hard particles that permit maximum enhancement of particle temperature while not permitting clogging of the nozzle; use of controlled particle feed rates to match the desired very high traverse speeds; and use of pre-heating of the substrate to clean it an to enhance particle bonding. With the disclosed nozzle system coupled with the disclosed methods one can apply kinetic spray coatings at traverse speeds of over 200 centimeters per second with a deposition efficiency of over 80 percent.
    • 公开了一种改进的动力喷雾系统及其在高速制造环境中的使用方法。 改进的动力喷嘴系统包括:气体/粉末交换室,其连接到粉末/气体调节室的第一端,其长度沿着纵向轴线等于或大于20毫米; 会聚发散超音速喷嘴,所述超音速喷嘴具有通过喉部与发散部分分离的会聚部分,所述发散部分包括第一部分和第二部分,所述第一部分具有横截面积,所述横截面积沿着 所述第一部分和所述第二部分沿着所述第二部分的长度具有基本恒定的横截面面积; 并且会聚部分连接到与第一端相对的粉末/气体调节室的第二端。 该方法包括:使用所公开的喷嘴系统,添加能够最大限度地提高颗粒温度同时不允许喷嘴堵塞的硬颗粒; 使用受控的颗粒进料速率来匹配所需的非常高的横移速度; 并且使用预热基板来清洁它以增强颗粒粘合。 利用公开的喷嘴系统与所公开的方法相结合,可以以超过200厘米每秒的横移速度施加动力喷涂,沉积效率超过80%。
    • 7. 发明申请
    • SECONDARY BATTERY THERMAL MANAGEMENT DEVICE AND SYSTEM
    • 二次电池热管理装置和系统
    • US20110244294A1
    • 2011-10-06
    • US12754126
    • 2010-04-05
    • Taeyoung HanKuo-Huey ChenBahram KhalighiSteven G. Goebel
    • Taeyoung HanKuo-Huey ChenBahram KhalighiSteven G. Goebel
    • H01M10/50
    • H01M10/4207H01M10/613H01M10/6552H01M10/6566
    • A thermal management device for dissipating thermal energy from a secondary battery cell includes a first plate defining a first channel and a second channel spaced apart from the first channel, wherein the first plate further defines an inlet port in communication with the first channel and an outlet port in communication with the second channel and spaced opposite the inlet port. The device includes a second plate configured for thermal energy exchange with the cell and disposed in contact with the first plate to define a cross-flow channel, wherein the cross-flow channel interconnects the first and second channels. A thermal management system includes a cell having a first temperature, a fluid having a second temperature that is less than the first temperature, and the device. The fluid is conveyable from the inlet port to the outlet port via the cross-flow channel to thereby dissipate thermal energy from the cell.
    • 用于从二次电池单元消散热能的热管理装置包括限定第一通道的第一板和与第一通道间隔开的第二通道,其中第一板还限定与第一通道连通的入口端口和出口 端口与第二通道连通并且与进口端口相对地间隔开。 该装置包括配置成与电池进行热能交换并与第一板接触并设置为与第一板接触以限定横流通道的第二板,其中该横流通道互连第一和第二通道。 热管理系统包括具有第一温度的单元,具有小于第一温度的第二温度的流体和该装置。 流体可以通过横流通道从入口端口输出到出口端口,从而从电池中散出热能。
    • 9. 发明授权
    • Acoustic HVAC control system
    • 声学HVAC控制系统
    • US06439468B1
    • 2002-08-27
    • US09909117
    • 2001-07-19
    • David K. LambertDale Lee PartinTaeyoung HanMichel Farid Sultan
    • David K. LambertDale Lee PartinTaeyoung HanMichel Farid Sultan
    • F24F7007
    • B64D13/00B60H1/00735B60H1/00757F24F11/56F24F11/77
    • The present invention is directed to a system for acoustically controlling an automotive or aircraft vehicle's automatic climate control system. The acoustic HVAC control system determines an average air temperature using an ultrasonic transducer. The transducer transmits and receives an ultrasonic pulse along a pre-selected path within the vehicle's interior and concurrently measures the interval time between sending and receiving the pulse. An average air temperature is calculated based on the interval time. The determined average air temperature is evaluated against a pre-selected setpoint temperature and determines whether the vehicle's automatic climate control system controller controls an air blower fan speed, discharge temperature, and air delivery mode to the cabin to adjust the vehicle's interior air temperature near an occupant to a desired temperature. The average air velocity along the pre-selected path can also be determined from the difference in interval times for ultrasonic pulses traveling in opposite directions along the pre-selected path.
    • 本发明涉及一种用于声学控制汽车或飞行器车辆的自动气候控制系统的系统。 声学HVAC控制系统使用超声换能器来确定平均空气温度。 换能器沿着车辆内部的预选路径发送和接收超声波脉冲,同时测量发送和接收脉冲之间的间隔时间。 基于间隔时间计算平均空气温度。 根据预先设定的设定点温度对所确定的平均空气温度进行评估,并且确定车辆的自动气候控制系统控制器是否将空气鼓风机风扇速度,排放温度和空气输送模式控制到机舱以将车辆的内部空气温度调节到靠近 乘客达到所需温度。 沿着预选路径的平均空气速度也可以根据沿预选路径沿相反方向行进的超声波脉冲的间隔时间差来确定。
    • 10. 发明授权
    • Secondary battery module
    • 二次电池模块
    • US08968904B2
    • 2015-03-03
    • US12754234
    • 2010-04-05
    • Taeyoung HanKuo-Huey ChenBahram Khalighi
    • Taeyoung HanKuo-Huey ChenBahram Khalighi
    • H01M10/50H01M2/10H01M10/615H01M10/617H01M10/625H01M10/647H01M10/6566H01M10/6567
    • H01M2/1072H01M10/615H01M10/617H01M10/625H01M10/647H01M10/6566H01M10/6567
    • A secondary battery module includes a plurality of secondary battery cells each having a measureable temperature and each spaced apart from an adjacent one of the cells to define a cooling channel therebetween. The plurality of cells includes a first one of the cells having a measureable first temperature, and a terminal one of the cells having a measureable terminal temperature and separated from the first one of the cells by at least one other of the cells. The module includes a fluid flowable within each of the cooling channels and in thermal energy exchange relationship with each of the cells. The module includes a housing having a surface defining an inlet channel disposed in fluid flow communication with each of the cooling channels and configured for directing the fluid flow to each of the cooling channels. The surface has a shape defined by a spline.
    • 二次电池模块包括多个二次电池单元,每个二次电池单元具有可测量的温度,并且每个二次电池单元与彼此相邻的单元间隔开,以在其间限定冷却通道。 所述多个单元包括具有可测量的第一温度的第一单元,并且所述单元的末端单元具有可测量的终端温度,并且由所述单元中的至少另一个与所述第一单元隔开。 该模块包括在每个冷却通道内可流动的流体以及与每个电池的热能交换关系。 模块包括具有限定入口通道的表面的壳体,该入口通道设置成与每个冷却通道流体流动连通并且被配置为将流体流引导到每个冷却通道。 表面具有由花键定义的形状。