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    • 1. 发明申请
    • SYSTEM AND METHOD FOR PRODUCING AN AUDIBLE ALERT FOR A VEHICLE
    • 用于生成车辆的可信警报的系统和方法
    • US20120050020A1
    • 2012-03-01
    • US12872610
    • 2010-08-31
    • Heather KONETTsuyoshi KANUMAManabu SATOToshiyuki TABATA
    • Heather KONETTsuyoshi KANUMAManabu SATOToshiyuki TABATA
    • G08B3/00
    • B60Q5/008G10K15/02
    • A method for controlling a vehicle to emanate an audible alert including determining when the vehicle is operating, and controlling a speaker system in the vehicle to emanate the audible alert outside of the vehicle when the vehicle is operating based on stored information representative of an internal combustion engine (ICE) noise profile. The audible alert has a sound profile including a simultaneous emanation of first, second and third audible frequency components having first, second and third frequencies, respectively, with the first and second frequencies emanating at first and second sound pressure levels greater than first and second representative sound pressure levels of the ICE noise profile at the first and second frequencies, respectively, and the third frequency emanating at a third sound pressure level less than a third representative sound pressure level of the ICE noise profile at the third frequency.
    • 一种用于控制车辆发出可听警报的方法,包括确定车辆何时运行,并且当车辆正在操作时,控制车辆中的扬声器系统,以便基于存储的表示内燃的信息来发出车辆外的可听警报 发动机(ICE)噪音曲线。 声音警报具有声音简档,包括分别具有第一,第二和第三声音频率分量的同时发音,所述第一,第二和第三声音频率分量具有分别具有大于第一和第二代表的第一和第二声压级的第一和第二频率 分别在第一和第二频率处的ICE噪声分布的声压级以及在第三频率处的ICE噪声分布的小于第三代表声压级的第三声压级发出的第三频率。
    • 2. 发明申请
    • VEHICLE BATTERY TEMPERATURE CONTROL SYSTEM AND METHOD
    • 车用电池温度控制系统及方法
    • US20120003510A1
    • 2012-01-05
    • US12828149
    • 2010-06-30
    • Ronald S. EISENHOUR
    • Ronald S. EISENHOUR
    • H01M10/50
    • H01M10/613H01M10/625H01M10/63H01M10/6568H01M10/6569H01M10/6572H01M10/663
    • A vehicle battery temperature control system includes a battery, a housing and a heat exchanger. The battery is operable to discharge thermal energy, and has a heat sink configured to transfer the thermal energy from the battery. The housing has a chamber that is configured to receive the battery and contain a saturated liquid coolant that substantially immerses the heat sink so that the coolant receives the thermal energy from operation of the battery to cause a phase change of the coolant from a liquid phase to a vapor phase. The heat exchanger is configured to receive vapor phase coolant from the chamber and remove thermal energy from the vapor phase coolant to change the coolant from the vapor phase to the liquid phase, and is further configured to return the liquid phase coolant to the chamber.
    • 车载电池温度控制系统包括电池,壳体和热交换器。 电池可操作以排放热能,并且具有配置为从电池传递热能的散热器。 壳体具有被配置为容纳电池并容纳基本上浸入散热器的饱和液体冷却剂的室,使得冷却剂从电池的操作接收热能,以使冷却剂从液相变相到 气相。 热交换器被配置为从腔室接收气相冷却剂并且从气相冷却剂中除去热能,以将冷却剂从气相改变到液相,并且还被构造成将液相冷却剂返回到室。
    • 3. 发明申请
    • VEHICLE INFORMATION SYSTEM
    • 车辆信息系统
    • US20110224894A1
    • 2011-09-15
    • US12723231
    • 2010-03-12
    • Chris HendersonDaryl Smith
    • Chris HendersonDaryl Smith
    • G06F7/00
    • G07C5/004B60K35/00B60K2350/1092F02B77/084Y02T10/84
    • A vehicle information system operating method performs operations comprising determining an operational period, determining a movement period, determining a modification factor, determining a fuel economy value and determining an adjusted fuel economy value. The determining of the operational period determines the operational period during which a vehicle is running. The determining of the movement period determines the movement period during which the vehicle is in motion. The determining of the modification factor determines the modification factor based on respective durations of the operational period and the movement period. The determining of the fuel economy value determines the fuel economy value associated with the operational period. The determining of the adjusted fuel economy value determines the adjusted fuel economy value based on the fuel economy value and the modification factor.
    • 车辆信息系统操作方法执行包括确定操作时段,确定移动时段,确定修改因子,确定燃料经济性值和确定调整后的燃料经济性的操作。 运行期间的确定决定了车辆运行期间的运行时间。 运动周期的确定决定了车辆运动期间的运动周期。 修改因子的确定基于操作周期和移动周期的相应持续时间来确定修改因子。 确定燃油经济性值决定了与运行期间相关的燃油经济性值。 调整后的燃料经济性值的确定基于燃料经济性值和修正因子确定经调节的燃料经济性值。
    • 5. 发明申请
    • CONSOLE LID FRICTION HINGE
    • 控制杆滑动铰链
    • US20110215606A1
    • 2011-09-08
    • US12719303
    • 2010-03-08
    • Alpesh Trivedi
    • Alpesh Trivedi
    • B60N3/00E05F3/20
    • B60N3/00E05F3/20E05Y2900/538Y10T16/5381
    • Embodiments of vehicle consoles and hinges for vehicle consoles are disclosed herein. One embodiment of a hinge for a vehicle console has a fixed component attached to the base structure of the console, a movable component attached to the lid of the console and a shaft connecting the fixed component to the movable component. A spacer is positioned on the shaft between and in contact with at least a portion of both the fixed and movable components and a securing member is positioned on the shaft to apply pressure against at least one of the fixed component and the movable component to produce friction between the movable component and the spacer and to resist rotational movement of the lid about an axis of the shaft.
    • 本文公开了用于车辆控制台的车辆控制台和铰链的实施例。 用于车辆控制台的铰链的一个实施例具有附接到控制台的基座结构的固定部件,附接到控制台的盖的可移动部件和将固定部件连接到可移动部件的轴。 间隔件定位在轴之间并且与固定和可移动部件的至少一部分接触并且固定构件定位在轴上以对固定部件和可移动部件中的至少一个施加压力以产生摩擦 在可移动部件和间隔件之间,并且抵抗盖绕轴的轴线的旋转运动。
    • 7. 发明申请
    • VEHICLE AIR CONDITIONING SYSTEM
    • 车用空调系统
    • US20110132014A1
    • 2011-06-09
    • US12633099
    • 2009-12-08
    • Ronald S. Eisenhour
    • Ronald S. Eisenhour
    • F25B1/00G05B15/00
    • F25B49/022B60H1/3216B60H2001/3238B60H2001/327F25B2600/0251F25B2600/23F25B2700/19F25B2700/21G05B15/02
    • A vehicle air conditioning system includes a controller that initially controls operation of a compressor to switch between inactive and active states in response to detecting that an operating condition is equal to or surpasses a first operation threshold. The controller determines a first time delay occurring between initiating the switch from one of the inactive and active states to the other of the compressor, and an actual change in the operating condition. The controller subsequently defines a first limit that is offset from the first operation threshold such that the controller controls the operation of the compressor to subsequently switch from the one of inactive and active states to the other in response to detecting that the operating condition is equal to or surpasses the first limit.
    • 车辆空调系统包括:控制器,其响应于检测到操作条件等于或超过第一操作阈值,初始地控制压缩机的操作以在不活动状态和活动状态之间切换。 控制器确定在从一个非活动状态和活动状态发起到另一个压缩器之间发生的第一时间延迟以及操作条件的实际变化。 控制器随后定义偏离第一操作阈值的第一限制,使得控制器响应于检测到操作条件等于压缩机控制压缩机的操作以随后从非活动状态和活动状态之一切换到另一个 或超过第一个限制。
    • 9. 发明申请
    • VEHICLE SLIDING DOOR STRUCTURE
    • 车辆滑动门结构
    • US20110099913A1
    • 2011-05-05
    • US12610923
    • 2009-11-02
    • Naga A. NarayanaErik AndersonMicah P. WoolaceTadashi Masuda
    • Naga A. NarayanaErik AndersonMicah P. WoolaceTadashi Masuda
    • E06B3/46
    • B60J5/06B60J5/0427
    • A vehicle sliding door structure includes an inner door panel, an outer door panel, a reinforcing bracket and a first bulkhead. The inner door panel has a vertically oriented sash section extending along an outboard facing surface thereof adjacent to a rearward side of an outer peripheral edge thereof. The sash section has a latch mechanism supporting part proximate a mid-region of the rearward side of the outer peripheral edge. The outer door panel is fixed to the outer peripheral edge of the inner door panel. The reinforcing bracket is fixedly attached to the outboard facing surface of the inner door panel along a region of the sash section that extends from below the latch mechanism supporting part to above the latch mechanism supporting part. The first bulkhead is fixedly attached to the reinforcing bracket and extends from the reinforcing bracket toward the outer door panel.
    • 车辆滑动门结构包括内门板,外门板,加强支架和第一隔板。 内门板具有垂直定向的窗框部分,其沿着其外侧面对面邻近其外周边缘的后侧延伸。 扇形部分具有靠近外周边缘的后侧的中间区域的闩锁机构支撑部分。 外门板固定在内门板的外周缘上。 所述加强支架沿着从所述闩锁机构支撑部件的下方延伸到所述闩锁机构支撑部件的上方的所述窗扇部分的区域固定地附接到所述内门板的所述外侧面对面。 第一隔板固定地附接到加强支架并从加强支架向外门板延伸。
    • 10. 发明申请
    • VEHICLE SLIDING DOOR STRUCTURE
    • 车辆滑动门结构
    • US20110025099A1
    • 2011-02-03
    • US12533812
    • 2009-07-31
    • Jeffrey G. PencakNaga A. Narayana
    • Jeffrey G. PencakNaga A. Narayana
    • B60J5/06E05D15/06
    • E05D15/1047B60J5/06E05D2015/1055E05F5/06E05Y2201/224E05Y2201/64E05Y2600/45E05Y2900/531
    • A vehicle body structure has a first structural member that at least partially defines an upper side of a door opening and a second structural member that extends downward from the first structural member and at least partially defines one side of the door opening. An elongated track member is attached on the first structural member. A sliding door is movably supported on the track member for movement along the track member between a closed position and an open position. A stopper bracket is rigidly attached on the second structural member. The stopper bracket is dimensioned and configured to absorb impacting forces of the sliding door as the sliding door moves from the closed position to the open position. The stopper bracket is rigidly attached to the track member such that the impacting forces are at least partially transmitted to the track member.
    • 车身结构具有至少部分地限定门开口的上侧的第一结构构件和从第一结构构件向下延伸并且至少部分地限定门开口的一侧的第二结构构件。 细长轨道构件附接在第一结构构件上。 滑动门可移动地支撑在轨道构件上,用于沿着轨道构件在关闭位置和打开位置之间移动。 止动器支架刚性地附接在第二结构构件上。 止动器支架的尺寸和尺寸设计成吸收滑动门随着滑动门从关闭位置移动到打开位置时的冲击力。 止动器支架刚性地附接到轨道构件,使得冲击力至少部分地传递到轨道构件。