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    • 1. 发明授权
    • Viscous fluid type heat generator with temperature sensor incorporated
therein
    • 含有温度传感器的粘性流体型发热体
    • US5893342A
    • 1999-04-13
    • US62850
    • 1998-04-20
    • Takashi BanShigeru SuzukiNobuaki HoshinoKiyoshi Yagi
    • Takashi BanShigeru SuzukiNobuaki HoshinoKiyoshi Yagi
    • B60H1/03B60H1/08B60H1/14F24J3/00F22B3/06
    • B60H1/14F24J3/003B60H2001/146
    • A viscous fluid type heat generator which comprises a housing assembly defining therein a heat generating chamber in which heat is generated, and a heat receiving chamber arranged adjacent to the heat generating chamber for permitting a heat exchanging fluid to circulate therethrough to receive heat transferred from the heat generating chamber. A drive shaft is rotatably supported by the housing assembly and is operationally connected to an external rotation-drive source. A rotor element is mounted onto and driven by the drive shaft for rotation within the heat generating chamber. A viscous fluid is held in a gap defined between the inner wall surfaces of the heat generating chamber and the outer surfaces of the rotor element, for heat generation under shearing stress applied by the rotating rotor element. A temperature sensor is provided to detect a temperature of a part of the viscous fluid flowing in an outer peripheral region of the gap. Heat generation suppressing means is provided for suppressing the heat generation of the viscous fluid under the shearing stress when the temperature of the part of the viscous fluid, detected by the temperature sensor, exceeds a predetermined limit temperature.
    • 一种粘性流体型热发生器,其包括壳体组件,其中限定有产生热量的发热室,以及邻近发热室设置的热接收室,用于允许热交换流体在其中循环以接收从其中传递的热量 发热室。 驱动轴由壳体组件可旋转地支撑并且可操作地连接到外部旋转驱动源。 转子元件安装在驱动轴上并由驱动轴驱动以在发热室内旋转。 粘性流体被保持在限定在发热室的内壁表面和转子元件的外表面之间的间隙中,用于在由旋转的转子元件施加的剪切应力下产生热量。 提供温度传感器以检测在间隙的外周区域中流动的一部分粘性流体的温度。 当由温度传感器检测到的粘性流体的一部分的温度超过预定的极限温度时,提供发热抑制装置,用于抑制粘性流体在剪切应力下的发热。
    • 4. 发明授权
    • Heating apparatus and method for vehicle
    • 车辆加热装置及方法
    • US5829676A
    • 1998-11-03
    • US970144
    • 1997-11-12
    • Takashi BanShigeru SuzukiNobuaki Hoshino
    • Takashi BanShigeru SuzukiNobuaki Hoshino
    • B60H1/08B60H1/03F24J3/00B60H1/02
    • B60H1/038F24J3/003
    • A heating method and apparatus for vehicles. A viscous fluid type heater is located in a vehicle fluid circuit. The heater has a heating chamber that holds viscous fluid and a rotor. The rotor rotates to shear the viscous fluid and produce heat. The heat is transmitted to a heat exchange chamber located adjacent to the heating chamber. The rotor rotates at variable rotation velocity, which affects the temperature of the viscous fluid. Circulating fluid in the fluid circuit and is heated in the heat exchange chamber. The heater includes a reservoir chamber communicating with the heating chamber to store viscous fluid. The heater has a valve that selectively connects and disconnects the reservoir chamber with the heating chamber to regulate heat production. The apparatus has a detecting device for detecting a temperature or a speed that is indicative of the temperature of the viscous fluid. The apparatus also has a controller for controlling the valve to reduce heat production when the temperature of the viscous fluid is deemed to be high.
    • 一种用于车辆的加热方法和装置。 粘性流体型加热器位于车辆流体回路中。 加热器具有保持粘性流体和转子的加热室。 转子旋转以剪切粘性流体并产生热量。 热量传递到位于加热室附近的热交换室。 转子以可变的旋转速度旋转,这影响粘性流体的温度。 循环流体在流体回路中并在热交换室中被加热。 加热器包括与加热室连通以存储粘性流体的储存室。 加热器具有选择性地将储存室与加热室连接和断开以调节热量产生的阀。 该装置具有用于检测指示粘性流体的温度的温度或速度的检测装置。 该设备还具有控制器,用于当粘性流体的温度被认为高时控制阀门以减少热量产生。
    • 6. 发明授权
    • Fluid friction vehicle heaters
    • 流体摩擦车辆加热器
    • US5947376A
    • 1999-09-07
    • US30243
    • 1998-02-25
    • Takahiro MoroiTakashi BanNobuaki HoshinoMasahiko OkadaKenji Takenaka
    • Takahiro MoroiTakashi BanNobuaki HoshinoMasahiko OkadaKenji Takenaka
    • F24J3/00B60H1/02
    • F24J3/003
    • A viscous fluid type heater includes a heating chamber for holding viscous fluid and a rotor located in the heating chamber. A holding chamber is located below the heating chamber to communicate with the heating chamber. A plunger, which is actuated by a solenoid, is movable between a forward position for maximizing the volume of the holding chamber and a rearward position for minimizing the volume of the holding chamber. When the plunger is at the forward position, viscous fluid is discharged from the heating chamber to the holding chamber. When the plunger is at the rearward position, viscous fluid is supplied from the holding chamber to the heating chamber. This allows the load of the heater to be removed or reinstated selectively. In an engine-driven vehicle, the engine can thus started without being hindered by the heater.
    • 粘性流体型加热器包括用于保持粘性流体的加热室和位于加热室中的转子。 保持室位于加热室下方与加热室连通。 由螺线管致动的柱塞可以在用于使保持室的容积最大化的向前位置和用于最小化保持室的体积的向后位置之间移动。 当柱塞处于向前位置时,粘性流体从加热室排放到保持室。 当柱塞处于向后位置时,粘性流体从保持室供应到加热室。 这允许选择性地去除或恢复加热器的负载。 在发动机驱动的车辆中,发动机因此可以起动而不受加热器的阻碍。
    • 7. 发明授权
    • Viscous fluid type heat generator with means for enhancing heat transfer
efficiency
    • 粘性流体式发热器,具有提高传热效率的手段
    • US5881683A
    • 1999-03-16
    • US41268
    • 1998-03-12
    • Takashi BanNobuaki HoshinoHajime ItoShozo TatematsuToshio MorikawaToshihiro OshimaShinji Aoki
    • Takashi BanNobuaki HoshinoHajime ItoShozo TatematsuToshio MorikawaToshihiro OshimaShinji Aoki
    • B60H1/08F24J3/00F22B3/06
    • F24J3/003
    • A viscous fluid type heat generator which includes a housing assembly defining a heat generating chamber and a heat receiving chamber arranged adjacent to the heat generating chamber via a partition wall disposed therebetween. A rotor element is mounted to be rotated by a drive shaft for rotation within the heat generating chamber. A viscous fluid is held in a gap defined between the inner wall surfaces of the heat generating chamber and the outer faces of the rotor element, for heat generation under shearing stress applied by the rotation of the rotor element. A heat exchanging fluid circulates through the heat receiving chamber to receive heat transferred through the partition wall from the heat generating chamber. A plurality of grooves, protuberances or expression are formed on at least one of the inner wall surfaces of the heat generating chamber to increase the total heat transfer surface area in the inner wall surfaces, and thus enhance a heat transfer efficiency through the partition wall. The density of arrangement of the grooves in the outer peripheral area of the inner wall surface is larger than that in the inner peripheral area of the inner wall surface.
    • 一种粘性流体型热发生器,其包括限定发热室的壳体组件和经由设置在其间的间隔壁布置在发热室附近的热接收室。 转子元件安装成由驱动轴旋转以在发热室内旋转。 粘性流体被保持在限定在发热室的内壁表面和转子元件的外表面之间的间隙中,用于通过转子元件的旋转施加的剪切应力下的发热。 热交换流体通过热接收室循环以接收从发热室通过分隔壁传递的热量。 在发热室的内壁面的至少一个上形成有多个槽,突起或表面,以增加内壁表面的总传热面积,从而提高通过隔壁的传热效率。 内壁面的外周面的槽的配置密度大于内壁面的内周面的密度。