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    • 2. 发明授权
    • Viscous fluid type heat generating apparatus
    • 粘性流体型发热装置
    • US6047896A
    • 2000-04-11
    • US262723
    • 1999-03-04
    • Takahiro MoroiHidefumi MoriYasuhiro FujiwaraTatsuyuki Hoshino
    • Takahiro MoroiHidefumi MoriYasuhiro FujiwaraTatsuyuki Hoshino
    • B60H1/08F24J3/00B60H1/02
    • F24J3/003
    • A viscous fluid type heating apparatus capable of achieving both reliable prevention of deterioration in the heat-generating performance of a viscous fluid and reliable prevention of leakage of the viscous fluid from the apparatus, and having a heat generating chamber provided with a first and a second storing region for storing a silicone oil to avoid an application of a shearing action from a rotor element to the viscous fluid and a heat generating gap. The silicone oil is held in the heat generating chamber so that it is able to flow between the heat generating gap and the first storing region which is directly affected by a thermal condition in the heat generating gap. The second storing region is substantially separated from the first storing region and is not directly affected by the thermal condition in the heat generating gap. The flow of the silicone oil between the first and second storing regions is adjustable by a movable element.
    • 一种粘性流体型加热装置,其能够可靠地防止粘性流体的发热性能的劣化,并且可靠地防止粘性流体从装置泄漏,并且具有设置有第一和第二 用于存储硅油的存储区域以避免施加从转子元件到粘性流体的剪切作用和发热间隙。 硅油被保持在发热室中,使得其能够在发热间隙和直接受发热间隙中的热条件影响的第一储存区域之间流动。 第二存储区域与第一存储区域基本分离,并且不直接受到发热间隙中的热条件的影响。 第一和第二存储区域之间的硅油的流动可通过可移动元件调节。
    • 4. 发明授权
    • Vehicle heaters
    • 车用加热器
    • US5881712A
    • 1999-03-16
    • US89803
    • 1998-06-03
    • Takahiro MoroiTakashi BanTatsuyuki HoshinoHidefumi MoriHajime ItoShinji AokiToshio Morikawa
    • Takahiro MoroiTakashi BanTatsuyuki HoshinoHidefumi MoriHajime ItoShinji AokiToshio Morikawa
    • B60H1/08F24J3/00F24C9/00
    • F24J3/003
    • A viscous fluid type heater is disclosed. The heater has a front housing and a rear housing secured to each other. The front housing has a space in which a first partitioning plate and a second partitioning plate located immovably fitted. A heating chamber that is defined between the first plate and the second plate accommodates viscous fluid. A rotor is rotatably supported in the heating chamber. The rotor rotates and shears the viscous fluid to generate heat. A heat exchange chamber is defined by the first and the second partitioning plates and disposed adjacent to the heating chamber. The heat exchanging chamber allows circulating fluid to flow therethrough so that the circulating fluid is heated by the heat transmitted to the heat exchanging chamber from the heating chamber. A securing structure secures the partitioning plates to the housing and concaves are formed in the outer peripheral surface of the partitioning plates to decrease a contacting area of the outer peripheral surface and the inner peripheral surface.
    • 公开了一种粘性流体型加热器。 加热器具有彼此固定的前壳体和后壳体。 前壳体具有空间,第一分隔板和第二分隔板位于不可移动的位置。 限定在第一板和第二板之间的加热室容纳粘性流体。 转子可旋转地支撑在加热室中。 转子旋转并剪切粘性流体以产生热量。 热交换室由第一和第二分隔板限定,并与加热室相邻设置。 热交换室允许循环流体流过其中,使得循环流体被从加热室传递到热交换室的热量加热。 固定结构将分隔板固定到壳体,并且在分隔板的外周表面中形成凹陷以减小外周表面和内周表面的接触面积。
    • 6. 发明授权
    • Viscous fluid type heat generator with heat generation increasing means
    • 粘性流体式发热器具有发热增加的手段
    • US5881953A
    • 1999-03-16
    • US924543
    • 1997-08-27
    • Takahiro MoroiKiyoshi YagiHidefumi MoriTakashi BanTatsuyuki HoshinoTatsuya Hirose
    • Takahiro MoroiKiyoshi YagiHidefumi MoriTakashi BanTatsuyuki HoshinoTatsuya Hirose
    • B60H1/08F24J3/00B60H1/02
    • F24J3/003
    • A viscous fluid type heat generator including a housing assembly in which a fluid-tight heat generating chamber confining therein a viscous fluid to which a shearing action is applied by a disc-like rotor element rotated by a drive shaft, and having inner wall surfaces confronting outer surfaces of the rotor element, the inner wall surfaces of the fluid-tight heat generating chamber and the outer faces of the rotor element defining a gap in which the viscous fluid is held, the rotor element being provided with one or more through-holes formed in an outer peripheral portion and a radially inner portion thereof with respect to the axis of rotation of the rotor element so that the through-holes cooperate with one or more non-circumferentially extending elongate indentations provided in the inner wall surfaces of the fluid-tight heat generating chamber during the rotation of the rotor element to expand a heat generating region formed by the gap. The expansion of the heat generating region formed by the gap increases a restraint acting against movement of the viscous fluid caused by the rotation of the rotor element so as to increase friction and a shearing force acting on the viscous fluid, and heat generation by the viscous fluid is increased.
    • 一种粘性流体型热发生器,包括壳体组件,其中流体密封的发热室限定粘性流体,通过由驱动轴旋转的盘状转子元件施加有剪切作用的粘性流体,并且具有面对的内壁面 转子元件的外表面,流体密封发热室的内壁表面和转子元件的外表面限定了保持粘性流体的间隙,转子元件设置有一个或多个通孔 形成在相对于转子元件的旋转轴线的外周部分和径向内部部分中,使得通孔与设置在流体转动件的内壁表面中的一个或多个非周向延伸的细长凹槽配合, 在转子元件的旋转期间紧密的发热室膨胀由间隙形成的发热区域。 由间隙形成的发热区域的膨胀增加了由转子元件的旋转引起的粘性流体的运动的约束,以增加作用在粘性流体上的摩擦力和剪切力,并且由粘性物质产生热量 流体增加。
    • 8. 发明授权
    • Heating system for vehicle
    • 车辆加热系统
    • US5791558A
    • 1998-08-11
    • US860599
    • 1997-07-02
    • Tatsuyuki HoshinoKenji TakenakaHidefumi MoriTakashi BanKiyoshi Yagi
    • Tatsuyuki HoshinoKenji TakenakaHidefumi MoriTakashi BanKiyoshi Yagi
    • B60H1/03F01P5/10F24J3/00B60H1/00
    • B60H1/038F01P5/10F24J3/003F01P2060/18
    • A heating system for a vehicle is provided which does not require a large boarding space in an engine room very much, which can be manufactured at a reduced cost, and which can fully heat a passenger compartment of a vehicle when an engine is started. For instance, in the vehicle heating system, a water pump (WP) and a viscous heater (VH) is incorporated into an installation housing (1), a plate (2) and a cover (3) which are bonded to a cylinder block of an engine. The water pump (WP) and the viscous heater (VH) are driven by a drive shaft (11) which is shared by them. Moreover, the viscous heater (VH) includes an auxiliary water jacket (WJ.sub.2). The auxiliary water jacket (WJ.sub.2) is communicated with a main water jacket (WJ.sub.1) of the engine by way of a pump chamber (4) of the water pump (WP), and is further communicated with a heater core for heating a passenger compartment of a vehicle.
    • PCT No.PCT / JP96 / 03231 Sec。 371日期1997年7月2日 102(e)1997年7月2日PCT PCT 1996年11月5日PCT公布。 公开号WO97 / 17219 日期:1997年5月15日提供了一种用于车辆的加热系统,其在发动机室中不需要大的登机空间,其可以以较低的成本制造,并且可以在发动机上充分加热车辆的乘客室 开始了 例如,在车辆加热系统中,将水泵(WP)和粘性加热器(VH)并入到安装壳体(1),板(2)和盖(3)中,其结合到气缸体 的发动机。 水泵(WP)和粘性加热器(VH)由其共用的驱动轴(11)驱动。 此外,粘性加热器(VH)包括辅助水套(WJ2)。 辅助水套(WJ2)通过水泵(WP)的泵室(4)与发动机的主水套(WJ1)连通,并进一步与用于加热乘客舱的加热器芯 的车辆
    • 10. 发明授权
    • Heat generating apparatus employing viscous fluid
    • 使用粘性流体的发热装置
    • US5971291A
    • 1999-10-26
    • US128690
    • 1998-08-04
    • Takahiro MoroiTakashi BanKiyoshi YagiHidefumi MoriTatsuya Hirose
    • Takahiro MoroiTakashi BanKiyoshi YagiHidefumi MoriTatsuya Hirose
    • B60H1/08F24J3/00B60H1/02
    • F24J3/003
    • A heat generating apparatus having a housing assembly in which a working chamber including a heat generating region for heat generation and a fluid storing region for storing a viscous fluid, and a heat receiving chamber for receiving heat from the heat generating region are formed. The heat generating apparatus also having a rotor element mounted on a drive shaft to be rotated within the working chamber to apply a shearing action to the viscous fluid within the heat generating region. The viscous fluid generates heat when the shearing action is applied thereto so that the heat is transmitted to a heat exchanging liquid flowing through the heat receiving chamber. The heat generating region and fluid storing region communicating through an aperture formed in a partition wall formed in the working chamber, and the aperture having a gas-phase portion, a liquid-phase portion and a liquid supply portion.
    • 一种发热装置,具有壳体组件,其中形成有包括用于发热的发热区域的工作室和用于存储粘性流体的流体存储区域和用于从发热区域接收热量的热接收室。 发热装置还具有安装在驱动轴上的转子元件,以在工作室内旋转,以对发热区域内的粘性流体施加剪切作用。 当施加剪切作用时,粘性流体产生热量,使得热量传递到流过热接收室的热交换液体。 所述发热区域和流体存储区域通过形成在所述工作室中形成的隔壁中的孔连通,所述孔具有气相部分,液相部分和液体供应部分。