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    • 2. 发明授权
    • Rotary type fluid machine, vane type fluid machine, and waste heat recovering device for internal combustion engine
    • 旋转式流体机,叶片式流体机,内燃机废热回收装置
    • US06675765B2
    • 2004-01-13
    • US10321443
    • 2002-12-18
    • Tsuneo EndohKensuke Honma
    • Tsuneo EndohKensuke Honma
    • F02B5304
    • F01C21/0809F01B13/06F01B13/061F01B13/068F01C1/3446F01C11/006F01C11/008F02B53/00F02G5/00F02G5/02F04B27/06F04B27/0612F04B35/00F04C18/3566F04C23/005Y02T10/166
    • Rotary type fluid machine includes a casing 7, a rotor 31 and a plurality of vane-piston units U1-U12 which are disposed in a radiate arrangement on the rotor 31. Each of the vane-piston units U1-U12 has a vane 42 sliding in a rotor chamber 14 and a piston 41 placed in abutment against a non-slide side of the vane 42. When it functions as an expanding machine 4, the expansion of a high pressure gas is used to operate the pistons 41 thereby to rotate the rotor 31 via vanes 42 and the expansion of a low pressure gas caused by a pressure reduction in the high pressure gas is used to rotate the rotor 31 via the vanes 41. On the other hand, when it functions as a compressing machine, the rotation of rotor 31 is used to supply a low pressure air to the side of pistons 41 via vanes 42 and further, the pistons 41 are operated by the vanes 42 to convert the low pressure air to the high pressure air. Thus, a rotary type fluid machine having expanding and compressing functions, with the merits belonging to the piston type and the merits belonging to the vane type, can be provided.
    • 旋转式流体机械包括壳体7,转子31和多个叶片 - 活塞单元U1-U12,它们以转子31的辐射方式设置。每个叶片 - 活塞单元U1-U12具有滑动件42滑动 在转子室14和与叶片42的非滑动侧抵接的活塞41上。作为膨胀机4的功能,使用高压气体的膨胀来操作活塞41,从而使活塞 通过叶片42的转子31和由高压气体的压力降低引起的低压气体的膨胀被用于经由叶片41旋转转子31.另一方面,当其用作压缩机时,旋转 转子31用于经由叶片42向活塞41的侧面供给低压空气,此外,活塞41由叶片42操作以将低压空气转换成高压空气。 因此,可以提供具有膨胀压缩功能的旋转式流体机械,具有属于活塞式的优点和属于叶片型的优点。
    • 3. 发明申请
    • Rotary fluid machine
    • 旋转流体机
    • US20060153698A1
    • 2006-07-13
    • US10540158
    • 2003-12-22
    • Hiroyuki MakinoKensuke HonmaYasuharu Kamoi
    • Hiroyuki MakinoKensuke HonmaYasuharu Kamoi
    • F04B27/08
    • F04B1/2071F04B27/0856
    • A rotary fluid machine is provided in which, among first bearings (23f, 23r) and a second bearing (24) supporting in a casing (11) opposite ends of a rotor (22) that includes an axial piston cylinder group (56) for converting the pressure energy of a working medium into mechanical energy, only the first bearings (23f, 23r) are formed from combined angular bearings that can support an axial load, and the second bearing (24) is formed from a radial bearing that can support a radial load and is axially movable relative to the rotor (22). Since the rotor (22) is axially positioned relative to the casing (11) by only the first bearings (the combined angular bearings) (23f, 23r), a difference in the amount of axial thermal expansion between the casing (11) and the rotor (22) can be absorbed by the second bearing (radial bearing) (24) without any problem. This can solve effectively problems caused by a difference in the amount of thermal expansion between the casing and the rotor of the rotary fluid machine.
    • 提供了一种旋转流体机械,其中在第一轴承(23f,23r)和支撑在壳体(11)中的第二轴承(24)之间,在包括轴向活塞气缸组(56)的转子(22)的相对端 ),用于将工作介质的压力能量转换为机械能,只有第一轴承(23f,23r)由可支撑轴向载荷的组合角轴承形成,并且第二轴承(24)由径向 轴承,其可以支撑径向载荷并且可相对于转子(22)轴向移动。 由于转子(22)仅通过第一轴承(组合的角轴承)(23f,23r)相对于壳体(11)轴向定位,壳体(11)的轴向热膨胀量之间的差异 并且转子(22)能够被第二轴承(径向轴承)(24)吸收,没有任何问题。 能够有效地解决由旋转式流体机械的壳体与转子之间的热膨胀量的差异引起的问题。
    • 6. 发明授权
    • Rotary type fluid machine, vane type fluid machine, and waste heat recovering device for internal combustion engine
    • 旋转式流体机,叶片式流体机,内燃机废热回收装置
    • US06681738B2
    • 2004-01-27
    • US10321456
    • 2002-12-18
    • Tsuneo EndohKensuke Honma
    • Tsuneo EndohKensuke Honma
    • F02B5304
    • F01C21/0809F01B13/06F01B13/061F01B13/068F01C1/3446F01C11/006F01C11/008F02B53/00F02G5/00F02G5/02F04B27/06F04B27/0612F04B35/00F04C18/3566F04C23/005Y02T10/166
    • Rotary type fluid machine includes a casing 7, a rotor 31 and a plurality of vane-piston units U1-U12 which are disposed in a radiate arrangement on the rotor 31. Each of the vane-piston units U1-U12 has a vane 42 sliding in a rotor chamber 14 and a piston 41 placed in abutment against an on-slide side of the vane 42. When it functions as an expanding machine 4, the expansion of a high pressure gas is used to operate the pistons 41 thereby to rotate the rotor 31 via vanes 42 and the expansion of a low pressure gas caused by a pressure reduction in the high pressure gas is used to rotate the rotor 31 via the vanes 41. On the other hand, when it functions as a compressing machine, the rotation of rotor 31 is used to supply a low pressure air to the side of pistons 41 via vanes 42 and further, the pistons 41 are operated by the vanes 42 to convert the low pressure air to the high pressure air. Thus, a rotary type fluid machine having expanding and compressing functions, with the merits belonging to the piston type and the merits belonging to the vane type, can be provided.
    • 旋转式流体机械包括壳体7,转子31和多个叶片活塞单元U1-U12,它们以转子31的辐射方式设置。每个叶片活塞单元U1-U12具有滑动件42滑动 在转子室14和与叶片42的滑动侧抵接的活塞41上。作为膨胀机4的功能,使用高压气体的膨胀来操作活塞41,从而使活塞41旋转 通过叶片42的转子31和由高压气体的压力降低引起的低压气体的膨胀被用于经由叶片41旋转转子31.另一方面,当其用作压缩机时,旋转 转子31用于经由叶片42向活塞41的侧面供给低压空气,此外,活塞41由叶片42操作以将低压空气转换成高压空气。 因此,可以提供具有膨胀压缩功能的旋转式流体机械,具有属于活塞式的优点和属于叶片型的优点。
    • 9. 发明授权
    • Rankine cycle device
    • 兰金循环装置
    • US07000394B2
    • 2006-02-21
    • US10363539
    • 2001-09-04
    • Naoki OhtaNaoki ItohTsuneo EndohTsutomu TakahashiKensuke Honma
    • Naoki OhtaNaoki ItohTsuneo EndohTsutomu TakahashiKensuke Honma
    • F01K7/34
    • F01C21/18F01C1/3446F01C21/0836F01K7/00F02G5/04Y02T10/166
    • A Rankine cycle system is provided in which, with regard to a given relationship between the pressure (Pevp) and the temperature (Tevp) of a vapor that is taken into an expander (4) that includes a cylinder chamber in a first stage and a vane chamber in a second stage, the chambers being disposed in line, the expansion ratio of the vapor that the expander (4) takes in and discharges is set at a predetermined expansion ratio (ε) according to the given relationship so that the pressure (Pexp2) and the temperature (Texp2) of the vapor that is discharged from the expander (4) coincide with target values, thereby making the expander (4) and the condenser (5) exhibit maximum performance. Since the vapor within the cylinder chamber in the first stage is in a superheated vapor region and contains no water, the phenomenon of water hammer will not be caused in the cylinder chamber. Furthermore, since the vapor at the exit of the vane chamber is in a saturated vapor region and contains water, the vane chamber can be lubricated and sealed by means of the water.
    • 提供了一种兰金循环系统,其中,关于压力(Pevp)和进入到包括第一级中的气缸室的膨胀器(4)的蒸汽的温度(Tevp)之间的给定关系,以及 在第二阶段的叶片室中,室被排成一列,膨胀器(4)吸入和排出的蒸气的膨胀比根据给定的关系设定在预定的膨胀比(ε),使得压力 Pexp 2),从膨胀机(4)排出的蒸气的温度(Texp 2)与目标值一致,从而使膨胀机(4)和冷凝器(5)呈现最大性能。 由于第一阶段的气缸室内的蒸气处于过热蒸汽区域并且不含水,所以在气缸室中不会产生水锤现象。 此外,由于叶片室的出口处的蒸汽处于饱和蒸汽区域并且含有水,所以叶片室可以通过水被润滑和密封。
    • 10. 发明申请
    • Rotary type fluid machine
    • 旋转式流体机
    • US20050220643A1
    • 2005-10-06
    • US10500691
    • 2003-01-17
    • Kensuke HonmaHiroyuki Nakino
    • Kensuke HonmaHiroyuki Nakino
    • F01B3/02F04B1/20F04B1/22F04B27/08F04B7/00F04B23/04
    • F04B1/22F01B3/02F04B1/205F04B27/0808F04B27/0843
    • A rotary fluid machine is provided that includes a rotary valve (61) for controlling the intake and discharge of a working medium to and from an operating part (49, 57) formed from an axial piston cylinder group, a steam supply pipe (77) that is disposed on an axis (L) of a rotor (27) and supplies steam to the rotary valve (61), the steam supply pipe (77) being provided separately from a rotary valve main body (62), and gland packing sealing means (97) disposed between the steam supply pipe (77) and the rotary valve main body (62). Since the sealing means (97), which is flexible, has the function of preventing movement in the direction of the axis (L) of the steam supply pipe (77) from being transmitted to the rotary valve (61), it is possible to ensure the intimacy of contact of sliding surfaces (68) of the rotary valve (61) while minimizing the leakage of steam past the outer periphery of the steam supply pipe (77) by means of the sealing means (97), thereby enabling the steam to be supplied and discharged reliably.
    • 提供了一种旋转流体机械,其包括旋转阀(61),用于控制与从轴向活塞气缸组形成的操作部件(49,57)的进入和排出工作介质,蒸汽供应管道(77) 设置在转子(27)的轴线(L)上并向旋转阀(61)供给蒸汽,蒸汽供给管(77)与旋转阀主体(62)分开设置,并且压盖密封 装置(97)设置在蒸汽供给管(77)和旋转阀主体(62)之间。 由于柔性的密封装置(97)具有防止在蒸汽供给管(77)的轴线(L)的方向上的运动不被传递到旋转阀(61)的功能, 确保旋转阀(61)的滑动表面(68)的亲密接触,同时通过密封装置(97)最小化蒸汽超过蒸汽供应管(77)外周的泄漏,从而使蒸汽 可靠地供给和排出。