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    • 42. 发明申请
    • Cylinder liner cooling structure
    • 缸套冷却结构
    • US20050257756A1
    • 2005-11-24
    • US11128242
    • 2005-05-13
    • Tsuneo EndohKengo Ishimitsu
    • Tsuneo EndohKengo Ishimitsu
    • F01P3/02F02F1/14F02F1/16F02B75/18
    • F01P3/02
    • This invention relates to a cooling structure for cooling a cylinder liner by circulating coolant in a water jacket formed along an outer periphery of the cylinder liner. This cooling structure includes an annular first water reservoir for temporarily storing coolant. This first water reservoir allows the coolant to uniformly flow circumferentially of the cylinder liner. The cooling structure also includes a plurality of coolant passages provided radially for connecting the first water reservoir to the water jacket. The coolant is caused to strike a part of a wall defining the water jacket substantially vertically from the radial coolant passages, thereby to generate turbulent flow in the coolant to efficiently cool the cylinder liner.
    • 本发明涉及一种冷却结构,用于通过沿着气缸套的外周形成的水套中的冷却剂循环来冷却气缸套。 该冷却结构包括用于临时储存冷却剂的环形第一储水器。 该第一储水器允许冷却剂沿气缸套的周向均匀地流动。 冷却结构还包括径向设置的多个冷却剂通道,用于将第一储水器连接到水套。 导致冷却剂从基本上垂直于径向冷却剂通道撞击限定水套的壁的一部分,从而在冷却剂中产生湍流以有效地冷却气缸套。
    • 45. 发明申请
    • Rotary fluid machinery
    • 旋转流体机械
    • US20050076641A1
    • 2005-04-14
    • US10489911
    • 2002-09-20
    • Yasunari KimuraTsuneo EndohHiroyuki NiikuraTsutomu Takahashi
    • Yasunari KimuraTsuneo EndohHiroyuki NiikuraTsutomu Takahashi
    • F01K7/00F01B13/06F01C1/344F02B53/00F01K1/00
    • F01B13/06F01B13/068F02B53/00
    • A rotary fluid machine is provided that includes a rotor chamber (14), a rotor (41), vanes (48) guided by vane channels formed in the rotor (41), and pistons (47) slidably fitted in cylinders (44) provided in the rotor (41). Rollers (71), which have a greaseless bearing structure and are provided on support shafts (48d) of the vane (48), are rollably engaged with annular channels (74) of a casing (11) so as to interconvert reciprocation of the pistons (47) and rotational movement of the rotor (41). By guiding water for a hydrostatic bearing that supports the vane (48) in the vane channel in a floating state from a recess (48e) of the vane (48) to a hydrostatic bearing (71) of the roller (71) via water passages (W19 to W22), an outer member (71b) of the roller (71) is supported in a floating manner relative to an inner member (71a).
    • 提供了一种旋转流体机械,其包括转子室(14),转子(41),由形成在转子(41)中的叶片通道引导的叶片(48)和可滑动地装配在气缸(44)中的活塞(47) 在转子(41)中。 具有无油轴承结构并设置在叶片(48)的支撑轴(48d)上的辊(71)与壳体(11)的环形通道(74)滚动接合,以便将活塞 (47)和转子(41)的旋转运动。 通过引导水作为静压轴承,其以悬浮状态将翼片通道中的叶片(48)从叶片(48)的凹部(48e)支撑到辊(71)的静压轴承(71),经由水通道 (W19〜W22),辊(71)的外部构件(71b)相对于内部构件(71a)以浮动方式被支撑。
    • 48. 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。
    • 49. 发明授权
    • Gas turbine engine
    • 燃气轮机
    • US5274997A
    • 1994-01-04
    • US786059
    • 1991-10-31
    • Kazuo InoueNoriyuki KishiTakashi BannaiTsuneo EndohHisayoshi Aoki
    • Kazuo InoueNoriyuki KishiTakashi BannaiTsuneo EndohHisayoshi Aoki
    • F02C7/105F02C7/36F23R3/42F02C7/10F02G1/00
    • F02C7/36F02C7/105F23R3/425F02G2254/30Y10S74/05
    • A reduction gear for producing and feeding the rotation of a low pressure turbine driven by a combustion gas generated in a combustor to an output shaft is received in a central opening of a rotary type heat exchanger which is disposed so as to be perpendicular to a turbine shaft at a rear portion of a body housing of a gas turbine engine. As a result, not only the engine can be made small but also the output can be produced at to the opposite side of the heat exchanger. The combustor and a collector housing for collecting combustion gas are disposed on diametrical opposite sides in a transverse cross section of the body housing whereby an internal space of the body housing is effectively utilized and an axial dimension of the engine is shortened. Since the compressed air is supplied to the heat exchanger through peripheral walls of the body housing having a double construction, prevention of heat radiation from the body housing and effective utilization of an internal space of the body housing are realized.
    • 用于生产和供给由在燃烧器中产生的燃烧气体驱动的低压涡轮机的旋转输出轴的减速机被容纳在旋转式热交换器的中心开口中,旋转式热交换器的中心开口被设置成垂直于涡轮机 轴在燃气涡轮发动机的主体壳体的后部。 结果,不仅发动机可以制造得小,而且可以在热交换器的相对侧产生输出。 燃烧器和用于收集燃烧气体的收集器壳体设置在主体壳体的横截面中的直径相对侧上,由此有效地利用主体壳体的内部空间并且缩短了发动机的轴向尺寸。 由于通过具有双重结构的主体壳体的周壁将压缩空气供给到热交换器,因此实现了防止来自主体外壳的热辐射并有效利用主体外壳的内部空间。
    • 50. 发明授权
    • Encrypted communication system, encrypted communication method, encrypting device, and decrypting device
    • 加密通信系统,加密通信方式,加密设备和解密设备
    • US08266445B2
    • 2012-09-11
    • US12055472
    • 2008-03-26
    • Tsuneo Endoh
    • Tsuneo Endoh
    • G06F21/00
    • H04L9/0822H04L2209/60
    • To allow viewers to view a plain document depending on levels of the authorized powers of the viewers without inserting identifiers into the plain document. An encrypting device includes devices for: storing encrypting role information which includes encrypting keys and key IDs of the encrypting keys; grasping the encrypting range of the plain document, and creating an encrypted part by encrypting the encrypting range using the encrypting key in the encrypting role information; creating the encrypting information configured with one, two, or more record(s) containing the front position and rear position of the encrypted part, the key ID corresponding to the encrypting key that is applied for the encrypted part, and the processing order of the encrypted part; creating the encrypted document by combining an encrypted document main body configured with a document containing the encrypted part with the encrypting information; and storing the encrypted document to a prescribed medium.
    • 允许观众根据观众授权的权限级别查看纯文档,而无需将标识符插入到普通文档中。 一种加密设备包括:用于存储加密角色信息的装置,包括加密密钥和加密密钥的密钥ID; 掌握普通文档的加密范围,并通过加密角色信息中的加密密钥加密加密范围来创建加密部分; 创建配置有包含加密部分的前位置和后位置的一个,两个或更多个记录的加密信息,对应于加密部分的加密密钥的密钥ID以及加密部分的处理顺序 加密部分; 通过将配置有包含加密部分的文档的加密文档主体与加密信息组合来创建加密文档; 并将加密的文档存储到规定的介质中。