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    • 1. 发明申请
    • Air-Blow Work Machine
    • 吹风机
    • US20120096672A1
    • 2012-04-26
    • US13278250
    • 2011-10-21
    • Makoto HatanoYusuke Kinoshita
    • Makoto HatanoYusuke Kinoshita
    • A47L5/14F16L55/033F16L55/00
    • E01H1/0809A01G20/43
    • A blower tube (4) to be connected to a power blower has a tube main body (42) having a distal end portion (42a) diminished in diameter toward its distal end and an attachment (44) to be coupled to the distal end (42a) of the tube main body (42) and including a distal end portion (44a) gradually diminished in diameter toward its distal end. Both these distal end portions (42a, 44a) are each provided three projections at distant position to protrude radially inward toward an axial line of the blower tube (4). The first projections (46) on the tube main body (42) and the second projections (48) on the attachment are positioned offset in phase to align in an alternate order. The blower tube (4) having the projections (46, 48) at the distal end portion can reduce the noise caused by ejection of a high-speed airflow.
    • 要连接到动力鼓风机的鼓风机管(4)具有管主体(42),其具有朝向其远端的直径减小的远端部分(42a)和待连接到远端的附件(44) 42a),并且包括其远端部的直径逐渐减小的远端部(44a)。 这两个远端部分(42a,44a)都分别设置在距离鼓风管(4)的轴线径向向内突出的远的位置。 管主体(42)上的第一突起(46)和附件上的第二突起(48)以相位相偏置地以交替顺序对准。 在远端部具有突起46,48的鼓风机管4能够降低高速气流的喷射引起的噪音。
    • 2. 发明授权
    • Air-blow work machine
    • 吹气机
    • US08789237B2
    • 2014-07-29
    • US13278250
    • 2011-10-21
    • Makoto HatanoYusuke Kinoshita
    • Makoto HatanoYusuke Kinoshita
    • A47L5/14
    • E01H1/0809A01G20/43
    • A blower tube (4) to be connected to a power blower has a tube main body (42) having a distal end portion (42a) diminished in diameter toward its distal end and an attachment (44) to be coupled to the distal end (42a) of the tube main body (42) and including a distal end portion (44a) gradually diminished in diameter toward its distal end. Both these distal end portions (42a, 44a) are each provided three projections at distant position to protrude radially inward toward an axial line of the blower tube (4). The first projections (46) on the tube main body (42) and the second projections (48) on the attachment are positioned offset in phase to align in an alternate order. The blower tube (4) having the projections (46, 48) at the distal end portion can reduce the noise caused by ejection of a high-speed airflow.
    • 要连接到动力鼓风机的鼓风机管(4)具有管主体(42),其具有朝向其远端的直径减小的远端部分(42a)和待连接到远端的附件(44) 42a),并且包括其远端部的直径逐渐减小的远端部(44a)。 这两个远端部分(42a,44a)都分别设置在距离鼓风管(4)的轴线径向向内突出的远的位置。 管主体(42)上的第一突起(46)和附件上的第二突起(48)以相位相偏置地以交替顺序对准。 在远端部具有突起46,48的鼓风机管4能够降低高速气流的喷射引起的噪音。
    • 3. 发明授权
    • Cooling passage partition for an internal combustion engine
    • 用于内燃机的冷却通道隔板
    • US08091518B2
    • 2012-01-10
    • US12309609
    • 2007-07-27
    • Takasuke ShikidaShuichi HanaiMakoto HatanoToshihiko KumasakaMotonori Kondo
    • Takasuke ShikidaShuichi HanaiMakoto HatanoToshihiko KumasakaMotonori Kondo
    • F02F1/14B21K3/00
    • F02F1/14F01P2003/021Y10T29/49231
    • A partition member used in a cylinder block of an internal combustion engine is disclosed. The partition member is arranged in a groove-like cooling passage through which a cooling heat medium flows. The partition member includes a separating wall and a flexible lip member. The separating wall divides the cooling passage into an inner passage and an outer passage. The inner passage is located close to the cylinder bores, and the outer passage is located outside of the inner passage. The lip member extends from the separating wall toward the opening of the cooling passage in such a manner that, when the partition member is arranged in the cooling passage, the lip member contacts one of the inner surfaces of the cylinder block forming the cooling passage. When the partition member is arranged in the cooling passage, the distal edge portion of the flexible lip member contacts the inner surface due to force produced through flexible shape restoration of the lip member.
    • 公开了一种在内燃机的气缸体中使用的分隔构件。 分隔构件布置在冷却热介质流过的槽状冷却通道中。 分隔构件包括分隔壁和柔性唇形构件。 分隔壁将冷却通道分成内部通道和外部通道。 内通道靠近气缸孔,外通道位于内通道的外侧。 唇部件从分离壁向冷却通道的开口延伸,使得当分隔构件布置在冷却通道中时,唇形件接触形成冷却通道的气缸体的内表面之一。 当分隔构件布置在冷却通道中时,柔性唇缘构件的远端边缘部分由于唇形构件的柔性形状恢复产生的力而接触内表面。
    • 8. 发明申请
    • EGR cooler bypass switching system
    • EGR冷却器旁路开关系统
    • US20090056682A1
    • 2009-03-05
    • US12219286
    • 2008-07-18
    • Akira OkawaMakoto Hatano
    • Akira OkawaMakoto Hatano
    • F02M25/07
    • F02M26/32F02M26/26F02M26/30F02M26/73F28F27/02
    • An EGR cooler bypass switching system integrally comprises an EGR cooler for cooling EGR gas and a switching valve for switching between introduction and non-introduction of the EGR gas with respect to the EGR cooler. The system further comprises a cooler core through which the EGR gas introduced in the EGR cooler passes; a cooler case housing the cooler core; a cooling water inlet pipe through which cooling water flows in the system; a cooling water outlet pipe which is provided in the cooler case and through which the cooling water flows out of the system; an in-cooler cooling water passage formed in the cooler case to allow the cooling water flowing therein through the cooling water inlet pipe to flow around an outer periphery of the cooler core; and an in-valve cooling water passage formed in a housing of the switching valve to allow the cooling water flowing therein from the cooling water inlet pipe to flow through for cooling the switching valve. The in-cooler cooling water passage and the in-valve cooling water passage communicate with each other at a mating face between the EGR cooler and the switching valve.
    • EGR冷却器旁路切换系统整体地包括用于冷却EGR气体的EGR冷却器和用于在相对于EGR冷却器引入和不引入EGR气体之间切换的切换阀。 该系统还包括一个冷却器芯,通过该冷却器核心引入EGR冷却器中的EGR气体通过; 容纳冷却器芯的冷却器壳体; 冷却水入口管,冷却水通过该冷却水流入系统; 冷却水出口管,其设置在所述冷却器壳体中,所述冷却水通过所述冷却水出口管流出所述系统; 在所述冷却器壳体中形成的冷却器内的冷却水通道,使得通过所述冷却水入口管流过的冷却水围绕所述冷却器芯的外周流动; 以及形成在切换阀的壳体中的阀内冷却水通道,以允许从冷却水入口管流出的冷却水流过以冷却切换阀。 在冷却器冷却水通道和阀内冷却水通道在EGR冷却器和切换阀之间的配合面处相互连通。
    • 10. 发明授权
    • Cooling structure of cylinder block
    • 气缸体冷却结构
    • US07278380B2
    • 2007-10-09
    • US11082870
    • 2005-03-18
    • Takashi MatsutaniTakanori NakadaYoshikazu ShinpoMakoto HatanoTakashi Kubota
    • Takashi MatsutaniTakanori NakadaYoshikazu ShinpoMakoto HatanoTakashi Kubota
    • F02F1/14F02B75/18
    • F02F1/108Y02T10/16
    • A cooling structure for uniformly cooling a bore wall of a cylinder block using a cooling medium, the bore wall surrounding plural bore regions, includes a water jacket portion which is provided so as to surround an entire outer periphery of the bore wall, and which is supplied with the cooling medium; and a water jacket spacer which is inserted in the water jacket portion such that a space is provided between the bore wall and the water jacket spacer. The cylinder block includes an inter-bore region which is positioned in a vicinity of a boundary between the bore regions adjacent to each other, and a region other than the inter-bore region; and a cross sectional area of the space between the bore wall and the water jacket spacer in the inter-bore region is smaller than a cross sectional area of the space between the bore wall and the water jacket spacer in the region other than the inter-bore region.
    • 一种用于使用冷却介质均匀冷却气缸体的孔壁的冷却结构,围绕多个孔区的孔壁包括设置成围绕孔壁的整个外周围设置的水套部分, 供应冷却介质; 以及水套隔离件,其插入在水套部分中,使得在孔壁和水套间隔件之间设置空间。 气缸体包括位于彼此相邻的孔区域之间的边界附近的孔间区域和除了孔间区域之外的区域; 并且所述孔间区域中的所述孔壁和所述水套隔离件之间的空间的横截面面积小于所述孔内壁之间的区域中的所述孔壁与所述水套隔离件之间的空间的横截面积, 钻孔区域。