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    • 1. 发明授权
    • Exhaust control system in two-cycle internal combustion engine
    • 双循环内燃机排气控制系统
    • US06415748B2
    • 2002-07-09
    • US09874120
    • 2001-06-06
    • Hiroyuki UchidaShigeyuki HaraMasaharu UgaiYasuo Sasamura
    • Hiroyuki UchidaShigeyuki HaraMasaharu UgaiYasuo Sasamura
    • F02B2520
    • F02D13/0284F02B2075/025Y02T10/18
    • It is intended to provide an exhaust control system in a two-cycle internal combustion engine capable of suppressing the occurrence of irregular combustion when an opening timing of an exhaust port is set to a maximum delay timing, thereby improving the combustion stability and affording a high engine output when the opening timing of the exhaust port is set to a maximum advance timing. In the exhaust control system, an exhaust control valve has valve elements movable between their maximum projected positions at which a maximum delay timing of the exhaust ports is set and their maximum retracted positions at which a maximum advance timing of the exhaust ports is set. The valve elements are provided with control surfaces, that face a cylinder bore at the maximum projected positions of the valve elements to close upper port portions of the exhaust ports. Lower edges of the control surfaces are formed in a shape that substantially coincides with the shape of upper edges of the exhaust ports at the retracted positions of the valve elements. A pair of communication passages are formed in the valve elements, respectively, having first end portions, at the maximum projected positions of the valve elements, open to lower control surface portions positioned lower than top portions of the lower edges, and second, opposite end portions which are directly open to the exhaust passage.
    • 本发明的目的是在排气口的打开正时被设定为最大延迟定时的情况下,提供能够抑制不规则燃烧的发生的双循环内燃机中的排气控制系统,从而提高燃烧稳定性并提供高 当排气口的打开定时被设定为最大提前定时时,发动机输出。 在排气控制系统中,排气控制阀具有可在排气口的最大延迟定时被设定的最大突出位置和设定排气口的最大前进定时的最大缩回位置之间移动的阀元件。 阀元件设置有控制表面,其在阀元件的最大突出位置处面对气缸孔以封闭排气口的上端口部分。 控制表面的下边缘形成为与阀元件的缩回位置处的排气口的上边缘的形状基本一致的形状。 在阀元件中分别形成有一对连通通道,其具有在阀元件的最大突出位置处的第一端部开放到位于比下边缘的顶部低的下部控制表面部分,并且第二相对端 直接通向排气通道的部分。
    • 2. 发明授权
    • Internal combustion engine
    • 内燃机
    • US07270109B2
    • 2007-09-18
    • US11475899
    • 2006-06-28
    • Shigeyuki Hara
    • Shigeyuki Hara
    • F02B31/04F02B31/08
    • F02B23/08F02B23/104F02B25/145F02B2023/102F02B2023/107F02B2031/006Y02T10/125
    • Enhanced combustibility by increasing the difference in intake gas velocity between a low flow velocity region and first and second high flow velocity regions in an intake port. An intake port of an internal combustion engine has an intake flow control port portion provided with first and second projecting portions. In the passage cross section of the intake flow control port portion, there are provided a low flow velocity region, and first and second high flow velocity regions formed on either side of and across the low flow velocity region and the first and second projecting portions wherein the maximum flow velocity of intake gas is comparatively larger than that in the low flow velocity region. The intake gas reaches intake ports with a flow velocity distribution having the relationship of the magnitudes of flow velocities in the low flow velocity region and first and second high flow velocity regions.
    • 通过增加进气口中的低流速区域与第一和第二高流速区域之间的进气速度差来增强燃烧性。 内燃机的进气口具有设置有第一和第二突出部的进气流量控制口部。 在进气流量控制端口部分的通道横截面中,设置有低流速区域,以及形成在低流速区域和第一和第二突出部分的两侧和横向的第一和第二高流速区域,其中 进气的最大流速比低流速区域的最大流速要大。 进气口到达进气口,其流速分布具有低流速区域和第一和第二高流速区域中的流速大小关系。
    • 5. 发明授权
    • Exhaust control valve assembly for an engine
    • 用于发动机的排气控制阀组件
    • US06253718B1
    • 2001-07-03
    • US09539716
    • 2000-03-31
    • Hiroyuki UchidaShigeyuki HaraTsutomu Fukusho
    • Hiroyuki UchidaShigeyuki HaraTsutomu Fukusho
    • F02B7502
    • F02D9/1065F01L3/205F02B2075/025F02F1/22
    • An exhaust control valve assembly for a two-cycle engine is formed to effectively dissipate heat. The exhaust control valve includes a pair of valve elements disposed on opposite sides of a reinforcing wall. The reinforcing wall laterally bisects an opening of the exhaust port in a vertical direction. A valve stem is connected to bosses of the valve elements. The valve stem is supported in a rotatable manner by a pouch-shaped hole at one end and a through-hole at its other end. A drive system is coupled to an end part of the valve stem protruding outwards from the through-hole. The whole of the bosses of the valve elements is offset from the center of the reinforcing wall towards the through-hole. This arragnement allows heat, resulting from the exhaust gases passing by the valve elements, to be dissipate without overheating the valve stem on the pouch-shaped hole side.
    • 形成用于双冲程发动机的排气控制阀组件以有效地散热。 排气控制阀包括设置在加强壁的相对侧上的一对阀元件。 加强壁在垂直方向上横向平分排气口的开口。 阀杆连接到阀元件的凸台。 阀杆以可旋转的方式由一端的袋形孔和另一端的通孔支撑。 驱动系统联接到从通孔向外突出的阀杆的端部。 阀元件的整个凸起从加强壁的中心偏向通孔。 这种放气允许由通过阀元件的废气产生的热量消散而不会使袋状孔侧上的阀杆过热。
    • 6. 发明申请
    • Internal combustion engine
    • 内燃机
    • US20060288980A1
    • 2006-12-28
    • US11475899
    • 2006-06-28
    • Shigeyuki Hara
    • Shigeyuki Hara
    • F02B31/04F02B31/08
    • F02B23/08F02B23/104F02B25/145F02B2023/102F02B2023/107F02B2031/006Y02T10/125
    • Enhanced combustibility by increasing the difference in intake gas velocity between a low flow velocity region and first and second high flow velocity regions in an intake port. An intake port of an internal combustion engine has an intake flow control port portion provided with first and second projecting portions. In the passage cross section of the intake flow control port portion, there are provided a low flow velocity region, and first and second high flow velocity regions formed on either side of and across the low flow velocity region and the first and second projecting portions wherein the maximum flow velocity of intake gas is comparatively larger than that in the low flow velocity region. The intake gas reaches intake ports with a flow velocity distribution having the relationship of the magnitudes of flow velocities in the low flow velocity region and first and second high flow velocity regions.
    • 通过增加进气口中的低流速区域与第一和第二高流速区域之间的进气速度差来增强燃烧性。 内燃机的进气口具有设置有第一和第二突出部的进气流量控制口部。 在进气流量控制端口部分的通道横截面中,设置有低流速区域,以及形成在低流速区域和第一和第二突出部分的两侧和横向的第一和第二高流速区域,其中 进气的最大流速比低流速区域的最大流速要大。 进气口到达进气口,其流速分布具有低流速区域和第一和第二高流速区域中的流速大小关系。