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    • 2. 发明授权
    • Stratified scavenging two-cycle engine
    • 分层清扫双循环发动机
    • US08181611B2
    • 2012-05-22
    • US12300560
    • 2007-05-10
    • Shigetoshi Ishida
    • Shigetoshi Ishida
    • F02B25/00
    • F02B25/16F02B25/22F02B2075/025F02F1/22F02F3/24
    • Provided is a laminar-scavenging two-cycle engine, which can have a higher laminar-scavenging effect than that of the laminar-scavenging two-cycle engine of the prior art and which can expect drastically excellent effects on the stabilization of combustion and on the blow-by prevention. The laminar-scavenging two-cycle engine is characterized in that a scavenging passage (4) is constituted to include a portion (or a crankcase side portion (4a)) extending along a crankcase (9) and a portion (or a cylinder side portion (4b)) extending along a cylinder (10) and to have a length larger than the sum of the diameter and stroke of the cylinder (10), in that an ambient air introducing passage (11) for introducing the leading air into the scavenging passage (4) is connected to an intermediate portion of the scavenging passage (4), and in that a notch (8a) for opening a scavenging port (7) to the side of the crankcase (9) when a piston (8) is near the top dead center is formed in the piston (8).
    • 提供了一种层流清扫双循环发动机,其能够具有比现有技术的层流清扫双循环发动机更高的层流清除效果,并且可以预期对燃烧稳定性的显着优异的影响 窜漏预防。 层状扫气二冲程发动机的特征在于,扫气通道(4)构成为包括沿曲轴箱(9)延伸的部分(或曲轴箱侧部分(4a))和一部分(或气缸侧部分 (4b)),其长度大于所述气缸(10)的直径和冲程的总和,其特征在于,所述环境空气引入通道(11)用于将引导空气引入所述清扫 通道(4)连接到扫气通道(4)的中间部分,并且当活塞(8)为活塞(8)时,用于将扫气口(7)打开到曲轴箱(9)侧的切口(8a) 在活塞(8)上形成靠近上止点的位置。
    • 3. 发明申请
    • Stratified Scavenging Two-Cycle Engine
    • 分层扫气双循环发动机
    • US20100059030A1
    • 2010-03-11
    • US12309054
    • 2007-06-21
    • Shigetoshi Ishida
    • Shigetoshi Ishida
    • F02B33/04
    • F02B33/04F02B25/14F02B25/22F02B2075/025F02F1/22F02F3/24F02M35/1019F02M35/108
    • A stratified scavenging two-cycle engine that has a simpler structure than conventional stratified scavenging two-cycle engines and that has an excellent blow-by prevention effect etc. In an air intake stroke, lead air passes a lead-air port (12) etc. to flow into an inner space of a piston (6) during a period from the instant at which a lateral groove (21b) starts to superpose on the lead-air port (12) until the superposing between the lateral groove (21b) and the lead-air port (12) disappears after the piston (6) passes its top dead center. Further, in a scavenging stroke, lead air passes a scavenging path (17) etc. to flow into a cylinder (4) from a scavenging port (18) during a period from the instant at which a scavenging connection opening (20) and a scavenging inflow opening (19) start to superpose on each other until the superposing between the scavenging connection opening (20) and the scavenging inflow opening (19) disappears after the piston (6) passes its bottom dead center. Then, a mixture gas passes the inside of the piston (6) to flow into the cylinder (4) from the scavenging port (18).
    • 一种分层清扫双循环发动机,结构比传统分层清扫双循环发动机结构更简单,具有良好的防漏效果。在进气冲程中,引导空气通过引气口(12)等 在从横向槽(21b)开始叠加在引入空气端口(12)上的时刻的期间,流入活塞(6)的内部空间,直到横向槽(21b)和 活塞(6)通过其上死点后,引导空气端口(12)消失。 此外,在清扫行程中,在从扫气连接口(20)和清扫口(20)的时刻起,引导空气通过扫气路(17)等从扫气口(18)流入气缸(4) 清扫流入口(19)开始彼此重叠,直到在活塞(6)通过其下死点之后,扫气连接开口(20)和扫气流入口(19)之间的叠加消失。 然后,混合气体从活塞(6)的内部通过从扫气口(18)流入气缸(4)。
    • 4. 发明授权
    • Hand-held engine-powered tool
    • 手持发动机动力工具
    • US08813733B2
    • 2014-08-26
    • US12636451
    • 2009-12-11
    • Fukushi TamuraShigetoshi Ishida
    • Fukushi TamuraShigetoshi Ishida
    • F02P11/00F02P9/00
    • A01G3/053A01G3/047B25F5/02B27B17/0008
    • When throttle lever is pulled with the rotation lock member of the engine-powered tool in a state in which rotation of rear handle is permitted, the electrode terminal provided on the rotation lock member and the electrode terminal provided on throttle lever contact each other. As a result of this contact, the two output terminals of the engine generator are short-circuited, the supply of electric power to the ignition device from the engine generator is stopped and the supply of electric power from the ignition device to sparkplug in the engine is stopped. Through this, operation of the blade is prevented when rotating rear handle.
    • 当在允许后手柄的旋转的状态下用发动机动力工具的旋转锁定构件拉动节流杆时,设置在旋转锁定构件上的电极端子和设置在节流杆上的电极端子彼此接触。 作为这种接触的结果,发动机发电机的两个输出端子短路,停止从发动机发电机向点火装置的电力供应,并且从点火装置向发动机的火花塞供电 被停止 通过这样,当旋转后把手时,防止了叶片的操作。
    • 5. 发明授权
    • Two cycle engine and two cycle engine tool
    • 双循环发动机和二循环发动机工具
    • US08499730B2
    • 2013-08-06
    • US12540295
    • 2009-08-12
    • Toshinori YasutomiShinki OhtsuJunichi KamimuraShigetoshi Ishida
    • Toshinori YasutomiShinki OhtsuJunichi KamimuraShigetoshi Ishida
    • F02B25/00
    • F02B63/02F02B25/04F02B2075/025F02F3/24F02M26/37F02M35/1017F02M35/1019Y02T10/146
    • The invention provides a two cycle engine which effectively suppresses an intrusion of a combustion gas into a crank chamber. Further, the invention provides a two cycle engine tool provided with the two cycle engine mentioned above. An engine is provided with a cylinder having two scavenge air ports at different positions in a cylinder circumference direction, and scavenge air inflow ports communicating individually with these two scavenge air ports via a scavenge air passage, and a piston in which two scavenge air communication ports are formed at positions corresponding to the scavenge air inflow ports, and is structured to swirl the gas flowing into the piston from the cylinder through the scavenge air passage, in an upper portion of the internal space of the piston, and retains the gas in the upper portion of the internal space of the piston.
    • 本发明提供了一种有效地抑制燃烧气体进入曲柄室的双循环发动机。 此外,本发明提供了一种具有上述两循环发动机的双循环发动机工具。 发动机设置有在气缸圆周方向上的不同位置具有两个清除空气端口的气缸,以及通过扫气通道与这两个扫气口单独连通的清扫空气流入口,以及活塞,其中两个扫气通气口 形成在与清扫空气流入口相对应的位置处,并且被构造成在活塞的内部空间的上部中使从气缸流过活塞的气体通过扫气通道旋转,并将气体保持在 活塞内部空间的上部。
    • 6. 发明授权
    • Two-cycle engine
    • 双循环发动机
    • US06279521B1
    • 2001-08-28
    • US09459021
    • 1999-12-10
    • Shigetoshi IshidaNaoki TsuruokaYasuhiro Sensui
    • Shigetoshi IshidaNaoki TsuruokaYasuhiro Sensui
    • F02B3300
    • F02B25/14
    • A two-cycle engine includes scavenging passages on the cylinder side and the crankcase side as the passages to supply scavenging gas into the cylinder. The passage on the cylinder side includes a passage inside the cylinder sidewall having substantially the same inner diameter as that of the opening area of the scavenging charge port, while the passage on the crankcase side includes a space between the inner peripheral surface at the top end of the crankcase and the outer peripheral surface of the piston, and a connection means provided between the top end of the space and the lower end of the scavenger passage of the cylinder. As the fuel mixture in the crank chamber flows into the scavenging passage on the cylinder side through the narrow space of the passage on the crankcase side and the connection means, the rapid inflow of the fuel mixture into the cylinder is restrained and the supply of the fuel mixture is sustained constantly high until the latter half of the scavenging time. This enables an optimum supply of fuel mixture, and radically decreases the amount of unburned gas in the fuel mixture that is emitted with the exhaust gas.
    • 双冲程发动机包括在气缸侧和曲轴箱侧的扫气通道作为将清扫气体供入气缸的通道。 气缸侧的通道包括在气缸侧壁内部具有与清扫装料口的开口面积大致相同的内径的通道,而曲轴箱侧的通道包括在顶端的内周面之间的空间 和连接装置,其设置在所述空间的顶端与所述气缸的所述清扫通道的下端之间。 由于曲轴室中的燃料混合物通过曲轴箱侧的通道的狭窄空间和连接装置流入气缸侧的扫气通道,所以抑制了燃料混合物进入气缸的快速流入, 燃料混合物持续不断高达到后半部分的清除时间。 这使得能够最佳地供应燃料混合物,并且从根本上减少与废气一起排出的燃料混合物中的未燃烧气体的量。
    • 7. 发明授权
    • Stratified scavenging two-cycle engine
    • 分层清扫双循环发动机
    • US08065981B2
    • 2011-11-29
    • US12309054
    • 2007-06-21
    • Shigetoshi Ishida
    • Shigetoshi Ishida
    • F02B25/00
    • F02B33/04F02B25/14F02B25/22F02B2075/025F02F1/22F02F3/24F02M35/1019F02M35/108
    • A stratified scavenging two-cycle engine that has a simpler structure than conventional stratified scavenging two-cycle engines and that has an excellent blow-by prevention effect etc. In an air intake stroke, lead air passes a lead-air port (12) etc. to flow into an inner space of a piston (6) during a period from the instant at which a lateral groove (21b) starts to superpose on the lead-air port (12) until the superposing between the lateral groove (21b) and the lead-air port (12) disappears after the piston (6) passes its top dead center. Further, in a scavenging stroke, lead air passes a scavenging path (17) etc. to flow into a cylinder (4) from a scavenging port (18) during a period from the instant at which a scavenging connection opening (20) and a scavenging inflow opening (19) start to superpose on each other until the superposing between the scavenging connection opening (20) and the scavenging inflow opening (19) disappears after the piston (6) passes its bottom dead center. Then, a mixture gas passes the inside of the piston (6) to flow into the cylinder (4) from the scavenging port (18).
    • 一种分层清扫双循环发动机,结构比传统分层清扫双循环发动机结构更简单,具有良好的防漏效果。在进气冲程中,引导空气通过引气口(12)等 在从横向槽(21b)开始叠加在引入空气端口(12)上的时刻的期间,流入活塞(6)的内部空间,直到横向槽(21b)和 活塞(6)通过其上死点后,引导空气端口(12)消失。 此外,在清扫行程中,在从扫气连接口(20)和清扫口(20)的瞬间的期间,引导空气通过扫气路(17)等从扫气口(18)流入气缸(4) 清扫流入口(19)开始彼此重叠,直到在活塞(6)通过其下死点之后,扫气连接开口(20)和扫气流入口(19)之间的叠加消失。 然后,混合气体从活塞(6)的内部通过从扫气口(18)流入气缸(4)。
    • 9. 发明授权
    • Ignition circuit for internal combustion engine having alternately
operable high and low speed control devices
    • 具有交替操作的高速和低速控制装置的用于内燃机的点火电路
    • US4509496A
    • 1985-04-09
    • US452210
    • 1982-11-22
    • Shigetoshi Ishida
    • Shigetoshi Ishida
    • F02P1/08F02P5/00
    • F02P1/083
    • An ignition circuit for an internal combustion engine includes an ignition coil having a primary winding which is controlled by a power transistor. The lower transistor is controlled by either a first or a second control transistor. When the primary current flowing through the primary winding of the ignition coil is lower than a predetermined value, cut-off of the power transistor is controlled by the first control transistor. When the primary current is higher than the pre-determined value, cut-off of the power transistor is controlled by the second control transistor which becomes conductive prior to conduction of the first control transistor. Thus, two independent control means are alternately operated responsive to the primary current, which is a function of engine speed.
    • 一种用于内燃机的点火电路包括具有由功率晶体管控制的初级绕组的点火线圈。 下部晶体管由第一或第二控制晶体管控制。 当流过点火线圈的初级绕组的初级电流低于预定值时,功率晶体管的截止被第一控制晶体管控制。 当初级电流高于预定值时,功率晶体管的截止通过在第一控制晶体管导通之前变为导通的第二控制晶体管来控制。 因此,响应于作为发动机转速的函数的一次电流来交替地操作两个独立的控制装置。