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    • 1. 发明授权
    • Automated heat treatment system for engine valve
    • 发动机气门自动热处理系统
    • US09086239B2
    • 2015-07-21
    • US14356017
    • 2012-01-17
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • F27B9/14F27B9/00C21D9/00
    • F27B9/00B21K1/22B65G25/02C21D1/00C21D9/0018C21D9/0056C21D9/0068F27B9/20F27B9/30F27D3/0024
    • An inventive automated heat treatment system has a furnace for heat treating forged engine valves, a carry-in mechanism for transporting the forged valves into the furnace, and a carry-out mechanism for transporting heat treated valves out of the furnace. Each of the carry-in mechanism and the carry-out mechanism has a retention mechanism for retaining valves hung, and a transport mechanism for transporting valves to the furnace as they are hung. The furnace has heating means, groups of paired rails for supporting and moving the valves hung in the furnace, and a stopper for controlling the positions of the valves on the rails. The engine valves are maintained hung with their umbrella-shaped portions supported by the respective mechanisms throughout the automated heat treatment processes. Thus, the heat treatment of engine valves is done in a fewer steps than in a conventional system.
    • 本发明的自动热处理系统具有用于热处理锻造发动机阀的炉,用于将锻造阀输送到炉中的携带机构,以及用于将热处理的阀输送出炉的进出机构。 每个输入机构和执行机构具有用于保持阀悬挂的保持机构,以及用于在将阀悬挂时将阀输送到炉中的输送机构。 炉具有加热装置,用于支撑和移动悬挂在炉中的阀的成对轨道组,以及用于控制在轨道上的阀位置的止动器。 发动机阀门在整个自动化热处理过程中保持悬挂在其各自机构支撑的伞形部分上。 因此,发动机气门的热处理以比传统系统更少的步骤完成。
    • 2. 发明申请
    • Automated Heat Treatment System for Engine Valve
    • 发动机阀门自动热处理系统
    • US20140322660A1
    • 2014-10-30
    • US14356017
    • 2012-01-17
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • F27B9/00
    • F27B9/00B21K1/22B65G25/02C21D1/00C21D9/0018C21D9/0056C21D9/0068F27B9/20F27B9/30F27D3/0024
    • An inventive automated heat treatment system has a furnace for heat treating forged engine valves, a carry-in mechanism for transporting the forged valves into the furnace, and a carry-out mechanism for transporting heat treated valves out of the furnace. Each of the carry-in mechanism and the carry-out mechanism has a retention mechanism for retaining valves hung, and a transport mechanism for transporting valves to the furnace as they are hung. The furnace has heating means, groups of paired rails for supporting and moving the valves hung in the furnace, and a stopper for controlling the positions of the valves on the rails. The engine valves are maintained hung with their umbrella-shaped portions supported by the respective mechanisms throughout the automated heat treatment processes. Thus, the heat treatment of engine valves is done in a fewer steps than in a conventional system.
    • 本发明的自动热处理系统具有用于热处理锻造发动机阀的炉,用于将锻造阀输送到炉中的携带机构,以及用于将热处理的阀输送出炉的进出机构。 每个输入机构和执行机构具有用于保持阀悬挂的保持机构,以及用于在将阀悬挂时将阀输送到炉中的输送机构。 炉具有加热装置,用于支撑和移动悬挂在炉中的阀的成对轨道组,以及用于控制在轨道上的阀位置的止动器。 发动机阀门在整个自动化热处理过程中保持悬挂在其各自机构支撑的伞形部分上。 因此,发动机气门的热处理以比传统系统更少的步骤完成。
    • 3. 发明授权
    • Forging system for forging a valve
    • 用于锻造阀门的锻造系统
    • US09138802B2
    • 2015-09-22
    • US14371353
    • 2012-03-30
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • B21J9/02B21K27/04B21K1/20B21J13/10B21J9/08
    • B21J13/10B21J9/022B21J9/08B21K1/20B21K1/22B21K27/04
    • A forging press device for valve including an upsetter in which a plurality of primary forming stages are provided, a forging press main body adjacent to the upsetter, that secondarily forms a primary formed workpiece, and a workpiece conveyance/carry-in device which grips and conveys the workpiece, to carry it into the forging press main body, the device in which the workpiece conveyance/carry-in device is composed of a high speed multi jointed robot capable of circling around a vertical shaft, which has an arm (a chuck) gripping the workpiece. In accordance with the invention, it is possible to provide a forging press device for valve in which the number of deliveries of workpiece from the upsetter to the forging press main body is decreased, which speeds up a valve forging line, and improves the production efficiency.
    • 一种用于阀的锻压机,包括设置有多个初级成形台的镦锻机,邻近镦锻机的锻压机主体,其二次形成初级成形工件;以及工件搬运/搬运装置,其夹持和 传送工件,将其运送到锻压机主体中,其中工件输送/携带装置由能够围绕垂直轴盘旋的高速多关节机器人构成的装置,其具有臂(卡盘 )抓住工件。 根据本发明,可以提供一种用于阀的锻压机,其中从镦锻机到锻压机主体的工件输送量减少,加速了阀锻造线,提高了生产效率 。
    • 4. 发明申请
    • FORGING PRESS DEVICE FOR VALVE
    • 锻造压力装置阀
    • US20140352389A1
    • 2014-12-04
    • US14371353
    • 2012-03-30
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • Yorikazu MurataYuji OkamuraYosuke MakinoHiroyuki Oda
    • B21J13/10B21K1/20B21J9/08
    • B21J13/10B21J9/022B21J9/08B21K1/20B21K1/22B21K27/04
    • A forging press device for valve including an upsetter in which a plurality of primary forming stages are provided, a forging press main body adjacent to the upsetter, that secondarily forms a primary formed workpiece, and a workpiece conveyance/carry-in device which grips and conveys the workpiece, to carry it into the forging press main body, the device in which the workpiece conveyance/carry-in device is composed of a high speed multi jointed robot capable of circling around a vertical shaft, which has an arm (a chuck) gripping the workpiece. In accordance with the invention, it is possible to provide a forging press device for valve in which the number of deliveries of workpiece from the upsetter to the forging press main body is decreased, which speeds up a valve forging line, and improves the production efficiency.
    • 一种用于阀的锻压机,包括设置有多个初级成形台的镦锻机,邻近镦锻机的锻压机主体,其二次形成初级成形工件;以及工件搬运/搬运装置,其夹持和 传送工件,将其运送到锻压机主体中,其中工件输送/携带装置由能够围绕垂直轴盘旋的高速多关节机器人构成的装置,其具有臂(卡盘 )抓住工件。 根据本发明,可以提供一种用于阀的锻压机,其中从镦锻机到锻压机主体的工件输送量减少,加速了阀锻造线,提高了生产效率 。
    • 5. 发明授权
    • Method of machining opposite ends of rod members
    • 加工杆构件相对端的方法
    • US08882566B2
    • 2014-11-11
    • US14113088
    • 2012-05-15
    • Yuji OkamuraYosuke Makino
    • Yuji OkamuraYosuke Makino
    • B24B5/00B42B9/00
    • B42B9/00B24B5/01B24B9/00B24B19/009B24B27/0658B24B27/0675B24D5/123
    • A method of efficiently cutting and machining opposite ends of rod members in sequence is provided, which comprises steps of: abutting a grinding wheel (5) against the periphery of a long rod material (10a) placed at a predetermined work position; moving the grinding wheel towards and along the axis of a first portion of the long rod material (10a) in rotation to taper the tail end of the first portion (to be provided as a rod member); and then moving the grinding wheel (5) further towards the axis of the rod material (10a) to cut the first portion off the long rod material and at the same time chamfer the leading end of a second portion of the long rod material in contact with the rear side of the grinding wheel. After removing the first rod member cut off, the sequence of these steps is repeated as needed.
    • 提供了一种有效地切割和加工杆构件的相对端的方法,其包括以下步骤:将砂轮(5)抵靠放置在预定工作位置的长棒材料(10a)的周边; 沿着长杆材料(10a)的第一部分的轴线朝向并沿其旋转移动砂轮以使第一部分(被设置为杆构件)的尾端逐渐变细; 然后将砂轮(5)进一步朝向棒材(10a)的轴线移动,以将长棒材料的第一部分切割下来,同时倒角接触的长杆材料的第二部分的前端 与砂轮的后侧。 在去除第一杆构件切断后,根据需要重复这些步骤的顺序。
    • 6. 发明申请
    • METHOD OF MACHINING OPPOSITE ENDS OF ROD MEMBERS
    • 加工骨架成员的相对端的方法
    • US20140227946A1
    • 2014-08-14
    • US14113088
    • 2012-05-15
    • Yuji OkamuraYosuke Makino
    • Yuji OkamuraYosuke Makino
    • B24B9/00
    • B42B9/00B24B5/01B24B9/00B24B19/009B24B27/0658B24B27/0675B24D5/123
    • A method of efficiently cutting and machining opposite ends of rod members in sequence is provided, which comprises steps of: abutting a grinding wheel (5) against the periphery of a long rod material (10a) placed at a predetermined work position; moving the grinding wheel towards and along the axis of a first portion of the long rod material (10a) in rotation to taper the tail end of the first portion (to be provided as a rod member); and then moving the grinding wheel (5) further towards the axis of the rod material (10a) to cut the first portion off the long rod material and at the same time chamfer the leading end of a second portion of the long rod material in contact with the rear side of the grinding wheel. After removing the first rod member cut off, the sequence of these steps is repeated as needed.
    • 提供了一种有效地切割和加工杆构件的相对端的方法,其包括以下步骤:将砂轮(5)抵靠放置在预定工作位置的长杆材料(10a)的周边; 沿着长杆材料(10a)的第一部分的轴线朝向并沿其旋转移动砂轮以使第一部分(被设置为杆构件)的尾端逐渐变细; 然后将砂轮(5)进一步朝向棒材(10a)的轴线移动,以将长棒材料的第一部分切割下来,同时倒角接触的长杆材料的第二部分的前端 与砂轮的后侧。 在去除第一杆构件切断后,根据需要重复这些步骤的顺序。
    • 10. 发明授权
    • Torque converter apparatus
    • 转矩转换装置
    • US08695772B2
    • 2014-04-15
    • US12944147
    • 2010-11-11
    • Yukihisa TsuzukiYosuke MakinoTomoko YamamotoTomoyuki Kitagawa
    • Yukihisa TsuzukiYosuke MakinoTomoko YamamotoTomoyuki Kitagawa
    • F16D33/08
    • F16H45/02F16H2045/002F16H2045/021F16H2045/0226F16H2045/0231F16H2045/0284
    • A torque converter apparatus includes a torque converter, a lock-up clutch arranged between the torque converter and an engine, and a lock-up damper arranged between the torque converter and the lock-up clutch and connected to the lock-up clutch, the lock-up damper including a plurality of springs arranged at multiple stages and separated from each other in a radial direction of the torque converter, the lock-up clutch including an outer hub and an inner hub, the outer hub extending toward the lock-up damper and supporting one of first and second frictional engagement members engageable with each other, the outer hub extending toward a first space formed between the plurality of springs in the radial direction, the inner hub extending toward the engine and supporting the other of the first and second frictional engagement members.
    • 一种变矩器装置,包括变矩器,设置在变矩器和发动机之间的锁止离合器和布置在变矩器和锁止离合器之间并连接到锁止离合器的锁止风门, 锁定减震器,包括多个弹簧,多个弹簧布置在变矩器的径向方向上彼此分离,锁止离合器包括外轮毂和内轮毂,外轮毂朝向锁止件 阻尼器并且支撑彼此接合的第一和第二摩擦接合构件中的一个,所述外毂毂朝向径向方向上形成在所述多个弹簧之间的第一空间延伸,所述内轮毂朝向发动机延伸并支撑所述第一和 第二摩擦接合构件。