会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • EGR controller for cylinder cut-off engine
    • 气缸切断发动机的EGR控制器
    • US06244258B1
    • 2001-06-12
    • US09443737
    • 1999-12-01
    • Eitetsu AkiyamaToshiyuki SuzukiRyuji KohnoMorio Fukuda
    • Eitetsu AkiyamaToshiyuki SuzukiRyuji KohnoMorio Fukuda
    • F02M2507
    • F02D21/08F02D13/06F02M26/48F02M26/53Y02T10/18
    • The EGR controller 1 controls the EGR actions wherein exhaust gas from the cylinder cut-off engine 3 which can change over the running condition between the all-cylinder run and the cut-off-cylinder is recirculated to the induction. The EGR controller 1 comprises an EGR control valve 6 for opening and closing the EGR pipe 13, a water temperature sensor 5 for detecting cooling water temperature TW and an ECU 2, and the ECU 2 controls the EGR actions so as tobe executed if the cooling water temperature TW is higher (determined as “Yes” at Step 10) than the upper limit value TWE1H while at the all-cylinder run (determined as “No” at Step 2) or if the cooling water temperature TW is higher than the lower limit value TWE1L while at the cut-off-cylinder run (determined as “Yes” at Step 2).
    • EGR控制器1控制EGR动作,其中来自气缸切断发动机3的可以在全汽缸行程和截止缸之间的运行状态改变的废气再循环到感应。 EGR控制器1包括用于打开和关闭EGR管13的EGR控制阀6,用于检测冷却水温度TW的水温传感器5和ECU 2,并且ECU 2控制EGR动作,以便如果冷却 在全缸运行时(步骤2中判定为“否”),或者如果冷却水温度TW高于下限温度TW,则水温TW高于步骤10中的“是” 在切断缸运行时(步骤2确定为“是”)的限制值TWE1L。
    • 6. 发明授权
    • Apparatus for controlling multi-cylinder internal combustion engine with
partial cylinder switching-off mechanism
    • 用于控制具有部分气缸关闭机构的多气缸内燃机的设备
    • US6138636A
    • 2000-10-31
    • US317622
    • 1999-05-25
    • Ryuji KohnoToshiyuki SuzukiEitetsu AkiyamaMorio Fukuda
    • Ryuji KohnoToshiyuki SuzukiEitetsu AkiyamaMorio Fukuda
    • F01L1/26F01L13/00F02B75/22F02D13/06
    • F01L13/0005F01L1/267F02B75/22F02D13/06F01L2201/00F02D2041/0012Y02T10/18
    • In an apparatus for controlling a multi-cylinder internal combustion engine with partial cylinder switch-off mechanism which is switchable between an all-cylinder operation mode in which all cylinders are operated and a partial-cylinder operation mode in which operation of partial cylinders is suspended, the operation of intake valves and exhaust valves is suspended or resumed in a predetermined order with respect to all of the suspended cylinders irrespective of a rotational frequency of the engine. There are provided a solenoid valve on an intake side and a solenoid valve on an exhaust side for switching input hydraulic pressures for hydraulically operated switching devices respectively on the intake side and on the exhaust side between the driving state and the drive-free state. At the time of switching the operation, one of the solenoid valves on the intake side and the exhaust side is driven in advance. The subsequent number of rotations of a crankshaft is counted. When the number of this counting has reached a predetermined value, the solenoid valve on the other side is driven.
    • 一种用于控制具有部分气缸关闭机构的多缸内燃机的装置,其可在所有气缸操作的全气缸操作模式与部分气缸的操作暂停的部分气缸操作模式之间切换 不管发动机的转速如何,进气门和排气门的操作都以相对于所有悬挂缸的预定顺序暂停或恢复。 在进气侧设置有电磁阀和排气侧的电磁阀,用于在驱动状态和无驱动状态之间分别在进气侧和排气侧切换用于液压操作的开关装置的输入液压。 在切换操作时,预先驱动进气侧和排气侧的一个电磁阀。 对曲轴的后续转数进行计数。 当该计数的数量达到预定值时,另一侧的电磁阀被驱动。
    • 9. 发明授权
    • Process for producing alumina and apparatus therefor
    • 生产氧化铝的方法及其设备
    • US5800797A
    • 1998-09-01
    • US652586
    • 1996-06-07
    • Hiroshi MatsumotoHiroki AraoMorio Fukuda
    • Hiroshi MatsumotoHiroki AraoMorio Fukuda
    • B01J20/08B01J21/04C01F7/14C01F7/34C04B35/111C04B35/626C04B38/00C01F7/02B01J8/00
    • B01J21/04B01J20/08C01F7/141C01F7/34C04B35/111C04B35/626C04B38/00C04B38/0022C01P2004/61C01P2006/12C01P2006/14C01P2006/16
    • In the present invention, alumina is produced by a process comprising leading a starting aqueous slurry containing a seed alumina hydrate to a circulating system, the aqueous slurry being circulated and returned to the starting aqueous slurry, wherein an aqueous solution of an aluminum salt and an aqueous solution of a neutralizer are added to the aqueous slurry being circulated and mixed together at a pH value of 6 to 11 to thereby cause the aqueous slurry to contain formed alumina hydrate prior to the return to the starting aqueous slurry. The production of alumina is performed in an apparatus comprising a vessel equipped with an agitator for accommodating an aqueous slurry therein and a circulating device capable of leading the aqueous slurry outside the vessel and causing the aqueous slurry to circulate and return into the vessel, the above circulating device being provided at its aqueous slurry flowback zone with a first liquid addition device adapted to add an aqueous solution of an aluminum salt to the aqueous slurry being circulated and with a second liquid addition device adapted to add an aqueous solution of a neutralizer to the aqueous slurry being circulated, which apparatus further comprises a mixer adapted to mix together the aqueous slurry being circulated, the aqueous solution of the aluminum salt and the aqueous solution of the neutralizer.
    • PCT No.PCT / JP94 / 02065 Sec。 371日期1996年6月7日第 102(e)日期1996年6月7日PCT 1994年12月8日PCT PCT。 第WO95 / 15920BC号公报 日期:1995年6月15日在本发明中,通过包括将含有种子氧化铝水合物的起始含水浆料引导到循环系统的方法制备氧化铝,所述含水浆料循环并返回到起始水性浆液中,其中将 将铝盐和中和剂水溶液加入到水性浆料中,在pH值为6至11的条件下循环混合,从而使水性浆料在返回到起始水性浆料之前含有形成的水合氧化铝。 氧化铝的生产在包括装有用于容纳水性浆料的搅拌器的容器的设备中进行,以及能够使含水浆料引导到容器外部并使含水浆料循环并返回容器的循环装置,上述 循环装置在其含水浆料回流区中设置有第一液体添加装置,该第一液体添加装置适于将铝盐的水溶液添加到正在循环的水性浆液中,并且具有适于将中和剂的水溶液添加到第二液体添加装置的第二液体添加装置 水性浆料循环,该装置还包括适于将正在循环的水性浆料,铝盐水溶液和中和剂的水溶液混合在一起的混合器。