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    • 81. 发明授权
    • Cooling fan drive system for travel type working machine
    • 行走式工作机冷却风扇驱动系统
    • US07841307B2
    • 2010-11-30
    • US11909325
    • 2006-10-24
    • Kentarou ItogaTsuyoshi NakamuraKazunori Nakamura
    • Kentarou ItogaTsuyoshi NakamuraKazunori Nakamura
    • F01P7/02
    • E02F9/226F01P7/044F01P2023/08F01P2025/62F01P2025/66
    • In a cooling fan drive system for a travel type working machine, the rotational speed of a cooling fan is controlled to the optimum rotational speed in accordance with temperature increase of the temperature of an engine cooling water, and the engine rotational speed is smoothly increased when the engine rotational speed is increased under travel acceleration. A fourth fan target rotational speed calculator 35e and a minimum value selector 35f are provided, and under non-operation, the fan target rotational speed is set to a low rotational speed irrespective of the temperature. When an acceleration pedal 12 is depressed to increase the rotational speed of the engine under travel acceleration, the increase of the drive pressure of a hydraulic motor 23 due to increase of the rotation of the cooling fan 9 is suppressed, and the load on the engine 1 is reduced.
    • 在用于行驶式加工机的冷却风扇驱动系统中,根据发动机冷却水的温度升高将冷却风扇的转速控制到最佳转速,并且当发动机转速为 发动机转速在行驶加速度下增加。 提供第四风扇目标转速计算器35e和最小值选择器35f,并且在不工作的情况下,将风扇目标转速设定为低转速而与温度无关。 当加速踏板12被按压以增加发动机在行驶加速度下的转速时,由于冷却风扇9的旋转增加而导致的液压马达23的驱动压力的增加被抑制,并且发动机上的负荷 1减少。
    • 82. 发明申请
    • Mounting Structure for NOx Reduction Device for Construction Machine
    • 施工机械NOx还原装置安装结构
    • US20100293928A1
    • 2010-11-25
    • US12811452
    • 2009-01-07
    • Shohei KamiyaMasanori EzawaKazunori Nakamura
    • Shohei KamiyaMasanori EzawaKazunori Nakamura
    • F01N3/24
    • F01N3/2066B60K13/04B60Y2200/41E02F9/0883E02F9/18F01N2340/04F01N2590/08F01N2610/02F01N2610/1406Y02A50/2325Y02T10/24
    • [Problem] To provide a mounting structure for an NOx reduction system for a construction machine, said mounting structure being capable of relaxing restrictions on a space for the arrangement of the NOx reduction system.[Solution] In a mounting structure for an NOx reduction system including a urea-water SCR catalyst 19 for reducing and purifying nitrogen oxides emitted from an engine 14, a urea water spay device 20 for spraying urea water into an exhaust passage of the engine 14, a urea water feeder 23 for feeding the urea water to the urea water spray device 20, a first urea-water tank 24 and second urea-water tank 27 for storing the urea water to be guided to the urea water feeder 23, and a controller 30 for controlling drive of the urea water spray device 20 and urea water feeder 23, a counterweight 12 is provided with a cavity 13 formed therein, the urea water feeder 23, first urea-water tank 24, second urea-water tank 27 and controller 30 are integrally arranged as an assembly 21, and the assembly 21 is arranged in the cavity 13 of the counterweight 12.
    • 为了提供一种用于建筑机械的NOx还原系统的安装结构,所述安装结构能够放宽对用于排列NOx还原系统的空间的限制。 [解决方案]在包括用于还原和净化从发动机14排出的氮氧化物的尿素 - 水SCR催化剂19的NOx还原系统的安装结构中,用于将尿素水喷射到发动机14的排气通道中的尿素水分装置20 用于将尿素水供给到尿素水喷射装置20的尿素水供给装置23,将尿素水引导到尿素给水器23的第一尿素水箱24和第二尿素水箱27以及第二尿素水箱27 用于控制尿素水喷射装置20和尿素给水器23的驱动的控制器30,配重12设置有形成在其中的空腔13,尿素水供给器23,第一尿素水箱24,第二尿素水箱27和 控制器30一体地设置为组件21,并且组件21布置在配重12的空腔13中。
    • 83. 发明申请
    • Construction Machine
    • 施工机械
    • US20100139255A1
    • 2010-06-10
    • US12598995
    • 2008-05-28
    • Shohei KamiyaKazunori NakamuraYasushi Arai
    • Shohei KamiyaKazunori NakamuraYasushi Arai
    • F01N9/00F01N3/10
    • E02F9/2246B01D2251/2067E02F9/00E02F9/0808E02F9/2203F01N3/2066F01N2610/02F01N2900/1814Y02T10/24
    • [PROBLEM] To provide a construction machine capable of performing necessary operation or operations without a difficulty even when a remaining amount of a reducing agent becomes small.[SOLUTION] In a hydraulic excavator having an engine, a hydraulic cylinder (18), plural actuators including a hydraulic motor (29), and an exhaust gas treatment system for subjecting, to purification treatment, nitrogen oxides in exhaust gas from the engine, the hydraulic excavator is provided with an actuator operation control means for performing, when the remaining amount of the reducing agent in a reducing agent storage tank (30) is detected by a remaining reducing-agent amount detector (33) to have become equal to or smaller than a predetermined remaining amount, limiting control to limit an operation of the hydraulic cylinder (18) such that a front working implement driven by the hydraulic cylinder (18) becomes difficult to exhibit its function, and at a same time, holding control for holding the hydraulic motor (20) operable such that a function of a travel base (1) or swing upperstructure (3) driven by the hydraulic motor (20) can be exhibited.
    • [问题]提供即使在还原剂的剩余量变小时也难以进行必要的操作或操作的施工机械。 [解决方案]在具有发动机的液压挖掘机中,液压缸(18),包括液压马达(29)的多个致动器和用于对来自发动机的废气中的氮氧化物进行净化处理的废气处理系统, 液压挖掘机设置有致动器操作控制装置,用于当剩余的还原剂量检测器(33)检测到还原剂储存箱(30)中的还原剂的剩余量达到等于或等于 小于预定的剩余量,限制液压缸(18)的操作的限制,使得由液压缸(18)驱动的前工作工具变得难以发挥其功能,并且同时保持控制 保持液压马达(20)可操作,使得能够显示由液压马达(20)驱动的行驶基座(1)或摆动上部结构(3)的功能。
    • 84. 发明申请
    • EXHAUST GAS CLEANING SYSTEM FOR CONSTRUCTION MACHINE
    • 用于建筑机械的排气清洁系统
    • US20100089035A1
    • 2010-04-15
    • US12523810
    • 2008-08-06
    • Shohei KamiyaKazunori Nakamura
    • Shohei KamiyaKazunori Nakamura
    • F01N11/00F01N3/023F01N9/00F01N3/035
    • F01N3/023E02F9/00E02F9/0866F01N9/002F01N2560/08F01N2570/10F02B3/06F02D29/02F02D41/029F02D41/042Y02T10/47
    • Before a large amount of PM is deposited in a filter 32, an exhaust gas cleaning system for a construction machine regenerates the filter to avoid a decrease in output due to the exhaust gas pressure rise occurring immediately before the filter is regenerated, and to reduce the likelihood of unusual increases in the internal temperature of the filter due to the combustion of the PM, associated with the execution of the regeneration, and consequential thermal damage to the filter. If a value of a differential pressure across the filter 32 is greater than a predetermined pressure, a controller 4 conducts engine speed control to a predetermined rotating speed Na suitable for the regeneration, then enters forced regeneration automatically, and burns off the PM. When the sensed differential pressure decreases below a predetermined pressure, the regeneration is terminated automatically and the engine 1 is stopped.
    • 在大量的PM沉积在过滤器32中之前,用于建筑机器的废气净化系统使过滤器再生,以避免由于在过滤器再生之前发生的废气压力上升而导致的输出减少,并且减少 由于与执行再生有关的PM的燃烧引起的过滤器的内部温度的异常增加的可能性以及对过滤器的相应的热损伤。 如果过滤器32两端的差压值大于规定的压力,则控制器4将发动机转速控制为适合于再生的规定转速Na,然后自动进入强制再生,并使PM燃烧。 当感测到的压差降低到预定压力以下时,再生自动终止,发动机1停止。
    • 87. 发明申请
    • Video Signal Switching System
    • 视频信号切换系统
    • US20090097496A1
    • 2009-04-16
    • US12226831
    • 2006-05-02
    • Kazunori NakamuraOsamu KinoshitaTsukasa SugawaraTakashi Suzuki
    • Kazunori NakamuraOsamu KinoshitaTsukasa SugawaraTakashi Suzuki
    • H04L12/56
    • H04N5/268H04N21/23424H04N21/236H04N21/23602H04N21/4342H04N21/44016
    • A video signal switching system wherein existing network components and the like are used to perform a switching process, thereby reducing the costs and improving the versatility as well. As a solution, a video signal switching system is provided which comprises a plurality of input port components that acquire non-packet digital consecutive signals; a plurality of output port components that output the non-packet digital consecutive signals; a packetizing unit that packetizes the acquired non-packet digital consecutive signals into packets after associating them with the input port identification information of the input port components having acquired them; a switch unit that distributes the packets to the output port components in accordance with the input port identification information associated with those packets; and a restoring unit that restores the packet signals distributed by the switch unit to the non-packet digital consecutive signals.
    • 使用现有网络部件等进行切换处理的视频信号切换系统,从而降低成本并提高多功能性。 作为解决方案,提供了一种视频信号切换系统,其包括获取非分组数字连续信号的多个输入端口组件; 输出非分组数字连续信号的多个输出端口组件; 分组单元,在将所获取的非分组数字连续信号与已经获取的非输入端口组件的输入端口识别信息相关联之后将其分组为分组; 开关单元,其根据与这些分组相关联的输入端口识别信息将分组分发到输出端口组件; 以及恢复单元,其将由开关单元分配的分组信号恢复到非分组数字连续信号。
    • 88. 发明申请
    • COOLING FAN DRIVE SYSTEM FOR TRAVEL TYPE WORKING MACHINE
    • 用于旅行式工作机的冷却风扇驱动系统
    • US20090025661A1
    • 2009-01-29
    • US11909325
    • 2006-10-24
    • Kentarou ItogaTsuyoshi NakamuraKazunori Nakamura
    • Kentarou ItogaTsuyoshi NakamuraKazunori Nakamura
    • F01P7/04
    • E02F9/226F01P7/044F01P2023/08F01P2025/62F01P2025/66
    • In a cooling fan drive system for a travel type working machine, the rotational speed of a cooling fan is controlled to the optimum rotational speed in accordance with temperature increase of the temperature of an engine cooling water, and the engine rotational speed is smoothly increased when the engine rotational speed is increased under travel acceleration. A fourth fan target rotational speed calculator 35e and a minimum value selector 35f are provided, and under non-operation, the fan target rotational speed is set to a low rotational speed irrespective of the temperature. When an acceleration pedal 12 is depressed to increase the rotational speed of the engine under travel acceleration, the increase of the drive pressure of a hydraulic motor 23 due to increase of the rotation of the cooling fan 9 is suppressed, and the load on the engine 1 is reduced.
    • 在用于行驶式加工机的冷却风扇驱动系统中,根据发动机冷却水的温度升高将冷却风扇的转速控制到最佳转速,并且当发动机转速为 发动机转速在行驶加速度下增加。 提供第四风扇目标转速计算器35e和最小值选择器35f,并且在不工作的情况下,将风扇目标转速设定为低转速而与温度无关。 当加速踏板12被按压以增加发动机在行驶加速度下的转速时,由于冷却风扇9的旋转增加而导致的液压马达23的驱动压力的增加被抑制,并且发动机上的负荷 1减少。
    • 90. 发明授权
    • Engine control system for construction machine
    • 施工机械发动机控制系统
    • US07255088B2
    • 2007-08-14
    • US10527418
    • 2004-06-24
    • Kazunori NakamuraYasushi AraiYoichi KowatariKouji IshikawaHideo Karasawa
    • Kazunori NakamuraYasushi AraiYoichi KowatariKouji IshikawaHideo Karasawa
    • F02D41/04F02D41/14
    • F02D31/007F02D41/12
    • An engine control system includes pressure sensors (73, 74), position sensors (75, 76), pressure sensors (77, 78), a target revolution speed modification value computing unit (90), and a modification value adder (70r). A target revolution speed NR2 for use in control is computed based on changes of status variables such that the target revolution speed NR2 increases from the target revolution speed NR1 applied from an input unit (71), and then moderately returns to the target revolution speed NR1. In accordance with the computed target revolution speed NR2 for use in control, a target fuel injection amount FN1 is computed and a fuel injection amount is controlled. As a result, a drop of an engine revolution speed attributable to an abrupt increase of an engine load can be suppressed without sacrificing the work efficiency, and lowering of durability caused by an excessive increase of the engine revolution speed can be prevented.
    • 发动机控制系统包括压力传感器(73,74),位置传感器(75,76),压力传感器(77,78),目标转速修正值计算单元(90)和修正值加法器(70r) 。 根据状态变量的变化,计算目标转速NR2,使得目标转速NR2从从输入单元(71)施加的目标转速NR 1增加,然后适度返回到目标 转速NR 1。 根据用于控制的计算出的目标转速NR2,计算目标燃料喷射量FN1,并控制燃料喷射量。 结果,可以在不牺牲工作效率的情况下抑制由于发动机负载突然增加引起的发动机转速的下降,并且可以防止由于发动机转速过大而导致的耐久性降低。