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    • 2. 发明申请
    • Brace
    • 支撑
    • US20090152430A1
    • 2009-06-18
    • US11990504
    • 2006-08-02
    • Fumio WatanabeSusumu KonoEiji NagaiKyohei KonoTakeshi Katayama
    • Fumio WatanabeSusumu KonoEiji NagaiKyohei KonoTakeshi Katayama
    • F16M13/00
    • E04H9/02E04H9/028
    • The object is to provide a brace which allows its installment to an object portion and its detachment therefrom to be carried out easily. In a brace including a brace body 3 which is attachable between attaching object portions of a structure, at each one of opposed end portions of the brace body 3, there is provided a contact attaching portion to be attached to the attaching object portion. The brace body 3 includes an expandable urging mechanism S which can be expanded to urgedly extend the brace body 3 along a longitudinal direction thereof, with the two contact attaching portions attached to the attaching object portions and a prestress introducing mechanism P which can be switched over between a state for introducing a compressive prestress to the brace body 3 along the longitudinal direction thereof and a state for releasing the introduced prestress. At least a state switchover control portion 22 of the prestress introducing mechanism is provided to be exposed outside the brace body 3.
    • 目的是提供一种支架,其允许其安装到对象部分并且其从其脱离容易地执行。 在包括支撑体3的支架中,支撑体3可附接在结构件的附接对象部分之间,在支撑体3的相对的端部中的每一个处设置有附接到附着对象部分的接触附接部。 支架主体3包括可扩展的推动机构S,其可以被扩展以沿着其长度方向推动支撑主体3,其中两个触点附接部分附接到附接对象部分,以及可以切换的预应力引入机构P 在用于将压缩预应力沿其纵向方向引导到支撑体3的状态和用于释放引入的预应力的状态之间。 至少设置预应力引导机构的状态切换控制部22露出支架主体3的外侧。
    • 5. 发明授权
    • Suspended load vibration preventing apparatus
    • 悬吊式防振装置
    • US5642822A
    • 1997-07-01
    • US629090
    • 1996-04-08
    • Tadaaki MonzenSusumu KonoYoshiaki OhkuboToshiyuki FujiiKouji Uchida
    • Tadaaki MonzenSusumu KonoYoshiaki OhkuboToshiyuki FujiiKouji Uchida
    • B66C13/22B66C13/06B66C13/46B66C15/00
    • B66C13/46B66C13/063
    • A suspended load swaying and vibration preventing apparatus for simultaneously controlling prevention of swaying of a suspended load and suppression of vibration of a structural body is provided in a container crane or the like. A trolley position and a trolley velocity are detected by a trolley position detector and a trolley detector. A swaying shift and a swaying velocity of the suspended load is detected by an image sensor. Furthermore, a shift and a velocity of a structural body is detected by a structural body vibration detector. A controller receives the detection signals from these sections, calculates the optimum trolley velocity based upon a control theory and outputs a trolley velocity command. Then, a trolley drive device is driven in accordance with the trolley velocity command from the controller. The suspended load is delivered to a desired position in a stable manner under the condition that swaying of the suspended load and the vibration of the structural body are suppressed.
    • 在集装箱起重机等中设置有用于同时控制防止悬挂载荷的摇摆并抑制结构体的振动的悬挂式负载摇摆和防振装置。 手推车位置和手推车速度由台车位置检测器和手推车检测器检测。 通过图像传感器检测悬挂载荷的摇摆移动和摇摆速度。 此外,通过结构体振动检测器检测结构体的偏移和速度。 控制器从这些部分接收检测信号,根据控制理论计算出最佳的滑车速度,并输出小车速度指令。 然后,根据来自控制器的手推车速度命令来驱动手推车驱动装置。 在悬挂载荷的摆动和结构体的振动受到抑制的条件下,悬挂的载荷以稳定的方式输送到期望的位置。
    • 6. 发明授权
    • Method of control for a wet lime-gypsum process desulfurization plant
    • 湿石膏石膏工艺脱硫装置的控制方法
    • US4582692A
    • 1986-04-15
    • US604362
    • 1984-04-26
    • Kengo HamanakaSusumu KonoKatsuyuki MorinagaYutaka Nonogaki
    • Kengo HamanakaSusumu KonoKatsuyuki MorinagaYutaka Nonogaki
    • B01D53/50C01B17/00
    • B01D53/501
    • In an absorption tower of a wet lime-gypsum process desulfurization plant which desulfurizes an exhaust gas by bringing an incoming exhaust gas into contact with an absorbent liquid circulated therethrough by means of a plurality of pumps, an optimum pH value of the absorbent liquid and an optimum number of working pumps are set according to an amount of an exhaust gas load of the absorption tower, and a feed rate of the absorbent liquid and a number of working pumps are controlled on the basis of these set values. According to one mode of embodiment of the invention, a variation rate of the exhaust gas load and a desulfurization ratio are detected, and when the amount of exhaust gas load is constant or rising and also the desulfurization ratio is lower than a desired desulfurization ratio, the number of working pumps is correctively increased. According to another mode of embodiment of the invention, there are provided first and second simulation model, in the first simulation model a pH value of an absorbent liquid and a desulfurization ratio are calculated on the basis of an exhaust gas flow rate, an inlet SO.sub.2 concentration, an absorbent liquid circulation flow rate and a feed rate of a neutralizing agent of the absorbent liquid, these calculated values are compared with detected values of the pH value and the desulfurization ratio during operation, a reaction constant set within the first and second simulation model is corrected on the basis of deviations between the compared values, and said two optinum set values are calculated by the corrected second simulation model.
    • 在通过使进入的废气通过多个泵与其循环的吸收液体接触来脱硫废气的湿法石膏石膏工艺脱硫装置的吸收塔中,吸收液体的最佳pH值和 根据吸收塔的排气负荷量设定工作泵的最佳数量,并且基于这些设定值来控制吸收液体的进料速度和多个工作泵。 根据本发明的一个实施方式,检测废气负荷的变化率和脱硫率,当废气负荷量恒定或上升,脱硫率低于期望的脱硫率时, 工作泵的数量正确提高。 根据本发明的另一实施方式,提供了第一和第二仿真模型,在第一模拟模型中,基于排气流量,入口SO 2计算吸收剂液体的pH值和脱硫率 浓度,吸收液体循环流量和吸收剂液体的中和剂的进料速率,将这些计算值与操作期间的pH值和脱硫率的检测值进行比较,在第一和第二模拟中设定的反应常数 模型基于经比较的值之间的偏差进行校正,并且所述两个光学设定值通过校正的第二仿真模型计算。