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    • 44. 发明申请
    • PAYLOAD CONTROL APPARATUS, METHOD, AND APPLICATIONS
    • 负载控制装置,方法和应用
    • US20150266704A1
    • 2015-09-24
    • US14436105
    • 2013-10-16
    • FAIRFIELD INDUSTRIES INCORPORATED
    • Stephen W. Jewell
    • B66C13/10B63B27/16
    • B66C13/10B63B27/16B66C13/02B66C13/18B66D1/52
    • A payload control apparatus includes a spring-line a spring line actuating mechanism, a spring line flying sheave over which a load line can pass, and a spring line, wherein the spring line flying sheave can move into a position either where the flying sheave is spaced from and in non-contact with or contacting but non-path-altering in relation to the load line, further wherein the spring-line flying sheave can be moved into another position such that the flying sheave engages the load-line and alters its path length. Thus, when a marine surface vessel falls in a heave event that would otherwise cause the payload at the end of the load line to fall as well, the flying sheave will move to increase the path length causing a shortening of the path length, thereby preventing the payload from falling.
    • 有效载荷控制装置包括弹簧线,弹簧线致动机构,弹簧线飞行滑轮,负载线可穿过该弹簧线,以及弹簧线,其中弹簧线飞轮可以移动到飞轮的哪个位置, 与负载线相接触或不接触而不是路径改变,其中弹簧线滑轮可以移动到另一位置,使得飞轮与负载线接合并改变其 路径长度。 因此,当海洋表面容器落入否则会使负载线端部的载荷下降的起伏事件时,飞轮将移动以增加路径长度,从而缩短路径长度,从而防止 有效载荷从下降。
    • 45. 发明授权
    • Bridge crane
    • 桥式起重机
    • US09139403B2
    • 2015-09-22
    • US13574278
    • 2011-01-18
    • Teppo Lindberg
    • Teppo Lindberg
    • B66C17/00
    • B66C17/00B66C13/10
    • The object of the invention is a bridge crane, which comprises a main girder, which is fitted to travel supported by end carriages essentially at both ends and which bridge crane further comprises a hoisting trolley traveling supported by the main girder and a rope drum mounted on bearings to rotate in an essentially stationary position, from which rope drum the hoisting rope is guided to a hook traveling along with the hoisting trolley. The hoisting rope is supported from below for at least a part of its essentially horizontal section.
    • 本发明的目的是一种桥式起重机,其包括主梁,该主梁被安装成基本上位于两端的末端支架支撑,并且该桥式起重机还包括由主梁支撑的提升推车和安装在主梁上的绳索鼓 轴承在基本上静止的位置旋转,绳索卷扬机将提升绳绳引导到与提升推车一起行进的吊钩。 起重绳索从下方支撑至少部分其基本水平的部分。
    • 47. 发明申请
    • SUPER-LIFTING DEVICE OF CRANE, CONTROL SYSTEM AND CONTROL METHOD THEREOF
    • 起重机起升装置,控制系统及其控制方法
    • US20120265411A1
    • 2012-10-18
    • US13380558
    • 2010-06-24
    • Lianxi DengMunan LiuBin Li
    • Lianxi DengMunan LiuBin Li
    • B66C13/18
    • B66C23/823B66C13/10B66C13/18B66C23/701B66C23/78B66C23/80B66C23/82B66C23/88B66C23/90
    • A control system for a super-lifting device of a crane comprises a pressure-detecting element (21) for detecting the pressure of a variable amplitude oil cylinder and obtaining a measured pressure value, and a control element (22) for comparing the measured pressure value with the predetermined pressure value. When the measured pressure value is larger than or equal to the predetermined pressure value, the tensioning oil cylinder (23) is shortened, therefore increasing the tensioning pressure of the tensioning oil cylinder (23), reinforcing the tension of the super-lifting cable wire in the super-lifting device, and increasing the super-lifting moment applied to the main arm by the super-lifting device, which can effectively balance the pressure of the variable amplitude oil cylinder. A control method and a super-lifting device with the above control system are disclosed.
    • 一种用于起重机的超升降装置的控制系统包括用于检测可变振幅油缸的压力并获得测量的压力值的压力检测元件(21)和用于将所测量的压力进行比较的控制元件(22) 值与预定压力值。 当测量压力值大于或等于预定压力值时,张紧油缸(23)被缩短,从而增加张紧油缸(23)的张紧压力,增强超提升电缆线的张力 在超升降装置中,通过超升降装置增加施加在主臂上的超提升力矩,可以有效平衡变幅油缸的压力。 公开了一种具有上述控制系统的控制方法和超提升装置。