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    • 2. 发明申请
    • ELEMENT FOR CONNECTING A LATTICE SYSTEM
    • 连接系统的元素
    • US20100329773A1
    • 2010-12-30
    • US12675935
    • 2008-07-16
    • Michael Martin
    • Michael Martin
    • F16B1/00
    • B66C23/702Y10T403/12Y10T403/32271
    • An element is provided for connecting the chords of a lattice system, which consists of upper chords and lower chords, between which struts and/or stays are arranged, to a telescopic boom head. Thereby, the lower chords are directly connected to the telescopic boom head by means of bolts, while the upper chords can be connected to the telescopic boom head by a connecting element of variable length in such a way that—with respect to the connection of the lower chords—the upper chords can be connected to one another at a variable angle, and wherein the connecting element consists of two butt straps which can each be fastened at one end of mutually facing ends of the upper chords and can be connected to one another at different points.
    • 提供了一种元件,用于将由弦杆和下弦构成的格架系统的弦杆连接到伸缩臂头上。 因此,下弦杆通过螺栓直接连接到伸缩臂头部,而上弦杆可以通过可变长度的连接元件以可相互连接的方式连接到伸缩臂头部 较低的和弦 - 上弦可以以可变的角度彼此连接,并且其中连接元件由两个对接带组成,每个对接带可以被固定在上弦的相互面对的端部的一端并且可以彼此连接 在不同点。
    • 3. 发明申请
    • ANGLE ADJUSTMENT OF A JIB SYSTEM
    • JIB系统角度调整
    • US20100294738A1
    • 2010-11-25
    • US12785967
    • 2010-05-24
    • Michael MARTIN
    • Michael MARTIN
    • B66C23/68B66C23/683
    • B66C23/68B66C23/344
    • Method for adjusting the angle of a jib system of a crane, comprising the steps of providing two jib units of the jib system, which can be variably arranged with respect to their longitudinal axes in an angle position in relation to one another, arranging connecting links attached to the jib units in such a way that the longitudinal axes of the jib units are parallel in a starting angle position, starting openings and target openings of the connecting links are aligned with one another pairwise to insert a connecting element connecting the jib units, the aligned starting openings being connected with the connecting element, relieving the connecting element connecting the aligned starting openings, removing the first connecting element, connecting a pair of the aligned target openings with the connecting element, and arranging the jib units in a target angle position which is different from the starting angle position.
    • 一种用于调节起重机的起重臂系统的角度的方法,包括以下步骤:提供起重臂系统的两个起重臂单元,所述起重臂系统可相对于彼此相对于其纵向轴线以角度位置可变地布置, 以使起重臂单元的纵向轴线在起始角度位置平行的方式附接到起重臂单元,连接连杆的起始开口和目标开口成对地彼此对准以插入连接起重臂单元的连接元件, 对齐的起始开口与连接元件连接,释放连接对齐的起始开口的连接元件,移除第一连接元件,将一对对准的目标开口与连接元件连接,并将起重臂单元布置在目标角度位置 这与起始角位置不同。
    • 5. 发明申请
    • Combination double bottom block
    • 组合双底块
    • US20090267039A1
    • 2009-10-29
    • US11991187
    • 2006-08-24
    • Hans-Peter FranzenAlfred Boes
    • Hans-Peter FranzenAlfred Boes
    • B66D3/06
    • B66D3/06B66C1/34
    • The invention relates to a combination double bottom hook block in which two pulley blocks (2, 3) each with a plurality of pulleys are connected to one another by means of a rocker (1), a load hook being mounted in a pivotable manner on the rocker. If use is made here of two lifting cables, each of these lifting cables is led over a pulley block (2, 3) and, in order to achieve the same loading capability if use is made of just one lifting cable, the latter is led, in addition, over a floating pulley (2) which is mounted between the two pulley blocks (2, 3), the two pulley blocks (2, 3) also being secured against tilting.
    • 本发明涉及一种组合双底钩块,其中两个具有多个滑轮的滑轮组件(2,3)通过摇臂(1)相互连接,一个负载钩以可枢转的方式安装在 摇杆。 如果在这里使用两根起重电缆,则每个起重电缆都被引导到滑轮组(2,3)上,为了实现相同的载重能力,如果仅使用一根起重电缆,则后者被引导 另外,在安装在两个滑轮组(2,3)之间的浮动滑轮(2)上,两个滑轮组(2,3)也被固定而不倾斜。
    • 6. 发明授权
    • Method for erecting an at least two-piece main boom for a lattice-boom crane and lattice-boom crane built accordingly
    • 用于架设用于格架式起重机和格架式起重机的至少两件式主起重机的方法
    • US07270243B2
    • 2007-09-18
    • US11233981
    • 2005-09-23
    • Stefan Diehl
    • Stefan Diehl
    • B66C23/42
    • B66C23/90B66C23/82
    • The present invention substantially relates to a method for erecting and disassembling an at least two-piece main boom for a lattice-boom crane. The erecting and disassembling procedure results in that the geometric kinematic properties of the main boom (1, 2) are used in such a manner that during the erecting and disassembling, the effective lever arm (1′) of the main boom (1, 2) is reduced. This results from the main boom (1, 2) being bent at the hinge point (A), at which at least two boom portions (1, 2) are connected to each other, and thus an angle position is produced between the two boom portions (1, 2). Further, the invention relates to a main boom (1, 2), which can be erected by the method as well as a lattice-boom crane having such an main boom (1, 2).
    • 本发明基本上涉及一种用于架设和拆卸格架式起重机的至少两件式主起重臂的方法。 竖立和拆卸过程导致主起重臂(1,2)的几何运动特性以这样的方式使用,即在竖立和拆卸期间,主起重臂(1,2)的有效杠杆臂(1') ) 降低了。 这是由于主起重臂(1,2)在铰链点(A)处弯曲,至少两个悬臂部分(1,2)彼此连接,因此在两个起重臂之间产生角度位置 部分(1,2)。 此外,本发明涉及一种主悬臂(1,2),其可通过该方法竖立,以及具有这种主吊杆(1,2)的格架式起重机。
    • 7. 发明授权
    • Mobile crane having a superlift device
    • 具有超级升降装置的移动式起重机
    • US07252203B2
    • 2007-08-07
    • US10494726
    • 2002-09-20
    • Ralf FrankenbergerJörg LattweinManfred Kretschmer
    • Ralf FrankenbergerJörg LattweinManfred Kretschmer
    • B66C13/18
    • B66C23/905B66C23/74
    • A mobile crane with a carrier and a superstructure which is slewably arranged thereon has a superlift device with an SL counterweight for increasing lifting capacity. The SL counterweight can be lifted from the ground in order to execute slewing movements of the superstructure and its slewing radius is changeable. The crane has an electronic control device with a computing device and with a display. In order to avoid costly conversion work on the SL counterweight and to increase operating safety, a program is stored in the electronic control device, which program determines a permissible operating field for crane parameters from the parameters comprising load size and load radius, size of SL counterweight and SL counterweight radius while taking into account the stability criteria and capacity criteria of the mobile crane and displays this operating field graphically on the display. Within this operating field, these parameters may be safely changed, the rest of the parameters remaining constant, and the lifting of the SL counterweight from the ground can be ensured.
    • 具有托架和上部结构的移动式起重机,其可旋转地布置在其上,具有带有SL配重的提升装置,用于增加提升能力。 SL配重可以从地面抬起,以执行上层建筑的回转运动,其回转半径是可变的。 起重机具有带有计算装置和显示器的电子控制装置。 为了避免在SL配重上进行昂贵的转换工作并提高操作安全性,程序存储在电子控制装置中,该程序根据包括负载大小和负载半径,SL尺寸的参数确定起重机参数的允许操作范围 配重和SL配重半径,同时考虑到移动式起重机的稳定性标准和容量标准,并在显示屏上以图形方式显示此操作区域。 在这个操作范围内,这些参数可以安全地改变,其余的参数保持不变,并且可以确保从地面提升SL配重。
    • 9. 发明授权
    • Crane with manual input devices
    • 起重机带手动输入装置
    • US07134563B2
    • 2006-11-14
    • US10502990
    • 2003-01-29
    • Klaus MeissnerMathias Meyer
    • Klaus MeissnerMathias Meyer
    • B66C13/06
    • B66C13/56
    • The invention relates to a crane that comprises an electronic control for actuating drives for at least one lifting gear and for crane movements, which can be operated by an operator via manual input devices. Said manual input devices can be adjusted as regards their sensitivity (definition). In order to adapt the system behavior of the crane to the needs of different operators and different lifting requirements in an optimum manner, the electronic control is provided with at least two adjustments, selectable by the operator, that set for the manual input devices respective different sensitivities defined for the crane operation.
    • 本发明涉及一种起重机,其包括用于致动用于至少一个起重装置的驱动器和用于起重机运动的电子控制器,其可由操作者通过手动输入装置操作。 所述手动输入装置可根据其灵敏度(定义)进行调整。 为了使起重机的系统行为适应不同操作者的需要和最佳方式的不同提升要求,电子控制提供至少两个可由操作人员选择的调节,其为手动输入装置设定各自不同的 对起重机操作定义的灵敏度。
    • 10. 发明申请
    • CRAWLER CRANE AND METHOD FOR FINE-TUNING A BASIC OPERATING POSITION OF SUCH A CRAWLER CRANE
    • CRAWLER CRANE和方法,用于微调这种CRAWLER CRANE的基本操作位置
    • US20110017694A1
    • 2011-01-27
    • US12922262
    • 2009-03-10
    • Ingo NöskeAlfons WeckbeckerWerner Rutz
    • Ingo NöskeAlfons WeckbeckerWerner Rutz
    • B66C23/62B66C23/36B66C13/18
    • B66C23/62B62D55/084B62D55/116B66C13/18B66C23/36
    • The invention relates to a crawler crane comprising two crawler supports (9) with rotating crawlers (8). Both crawler supports (9) are connected by a transversal bridge (10). A superstructure (3) of the crawler crane comprises at least one crane jib that can pivot about a vertical axis and is connected to the transversal bridge (10). A pivotable articulation connects the transversal bridge (19) in a pivotable manner to the crane superstructure (3). At least one of the crawler supports (9) is connected to the transversal bridge (10) by means of a double link (11). A lower link (12) of the double link (11) is articulated on the crawler support (9) by means of a crawler support lower pivotable axis (13) and on the transversal bridge (10) by means of a transversal bridge lower pivotable axis (14). An upper link (15) of the double link (11) is articulated on the crawler support (9) by means of a crawler support upper pivotable axis (16) and on the transversal bridge (10) by means of a transversal bridge upper pivotable axis (17). A drive (20), in particular motorised drive, is used to pivot at least one of the two links (12, 15) about the pivotable axis (13) associated therewith, the result being a level-controllable crawler crane, in which the expenditure for adjusting a base-work position is reduced.
    • 本发明涉及一种履带式起重机,其包括具有旋转履带(8)的两个履带支架(9)。 两个履带支架(9)均由横向桥(10)连接起来。 履带式起重机的上部结构(3)包括至少一个可绕垂直轴线枢转并连接到横向桥(10)的起重机吊臂。 可枢转的铰接将横向桥(19)以可枢转的方式连接到起重机上部结构(3)。 履带支撑件(9)中的至少一个通过双连杆(11)连接到横向桥(10)。 双连杆(11)的下连杆(12)通过履带支撑下枢转轴(13)和横向桥(10)上的履带支架(9)铰接在一起,横梁上可枢转 轴(14)。 双连杆(11)的上连杆(15)通过履带支撑上枢转轴(16)和横向桥(10)上的履带支架(9)铰接在一起,横向桥上部可枢转 轴(17)。 驱动器(20),特别是电动驱动器,用于使两个连杆(12,15)中的至少一个围绕与其相关联的可枢转轴线(13)枢转,其结果是水平可控的履带起重机,其中 用于调整基座位置的支出减少了。