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    • 1. 发明申请
    • MATERIAL HANDLING DEVICE AND WEIGHING APPARATUS USABLE THEREWITH
    • 材料处理装置和称重装置可用
    • WO2015050962A1
    • 2015-04-09
    • PCT/US2014/058581
    • 2014-10-01
    • LTS SCALE COMPANY, LLC
    • PANGRAZIO, John A.PANGRAZIO, Robert T.MARIEA, Steve
    • G01G19/08
    • B66F17/003B66F9/07504G01G19/083
    • A weighing apparatus is usable in conjunction with a device such as a forklift and includes a front plate upon which a set of forks are placed, a rear plate that is mounted to a lift mechanism of the forklift, a pair of connection apparatuses that are situated between the front and rear plates, and a load cell apparatus that extends between the front and rear plates. Each connection apparatus includes an inboard rail and an outboard rail between which a number of rollable engagement structures are generally situated. The front plate is movable along a movement direction while being resisted from moving in any direction other than the movement direction. The connection apparatuses are configured to avoid binding between the inboard and outboard rails and enable the load cell apparatus to accurately provide an output that is representative of the weight of a load situated on the forks.
    • 一种称重装置可与诸如叉车的装置结合使用,并且包括前板,一组叉子放置在该前板上,后板安装在叉车的提升机构上,一对连接装置位于 在前板和后板之间以及在前板和后板之间延伸的称重传感器装置。 每个连接装置包括内侧导轨和外侧导轨,多个可滚动的接合结构通常位于该外侧导轨之间。 前板可沿运动方向移动,同时抵抗除运动方向以外的任何方向运动。 连接装置被配置为避免在内侧和外侧轨道之间的绑定,并且使得称重传感器装置能够精确地提供代表位于叉上的载荷的重量的输出。
    • 2. 发明申请
    • A METHOD AND A DEVICE FOR DETERMINING THE WEIGHT OF A LOAD
    • 一种用于确定负载重量的方法和装置
    • WO2014202086A1
    • 2014-12-24
    • PCT/DK2014/050169
    • 2014-06-17
    • INTERSOFT NEXØ A/S
    • LARSEN, Knud-Erik
    • G01G19/10
    • G01G19/10G01G19/083
    • The invention relates to a method for determining the weight of a load using a hydraulic or pneumatic actuator (2) of a lifting mechanism, com- prising the steps of increasing the actuator pressure to an initial value, in which static friction of the lifting mechanism is no longer able to maintain the position of the load, maintaining an actuator motion pressure until the load is lifted to a desired suspended position, adjusting the actuator pressure to a first threshold pressure, in which static friction of the lifting mechanism is no longer able to maintain the position of the load, determining a first threshold pressure value for the first threshold pressure, adjusting the actuator pressure to a second threshold pressure, in which static friction of the lifting mecha- nism is no longer able to maintain the position of the load, determining a sec- ond threshold pressure value for the second threshold pressure, calculating based on the first and second threshold pressure values the weight of the load.
    • 本发明涉及一种使用提升机构的液压或气动致动器(2)确定负载的重量的方法,包括将致动器压力增加到初始值的步骤,其中提升机构 不再能够保持负载的位置,保持致动器运动压力,直到负载提升到期望的悬挂位置,将致动器压力调节到第一阈值压力,其中提升机构的静摩擦力不再能够 为了保持负载的位置,确定用于第一阈值压力的第一阈值压力值,将致动器压力调节到第二阈值压力,其中提升机构的静摩擦不再能够保持位置 确定第二阈值压力的第二阈值压力值,基于第一和第二阈值压力值计算我们 负载的负载。
    • 3. 发明申请
    • PAYLOAD DETERMINATION SYSTEM AND METHOD
    • 付费决定系统和方法
    • WO2014160566A1
    • 2014-10-02
    • PCT/US2014/031169
    • 2014-03-19
    • CATERPILLAR INC.
    • HAGUE, Michael EvanMARATHE, Sameer
    • E02F9/20
    • G01G19/10E02F3/431E02F9/264G01G5/04G01G19/083
    • A payload determination method for a machine (10) includes determining first head-end and first rod-end pressures of a first actuator (36a) and a second actuator (36b) operably connected to a boom (34) of the machine (10) as the boom (34) is raised across a position at a reference lift angle. The method further includes determining a weight of a payload carried by the work tool (22) based on the first head-end pressure of the first actuator (36a), the first rod-end pressure of the first actuator (36a), the first head-end pressure of the second actuator (36b), the first rod-end pressure of the second actuator (36b), and a determined pitch angle of the machine (10). The payload is carried by the work tool (22) during at least one of the steps described above.
    • 用于机器(10)的净荷确定方法包括确定可操作地连接到机器(10)的悬臂(34)的第一致动器(36a)和第二致动器(36b)的第一前端和第一杆端压力, 当吊臂(34)在参考提升角度的一个位置上升高时。 该方法还包括基于第一致动器(36a)的第一前端压力,第一致动器(36a)的第一杆端压力,第一致动器(36a)的第一杆端压力,确定由工作工具(22)承载的有效载荷的重量 第二致动器(36b)的前端压力,第二致动器(36b)的第一杆端压力和机器(10)的确定的俯仰角。 在上述至少一个步骤期间,有效载荷由工作工具(22)承载。
    • 7. 发明申请
    • FORKLIFT SCALE
    • WO2009129440A3
    • 2009-12-17
    • PCT/US2009040917
    • 2009-04-17
    • METTLER TOLEDO INC
    • RICE THOMAS SSIEFKER BENT TTOBIAS MITCHELL AFOLEY DARIN E
    • G01G19/12B66F9/075B66F9/20B66F9/24G01G19/08
    • B66F9/07559B66F9/20B66F17/003G01G19/083G01G23/3728
    • A 3-point suspension forklift scale adapted for quick and easy attachment/detachment to/from a forklift - without the need for leveling or other pre- operation setup procedures. Further, due to the single lower reaction point of the forklift scale, there is no concern that the initially installed position of the forklift scale will change during use as a result of a loose adjuster, repositioning due to impact, etc. The forklift scale is designed to accurately determine the weight of a load placed on the forks or other lifting elements of the forklift, regardless of the position of the load thereon. Preferably, a forklift scale of the present invention includes a central viewing window that allows an operator see through the forklift scale when operating an associated forklift.
    • 一种三点式悬挂式叉车秤,适用于快速方便地连接/拆卸叉车,无需调平或其他预设操作设置程序。 此外,由于叉车秤的单个较低的反应点,不用担心在使用期间叉车秤的初始安装位置将由于调节器松动,由于冲击而重新定位等而改变。叉车秤是 设计用于准确地确定放置在叉车上的叉子或其他提升元件上的载荷的重量,而不管其上的载荷位置如何。 优选地,本发明的叉车秤包括中央观察窗,当操作相关的叉车时允许操作者通过叉车秤查看。
    • 8. 发明申请
    • DYNAMISCHE SCHÜTTUNGSWAAGE
    • 动态秤灌装
    • WO2007134470A1
    • 2007-11-29
    • PCT/CH2007/000199
    • 2007-04-26
    • DIGI SENS AGLUSTENBERGER, Martin
    • LUSTENBERGER, Martin
    • G01G19/08B65F3/04
    • G01G19/12B65F3/041B65F2003/022B65F2003/0279G01G19/083
    • Die erfindungsgemässe Schüttungswaage weist an einem Kehrichtsammelfahrzeug (1) zwei Schwenkarme (2) auf, welche in Schwenkgelenken (4) gelagert und mittels je einer Hydraulikzylinders (3) bewegt werden können. Am vorderen freien Ende der Schwenkarme (2) sind Lastaufnahmearme (8) angebracht für die Aufnahme von Kehrichtbehältern (5). Ferner tragen die Schwenkarme (2) je zwei Spannungssensoren (7a,b) im gegenseitigen Abstande d . Die Differenz der von den Spannungssensoren (7a,b) gemessenen Biegespannungen, geteilt durch den Abstand x des Spannungssensors (7a) von der Last des Kehrichtbehälters ergibt im Wesentlichen das Gewicht der gehobenen Last. Am genannten vorderen freien Ende der Schwenkarme (2) ist mindestens ein Beschleunigungssensor (6) angebracht sowohl zur Messung der dynamischen Beschleunigung, als auch der Schiefstellung des Kehrichtbehälters (5) und des Kehrichtsammelfahrzeuges (1). Ein Auswertegerät (10), vorzugsweise in der Führerkabine des Kehrichtsammelfahrzeuges (1) angeordnet, nimmt sämtliche arithmetischen Operationen vor.
    • 根据本发明的床秤具有一个垃圾收集车(1)上的两个旋转臂(2),它可以安装在旋转接头(4)和通过相应的液压缸(3)的装置移动。 在枢轴的前自由端臂(2)的承载臂(8)被安装用于垃圾容器的接收(5)。 此外,枢转臂(2),每个承载两个电压传感器(图7a,b)在相互距离天。 传感器的电压之间的差(图7a,b)中测得的弯曲应力,由废物容器结果的负载的电压传感器(7a)的距离x基本上被提升的载荷的重量除以。 枢转臂(2)在所述前自由端,至少一个加速度传感器(6)被附连到动态加速度两者的测量,以及垃圾容器(5)的倾斜和垃圾收集车(1)。 布置的评估装置(10),优选地在垃圾收集车(1)的操作者的驾驶室,执行所有算术运算。
    • 10. 发明申请
    • DYNAMIC WEIGHING SYSTEM
    • 动态称重系统
    • WO02097381A8
    • 2003-05-08
    • PCT/AU0200665
    • 2002-05-24
    • TRANS LOCK IND AUSTRALASIA PTYMARIANI MARIO
    • MARIANI MARIO
    • B60P1/50B60P5/00G01G19/08G01G19/00B60P1/34G01G19/12G01G19/14G01G19/18
    • G01G23/3728B60P1/50G01G19/083
    • A dynamic weighing system for weighing an article which is lifted, the weighing system including a support device (24) on which a load to be weighed is adapted to be supported and lifted. A first transducer (42) is adapted to measure apparent weight of the load and adapted to provide a first output data stream embodying information relating to that apparent weight. A second transducer means (42) is adapted to measure gravitational and motion forces on the support device relative to a datum and provide a second output data stream embodying information relating to those forces. A central processor (76) receives the first and second output data streams and processes those output data streams as the load is being lifted to determine a series of estimated true weights of the load. The processor is then able to determine a final true weight of the load by averaging at least some of the estimated true weights in the series.
    • 一种用于对被提起的物品进行称重的动态称重系统,所述称重系统包括支撑装置(24),待测量的负载适于被支撑和提升。 第一换能器(42)适于测量负载的表观重量并适于提供体现与该明显重量有关的信息的第一输出数据流。 第二换能器装置(42)适于测量相对于基准的支撑装置上的重力和运动力,并提供体现与这些力有关的信息的第二输出数据流。 中央处理器(76)接收第一和第二输出数据流并在负载被提升时处理这些输出数据流,以确定负载的一系列估计的真实权重。 然后,处理器能够通过对系列中估计的真实权重中的至少一些进行平均来确定负载的最终真实权重。