Patent classifications
B66C1/40
SAFETY SYSTEM FOR SELF-PROPELLED OPERATING MACHINES
Described is a safety system for a self-propelled operating machine (1) comprises a processing unit (3) which includes: a memory module (31) in which a plurality of load diagrams is stored; a limiting module (32) configured for limiting the operational possibilities of actuators of the machine (1), on the basis of a load diagram; a measuring device (41, 42) for acquiring operating parameters relative to various operating conditions of the operating machine (1); and a selection module (33) configured for selecting from the memory module (31) a load diagram on the basis of an operating parameter acquired by the measuring device (41, 42).
SAFETY SYSTEM FOR SELF-PROPELLED OPERATING MACHINES
Described is a safety system for a self-propelled operating machine (1) comprises a processing unit (3) which includes: a memory module (31) in which a plurality of load diagrams is stored; a limiting module (32) configured for limiting the operational possibilities of actuators of the machine (1), on the basis of a load diagram; a measuring device (41, 42) for acquiring operating parameters relative to various operating conditions of the operating machine (1); and a selection module (33) configured for selecting from the memory module (31) a load diagram on the basis of an operating parameter acquired by the measuring device (41, 42).
Replacement indicator for a shock absorber
A replacement indicator for a shock absorber includes a pressure sensor which monitors pressure of operating fluid inside the shock absorber. The replacement indicator includes an indicative mechanism operatively coupled with the pressure sensor. The indicative mechanism includes an indicator component coupled to the shock absorber. The indicator component gets displaced relative to an outer surface of the shock absorber when the pressure of the operating fluid drops below a threshold pressure.
Spring lifting device for a crane
The present invention relates to a lifting device for a crane which comprises a lifting cable winch, a lifting cable and a load-receiving means (10), the load-receiving means (10) being connected to the lifting cable and being movable by means of the lifting cable winch, in particular vertically movable. According to the invention the lifting device has at least one spring mounting (12) so that on the whole the load to be lifted and received by the load-receiving means (10) is mounted in a sprung manner.
Spring lifting device for a crane
The present invention relates to a lifting device for a crane which comprises a lifting cable winch, a lifting cable and a load-receiving means (10), the load-receiving means (10) being connected to the lifting cable and being movable by means of the lifting cable winch, in particular vertically movable. According to the invention the lifting device has at least one spring mounting (12) so that on the whole the load to be lifted and received by the load-receiving means (10) is mounted in a sprung manner.
Implement and a method for obtaining information related to said implement
An implement connectable to a work vehicle includes an arm, a fastening arrangement arranged at a first part of the arm, and an attaching arrangement. The fastening arrangement is connectable to the work vehicle an attaching arrangement is arranged at second part of the arm. The attaching arrangement is attachable to a tool. The implement further includes a second hydraulic circuit configured to carry hydraulic fluid to at least one second hydraulic function. The first hydraulic function comprises a lifting function and a local control element. The implement further includes at least one second sensor arranged to obtain sensor signals at least related to the lifting function, a local control element and a digital interface to the work vehicle. The control element is arranged to receive and process the received sensor signals so as to determine a load weight and to feed the determined load weight to the digital interface.
CRANE CONSTRUCTION GRIPPING DEVICE AND COMMUNICATION METHOD THEREOF
For procedural safety, a gripping device for a crane hook for safely removing a hook from a forklift may include a sensor and a method of communicating the open and closed status of the hook to a crane cab for the driver to be notified. The gripping device can include a handle, having a trigger coupled to a cable seated within a central rod. A pair of jaws may couple to the central rod and a finger may couple to one jaw, wherein the cable is seated within the one jaw and the finger, which can swing about a hinge. As such, when the trigger is actuated while the hook is positioned between the pair of jaws, the cable is pulled, which pulls the finger down to open a latch of the crane hook. When the trigger is released, the cable is released and the finger retracts up.
CRANE CONSTRUCTION GRIPPING DEVICE AND COMMUNICATION METHOD THEREOF
For procedural safety, a gripping device for a crane hook for safely removing a hook from a forklift may include a sensor and a method of communicating the open and closed status of the hook to a crane cab for the driver to be notified. The gripping device can include a handle, having a trigger coupled to a cable seated within a central rod. A pair of jaws may couple to the central rod and a finger may couple to one jaw, wherein the cable is seated within the one jaw and the finger, which can swing about a hinge. As such, when the trigger is actuated while the hook is positioned between the pair of jaws, the cable is pulled, which pulls the finger down to open a latch of the crane hook. When the trigger is released, the cable is released and the finger retracts up.
HOIST ROTARY ASSEMBLY
A rotary assembly for a hoist includes at least one of a rotary union and a slip ring. A bearing is positioned radially outward of the rotary union and/or slip ring with respect to a central axis. A first plurality of axially extending support columns are radially outward of the rotary union and/or slip ring and fixed to the bearing. A second plurality of axially extending support columns are radially outward of the rotary union and/or slip ring and fixed to the bearing. The second plurality of axially extending support columns is axially opposite the bearing from the first plurality of axially extending support columns.
Sensing device for a crane
A sensing device for a crane detecting unsafe operating conditions includes an inertial measurement unit for measuring pitch and yaw of a hook of the crane attached to a load. The inertial measurement unit is adapted to measure deviation of the hook of the crane from a plumb position and activate an alert element if the deviation of the hook exceeds a predetermined limit.