Patent classifications
B66F17/00
Systems and methods for lanyard attachment detection on an aerial device
Systems and methods for detecting attachment of a lanyard at a utility platform of an aerial device are described. In some embodiments, a lanyard attachment device is disposed on a utility platform. The lanyard attachment device may comprise a sensor detecting when a lanyard is attached to the lanyard attachment device. In some embodiments, the utility platform is separated from a base of the aerial device by a dielectric gap, and a light signal is indicative of the state of the lanyard attachment device. Furthermore, anti-tie-down functionality may be used to detect error or tampering of the lanyard attachment device.
Tilting Bucket
A tilting support or work bucket, or apparatus for an aerial lift including a support frame for supporting an operator. The support frame can have a seat for supporting the operator when in an upright position and a chest support having a portion above and forward of the seat for supporting a chest of the operator when in a forwardly downward tilted position while allowing arms of the operator to extend forwardly out of the support frame. A support member can be pivotably mounted to the support frame at a pivot joint that is located at an upper portion of the support frame when the support frame is in the upright position, for pivotably supporting the support frame. An actuator can be included for positionably rotating the support frame relative to the support member about the pivot joint between the upright position and the forwardly downward tilted position. Since the pivot joint is located in the upper portion of the support frame, pivoting of the support frame from the upright position to the forwardly downward tilted position moves a center of gravity of the support frame rearwardly in the direction of the support member.
LIGHTING DEVICE FOR AN AERIAL WORK PLATFORM
A battery powered lighting device is configured to be attached to a lift bucket having sidewalls and an upper lip extending from uppermost portions of the sidewalls. The lighting device includes a main housing, a securing member, and a main light mounted to the main housing and located to illuminate areas outside of the lift bucket. The main housing includes a first securing surface includes a pair of planar portions spaced from each other by a concave portion. The planar portions are configured to engage a planar surface of a sidewall or the upper lip of the lift bucket. The concave portion is configured to engage a convex surface of a sidewall or the upper lip located at a corner of the lift bucket.
CONTROL SYSTEM AND CONTROL METHOD FOR FORKLIFT
A control system and a control method for a forklift are provided. The control system includes a lifting mechanism, a driving device, a sensing device and a control device. The driving device drives the lifting mechanism. The sensing device senses a displacement amount of the lifting mechanism. The control device obtains a displacement speed of the lifting mechanism according to the displacement amount, and judges whether the lifting mechanism is overloaded or not according to the displacement speed. When the control device judges that overloading occurs, the control device controls the driving device to stop driving the lifting mechanism so as to improve the use safety of the forklift.
CONTROL OF A HANDLING MACHINE
The invention relates to a handling machine (1) comprising: a tilt sensor (11) configured to produce a signal relating to a tilting moment applied to the main body about a tilting axis; displacement sensors (18) configured to produce a signal relating to movements of the handling arm relative to the main body; and a control unit (10) configured to: prevent or stop the movement of the handling arm if the signal representative of the tilting moment is greater than an effective threshold; assign a lowering threshold value to the effective threshold in response to a handling arm lowering movement being determined; and assign an extension threshold value to the effective threshold in response to a handling arm extension movement being determined.
Motion activated warehouse safety light
Provided herein are LED warning lights and related methods for detecting oncoming traffic around corners, including in a warehouse. The warning lights have: a LED light module and an external motion sensor operably connected to the LED light module. The device is self-contained with respect to power, communication and alerts in that no other components are required, so that the warning lights are portable and readily positioned as desired and are immediately operable.
LOAD MAP INTERFACE SYSTEM AND METHODS
Systems and apparatuses include a load map interface system including one or more processing circuits comprising one or more memory devices coupled to one or more processors, the one or more memory devices configured to store instructions thereon that, when executed by the one or more processors, cause the one or more processors to: receive a load map from an external input; determine a work machine load based at least in part on a sensor array of a work machine; generate a modified load map based on the received load map and the work machine load, the modified load map including an acceptable zone defining an acceptable load threshold and a warning zone defining a warning zone threshold; determine a location of the work machine on the modified load map; and send a notification to a display indicating that the work machine is within the acceptable zone or the warning zone.
Retracting carriage attachment
A retractable pallet fork carriage assembly is provided that enhances the safe operation of a lift vehicle, such as a loader or telehandler. A carriage assembly is coupled to a fork tyne assembly through scissor links that expand and retract the tynes relative to the carriage assembly. When the scissor links are closed, the fork tynes extend through the carriage assembly to receive a payload (e.g., a pallet). When an operator wants to remove the payload, the fork tynes retract while the payload is supported against the carriage assembly. In this way, the load remains in one stationary position while pallet fork tynes are retracted under the payload to release the payload. Various sensors generate and/or send signals to limit the operation of the boom lift, boom, and/or retractable attachment when a distance or load is out of a threshold range.
Carrier for a Lifting Device, Lifting Device Provided Therewith and Method Therefor
The invention relates to a carrier for a load, such as a fork, a fork board and/or lifting device provided therewith and method for displacing goods. The carrier according to the invention comprises: coupling means configured to couple the carrier to the lifting device; a carrier part for carrying loads, wherein the carrier part is provided with a bend sensor extending over a measurement distance and configured to measure a continuous progression of the bending and/or bending angle occurring substantially over the measurement distance.
HANDLING MACHINE HAVING AN ARM AND CORRESPONDING ALERT METHOD
The invention relates to a rolling handling machine (1) having an arm. The machine comprises an alert system comprising a memory in which are stored a plurality of alert rules for triggering at least one action from among transmitting data relating to the determined values of said parameters to a remote server (31); and emitting a visual, and/or sound, and/or vibration signal to alert the machine's driver. The triggering of an action occurs according to the speed of movement of the machine and the angular position of the arm. The invention also relates to an alert method and to a corresponding program product.