Solenoid actuated semi-automatic auxiliary guide assembly
An auxiliary guide assembly may include a hub, a head including a first guiding surface and a first overriding surface, the head rotatably coupled to the hub, a solenoid coupled to the hub and configured to receive an electric current, and an armature magnetically coupled to the solenoid, the armature being configured to engage the head when in the armature is an extended position.
1 . A cargo handling system, comprising:
a ball panel for moving and storing cargo; and
an auxiliary guide assembly disposed within the ball panel, the auxiliary guide assembly including:
a hub;
a head including a first guiding surface and a first overriding surface, the head rotatably coupled to the hub;
a solenoid coupled to the hub and configured to receive an electric current; and
an armature magnetically coupled to the solenoid, the armature being configured to engage the head when the armature is in an extended position.
2 . The cargo handling system of claim 1 , wherein the solenoid generates a magnetic field in response to receiving the electric current, the magnetic field attracting the armature, causing the armature to disengage with the head.
3 . The cargo handling system of claim 2 , the auxiliary guide assembly further comprising:
a torsion spring coupled to the hub and configured to raise the head when the armature is disengaged from the head.
4 . The cargo handling system of claim 2 , the auxiliary guide assembly further comprising:
an inner spring disposed between the solenoid and the armature, the inner spring configured to apply a force to maintain the armature in the extended position.
5 . The cargo handling system of claim 1 , further comprising:
a battery coupled to the solenoid, the battery providing the electric current.
6 . The cargo handling system of claim 1 , further comprising:
a controller connected to the auxiliary guide assembly, the controller configured to apply the electric current.
7 . The cargo handling system of claim 6 , wherein the controller is further configured to apply the electric current in response to an instruction received from a user interface.