The invention relates to a safety and rescue device for a mountain conveyor belt.
The mountain conveyor belts are designed for the transfer of personnel or skiers between a departure or boarding station and an arrival or disembarkation station. These conveyor belts are useful in particular in ski or mountain stations for the transfer of skiers or pedestrians equipped with ski shoes or snow boots.
Because this equipment is subjected to inclement weather, to snowfall, and to freezing cold, its operation should satisfy restrictive safety standards so that any risk of an individual having an accident is prevented.
The document WO 2007/066 015 describes a safety device for a conveyor belt that is designed for the transfer of personnel or skiers, comprising a frontal blade in the vicinity of and/or in contact with the transporting band of the conveyor belt, in which means of pivoting downward and toward the inside cause the retraction of a removable hatch of the arrival station.
The device of the document WO 2007/066 015 provides complete satisfaction for conveyor belt speeds of close to 0.7 m/s.
For speeds that are significantly higher than 0.7 m/s, the device of the document WO 2007/066 015 would make it necessary to subject the conveyor belt to a significant deceleration that creates the risk of passengers falling off the conveyor belt.
A first object of the invention is to provide a new safety and rescue device that allows a slowing of the conveyor belt with a deceleration that is compatible with the balance of the passengers of the conveyor belt.
A second object of the invention is to provide a new safety and rescue device that makes possible remote snow removal before the activation of the conveyor belt.
The invention has as its object a safety and rescue device for a mountain conveyor belt, comprising a frontal blade in the vicinity of and/or in contact with the transporting band of the conveyor belt, in which the frontal blade is a pressure sensor or a pressure-sensitive blade, and by the fact that the frontal blade is integral with a flap that slides between a closed position and an open position, characterized by the fact that the sliding flap is moved by winding or unwinding on a motorized winding tube.
According to other alternative characteristics of the invention:
The invention will be better understood using the following description that is provided by way of nonlimiting example with reference to the accompanying drawings in which:
With reference to
In
In a known manner, the conveyor belt unit (2) comprises a box (2a) that has two curbs (2b, 2c) and a transporting band (2d).
The device (1) according to the invention comes in the form of a chest (3) that forms a safety well, with a sliding flap (4) in two lateral guides (5a, 5b) and an opening panel (6).
The device is equipped with a frontal blade (7) that is integral with the sliding flap (4).
When a user of the conveyor belt circulates in the direction of the arrow A, his passage is detected by a first pair of photoelectric cells (8) that forms a photoelectric barrier and optionally by a second pair of photoelectric cells (9) that forms a photoelectric barrier.
If an obstacle or a user of the conveyor belt exerts a force, in his movement, on the frontal blade (7) that is sensitive to pressure or is detected simultaneously by the photoelectric barriers (8 and 9) for a predetermined time interval, a motorized control opens the sliding flap (4) to keep from catching an arm or a limb or a piece of the user's clothing.
The sliding flap (4) is then driven in the direction of the arrow by a motorized control that is not shown in detail, such that the space between the transporting band (2d) of the frontal blade (7) opens out at a speed that is compatible with that of the transporting band (2d).
The sliding flap (4) is retracted up to the position that corresponds to
In
The transporting band (2d) is immobilized upon shutdown, even though the sliding flap (4) has not reached its closing position.
Access to the inside well of the chest (3) makes it possible to release any object or any individual that has been grabbed by the returning angle of the transporting band (2d).
The width of the opening is greater than that of the transporting band (2d) while the length of the opening is based on the stopping distance of the conveyor belt, whereby this length is determined to prevent too strong a deceleration that could make a passenger or a user of the conveyor belt fall.
According to the invention, the sliding flap (4) is a motorized sliding flap whose translational movement is controlled by the photoelectric barriers (8 and 9) or by a pressure or a force that is exerted on the contact blade (7) or else by a voluntary action of an operator.
Actually, the advantage of a motorized sliding flap is to be able to remotely open and close this motorized rolling flap when the transporting band (2d) is not transporting a user or passenger. In particular, in the case of starting or in the case of stopping, good operation of the sliding flap can be tested by an operator.
Also, in the case of a significant snowfall, the opening and the closing of the sliding flap makes it possible to implement an automatic snow removal from the end of the transporting band (2d).
The control by action of an operator can also be replaced by an automatic control coupled with the operational cycles of the conveyor belt (2).
Finally, the translational sliding of the rolling flap makes it possible to reduce to a minimum the space that is between the contact blade (7) and the returning angle of the transporting band (2d).
In
The tubular actuator generally comprises a geared motor, not shown, that is inserted inside the winding tube (10).
The sliding flap (4) can be in the form of a sectional flap or a continuous flap.
The frontal blade of contact (7) defines the winding end of the flap (4).
The configuration of
After snow removal, the transporting band (2d) that is guided by the roller or the drive drum (11) is started in the direction of the arrow A.
After having carried out the snow removal or the rescue intervention, the engine or tubular actuator can be controlled in reverse direction so as to unwind the sliding flap (4) in the guides (5a, 5b) up to the closing position that is shown in
In
The space that is inside the device is thus totally closed and the transporting band (2d) can be controlled in the direction of travel that corresponds to the arrow A.
If the photoelectric barriers (8 and 9) are simultaneously blocked beyond a predetermined time interval, the stop command is transmitted to the transporting band (2d) and the opening command is transmitted to the tubular actuator of the winding tube (10) so as to bring about the opening of the device and the winding of the sliding flap (4).
The same operation is carried out if a pressure contact that is greater than a predetermined threshold is felt by the contact blade (7) that is integral with the end of the sliding flap (4).
Finally, a start-up cycle can be provided that corresponds to a slight opening of the sliding flap (4) to facilitate the evacuation of snow, then a start-up of the transporting band (2d), and then a closing of the sliding flap (4) so as to bring the contact blade (7) closer to the transporting band (2d) in movement in the direction of the arrow A.
A means of emergency stopping, not shown, can also be provided on or in the vicinity of the device according to the invention.
Finally, the device according to the invention can also be combined with remote display means, compatible with a remote control that allows a reactivation time of the transporting band (2d) upon the closing of the sliding flap (4) after resolving a minor incident that does not require human intervention or on-site movement.
The invention that is described with reference to particular embodiments is in no way limited thereto and indeed covers any modifications of shape and any variant embodiments within the scope and the spirit of the invention.
Thus, the winding tube (10) can be replaced by any other means that can move the sliding flap (4), for example a linear actuator, a linear engine, or any other engine or drive means that can generate a movement of the sliding flap (4) in its guides (5a, 5b).
Number | Date | Country | Kind |
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09 01519 | Mar 2009 | FR | national |