Patent classifications
B66B9/06
Self-propelled elevators and elevator brake systems
This invention is directed to a self-propelled elevator system having multiple motors or one motor, and methods for synchronizing said multiple motors. This invention is also directed to an elevator brake system to be used in said self-propelled elevator system or other types of elevators to increase their level of safety.
SUSPENSION MOTION-RESISTING DYNAMIC SYSTEM AND SUSPENSION ACTIVE DYNAMIC CARRIER MODULE
A suspension motion-resisting dynamic system includes two support devices and a hoisting drive module that includes a suspension device, a motion-resisting device, and a drive device. The suspension device has two terminal ends and is fixed and stretched by the support devices. The motion-resisting device is set in contact with the suspension device. The drive device is coupled to the motion-resisting device for driving the motion-resisting device to cause the motion-resisting device to move along the suspension device. A suspension active dynamic carrier module includes a suspension carrier drive module, which includes a suspension device, a carrier device, and a drive device. The suspension device is connected to the support device. The drive device is arranged on the carrier device and is connected to the suspension device to generate power that causes the carrier device to move along the suspension device.
Steep-angle conveying installation for open-cast mining
Steep-angle conveying installations may be used to transport raw materials along a slope of an open-cast mining pit, typically from a low-level loading station at a working level of the open-cast mining pit to a high-level unloading station at a ground level. The steep-angle conveying installation may comprise a track arranged on the slope of the open-cast mining pit, as well as one or more conveying cages for moving raw materials along the track between the various levels. Each conveying cage may include an emptying flap that is movable between an open position and a closed position. A thrust carriage may be employed outside the conveying cages to move the emptying flap of the conveying cages between the open and closed positions.
Steep-angle conveying installation for open-cast mining
Steep-angle conveying installations may be used to transport raw materials along a slope of an open-cast mining pit, typically from a low-level loading station at a working level of the open-cast mining pit to a high-level unloading station at a ground level. The steep-angle conveying installation may comprise a track arranged on the slope of the open-cast mining pit, as well as one or more conveying cages for moving raw materials along the track between the various levels. Each conveying cage may include an emptying flap that is movable between an open position and a closed position. A thrust carriage may be employed outside the conveying cages to move the emptying flap of the conveying cages between the open and closed positions.
VARIABLE GRADIENT INCLINED RUNNING CONTAINER TRACTION ROPE ADJUSTMENT APPARATUS AND METHOD
A traction rope adjustment apparatus includes a traction rope pressing device, and a traction rope pulley apparatus. The traction rope lifting apparatus prevents the traction rope sagging, the traction rope pressing apparatus prevents the traction rope drifting, and the traction rope pulley apparatus enables a car and the counterweight to smoothly pass through the traction rope pressing apparatus, thereby implementing forced guidance of the traction rope and the reliable and smooth running of the car and counterweight. The apparatus can meet the demands of variable gradients and can implement reliable running of an inclined running container in variable gradients, such that the traction rope adapts to the different gradients, solving the challenge of the development of an inclined running container that self-adapts to gradients.
VARIABLE GRADIENT INCLINED RUNNING CONTAINER TRACTION ROPE ADJUSTMENT APPARATUS AND METHOD
A traction rope adjustment apparatus includes a traction rope pressing device, and a traction rope pulley apparatus. The traction rope lifting apparatus prevents the traction rope sagging, the traction rope pressing apparatus prevents the traction rope drifting, and the traction rope pulley apparatus enables a car and the counterweight to smoothly pass through the traction rope pressing apparatus, thereby implementing forced guidance of the traction rope and the reliable and smooth running of the car and counterweight. The apparatus can meet the demands of variable gradients and can implement reliable running of an inclined running container in variable gradients, such that the traction rope adapts to the different gradients, solving the challenge of the development of an inclined running container that self-adapts to gradients.
Restaurant system and method for operating a restaurant system
The invention relates to a restaurant system, and a method relating thereto, including a first transport section, and a second transport section. The second transport section is located upstream of the first transport section in a provided transport direction of the food and/or drinks. The second transport section has an elevator, which is designed to transport the food and/or drinks into a position, which is located at a higher point as compared to the guest area.
Restaurant system and method for operating a restaurant system
The invention relates to a restaurant system, and a method relating thereto, including a first transport section, and a second transport section. The second transport section is located upstream of the first transport section in a provided transport direction of the food and/or drinks. The second transport section has an elevator, which is designed to transport the food and/or drinks into a position, which is located at a higher point as compared to the guest area.
Incline elevator and modular deck system and methods for the assembly, use and shipping thereof
An incline elevator system includes a pair of laterally spaced rails and a carriage configured with restraining members extending laterally beneath a bottom surface of the rail in a vertically spaced relationship therewith. A rail kit, together with methods of assembling the elevator system, is also provided. A modular deck system includes a plurality of box treads arranged in an array and a plurality of stanchions supporting the array. Methods of assembling the array of box treads are also provided.
Incline elevator and modular deck system and methods for the assembly, use and shipping thereof
An incline elevator system includes a pair of laterally spaced rails and a carriage configured with restraining members extending laterally beneath a bottom surface of the rail in a vertically spaced relationship therewith. A rail kit, together with methods of assembling the elevator system, is also provided. A modular deck system includes a plurality of box treads arranged in an array and a plurality of stanchions supporting the array. Methods of assembling the array of box treads are also provided.