摘要:
A sorter drive for propelling travelling members of a sorter along a path, in which the sorter has a plurality of interconnected travelling members that travel along a path and sortation members carried by the travelling members, with the sortation members adapted to discharge articles to particular destinations, according to an aspect of the invention, includes an endless drive member and an electro-adhesion system. The endless drive member engages the travelling members. The electro-adhesion system increases attraction of the endless drive member and the travelling members.
摘要:
The invention relates to a drive unit for driving at least two conveyor transport elements (3), which form a closed loop, can be driven in an endlessly circulating manner, and an upper loop length of which forms a common transport surface for goods to be transported, in order to transport goods to be transported. The drive unit has a dedicated electric drive motor (6) for each transport element (3). The drive or motor axles (MA) of the drive motors (6) of at least two transport elements (3), said axles being oriented perpendicularly to the transport direction, are arranged on the same axis, and the stators (8) of the drive motors are rotationally fixed to the machine frame (7) via a common support (11).
摘要:
A method inspects a conveyor (10) having opposing sides (34, 35) and a length. The conveyor includes an endless belt (16) and a plurality of roller structures (24) disposed in spaced relation along at least a portion of the length of the conveyor and under a top flight (17) of the belt for supporting the belt while material is being conveyed on the belt. Each roller structure includes at least one roller (12, 12′) constructed and arranged to rotate about an axis as the belt is conveyed with the material. The method orients an unmanned vehicle (22), having sensor structure (28) thereon, at one side of the conveyor, and causes the vehicle to travel along the portion of the length of the conveyor while the sensor structure obtains data regarding a state of at least a portion of the belt and of rollers of the plurality of roller structures while the conveyor is operating.
摘要:
The present invention provides a power generation method capable of storing natural energy without specific limitations and capable of taking out the natural energy as needed to generate power. The power generation method of the present invention includes a potential energy storage step and a power generation step. In the potential energy storage step, second objects are transferred from a low place to a high place by using a rotational force of a rotating body that is rotationally driven by a kinetic energy produced when a first object, which is present at a high place in nature, falls. In the power generation step, the power generator is operated by using the kinetic energy produced when the second objects fall.
摘要:
A winch drum tension isolation system includes a winch drum including an outwardly extending flange, the flange including a plurality of holes spaced along the flange. The winch drum tension isolation system also includes a locking mechanism positioned proximate the winch drum and including a locking member engageable with the flange. The locking member is movable between a first position, in which the locking member is received in one of the plurality of holes to prevent rotation of the winch drum, and a second position, in which the locking member is spaced apart from the flange to permit rotation of the winch drum.
摘要:
A belt conveyor having an electromagnetic drive comprising a rotor and a stator sealed in separate nonmagnetic and nonconductive housings. The rotor is mounted to a drive shaft. A drive drum or drive sprockets supported on the shaft have peripheral drive surfaces that engage a conveyor belt. The rotor is coaxial with the peripheral drive surface either sealed within the drum or sprockets or housed on the shaft axially spaced from the drive surface. The rotor may include conductive rotor bars or permanent magnets. The stator is spaced apart from the rotor across a narrow gap and produces a traveling magnetic flux wave across the gap that causes the rotor and the peripheral drive surface to rotate and drive the conveyor belt.
摘要:
Rundläufermaschine, insbesondere Behälterbehandlungsmaschine, umfassend einen rotierenden Teil, der mehrere Behandlungsstationen umfasst, und einen feststehenden Teil, dadurch gekennzeichnet, dass der rotierende Teil und der feststehende Teil so ausgebildet sind, dass sie gemeinsam den Antrieb der Maschine bilden, wobei der rotierende Teil den Rotor und der feststehende Teil den Stator eines Elektromotors bildet.
摘要:
The invention relates to an electronic device (100) for controlling the movement of a conveyor belt actuated by an alternating-current electrical motor (300). The device comprises: a driving unit (101) of the alternating-current motor (300); an assessment unit (103) adapted to generate a signal (P w ) indicative of the power supplied to the alternating-current motor (300). The device is characterised in that it further comprises a unit (104) for regulating an inclination of the conveyor belt relative to a reference surface based on the signal (Pw). Such adjustment unit is configured for piloting lifting/lowering means (400) operatively associated to a moving end of the conveyor belt for lifting/lowering said end changing the inclination of the belt relative to the reference surface.
摘要:
The invention relates to a device for distributing or bringing together conveyance flows, in particular a conveyed-goods distributor, comprising at least one conveying element (4) which can be adjusted, and at least one adjustment drive (5) for at least the conveying element, the adjustment drive (5) comprising at least one drive means (10) and a redirecting transmission (12), the redirecting transmission (12) being designed as a crank drive and being coupled to at least one mechanical energy store (19) as an auxiliary drive for at least one of the adjustment motions of the conveying element (4). According to the invention, the energy store is a spring element (19), one end (20) of which is accommodated in a rotationally fixed manner and the other end (21) of which is rotatably connected to a crank arm (14) of the crank drive.