Abstract:
The invention relates to a method for configuring the shelves (6) and shelf carrying posts (5) of a transport trolley (1), said transport trolley (1) comprising a base trolley unit (2) with wheels (4) and upward facing receptors (3), vertical posts (5) mountable in said receptors (3), and shelves (6), said method comprising the steps of: entering pins (27) of a cross bar (26) in a configuring tool (25) into opposite openings (8) of two posts (5), engaging a recess (31) of a further arm (30) in the configuring tool (25) with an edge (23) projecting up from the base trolley unit (2), lowering one end of a lever arm (28) in the configuring tool (25) connected at the opposite end to the cross bar (26) and to the further arm (30) in a pivot point (32) in order to lift said two posts (5) up, and securing said two posts (5) in a new position within the receptors (3) e.g. with lock pins (35) entered through holes (33, 34) in the receptors (3) and posts (5).
Abstract:
Tube rail cart (1) which comprises a framework (2) on which are provided at least four rail wheels (3), more specifically two rail wheels (3) on a front axle (4) and two rail wheels (3) on a rear axle (5), whereby also drive means for moving the tube rail cart (1) over the tubes are provided on the framework (2), characterised in that the drive means comprise at least a first drive wheel (11) which is provided between the front axle (4) and the rear axle (5).
Abstract:
An adaptable handling system featuring a boundary subsystem and one or more robots. Each robot typically includes a chassis, a container lift mechanism moveable with respect to the robot chassis for transporting at least one container, a drive subsystem for maneuvering the chassis, a boundary sensing subsystem, a container detection subsystem, and a controller. The controller is responsive to the boundary sensing subsystem and the container detection subsystem and is configured to control the drive subsystem to follow a boundary once intercepted until a container is detected and turn until another container is detected. The controller then controls the container lift mechanism to place a transported container proximate the second detected container.
Abstract:
Procedure and modular structure for continuously growing an aeroponic crop, characterised in that it comprises the following phases: - Phase involving the preparation of the seeding area, positioning on the line and germination. - Phase involving transfer and positioning on production bars. - Phase involving distribution by level and row, vegetative growth and maturing. - Phase involving irrigation and inspection. - Phase involving guiding, transport of production bars and harvesting. - Phase involving the cleaning and preparation of production bars and seed trays.
These phases initially take place on the bottom floor (1) and during maturing on one or more successive floors (1.1) of a modular structure above the ground or beneath it.
Abstract:
A high-rise building (1) is described, which comprises a building structure (2) with floor structures (3), a double-skin façade comprising a first skin (5) and a second skin (6). The high-rise building also comprises at least one conveying system(7, 7´, 7´´) arranged between the skins (5, 6) of the double-skin façade and arranged for moving trays (8) vertically between the skins (5, 6) between a starting position (9, 9´, 9´´) and an end position (10, 10´, 10´´). The conveying system (7, 7´, 7´´) comprises essentially horizontal track portions (14) each having a length axis (15), track connecting means (18) which connect the track portions (14), and conveying means for movement of the trays (8) along the length axis (15) of the track portions (14) and along the track connecting means (19).
Abstract:
The invention relates to a conveying system for moving containers (14), the conveying system (4) comprising an inclined track (8) and a conveying device (24), where the track (8) has an container inlet (11) at the bottom (12) and an container outlet (15) at the top (16) and where the conveying device (24) is arranged to travel down (R) the track (8) and comprises a container moving unit (54) which after passage below a container (14) moves the container (14) one step up (L) the track (8), the conveying device (24) thus moving one container (14) at a time one step up (L) the track (8) during the downward (R) travel of the conveying device (24). The invention also relates to a tower structure (2) comprising a container conveying system (4), and a method for conveying containers (14) with a conveying system (4).
Abstract:
Tube rail cart (1) provided with a platform (3) for a person (4), with drive means (7) for advancing the tube rail cart (1) and with operating means (17) with which a person (4) can operate the drive means (7), and provided with one or several detectors (22) generating a signal (24) which may vary depending on the position of the person (4) on the platform (3) and with a control (25) which automatically controls the drive means (7).
Abstract:
A trolley is provided, including an illumination module (400) disposed in a frame (100) having a plurality of plates (200), wherein the illumination module (400) includes a plurality of light emitting diodes (402) disposed on the second surface (206) of each plate (200), and each light emitting diode (402) comprises a red light chip providing 75% to 85% of it's total light energy, a green light chip providing 5% to 15% of it's total light energy and a blue light chip providing 5% to 15% of it's total light energy.