B61D49/00

VEHICLE
20170237240 · 2017-08-17 ·

A vehicle, in particular for conveying people and/or freight, includes at least one fireproof electrical network, at least one first vehicle region having a first fire load, and at least one second vehicle region having a second fire load that is smaller than the first fire load. In order to keep the necessary fireproofing as low as possible, at least part of the fireproof electrical network is disposed in the second vehicle region.

VEHICLE
20170237240 · 2017-08-17 ·

A vehicle, in particular for conveying people and/or freight, includes at least one fireproof electrical network, at least one first vehicle region having a first fire load, and at least one second vehicle region having a second fire load that is smaller than the first fire load. In order to keep the necessary fireproofing as low as possible, at least part of the fireproof electrical network is disposed in the second vehicle region.

TANK CAR ACCESS LADDER
20170226802 · 2017-08-10 ·

A portable ladder having a pair of elongate stiles spaced from one another and each having first and second ends, and extending in a first direction; and a plurality of rungs each extending between the elongate stiles transverse to the first direction and having opposed ends one of each attached to each of the elongate stiles and each of the plurality of rungs being spaced from one another along the first direction, the rungs being arcuate in shape between the opposed ends.

TANK CAR ACCESS LADDER
20170226802 · 2017-08-10 ·

A portable ladder having a pair of elongate stiles spaced from one another and each having first and second ends, and extending in a first direction; and a plurality of rungs each extending between the elongate stiles transverse to the first direction and having opposed ends one of each attached to each of the elongate stiles and each of the plurality of rungs being spaced from one another along the first direction, the rungs being arcuate in shape between the opposed ends.

SUSPENDED PUBLIC TRANSIT SYSTEM
20210370991 · 2021-12-02 ·

Provided herein are transit systems for travel overhead of streets, having: at least a first vehicle and a second vehicle; a main track on which the vehicles travel, the main track having a suspended overhead rail over the streets by a support structure, such that the vehicles travel at an elevated level overhead of street level; docking stations for the vehicles to lower to the street level for loading and/or unloading passengers and/or cargo; a two-position switch at each docking station, having cables enabling vertical movement of the vehicle, and a replacement track; wherein the two-position switch allows for docking of the first vehicle while the second vehicle passes the docked first vehicle, by enabling lowering of the first vehicle from the elevated level to the street level, and the replacement track providing a track portion for the second vehicle on which to pass the first vehicle.

SUSPENDED PUBLIC TRANSIT SYSTEM
20210370991 · 2021-12-02 ·

Provided herein are transit systems for travel overhead of streets, having: at least a first vehicle and a second vehicle; a main track on which the vehicles travel, the main track having a suspended overhead rail over the streets by a support structure, such that the vehicles travel at an elevated level overhead of street level; docking stations for the vehicles to lower to the street level for loading and/or unloading passengers and/or cargo; a two-position switch at each docking station, having cables enabling vertical movement of the vehicle, and a replacement track; wherein the two-position switch allows for docking of the first vehicle while the second vehicle passes the docked first vehicle, by enabling lowering of the first vehicle from the elevated level to the street level, and the replacement track providing a track portion for the second vehicle on which to pass the first vehicle.

LAND VEHICLE WITH TECHNICAL HATCH
20220185080 · 2022-06-16 ·

A land vehicle includes a body, a technical compartment opening onto an outer wall of the body; and a closing device that closes the technical compartment. The closing device includes first and second flaps, which are rotatable relative to the body, and a central element, which is connected to the body between the flaps. In a closed configuration of the closing device, each of the flaps extends in a longitudinal direction with one end of each in contact with the central element, so that the flaps close the technical compartment. In an open configuration of the closing device, both of the flaps folded against the outer wall or against the central element, so as to provide access to the technical compartment.

Apparatus for viscous hydrocarbon transportation

A vessel for transporting a material that is solid or semi-solid at ambient temperature, includes a body having an interior surface comprising textured metal, and a superoleophobic coating on the interior surface for inhibiting the material from adhering to the interior surface, the superoleophobic coating including a nanotextured coating disposed on the textured metal and functionalized with a fluorinated compound. The superoleophobic coating facilitates flow of the material along the interior surface.

Apparatus for viscous hydrocarbon transportation

A vessel for transporting a material that is solid or semi-solid at ambient temperature, includes a body having an interior surface comprising textured metal, and a superoleophobic coating on the interior surface for inhibiting the material from adhering to the interior surface, the superoleophobic coating including a nanotextured coating disposed on the textured metal and functionalized with a fluorinated compound. The superoleophobic coating facilitates flow of the material along the interior surface.

Rail transport system

A rail transport system 10 has at least two load carrying bodies 12 which are arranged end to end. Mutually adjacent bodies 12 are coupled together by respective coupling systems 14. The rail transport system 10 further includes a plurality of axles 16 each provided at opposite ends with respective rail wheels 18 which support the bodies 12. A flexible liner 20 is supported by the bodies 12. The liner 20 is configured to span respective coupling systems 14. In this way the bodies 12 and the flexible liner 20 form a continuous load carrying structure 22. The continuous load carrying structure 22 is arranged so as to be able to pivot about an axis perpendicular to the axles 16 to facilitate unloading of cargo from the bodies 12.