EP3377392A1 - Modulare struktur für ein landfahrzeug für den öffentlichen personenverkehr und fahrzeug mit solch einer struktur - Google Patents

Modulare struktur für ein landfahrzeug für den öffentlichen personenverkehr und fahrzeug mit solch einer struktur

Info

Publication number
EP3377392A1
EP3377392A1 EP16805974.9A EP16805974A EP3377392A1 EP 3377392 A1 EP3377392 A1 EP 3377392A1 EP 16805974 A EP16805974 A EP 16805974A EP 3377392 A1 EP3377392 A1 EP 3377392A1
Authority
EP
European Patent Office
Prior art keywords
module
frame
wall
modules
side walls
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP16805974.9A
Other languages
English (en)
French (fr)
Inventor
Patrice Besson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bluebus SA
Original Assignee
Bluebus SA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bluebus SA filed Critical Bluebus SA
Publication of EP3377392A1 publication Critical patent/EP3377392A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D31/00Superstructures for passenger vehicles
    • B62D31/02Superstructures for passenger vehicles for carrying large numbers of passengers, e.g. omnibus
    • B62D31/025Superstructures for passenger vehicles for carrying large numbers of passengers, e.g. omnibus having modular sections

Definitions

  • the present invention relates to a modular frame for a public passenger transport ground vehicle, in particular of the bus or tram-bus type. It also relates to a land passenger public transport vehicle comprising such a frame.
  • the field of the invention is the field of public transport land vehicles, in particular electric vehicles, of the bus, coach or tram-bus type.
  • bus One of the most popular means of public transport is the bus, because its implementation does not require specific infrastructure, such as railway track for example.
  • electric buses are emerging, encouraged not only by the awareness of users but also by administrative incentives encouraging the purchase and use of electric vehicles. We are also witnessing the appearance and development of tram-buses. Thus, the number of buses, electric or not, is constantly increasing.
  • the current buses are built by assembling many pieces forming ultimately the frame of the bus which is the main element of the bus. The frame is then dressed, then equipped.
  • the bus is built as and when, by adding pieces, such as bars or tubes, individually one after the other. The attachment of an individual part to others is done by bolting or welding.
  • bus manufacturing is not optimized on an industrial scale, because as long as a first frame is not completed, it is not possible to start a second frame, without occupying a significant space .
  • manufacture is not flexible at level of geographical location, because it requires to build the entire frame on the same site.
  • it is necessary to fix parts at height, at the ceiling of the bus, which is not ergonomic and presents a risk of injury to operators.
  • treatment facilities for example cataphoresis baths, of specific dimensions, which sometimes do not exist. not even in the country of manufacture.
  • An object of the present invention is to overcome these disadvantages.
  • Another object of the invention is to provide a skeleton for public transport land vehicle more flexible to manufacture on an industrial level.
  • Another object of the invention is to provide a skeleton for public transport land vehicle more ergonomic and less dangerous to manufacture for operators.
  • the invention makes it possible to achieve at least one of these aims by a frame for a public passenger transport public transport vehicle, in particular of the bus type, characterized in that it is formed by assembling them together. at least two independent modules, previously manufactured.
  • the invention proposes to manufacture a frame by assembling modules independent of each other.
  • Each of the modules composing the frame can be manufactured independently of the other modules.
  • the invention proposes a frame for a public transport ground vehicle that is more flexible to manufacture in terms of manufacturing sites, because the modules can be manufactured, and then assembled, on the same site or on at least two different sites.
  • the frame according to the invention is more flexible to manufacture in time, because the modules can be manufactured at the same time or in a staggered manner, in advance, etc.
  • each module having dimensions smaller than those of a complete frame, they are more ergonomic and less dangerous to manufacture for operators.
  • each module having dimensions smaller than those of a complete frame, their treatment can be fast while not requiring specific size installations, especially when applying a treatment, cataphoresis type.
  • the modular design of the frame according to the invention makes it easier and faster to modify a part of the vehicle, such as, for example, the front of the vehicle for left-hand or right-hand drive, a side wall of the vehicle. to add or delete an opening, etc., the remaining modules remain unchanged.
  • each module can be made on a steerable preparation station / returnable so that each welding operation, bolting or dressing can be performed arm height operators.
  • module means an assembly comprising at least half, preferably 75%, of a wall of the vehicle frame.
  • a "tram-bus” designates a terrestrial public transport vehicle mounted on wheels and which recharges at each station, so as not to require heavy rail-type infrastructures, catenaries, on the road. Such an electric vehicle is recharged at each station by means of load elements of the station and a connector connecting said vehicle to said station.
  • the framework may be composed of a total number of modules less than or equal to 5, and in particular less than or equal to 4, and even more particularly less than or equal to 3.
  • the framework according to the invention can comprise exactly three or four modules.
  • Such a number of modules allows an advantageous ratio between production time of each module and assembly time of the modules together to form the framework, while preserving the advantages described above relating to ergonomics, modularity, ease of processing, etc.
  • the frame according to the invention may comprise a so-called upper module, comprising an upper wall and, optionally, the upper part of at least one, in particular each, of two longitudinal side walls. on at least a portion, in particular all, of the length of said frame.
  • Such an upper module makes it possible to design the upper wall of the frame at an adequate working height, without assistance of a specific tool for turning the entire framework or without having to work at the total height of the frame. framework, as is the case with current techniques.
  • the frame according to the invention may comprise a so-called lower module, comprising a lower wall and, possibly, the lower part of at least one, in particular each of two longitudinal side walls on at least a portion, in particular the whole, of the length of said frame.
  • the framework may comprise:
  • an upper module comprising the upper part of each of the two longitudinal lateral walls
  • a lower module comprising the lower part of each, the two longitudinal side walls.
  • the longitudinal division of the framework between the upper module and the lower module is located at each of the longitudinal side walls, that is to say at a zone of least effort, and not at the level of the junctions between on the one hand the side walls and on the other hand the upper and lower walls, which constitute areas where the mechanical forces are concentrated.
  • the upper module may comprise the upper part of each of the two longitudinal side walls, and
  • the lower module may comprise the remainder of each of the two longitudinal lateral walls
  • the longitudinal side walls are formed on at least a part, in particular the whole, of the length of said frame.
  • the frame may have a longitudinal cut, between the upper module and the lower module, in a horizontal plane so that said cut is made at the same height for each of the longitudinal side walls.
  • Such a feature makes it possible to increase the modularity of the frame and to be able to use interchangeably a plurality of upper modules with a plurality of lower modules.
  • the upper module may have a vertical plane of symmetry passing through the center of the upper wall, respectively of the lower wall, in the width direction of said frame.
  • the upper module can be used in one direction or another, which reduces errors during assembly of the frame.
  • the frame according to the invention may comprise a module, said before, comprising a front wall and, optionally, a portion of at least one of the longitudinal side walls, upper or lower of said frame.
  • Such a front module allows a more ergonomic design to manufacture because it can be manufactured flat.
  • the front module may comprise a part of each of the longitudinal side walls, upper or lower of said frame and in particular on a length such that said front module comprises the cockpit.
  • Such a front module closes, at the front, the frame according to the invention along a cutting plane avoiding areas most mechanically stressed.
  • such a front module can customize still more the frame according to the invention, for example by proposing on the fly a steering position on the right or left.
  • the frame according to the invention may comprise a module, said rear, having a rear wall and, optionally, a portion of at least one of the longitudinal side walls, upper or lower of said frame.
  • Such a rear module allows a more ergonomic design to manufacture because it can be manufactured flat.
  • the rear module may comprise a portion of each of the longitudinal side walls, upper or lower of said frame.
  • Such a rear module is closed at the rear, the frame according to the invention along a cutting plane avoiding areas most mechanically stressed.
  • a rear module makes it possible to further personalize the frame according to the invention, for example by proposing on the fly a rear module comprising an engine location and / or an air-conditioning location and / or a location for batteries, etc.
  • the framework may have a vertical cut, in a substantially perpendicular plane:
  • At least two modules can be assembled together by welding, in particular by stainless welding, and / or by bolting.
  • at least two modules are assembled by welding, in particular by stainless welding, at least one, in particular each, module may have at least one stainless steel welding interface.
  • Such a stainless steel interface can be obtained by making this stainless steel interface, or by adding a layer of stainless steel on said interface, prior to welding.
  • At least one module may be made, at least in part, of steel.
  • At least one module can be made using another material, such as aluminum, carbon fibers, etc.
  • a module of the frame according to the invention is made of steel
  • said module can be previously treated against corrosion, for example by cataphoresis, prior to its assembly with another module.
  • a terrestrial public transport vehicle in particular electric vehicle, comprising a frame according to the invention.
  • Such a vehicle can be a bus or a tram-bus, in particular electric.
  • said upper module may comprise at least one housing, arranged in the thickness of the upper wall, respectively of the rear wall, and adapted to receive at least one electrical energy storage module, in particular rechargeable.
  • FIGURE 1 is a schematic representation of a non-limiting example of a vehicle according to the invention.
  • FIGURES 2 and 3 are schematic representations of a non-limiting example of a frame according to the invention in an exploded representation
  • FIGURES 4-6 are diagrammatic representations of nonlimiting examples of different modules composing the framework of FIGURES 2 and 3;
  • FIGURE 7 is a schematic representation of another example of a frame according to the invention.
  • FIGURE 8 is a schematic representation of a method of fixing two frame modules according to the invention.
  • FIGURE 1 is a schematic representation, in an isometric view, of a non-limiting embodiment of a vehicle according to the invention.
  • the vehicle 100 shown in FIG. 1 is an electric bus having a front wall 102, two longitudinal side walls 104 and 106, a rear wall 108, an upper wall 110 and a bottom wall 112.
  • the electric bus comprises one or more electric motors (not shown), modules 114, said rear, electrical energy storage, arranged on the side of the rear wall 108.
  • the bus 100 further comprises modules 116, said higher, storage of electrical energy, arranged in a housing arranged in the upper wall 110 of the bus 100.
  • FIGURE 2 is a diagrammatic representation, in exploded form, of an exemplary framework according to the invention in an isometric view.
  • FIGURE 3 is a diagrammatic representation, in an exploded form, of the framework of FIGURE 2 in a side view.
  • the frame 200 shown in FIG. 2, in exploded form, may be the frame of the vehicle 100 of FIGURE 1.
  • the frame 200 is composed of three independent modules of each other, namely an upper module 202, a lower module 204 and a front module 206.
  • the frame could have included a different number of modules, such as for example four modules.
  • the lower module 204 could have been divided into two independent modules, namely, a lower module and a rear module.
  • the division between the upper module 202 and the lower module 204 is made according to a plane:
  • the cutting between the upper module 202 and the lower module 204 is at a zone of least effort.
  • FIGURE 4 is a schematic representation, in an isometric view, of the upper module 202.
  • the upper module 202 comprises the upper wall 110 and the upper portion of each of the longitudinal side walls 104 and 106 over most of the length of the frame 200.
  • the upper module 202 has a vertical plane of symmetry, passing through the center of the upper wall 110 determined in the direction of the width of the frame, and:
  • the upper module 202 comprises, arranged in the thickness of the upper wall 110, four compartments 402 each intended to accommodate an electrical energy storage module, preferably rechargeable, supplying the electric motor or motors (no represented) of the vehicle.
  • FIGURE 5 is a schematic representation, in an isometric view, of the lower module 204.
  • the lower module 204 includes the entire rear wall 108.
  • the lower module 204 further comprises, over most of the length of the frame 200:
  • the lower module 204 comprises, formed in the thickness of the rear wall 108, one or more compartments 502, also visible in FIGS. 2 and 3, each intended to receive an electrical energy storage module. , preferably rechargeable, supplying the electric motor or motors (not shown) of the vehicle.
  • the lower module 204 can be divided into two sub modules, in a vertical sectional plane perpendicular to the longitudinal side walls 104 and 106 and the bottom wall 112, so as to obtain:
  • a lower sub-module comprising most, if not all, of the bottom wall 112 and the longitudinal side walls 104 and 106;
  • a rear sub-module comprising the entire rear wall 108, and possibly a part of the lower wall
  • FIGURE 6 is a schematic representation, in an isometric view, of the front module 206.
  • the front module 206 includes the entire front wall 102.
  • the front module 206 further comprises, over a small part of the length of the frame 200:
  • the front module 206 comprises a cockpit 602, disposed on the left, in the longitudinal direction looking towards the front of the vehicle.
  • a door can be arranged on the right.
  • the cockpit can be arranged on the right and a door on the left.
  • the division between the front module 206, on the one hand, and the upper 202 and lower 204 modules, on the other hand, is made in a substantially perpendicular plane:
  • the front module 206 can be assembled with the upper module 202 and the lower module 204 in a flat profile.
  • FIGURE 7 is a schematic representation, in an isometric view, of another example of a frame according to the invention.
  • Frame 700 shown in FIGURE 7, includes all members of frame 200 shown in FIGURES 2-6.
  • the frame 700 is composed of four independent modules.
  • the lower module 204 of the frame 200 is divided into two independent modules, namely a rear module 702 and a lower module 704, in the frame 700.
  • the separation between the lower module 704 and the rear module 702 of the frame 700 is made in a substantially perpendicular plane:
  • the rear module 702 comprises the rear wall 108 and the housings 502 to accommodate the storage modules.
  • the lower module 704 comprises the bottom wall 112.
  • the upper module of the frame 700 corresponds to the upper module 202 of the frame 200 and the front module of the frame 700 corresponds to the front module 206 of the frame 200. Furthermore, the cutting plane between the upper module 202 and the lower module 704 of the frame 700 of FIGURE 7 is lower than the cutting plane between the upper module 202 and the lower module 204 of the frame 200 FIGURES 2-3.
  • FIGURE 8 is a schematic representation of a method of fixing two modules of a frame according to the invention.
  • FIGURE 8 is a schematic representation of an example of attachment of the upper module with a lower module, which can be implemented in the frame according to the invention.
  • the upper module 202 is housed in a first section 802, whose section is shaped "U".
  • This first section 802 is fixed to the upper module 202, for example by welding.
  • the lower module 204, or 704 is housed in a second section 804, whose section is shaped "U". This second section 804 is attached to the lower module 204, or 704, for example by welding.
  • the first section 802 and the second section 804 are arranged back-to-back or head to tail.
  • the profiles 802 and 804 are then fixed together by a plurality of bolts 808.
  • the fixing example given in FIG. 8 can be used to fix two modules of framework between them, whatever the modules.
  • At least one, in particular each, module can be made of steel, stainless steel, carbon fiber, etc.
  • At least one, in particular each, module can be assembled with at least one other of the modules by stainless welding and / or by bolting.
  • At least one, in particular each, module may, prior to its assembly with another module, be treated against corrosion, for example by cataphoresis.
  • at least one, in particular each, module may comprise a welding interface with another module which is made of stainless steel, or which comprises a stainless steel assembly layer.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Body Structure For Vehicles (AREA)
EP16805974.9A 2015-11-16 2016-11-09 Modulare struktur für ein landfahrzeug für den öffentlichen personenverkehr und fahrzeug mit solch einer struktur Withdrawn EP3377392A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1560953A FR3043632B1 (fr) 2015-11-16 2015-11-16 Ossature modulaire pour vehicule terrestre de transport en commun de passagers et vehicule comprenant une telle ossature.
PCT/EP2016/077089 WO2017084922A1 (fr) 2015-11-16 2016-11-09 Ossature modulaire pour vehicule terrestre de transport en commun de passagers et vehicule comprenant une telle ossature

Publications (1)

Publication Number Publication Date
EP3377392A1 true EP3377392A1 (de) 2018-09-26

Family

ID=55182371

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16805974.9A Withdrawn EP3377392A1 (de) 2015-11-16 2016-11-09 Modulare struktur für ein landfahrzeug für den öffentlichen personenverkehr und fahrzeug mit solch einer struktur

Country Status (3)

Country Link
EP (1) EP3377392A1 (de)
FR (1) FR3043632B1 (de)
WO (1) WO2017084922A1 (de)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3061114B1 (fr) * 2016-12-22 2023-06-30 Newtl Chassis pour vehicule de transport
US10464617B2 (en) * 2017-11-28 2019-11-05 Champion Bus, Inc. Modular sidewall for passenger vehicle
CN108674496A (zh) * 2018-05-21 2018-10-19 吉林大学 一种基于动力模块单元的电动公路客车车身模块化结构及其分配方法和应用
BR102021008519A2 (pt) * 2021-04-30 2022-11-16 Marcopolo Sa Estrutura de posto do motorista para veículo de transporte coletivo, ônibus e processo de montagem de uma estrutura de posto do motorista para veículo de transporte coletivo

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SE466798B (sv) * 1990-06-06 1992-04-06 Aluminiumbuss I Piteaa Ab Karosserikropp
GB2371525B (en) * 2001-01-30 2004-07-14 Edgar Padbury Coleman Improvements in motor vehicles
US20050161975A1 (en) * 2004-01-23 2005-07-28 Nieminski Brant R. Modular bus body assembly
BRPI0405594A (pt) * 2004-12-13 2006-09-05 Marcopolo Sa processo modular de fabricação e montagem de estrutura de veìculo automotor, para transporte de passageiros e cargas, e carroceria e chassi resultante
EP2030877B1 (de) * 2007-08-30 2013-04-10 3A Technology & Management AG Fahrzeuggestell mit Dachelement
CN102582689B (zh) * 2012-02-24 2014-02-12 东风汽车公司 一种新能源公交客车全承载式车身结构
WO2015013791A1 (pt) * 2013-07-29 2015-02-05 Marcopolo S.A Kit para fabricação de veículo modular e processo dé fabricação de veiculo modular

Also Published As

Publication number Publication date
WO2017084922A1 (fr) 2017-05-26
FR3043632A1 (fr) 2017-05-19
FR3043632B1 (fr) 2019-07-19

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