Car body part
A car body part, in particular a car body part of a rail vehicle, includes an extruded part with at least one fastening portion which is suitable for fastening an item of equipment, and extends in the extrusion direction of the extruded part. The extruded part is locally weakened by mechanical reworking and the fastening portion is flexible as a result of local weakening and forms a flexible fastening portion. An assembly having the car body part and an item of equipment and a method for producing the assembly are also provided.
The invention relates to a car body part, in particular a rail vehicle car body part, in the form of an extruded part with at least one fastening portion which is suitable for fastening an item of equipment and extends in the extrusion direction of the extruded part.
In the area of fastening surfaces, in particular screwed surfaces, of car body parts and the items of equipment to be fastened on the car body parts there are always certain manufacturing-related deviations with regard to flatness and parallelism, the size of which depends on the respective manufacturing tolerances. In the case of car bodies produced from extruded sections made of aluminum, in the case of integrally molded fastening rails deviations predominantly occur in the inclination about the vehicle axis. As a result of said inclinations occurring in a manufacturing-related manner, the screwed surfaces of the fastening rails, after screw connection to an item of equipment mounted thereon, can possibly not be located in a planar manner on the screwed surfaces of the item of equipment such that a wedge-shaped gap remains. These types of wedge-shaped gaps are closed nowadays by means of wedge-shaped spacers or are compensated for by elastic connecting elements (for example screw-connected rubber bearings).
The object underlying the invention is to provide a car body part where the abovementioned wedge formation when mounting an item of equipment on the car body part does not occur at all, at least less than nowadays in the case of car bodies of the prior art.
This object is achieved according to the invention by a car body part with the features of claim 1. Advantageous developments of the car body part according to the invention are provided in the sub-claims.
Accordingly, it is provided according to the invention that the extruded part is weakened locally in a mechanical manner as a result of mechanical reworking and a fastening portion of the extruded part is flexible as a result of the local weakening and forms a flexible fastening portion.
An essential advantage of the car body part according to the invention is to be seen in that, as a result of the local weakening of the extruded part, additional flexibility of the fastening portion or fastening portions is achieved as a result of which a subsequent assembly of an item of equipment is made easier and, where applicable, a forming of a wedge between the item of equipment and the fastening portion is avoided.
It is deemed to be particularly advantageous when the extruded part includes a fastening rail (extruded at the same time) which, when viewed in the extrusion direction, is weakened locally at at least one place as a result of material removal, and the flexible fastening portion is arranged in the region, preferably spatially above, the locally weakened place (weakening place).
In addition to this or as an alternative to this, it can be provided for weakening the extruded part that the fastening rail is weakened locally or removed at at least two places (weakening places) which are located one behind another when viewed in the extrusion direction, and the flexible fastening portion is formed by a portion of the fastening rail which lies between the two places when viewed in the extrusion direction.
In cross section, the fastening rail of the extruded part can comprise a closed contour. In such a case it is deemed to be advantageous when the closed contour is opened locally to form the locally weakened places.
The fastening rail preferably comprises a square or rectangular cross section which is formed by a fastening surface, by means of two support walls which are arranged at an angle, in particular perpendicular, to the fastening surface and one carrier portion of the extruded part which holds the support walls.
In a preferred manner, one of the two support walls which is arranged at an angle, in particular perpendicular, to the fastening surface and/or the fastening surface is weakened as a result of material removal.
As an alternative to this, the fastening rail of the extruded part can comprise an open contour in cross section.
In the case of an open contour, the fastening rail of the extruded part is preferably formed by an L-section which is locally weakened and/or (completely) removed at at least two places which, when viewed in the extrusion direction, are situated one behind another and are spaced apart from one another; the flexible fastening portion, in this case, is preferably formed by a portion of the L-section which lies between the two places when viewed in the extrusion direction.
The invention relates over and above this to an arrangement having a car body part, as has been described above, as well as an item of equipment which is mounted on the car body part.
With reference to the advantages of the arrangement according to the invention, reference is made to the above statements in conjunction with the car body part according to the invention as the advantages of the car body part according to the invention correspond substantially to those of the arrangement according to the invention.
It is deemed to be advantageous when the item of equipment is mounted on the at least one flexible fastening portion which has been weakened locally in a mechanical manner as result of mechanical reworking.
In the case of a particularly preferred embodiment of the arrangement, it is provided that the item of equipment is screw-connected on the at least one flexible fastening portion and the flexible fastening portion is deformed locally as a result of the screw connection.
Over and above this, it is deemed to be advantageous when the car body part forms the roof or a roof part of a rail vehicle car body and the item of equipment is mounted on the roof or roof part.
The arrangement preferably forms a rail vehicle. In such a case, it is deemed as advantageous when the item of equipment includes or comprises one or several electro-technical or electric components of the rail vehicle, such as a converter, a transformer, an air-conditioning component or a current collector. The item of equipment can also simply provide a receptacle for operating material or equipment, for example for a converter, a transformer, an air-conditioning component, a braking resistor, a main switch, a network filter, a battery, an antenna carrier or antennae, a four-quadrant chopper, a cooling unit, a fuel container, a water container and/or another container for operating material.
The item of equipment is preferably mounted on the roof of the rail vehicle car body part.
The extruded part preferably comprises a fastening rail with a contour which is closed in cross section and is open in the region of the locally weakened place or places.
The fastening rail comprises in a particularly preferred manner a square or rectangular cross section which is formed by a fastening surface, by means of two support walls which are arranged at an angle, in particular perpendicular, to the fastening surface and one carrier portion of the extruded part which holds the support walls. The fastening surface is preferably arranged horizontally and the support walls are preferably vertical.
At least one of the two support walls which are arranged at an angle, in particular perpendicular, to the fastening surface is preferably weakened as a result of material removal or is completely removed locally. The fastening surface is preferably situated above a locally weakened support wall portion.
With reference to the fastening of the item of equipment, it is deemed to be advantageous when said item of equipment is fastened on at least two flexible fastening portions of the extruded part.
In the case of the last-mentioned embodiment, it is deemed as advantageous when in the case of each of the at least two flexible fastening portions, in each case the outside support wall—when viewed from the center of the car body—is weakened as a result of material removal.
The invention relates over and above this to a method for producing an arrangement having a car body part which is formed by an extruded section and an item of equipment.
With reference to such a method, it is provided according to the invention that the extruded part is weakened locally in a mechanical manner as a result of mechanical reworking and at least one flexible fastening portion is formed for fastening the item of equipment and the item of equipment is mounted, in particular screw-connected, along or on the flexible fastening portion.
With reference to the advantages of the method according to the invention, reference is made to the above statements in conjunction with the car body part according to the invention as the advantages of the car body part according to the invention correspond substantially to those of the method according to the invention.
In the case of an advantageous development of the method, it is provided that the extruded part is weakened locally in a mechanical manner as a result of mechanical reworking by material of the extruded part being removed, in particular as a result of milling or boring.
As a result of screw-connecting the item of equipment on the at least one flexible fastening portion, a fastening surface of the flexible fastening portion of the extruded part is pressed flatly onto a fastening surface of the item of equipment.
Over and above this, it is deemed as advantageous when, as a result of screw-connecting the item of equipment on the at least one flexible fastening portion of the extruded part, the fastening surface of the flexible fastening portion and/or the region about the fastening surface of the flexible fastening portion is deformed.
The local weakening of the extruded part is preferably effected as a result of locally opening a contour, closed in cross section, of a fastening rail of the extruded part.
In addition to this or as an alternative to it, it is deemed as advantageous when the fastening rail is weakened locally or removed at at least two places which are located one behind another when viewed in the extrusion direction and the flexible fastening portion is formed by a portion of the fastening rail which, when viewed in the extrusion direction, lies between the two places.
The invention is explained in more detail below by way of exemplary embodiments; in which, in this case, as an example:
For the purposes of clarity, the same references are always used in the figures for identical or comparable components.
The car body part 10 is an extruded part 11 which is provided with two extruded fastening rails 50 and 60 which are component parts of the extruded part 11 or are integrally molded in one piece on said extruded part during extrusion molding and have been extruded at the same time in one part with said extruded part and consequently extend in each case along the extrusion direction (or the longitudinal extrusion direction) of the extruded part. As an alternative to this, the car body part 10 can be formed by two or more interconnected (e.g. welded) extruded parts, one of the two extruded fastening rails being realized on one of the extruded parts and the other of the two extruded fastening rails being realized on another extruded part.
In the case of the representation according to
Each of the two fastening rails 50 and 60 in the case of the exemplary embodiment according to
For mounting the item of equipment 30 on the car body part 10, the two fastening surfaces 45 of the two fastening elements 40 are fitted onto the fastening surfaces 70 of the two fastening rails 50 and 60. The fastening elements 40 are then fixed on the two fastening rails 50 and 60, for example screw-connected.
Over and above this,
In order to ensure or to simplify placing the two fastening surfaces 45 and 70 in a planar manner after mounting, in the case of the car body parts according to
In the case of the exemplary embodiment according to
As a result of the realization of the holes 200, which extend from the outer support wall 72 into the region of the upper fastening surface 70 of the fastening rail 60, as well as over and above this as a result of the places 120, 121 and 122 which are arranged along the extrusion direction S one behind another and in which the material of the fastening rail 60 is completely removed, efficient material weakening is achieved, as a result of which a particularly high degree of flexibility is ensured in the region of the fastening portions 110.
The inner support wall 71 of the fastening rail 60 preferably does not comprise any holes such that it is able to apply the supporting force necessary for carrying the item of equipment to be fastened on the fastening rail 60.
As a result of the choice of the size of the hole 200 or as a result of the depth d at which the hole 200 extends into the region of the upper fastening surface 70, the flexibility of the fastening portion 110 is able to be adjusted in a targeted manner.
The above exemplary embodiments can comprise one or several of the following features depending on the development:
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- the carcass-side fastening rail of the car body part is machined such that the outside vertical web (support wall 72 in
FIGS. 1 and 3 ) of the fastening rail is omitted completely or at least in part in the region of the fastening portion or screwed surface. - The inner vertical web of the fastening rail directly transmits the vertical weight because it communicates with the horizontal bearing surface and is covered at least in part by said bearing surface.
- The horizontal bearing surface serves as a screwed surface and transmits longitudinal and transverse forces.
- As a result of weakening the fastening rail, the fastening rail becomes more flexible for torsion about the longitudinal axis of the fastening rail and about the axis of the extruding direction of the extruded section without losing strength at the relevant carrying places.
- Where the design of the rigidity of the item of equipment, the fastening of the item of equipment and development of the fastening rail is coordinated, the fastening portions or the screwed surfaces can be moved to the desired abutment under the preload force.
- the carcass-side fastening rail of the car body part is machined such that the outside vertical web (support wall 72 in
Although the invention has been illustrated and described in more detail by the preferred exemplary embodiments, the invention is not restricted by the disclosed examples and other variations can be derived therefrom by the expert without departing from the scope of protection of the invention.
Claims
1-15. (canceled)
16. A car body part or rail vehicle car body part, comprising:
- an extruded part having at least one fastening portion being suitable for fastening an item of equipment and extending in an extrusion direction of said extruded part;
- said extruded part being mechanically reworked to provide a local weakening; and
- said at least one fastening portion being flexible due to said local weakening, forming at least one flexible fastening portion.
17. The car body part according to claim 16, wherein:
- said extruded part includes a fastening having material removed to form at least one locally weakened location along said extrusion direction; and
- said at least one flexible fastening portion is disposed in the vicinity of said at least one locally weakened location.
18. The car body part according to claim 17, wherein said at least one flexible fastening portion is disposed above said at least one locally weakened location.
19. The car body part according to claim 16, wherein:
- said extruded part includes a fastening rail being weakened locally or removed at least at two locations disposed one behind another in said extrusion direction; and
- said at least one flexible fastening portion is formed by a portion of said fastening rail lying between said two locations in said extrusion direction.
20. The car body part according to claim 17, wherein said fastening rail of said extruded part has a cross section with a closed contour being open in the vicinity of said at least one locally weakened location.
21. The car body part according to claim 19, wherein said fastening rail of said extruded part has a cross section with a closed contour being open in the vicinity of said locally weakened locations.
22. The car body part according to claim 17, wherein said fastening rail of said extruded part has a cross section with an open contour.
23. The car body part according to claim 19, wherein said fastening rail of said extruded part has a cross section with an open contour.
24. An assembly, comprising:
- a car body part according to claim 16; and
- an item of equipment mounted on said at least one mechanically reworked and locally mechanically weakened flexible fastening portion of said car body part.
25. The assembly according to claim 24, wherein said item of equipment is screw-connected on said at least one flexible fastening portion and said at least one flexible fastening portion is deformed locally as a result of said screw connection.
26. The assembly according to claim 24, wherein:
- said car body part forms a roof or a roof part of a rail vehicle car body; and
- said item of equipment is mounted on said roof or roof part.
27. The assembly according to claim 26, wherein:
- the assembly forms a rail vehicle;
- said item of equipment includes a converter, a transformer, an air-conditioning component or a current collector or is formed by a component; and
- said item of equipment is mounted on said roof of said rail vehicle car body part.
28. A method for producing an assembly having a car body part formed by an extruded part and an item of equipment, the method comprising the following steps:
- mechanically weakening the extruded part locally by mechanical reworking and forming at least one flexible fastening portion for fastening the item of equipment; and
- mounting the item of equipment on or at the at least one flexible fastening portion.
29. The method according to claim 28, which further comprises carrying out the mounting step by screw-connecting the item of equipment on or at the at least one flexible fastening portion.
30. The method according to claim 28, which further comprises removing material of the extruded part to carry out the step of weakening the extruded part locally by mechanical reworking.
31. The method according to claim 30, which further comprises carrying out the step of removing the material of the extruded part by milling or boring.
32. The method according to claim 29, which further comprises pressing a fastening surface of the item of equipment flatly onto a fastening surface of the at least one flexible fastening portion of the extruded part as a result of the screw-connecting of the item of equipment at the at least one flexible fastening portion.
33. The method according to claim 32, which further comprises deforming a region about the fastening surface of the at least one flexible fastening portion as a result of the screw-connecting of the item of equipment on the at least one flexible fastening portion of the extruded part.
34. The method according to claim 28, which further comprises effecting the local weakening of the extruded part by locally opening a contour having a closed cross section of a fastening rail of the extruded part.
35. The method according to claim 28, which further comprises:
- locally weakening or removing a fastening rail of the extruded part at least at two locations disposed one behind another in an extrusion direction; and
- forming the at least one flexible fastening portion by a portion of the fastening rail disposed between the two locations in the extrusion direction.
Type: Application
Filed: Oct 25, 2013
Publication Date: Oct 29, 2015
Inventors: CHRISTIAN CLAASSEN (KREFELD), KLAUS STOLL (NIEDERKRUECHTEN)
Application Number: 14/647,162