The invention relates to a control box arrangement with at least one control box, which is or can be subdivided by means of wall sections into a plurality of cuboid compartments that are enclosed on all sides, for which purpose vertical wall sections with a horizontal subdivision are provided.
A control box arrangement of this type, equipped with a control box, has been disclosed in DE 10 2004 054 173 A1. In this known control box, in order to construct a low-voltage control box that conforms to standards, the interior is divided into a plurality of compartments that are separated from one another by vertical dividing walls, namely a device compartment for devices on the side oriented toward the user, a cable connection compartment for routing cables through, and a bus bar compartment for the supply of current by means of bus bars, which are electrically connected to a distributing rail system and supply the electrical energy to the devices in the device compartment. In this case, the dividing wall that divides the device compartment situated in the front region from the bus bar compartment situated in the rear region is composed of a front and rear wall section between which the vertical distributing rails are situated. Horizontal dividing lines subdivide the rear and front wall sections into a plurality of segments that are of different heights in the two wall sections to make it possible to adapt to different control box heights. In the front wall section, openings are provided through which the connecting terminal tabs can be contacted with the distributing rails via a plug-in unit. No indication is given as to the extent to which there are subdividing options other than the ones disclosed, aside from the adaptation to different control box heights.
DE 40 13 379 C2 has disclosed a control box with a frame and compartments that can be closed by means of compartment doors. The compartments are delimited by side wall sections that essentially correspond to the height of a compartment. The side wall sections are secured by means of connecting rails that are composed of C-shaped guide rails 31 and L-shaped base rails; a horizontal leg of the L-shaped base rail is used to accommodate horizontal dividing floors that are inserted into a gap between a leg of the C-shaped guide rail and the horizontal leg of the base rail. The connecting rails are attached to rows of fastening holes situated on the opposing inside surfaces of vertical frame legs, with the lateral legs of the C-shaped guide rails protruding into the interior. This design does in fact provide simple possibilities for assembly and arrangement, but requires relatively complex connecting rails. With this design, it is also difficult to subdivide the space in the horizontal direction in order to produce a plurality of compartments situated vertically adjacent to one another.
The object of the invention is to create a control box arrangement of the type mentioned at the beginning that enables variable spatial subdivisions of the interior of the control box arrangement in the simplest possible way.
This object is attained by means of the defining characteristics of claim 1. According to this claim, in order to produce a plurality of horizontal compartments arranged one above the other in the form of cubbyholes, the wall sections include side wall sections, which are adapted to the same or different compartment heights, adapted rear wall sections, which are embodied in the form of mounting plates, and horizontal compartment-dividing floors.
The side wall sections, which are adapted to the compartment height, rear wall sections, and horizontal compartment-dividing floors comprise a sort of building-block system enabling the production of various spatial divisions into desired compartments without great complexity, thus also enabling simple retrofitting. The rear wall sections embodied as mounting plates offer a wide variety of mounting possibilities, in particular for functional compartments provided for the installation of device components on the side oriented toward the user. This achieves a modular, flexible system, particularly for low-voltage equipment.
The provision that the heights of the side wall sections and mounting plates are matched to a spacing dimension of rows of fastening holes of vertical frame legs and/or vertical mounting rails situated in the control box arrangement facilitates the variable construction possibilities while retaining ease of assembly.
If a bus bar compartment for a main rail system is provided, which extends vertically over the entire height of the control box interior, situated on the inside behind the cubbyholes in the depth direction of the control box arrangement, then this offers advantageous connection possibilities in the rear region of the cubbyholes for the supply of energy to device components situated in the functional compartments.
It is operationally advantageous to provide the fronts of the cubbyholes with respective compartment doors adapted to their heights.
Another embodiment variant that offers advantages with regard to increased safety and/or a complete overview is comprised in the fact that a front door that extends over all of the cubbyholes is provided at the front, in front of the cubbyholes, each of which is possibly equipped with its own respective compartment door.
A favorable subdivision and sealing of the cubbyholes, particularly at the compartment doors, is achieved if a divider strip with a U-shaped cross section is situated in front of the front edge of the compartment-dividing floors, with its open side oriented toward the front and the free ends of its side legs situated in the same plane as the front plane of the frame legs.
A simple assembly is facilitated if the side wall sections, in their upper corner region close to the vertical edge, are provided with bent hook elements that are oriented away from the cubbyhole interior and have downward-oriented securing protrusions that are adapted to the openings in the rows of fastening holes.
The lining up of side wall sections in a simple assembly is facilitated by the fact that in their upper edge region, the side wall sections are first bent diagonally inward and upward at an obtuse angle parallel to the edge and are then bent diagonally outward and upward. The upward-angled free end sections of the edge regions guide the lower—in particular flat—edge region of a side wall above them into the correct position as it is being hung in place and then cover it so that through corresponding dimensioning, the edge of this other side wall protrudes in the vertical direction, preferably behind the angled free end section.
Advantageous mounting possibilities on the side wall sections are offered by the fact that the side wall sections are provided with a horizontal arrangement of holes, at least in their lower edge region.
The arrangement of the compartment-dividing floors and their attachment to the side wall sections are advantageously achieved in that mounting angles are provided for attaching the compartment-dividing floor along the two opposing side wall sections; these mounting angles have a vertical leg and a horizontal leg and are attached to the vertical frame legs, the vertical mounting rails, and/or the side wall sections, with the respective compartment-dividing floor being fastened to the opposing horizontal legs of the mounting angles.
A simple assembly is facilitated by the fact that the mounting angles protrude beyond the inner edge of the vertical frame legs and by the fact that the width of the compartment-dividing floors is at most as wide as the distance between the opposing insides of the vertical frame legs in the width direction of the control box arrangement.
The accessibility to the functional compartments and a uniquely defined mounting of the wall sections are facilitated by the fact that the vertical frame legs have a mounting plane, which is recessed in relation to the internal opening region of the control box and is equipped with rows of fastening holes to which the side wall sections are mounted.
The spatial subdivision of the control box interior, with advantageous possibilities for arranging a main rail system behind the functional compartments, is facilitated by the fact that the compartment-dividing floors extend to the mounting plates in the depth direction and the side wall sections likewise extend to the plane of the mounting plates and are attached to vertical mounting rails situated there or extend in the depth direction to the rear vertical frame legs and are attached to them, optionally in their outer mounting plane.
Advantages relating to the arrangement and accessibility of distributing rails for supplying electrical energy to the functional compartments are also achieved by the fact that the compartment-dividing floors are provided in their rear edge region with a cutout that is broken out or can be broken out, through which the vertical distributing rails, together with a cover that prevents them from being touched, are or can be routed.
The invention will be explained in greater detail below in conjunction with exemplary embodiments shown in the drawings.
The horizontal compartments 5 situated one above the other and embodied in the form of functional compartments are delimited laterally by side wall sections 20 adapted to the height of the functional compartments and the front vertical edge regions of these side wall sections 20 are each mounted onto the associated vertical frame leg 11 while their rear vertical edge regions are each mounted either to the respective rear vertical frame legs 11 or to respective vertical mounting legs that are situated in the plane of the rear wall sections of the functional compartments. In addition to the side wall sections 20 laterally delimiting the functional compartments, the associated control boxes 2 and 4 are also closed by continuous outer side walls, and are also closed at the back and top of the control box arrangement 1.
In their upper edge region, the side walls 20 are first bent inward and upward at an obtuse angle in relation to the functional compartment and are then bent diagonally outward and upward again, parallel to the upper edge, as is also visible in
Accordingly, the heights of the component-mounting plates 40 and the compartment doors 16 are also adapted to the height of functional compartments in a particular spacing pattern, in particular in accordance with integral multiples of height units, thus yielding a kind of building block system for constructing desired functional compartments that can be also arranged at different heights of the control box interior in accordance with the rows of holes and their spacing patterns in the vertical frame legs 11 and vertical mounting legs.
Mounting angles 70, which can be attached laterally to the side wall sections 20 and/or to the vertical frame legs 11 or the vertical mounting rails, are provided for arranging the compartment-dividing floors 30; these mounting angles 70 extend with a vertical leg 72 along the associated side wall section 20 and protrude with their horizontal leg 71 toward the interior of the control box; the top surfaces of two opposing horizontal legs 71 accommodate a compartment-dividing floor 30, which can be connected to them by means of elements, in particular screws, which engage in openings in a row of holes 73 or an arrangement of holes 31 (see
As shown in
As shown in
The above-described modular design for the compartments inside the control box permits variable arrangements to be produced with simple assembly, while also satisfying the high functional reliability standards of the type required for low-voltage equipment.
Number | Date | Country | Kind |
---|---|---|---|
10 2006 058 779.0 | Dec 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP2007/010347 | 11/29/2007 | WO | 00 | 6/12/2009 |