The present invention relates to a press locked grating, in particular for use as a shelf for plate shelves or heavy-duty shelves, with two longitudinal sides and cross members and longitudinal members arranged between the longitudinal sides, the cross members and the longitudinal members having an I-shaped profile, the longitudinal members being inserted or pressed into punched holes of the cross members which are open towards the upper side of the press locked grating, wherein the longitudinal members and the cross members are arranged at right angles to one another, and wherein the longitudinal sides are formed in cross-section as a profile, wherein the profile comprises at least a first leg and a second leg arranged substantially at right angles to the first leg, wherein each of the cross members has a punched hole at each end, in which the first leg of the profile is arranged and is firmly connected thereto by a connecting method.
Due to possible fire hazard in warehouses, gratings placed in plate shelves or heavy-duty shelves are used for storage of goods. These gratings, as disclosed for example in DE 80 14 894 U1, have profiles on their longitudinal sides, so that they can be picked up on carrier beams or uprights of the shelves. Between the longitudinal sides of the grating there are longitudinal and transverse bars on which the goods are stored. The design of the longitudinal and transverse bars also creates open spaces through which extinguishing media (e.g. extinguishing water) from sprinkler systems, which are often located above the gratings, can pass through the open spaces of the gratings in the event of a fire. The longitudinal and transverse bars of the gratings are designed in such a way that the highest possible load-bearing capacity of the gratings is achieved and yet sufficient open spaces for the passage of water can be provided. Accordingly, the longitudinal sides and the longitudinal and transverse bars of the aforementioned gratings are made of steel materials which, in order to provide the desired stability and load-bearing capacity, are not designed as hollow bodies.
The disadvantage of the above-described gratings is that these gratings themselves have a high dead weight in order to guarantee high load-bearing capacities. Accordingly, the plate shelves and heavy-duty shelves must be constructed in such a way that they can carry not only the goods but also the gratings. These highly stressed plate shelves and heavy-duty shelves are relatively expensive to purchase. A further disadvantage is that high material costs are incurred in order to guarantee the desired load-bearing capacity.
EP 1 559 346 A1 and DE 88 08 144 U1 therefore disclose shelving gratings that have two longitudinal sides and cross members arranged between the longitudinal sides, whereby the longitudinal sides are designed as an open U-profile in cross-section. The open sides of the cross members are aligned with the bottom of the grating. Each of these cross members has recesses at each end, which can be detachably coupled to the longitudinal sides via support strips.
Furthermore, the company Gebr. Meiser GmbH offers U-Profile shelving gratings, which have two longitudinal sides and cross members arranged between the longitudinal sides, whereby the longitudinal sides are designed as a profile in cross-section, whereby the profile comprises at least a first leg and a second leg arranged essentially at right angles to the first leg, wherein at least two of the cross members have, in cross-section, an open profile, the open side of which is oriented towards the underside of the grating, each of these cross members having at least one punched hole at each end, wherein the first leg of the profile is arranged in each punched hole, wherein the first leg of the profile is firmly connected to the grating by means of a material-locking joining process, in particular a resistance welding process.
However, the welding process used requires constant monitoring and regulation of the welding parameters in the joining process, since any change in the nature of the starting materials is reflected as a disturbance variable in the process and in the quality of the production result. In particular, the monitoring and regulation of the welding parameters in the joining process must be carried out when very thin, but also differently thick material thicknesses, as well as pre-coated materials must be joined together. If a continuous monitoring and regulation of the welding parameters in the joining process would not take place, the durability of the weld seam in use could be impaired, which could lead to the failure of the weld seam and thus to the destabilization of the shelf grid.
The invention is therefore based on the task of providing a press locked grating which is lighter and less expensive or requires less monitoring in production than the previously known state of the art, without impairing the structural stability and load-bearing capacity.
The task of the invention is solved by a press locked grating according to the preamble in that the first leg of the profile is inserted or pressed into the punched hole, whereby a first connection of the profile with the cross member is achieved, and that the first leg of the profile has at least one deformation, thus achieving a fixing of the plug-in or press connection of the cross member with the profile.
In this way an exceptionally stable press locked grating can be produced quickly and economically.
Since several of these gratings are arranged as shelves in panel shelves or heavy-duty shelves, a reduction in the weight of the gratings can reduce the cost of the shelf construction, since these, while maintaining the same stability, have to carry less load, thus reducing the material costs (to achieve this stability) for the shelves.
As the leg of the profile is inserted or pressed into the punching of the cross member, a fixation of the profile with the cross member is achieved. A protection against a displacement of the components (profile and cross member) against each other, is achieved by a further connection method, namely a form-fitting and/or force-locking connection method, in the course of which the deformation takes place.
A preferred embodiment of the invention provides that the profile is designed as a Z-profile, a L-profile or a polygonal profile, the Z-profile comprising a second leg arranged substantially parallel to the first leg connecting part connecting the first and second legs, the L-profile comprises a first leg and a second leg arranged substantially perpendicular to the first leg, and the polygonal profile comprises a second leg arranged substantially parallel to the first leg, a connecting part connecting the first and second legs, and a third leg arranged substantially parallel to the connecting part, the third leg being connected to the free end of the second leg.
A further embodiment of the invention is that the first leg of the profile has at least two deformations, the two deformations being arranged on both sides in each case in the proximity of or directly adjacent to the plug-in or press connection, so that the plug-in or press connection of the cross member to the profile is fixed horizontally on both sides.
It is advantageous that the deformation or deformations are located in the immediate proximity or directly next to the plug-in or press connection of the cross member with the profile. It is also advantageous that at least two deformations in the profile are arranged on both sides near or directly next to the plug-in or press connection, so that the plug-in or press connection of the cross member with the profile is fixed on both sides.
It is proposed that the at least one deformation be an embossing. An embossing is a deformation introduced into the leg using pressure, deep drawing or embossing tools.
It is part of the invention that the press locked grating (1) consists of steel, preferably pre-galvanized steel, stainless steel or aluminum.
It can be advantageous that the grating is made of steel, whereby the steel is a pre-galvanized steel.
A further embodiment of the invention provides advantageously that the surfaces of the longitudinal sides and the cross members are coated with a coating material, the coating material protecting the surfaces from corrosion and/or having a fire-repellent effect.
It is within the scope of the invention that the ratio of the bearing load of the press locked grating to the dead weight of the press locked grating is in the range of 10 to 200.
This means that the grating according to the invention has a load-bearing capacity that is 10 to 200 times its dead weight.
Furthermore, it is preferred that at least 70% of the area covered by the press locked grating is a free projection area.
This design is particularly advantageous in order to minimize the shadowing effect of the grating (which consists of cross members and longitudinal sides) in the event of a fire, so that extinguishing media from sprinkler systems can pass through the free projection surfaces (passage surfaces) of the grating.
It is advantageous that at least one of the punched holes at the respective end of a cross member has an inlet contour with at least one baffle, thus enabling a centered insertion and a force- and/or form-fit connection of the first leg of the profile with the cross member.
In this embodiment of the invention, it is advantageous that the at least one punched hole at the respective end of the cross member is wedge-shaped.
In the following, examples of the invention are explained in more detail, but not limited to drawings. They show the following:
In
For further features not shown in the figures, reference is made to the general part of the description.
Finally, it should be noted that the teachings of the invention are not limited to the embodiments discussed above. Rather, the most diverse designs of the longitudinal sides and the cross members, different numbers, different profiles as well as shapes of the cross members are possible.
Number | Date | Country | Kind |
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20 2018 103 893.1 | Jul 2018 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/DE2019/100420 | 5/9/2019 | WO | 00 |