专利摘要:
Support structure for sliding rail that uses one or more identical modules, stacked longitudinally and supported on the spars of the conventional compact palletizing installation, on which the rails for the sliding rail chains are subsequently mounted, each one comprising these modules in turn a quadrangular mesh, supported on several ribs, which can be fixed or telescopic, and which has in its upper part some supporting rods of the rails for the chain. The present invention provides the main advantage of allowing to use and adapt any existing structure of compact palletization "drive-in" for operation with "flow-rail" or similar, avoiding the need for tailor-made adaptations, also achieving greater rigidity, a better internal fit, a greater resistance to deformation, and a smoother operation of the sliding rail. (Machine-translation by Google Translate, not legally binding)
公开号:ES2563904A1
申请号:ES201531595
申请日:2015-11-05
公开日:2016-03-16
发明作者:Juan Carlos BARO PUJOL
申请人:Exp Barna 2000 S A;Export Barna 2000 SA;
IPC主号:
专利说明:

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DESCRIPTION
Support structure for sliding rail
The present specification refers, as its title indicates, to a support structure for sliding rail, of the type known as "flow-rail" or the like, which allows its installation in conventional compact palletizing installations, for storage of pallets, containers or boxes, also known as “drive-in” installations, and using modules stacked longitudinally and supported on the stringers of the conventional compact palletizing installation, on which the rails for rail chains are subsequently mounted Sliding.
Field of the Invention
The invention relates to the field of mounting accessories for "flow-rail" installations with displacement rails for pallets, containers or boxes used in storage facilities and / or distribution of compact or "drive-in" palletizing type.
Background of the invention
At present, the storage and / or distribution facilities for pallets, containers or boxes of type of compact or “drive-in” palletizing, constituted by a spatial structure of stringers and crossbars on which the pallets are supported, are widely known , containers or boxes. We find multiple examples of these structures, among which we can cite patents ES2176831 "Storage rack, especially for the storage of loaded pallets", ES2133792 "Port installation", ES2186964 "Storage shelf for pallets or for loose packages of merchandise with standardized support surface ", ES2150799" Storage shelf for the storage of loaded pallets "or ES2199730" Pallet storage system ".
These facilities need for the placement and removal of the pallets of the use of machinery, and their use of the space is problematic because access to the elements stored at the bottom of the structure requires free lateral access aisles for said machinery, with the consequent waste of storage space.
This problem has been attempted to palliate with installations in which said lateral spaces are not required for machinery, using sliding on rollers or sliding chains, which is known as flow-rail installations. We can find multiple examples of this type of installation, with rollers in patents US4168780A "Flow rail rack" or US4541518A "Material flow rail", or by means of displacement chains in patents CH697968 "Binario di supporto e guida per palette e contenitori" or ES2051680 “Platform support rails as well as an introduction platform with platform support rails and transport tracks,” which use flat-type travel chains for the elements, which on the one hand improve and soften their movement, and on the other promote deep sequential storage, with better use of storage space.
However, even these latest solutions present the problem that they require a specifically built storage facility, which does not make them compatible with conventional “drive-in” installations, requiring the previous dismantling of these, with the enormous economic and economic cost. loss of investment that implies.
Description of the invention
In order to solve the problem currently existing in the adaptation of conventional "palletizing" drive-in installations for operation with flow-rail rails or similar, the support structure for the sliding rail object of the present invention, which uses one or several equal modules, longitudinally stacked which in turn each comprise a quadrangular mesh and shaped as a plurality of rods arranged perpendicularly and welded together forming a joint assembly, supported on several ribs, which has in its upper part some support rods of the rails on which a chain will subsequently slide, said rods being arranged perpendicularly to the ribs, and distributed in pairs.
The support rods of the rails are of a larger diameter than the support and union rods that make up the mesh.
The ribs can be of fixed length or telescopic of adjustable length.
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The ribs of fixed length are formed as a single piece, comprising a central element of length remarkably greater than the rest of the dimensions, terminated at both ends by flat terminations, said flat terminations being provided with several emerging protuberances and one or more perforations. , intended to remove dirt.
The central element, of the fixed ribs, is formed by a flat plate formed as an open profile on its upper part and more specifically by a flat plate formed as an open profile with section selected from the group formed by: U, V, semicircular, conformed with two parallel sections to each other and two U-sections, conformed with two parallel sections to each other and two V-sections, or conformed with two parallel sections with each other and a semicircular section.
The telescopic ribs comprise a central body and two terminations provided with longitudinal displacement with respect to said central body, said central body being formed by a flat sheet formed as an open profile on its upper part, more specifically formed by a flat shaped sheet as an open profile with section selected from the group consisting of: U, V, semicircular, consisting of two parallel sections with each other and two U sections, consisting of two parallel sections with each other and two V sections, or formed with two parallel sections with each other and a semicircular section.
The endings of the telescopic ribs are shaped as a single piece with a flat part and a section part coinciding with the section of the central body, partially inserted into said central body, and related to it by at least two flanges folded on the walls lateral of the central body.
In addition, the terminations of the telescopic ribs are provided with several flat protrusions and one or more perforations, designed to remove dirt.
The telescopic ribs are arranged in such a way under the mesh, that one of the support rods that make it up serves as an external travel stop, and another internal travel stop for the flanges, and therefore for the terminations in its movement with Regarding the central body.
It is interesting to highlight the use of the sliding rail support structure, described in the previous paragraphs, for the storage, movement or handling of containers, pallets, boxes or the like.
Advantages of the invention
This support structure for sliding rail that is presented provides multiple advantages over the devices currently available, being the most important that allows to use and adapt any existing “drive-in” compact palletizing structure for operation with “flow slide rails. - rail ”or similar, allowing its modernization and improvement.
Another important advantage is that the assembly uses the existing “drive-in” compact palletizing structure, not requiring its disassembly, with the consequent use of the economic investment previously made for storage.
Another advantage of the present invention is that it makes it possible to combine parts of the conventional storage structure of "drive-in" compact palletizing with storage parts with "flow-rail" sliding rails.
Another of the most important advantages to highlight is that the use of telescopic ribs allows its adaptation to a wide range of drive-in structures, of different brands and sizes, avoiding the need for custom adaptations.
Also another added advantage is that the use of telescopic ribs favors a better adaptation to the interior of the vane beams.
We must also emphasize that the structure of the telescopic ribs allows greater rigidity, which leads to a better interior fit, giving the mesh greater resistance to deformation.
Another noteworthy aspect is that, as a consequence of the above, a lower inclination of the rail is achieved, and therefore, less friction of the sides of the chain, which results in a smoother operation of the sliding rail, which prevents subsequent wear or malfunction problems.
Finally, it should be noted that the simplicity and modularity of this adaptation creates a faster and easier assembly, which results in a reduction in the economic cost of the adaptation.
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Description of the figures
To better understand the object of the present invention, a preferred practical embodiment of a support structure for sliding rail has been shown in the attached drawing.
In said plane Figure -1- shows a plan and profile view of the support structure for sliding rail.
Figure -2- shows a perspective view of the support structure for sliding rail.
Figure -3- shows a profile, plan and perspective view of a fixed-length rib,
Figure -4- shows a perspective view of a telescopic rib.
Figure -5- shows in section a construction detail of a telescopic rib.
Figure -6- shows a perspective view, plan and section, of the central body of a telescopic rib,
Figure -7- shows a view in front elevation, rear elevation, plan, profile and perspective of a terminal element of a telescopic rib.
Figure -8- shows a side view of the mesh and telescopic rib assembly, with enlarged details of both ends.
Figure -9- shows an elevation, plan and profile view of the mesh.
Figure -10- shows a perspective view, with a constructive detail of the expanded mesh
Figure -11- shows a sectional view of a detail of the hook of the rail for the chain on the support rods of the mesh.
Figure -12- shows a sectional view of a detail of the hook of the rail for the chain, together with the chain itself, on the support rods of the mesh.
Preferred Embodiment of the Invention
The constitution and features of the invention may be better understood with the following description made with reference to the attached figures.
As can be seen in Figure 1, the support structure for sliding rail is shown by pointing to a mesh (1), with a quadrangular format, supported on several ribs (2), which has support rods (3 at its top) ) of the rails (15) on which a chain (16) subsequently slides, said rods (3) being arranged perpendicularly to the ribs, and distributed in pairs.
The ribs (2) are of fixed length (2a) or telescopic (2b), of adjustable length, for a better adaptation to any type of conventional compact palletizing installation,
Figure 2 shows the support structure for the sliding rail in perspective, marking the mesh (1), with a quadrangular format, supported on several ribs (2), which has support rods (3) ) of the rails (15) on which a chain (16) subsequently slides, said rods (3) being arranged perpendicularly to the ribs, and distributed in pairs.
In figure 3, the ribs of fixed length (2a), formed as a single piece, comprising a central element (4) of length significantly greater than the rest of the dimensions, terminated at both ends by flat terminations (5) are shown. . These flat terminations (5) are in turn provided with several emerging protuberances (6) and one or more perforations (7).
The central element (4) is formed by a flat sheet formed as an open profile at its top. This open profile preferably adopts a section selected from the group consisting of: U, V, semicircular, formed by two parallel sections with each other and two U sections, formed by two parallel sections with each other and two V sections, or formed with two parallel sections with each other and a semicircular section.
In figures 4 to 7, the telescopic ribs (2b) are shown, indicating a central body (8) and two terminations (9) provided with longitudinal displacement with respect to said central body (8).
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The endings (9) of the telescopic ribs (2b) are shown as a single piece with a flat part and a section part coinciding with the section of the central body (8), partially inserted into said central body (8). , and related to it by at least two flanges (10) folded over the side walls of the central body (8). The terminations (9) are also provided in their flat part with several emerging protuberances (11) and one or more perforations (12).
It shows the central body (8) of the telescopic ribs (2b) is formed by a flat sheet formed as an open profile at the top. This open profile preferably adopts a section selected from the group consisting of: U, V, semicircular, formed by two parallel sections with each other and two U sections, formed by two parallel sections with each other and two V sections, or formed with two parallel sections with each other and a semicircular section.
Figure 8 shows the telescopic ribs (2b) arranged in such a way under the mesh (1), that one of the support rods that comprise it serves as an external travel stop (13), and another one with an internal stop of displacement (14) for the flanges (10), and therefore for the terminations (9) in their displacement with respect to the central body (8).
In figures 9 and 10, the mesh (1) is shown formed as a plurality of rods, support and joint ones, arranged perpendicularly to the previous ones, welded together forming a joint assembly. The support rods (3) of the rails (15) are preferably larger in diameter than the support and joint rods that make up the mesh (1).
In figure 11, the rail hitch (15) for the chain (16) coupled on the support rods (3) of the mesh (1) is shown.
In figure 12, a detail of the rail hitch (15) for the chain (16), together with the chain itself (16), is shown on the support rods (3) of the mesh (1).
The person skilled in the art will easily understand that he can combine characteristics of different embodiments with characteristics of other possible embodiments provided that such combination is technically possible.
权利要求:
Claims (1)
[1]
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1 - Support structure for sliding rail, characterized in that it comprises one or several identical modules, stacked lengthwise, which in turn each comprise a mesh (1) with a quadrangular format and formed as a plurality of rods arranged perpendicularly and welded between if forming a solidarity assembly, supported on several ribs (2), which has in its upper part some support rods (3) of the rails (15) on which the chain (16) will subsequently slide, said rods ( 3) arranged perpendicular to the ribs, and distributed in pairs.
2 - Support structure for sliding rail, according to claim 1, characterized in that the support rods (3) of the rails (15) are larger in diameter than the support and joint rods that make up the mesh (1).
3 - Support structure for sliding rail, according to the preceding claims, characterized in that the ribs (2) are of the type selected from
- fixed length (2nd)
- telescopes (2b), of adjustable length.
4- Support structure for sliding rail, according to the preceding claims, characterized in that the telescopic ribs (2b) comprise a central body (8) and two terminations (9) provided with longitudinal displacement with respect to said central body (8) .
5 - Support structure for sliding rail, according to the preceding claims, characterized in that the central body (8) is formed by a flat sheet formed as an open profile for its upper part.
6 - Support structure for sliding rail, according to the preceding claims, characterized in that the central body (8) is formed by a flat sheet formed as an open profile with section selected from the group consisting of: U, V, semicircular , conformed with two parallel sections with each other and two U-sections, conformed with two parallel sections with each other and two V-sections, or formed with two parallel sections with each other and a semicircular section.
7 - Support structure for sliding rail, according to the preceding claims, characterized in that the terminations (9) are formed as a single piece with a flat part and a section part coinciding with the section of the central body (8), partially inserted into said central body (8), and related to it by means of at least two flanges (10) folded on the side walls of the central body (8).
8 - Support structure for sliding rail, according to the preceding claims, characterized in that the terminations (9) are provided in their flat part with several emerging protuberances (11) and one or more perforations (12).
9 - Support structure for sliding rail, according to the preceding claims, characterized in that the telescopic ribs (2b) are arranged in such a way under the mesh (1), that one of the support rods that form it serves as an external stop of displacement (13), and another of internal displacement stop (14) for the flanges (10), and therefore for the terminations (9) in their displacement with respect to the central body (8).
10 - Support structure for sliding rail, according to claims 1 to 3, characterized in that the ribs of fixed length (2a) are formed as a single piece, comprising a central element (4) of length significantly greater than the rest of the dimensions, finished at both ends by flat endings (5).
11 - Support structure for sliding rail, according to claims 1 to 3 and 10, characterized in that the flat terminations (5) are provided with several emerging protuberances (6) and one or more perforations (7).
12 - Support structure for sliding rail, according to claims 1 to 3 and 10 to 11, characterized in that the central element (4) is formed by a flat sheet formed as an open profile on its upper part.
13 - Support structure for sliding rail, according to claims 1 to 3 and 10 to 12, characterized in that the central element (4) is formed by a flat sheet formed as an open profile with section selected from the group consisting of: in U, in V, semicircular, conformed with two parallel sections to each other and
two sections in U, conformed with two parallel sections to each other and two sections in V, or conformed with two parallel sections to each other and a semicircular section.
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同族专利:
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EP3372531A1|2018-09-12|
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法律状态:
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优先权:
申请号 | 申请日 | 专利标题
ES201531595A|ES2563904B2|2015-11-05|2015-11-05|Support structure for sliding rail|ES201531595A| ES2563904B2|2015-11-05|2015-11-05|Support structure for sliding rail|
PCT/ES2016/070773| WO2017077155A1|2015-11-05|2016-11-02|Supporting structure for a sliding rail|
EP16861652.2A| EP3372531A4|2015-11-05|2016-11-02|Supporting structure for a sliding rail|
US15/769,569| US11053072B2|2015-11-05|2016-11-02|Supporting structure for a sliding rail|
CA3003792A| CA3003792A1|2015-11-05|2016-11-02|Supporting structure for sliding rail|
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