Structure for roller shutter and its roller shutter

The roller shutter structure with intermediate mounting plates and end supports enables safe and convenient assembly and maintenance by separating the motor attachment from the installation phase, addressing frame damage and alignment issues in existing systems.

FR3159983B3Active Publication Date: 2026-04-03PRODUCCIONES MITJAVILA
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing roller shutter systems require complete removal of the mount/motor assembly from the frame for decoupling, which can damage the frame and lead to misalignment during reinstallation.

Method used

A structure for roller shutters with intermediate mounting plates and end supports that allow for a two-phase assembly, where the motor is attached to the mounting plates outside the installation area and subsequently fitted between brackets, using a locking mechanism that avoids drilling into the end support.

Benefits of technology

Facilitates safe and convenient initial assembly and subsequent repairs or replacements without damaging the frame, ensuring precise alignment and reducing complexity in difficult-to-access locations.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 00000008_0000
    Figure 00000008_0000
  • Figure 00000009_0000
    Figure 00000009_0000
  • Figure 00000009_0001
    Figure 00000009_0001
Patent Text Reader

Abstract

Structure (S) for a roller shutter, comprising a tubular motor, end supports (1) of the tubular motor intended to be fixed to a window frame or a wall, characterized in that it comprises intermediate mounting plates (2) for mounting the tubular motor having bearing edges, the end supports (1) having on one of their faces, referred to as the inner face, projections which form positioning stops, in an operational configuration, of the intermediate mounting plates (2) relative to the end supports (1) in cooperation with the bearing edges, the system being provided with locking means (3) of the intermediate mounting plates (2) relative to the end supports (1) in the operational configuration. Figure 1
Need to check novelty before this filing date? Find Prior Art

Description

Title of the invention: Structure for a roller shutter and its roller shutter. TECHNICAL FIELD OF THE INVENTION

[0001] The invention relates to the field of roller shutter structures, and more particularly to structures designed to be mounted in a window frame and which facilitate initial installation, as well as subsequent actions such as repairs, readjustments, or component replacement. The invention also relates to a window shutter equipped with the structure. BACKGROUND OF THE INVENTION

[0002] Structures for roller shutters comprising a tubular motor and end supports for the tubular motor intended to be fixed to a window frame or a wall are well known.

[0003] The end supports can be simple substantially flat plates, L-shaped pieces, allowing them to be mounted at an angle, or three plates perpendicular to each other allowing them to be placed in corners.

[0004] One of the problems with these systems is that decoupling the motor from the mounts must be done by removing the entire mount / motor assembly from the frame, which can damage the frame itself. Due to the frame damage, it can also mean that, when reinstalling the mounts, the new assembly will not be aligned as it was the first time. DESCRIPTION OF THE INVENTION

[0005] In order to overcome the shortcomings of the prior art, the present invention proposes a structure for a roller shutter, comprising a tubular motor, end supports for the tubular motor intended to be fixed to a window frame or to a wall, the structure comprising intermediate mounting plates for mounting the tubular motor, the mounting plates being provided with bearing edges, the end supports being provided on one of their faces, called the inner face, with projections forming positioning stops, in an operational configuration, of the intermediate mounting plates relative to the end supports in cooperation with the bearing edges, the system being provided with means for locking the intermediate mounting plates relative to the end supports in the operational configuration.

[0006] This structure allows for both safe and convenient initial assembly and safe and convenient subsequent repairs. The combination of the end supports and mounting plates allows for two-phase assembly: a first assembly phase The motor is attached to the mounting plates, for example, using screws, and a second step involves fitting the resulting assembly between the brackets and subsequently locking it in place. Thus, the first step, which is more complex because it may involve screws, is carried out outside the area of ​​use. This makes it more convenient. The second fitting step is also very convenient, as only one sliding operation between the brackets is required. In particular, thanks to the invention, it is not necessary to perform complicated assembly tasks in a more difficult-to-access location, such as the top of a frame or window. Furthermore, if a replacement or overhaul is necessary, these steps are also very convenient. Of course, the invention requires appropriately sized components, meaning that the distance between the end brackets corresponds to the distance (on the outer sides) of the mounting plates.

[0007] In certain embodiments, the bearing edges and projections define an insertion direction of the intermediate mounting plates relative to the end supports, and the locking means consist of a guide groove in the respective intermediate mounting plate, a stop projection on the inner face of the respective end support, and a sliding piece through the guide groove that can be moved between:

[0008] - an unlocked position in which it is fully inserted into the guide groove in which the intermediate mounting plate can slide relative to the respective end support; and

[0009] - a locking position in which, in the operational configuration, it protrudes from the guide groove and rests on the stop projection.

[0010] This is a simple embodiment of the invention, since it only requires machining the plate and providing a sliding part. Furthermore, it is not necessary to drill holes in the end support, as the retaining projection is sufficient. Other locking mechanisms could be devised, for example, a pin whose direction is perpendicular to the plate and which cooperates with a hole in the support, or a screw.

[0011] In addition, the same end support can be used with several models of mounting plates.

[0012] In some embodiments, the intermediate mounting plates are provided with mounting holes for the tubular motor.

[0013] In some embodiments, the intermediate mounting plates are defined by an axial center coinciding with the motor axis, the center being provided with a shaft mounting hole or a protruding shaft.

[0014] In some embodiments, the mounting holes of the tubular motor are arranged in a ring with respect to the center.

[0015] In some embodiments, the mounting holes of the tubular motor are arranged angularly and are NOT equidistant, so that the initial angle of the motor can be adjusted.

[0016] In some embodiments, the guide groove includes notches and the sliding part includes projections, or vice versa, to cooperate with the notches, so as to define stable positions of the sliding part in the guide groove.

[0017] In some embodiments, the sliding part is U-shaped, so that two elastic tabs are defined to allow its deformation for insertion into the guide groove.

[0018] In some embodiments, the sliding part has a transverse projection intended to allow the user to operate it.

[0019] Finally, the intermediate mounting plates are symmetrical with respect to their main plane.

[0020] The invention also relates to a window shutter comprising a structure according to any one of its variants and two lateral profiles mounted to end supports. Brief description of the drawings

[0021] To complete the description and allow for a better understanding of the invention, a set of drawings is provided. These drawings form an integral part of the description and illustrate embodiments of the invention, which should not be interpreted as a restriction of the scope of the invention, but simply as an example of implementation of the invention. The drawings include the following figures:

[0022] [Fig. 1] shows an elevation view of one side of the structure, more precisely of the mounting plate locked to the side support.

[0023] [Fig.2] is analogous to [Fig.1], but with a different implementation of the mounting plate.

[0024] [Fig.3] shows the mounting plate-sliding part assembly with an axis of motor, and with the sliding part in a locking configuration.

[0025] [Fig.4] is analogous to [Fig.3], but without the axis and in an unlocked configuration, that is, with the part completely engaged in the groove.

[0026] [Fig. 5] is a bottom view of one side of the structure according to the invention, where one can see the motor and the T-shaped winding tube.

[0027] [Fig.6] shows one of the two positions between which the sliding part moves.

[0028] [Fig.7] shows the other of the two positions between which the sliding part move.

[0029] [Fig-8] shows the sliding part / mounting plate assembly, but with the components separated so that the rib / channel based guidance system is visible.

[0030] [Fig.9] is analogous to figures 1 and 2, but is shown with the motor, tube and part of the curtain / shutter rolled up and the end lowered towards the lower lateral guides of the shutter. DESCRIPTION OF PREFERRED METHODS OF IMPLEMENTATION

[0031] As illustrated in [Fig.5], the invention relates to a structure S for a roller shutter P, comprising a tubular motor M and end supports 1 of the tubular motor M intended to be mounted to a window frame or a wall.

[0032] According to the invention, the structure includes intermediate mounting plates 2 for mounting the tubular motor M. These mounting plates are mounted to the motor before mounting the assembly to the frame.

[0033] These intermediate mounting plates 2 are provided with bearing edges 22, 23, 24. In addition, the end supports 1 are provided on one of their faces 11, called the inner face 11 (because it is oriented towards the motor), with projections 12, 13, 14 which form positioning stops, in an operational configuration, for the intermediate mounting plates 2 relative to the end supports 1.

[0034] This configuration is achieved by the cooperation of the projections 12, 13, 14 with the support edges 22, 23, 24 which, once in contact, allow, as illustrated for example in Figures 1, 2 or 3, the plate / motor assembly to be mounted in place. All that remains is to assemble the structure; for this purpose, locking means 3 for the intermediate mounting plates 2 are provided with respect to the end supports 1 in this operational configuration.

[0035] As can be seen for example in [Fig.6], the bearing edges 22, 23, 24 and the projections 12, 13, 14 define an insertion direction X of the intermediate mounting plates 2 with respect to the end supports 1.

[0036] In the embodiment illustrated in the figures, the locking means 3 consist of a guide groove 25 in the respective intermediate mounting plate 2, a stop projection 15 on the inner face 11 of the respective end support 1 and a sliding part 4 through the guide groove 25 which can be moved between:

[0037] - an unlocked position in which it is fully inserted into the guide groove 25 and in which the intermediate mounting plate 2 can slide relative to the respective end support 1, as illustrated in [Fig. 6]; and

[0038] - a locking position, illustrated in [Fig. 7], in which, in the In its operational configuration, it protrudes from the guide groove 25 and rests on the stop projection 15.

[0039] In the illustrated embodiments, the intermediate mounting plates 2 are provided with holes 21 for mounting the tubular motor M, arranged in a ring with respect to the center 2C and, preferably, arranged angularly in a NON-equidistant manner so as to define different non-multiple positioning angles.

[0040] An axial center coinciding with the axis of the motor M is defined in the intermediate mounting plates 2, the center 2C being provided with a mounting hole for the shaft or a protruding shaft A, as illustrated in [Fig.3].

[0041] In the embodiment of the locking means illustrated in the figures, the guide groove 25 includes notches 25m, and the sliding part 4 includes projections 4r, as illustrated in [Fig.8], to cooperate with the notches, so as to define stable positions of the sliding part 4 in the guide groove 25. It can also be seen that the sliding part 4 is U-shaped, so as to define two elastic tabs which allow its deformation for insertion into the guide groove 25.

[0042] To facilitate the actuation of the part by the installer, the sliding part 4 is provided with a transverse projection 4t, as illustrated for example in [Fig.8].

[0043] The intermediate mounting plates 2 are symmetrical in their principal plane, so that a single reference is sufficient for mounting on both sides.

[0044] In the present, the term "includes" and its derivatives (such as "includes", etc.) shall not be understood as exclusive, that is to say, these terms shall not be interpreted as excluding the possibility that what is described and defined may include other elements.

[0045] Of course, the invention is not limited to the specific embodiments described here, but also covers any variant which can be considered by any person skilled in the art as falling within the general scope of the invention as defined in the claims.

Claims

Demands

1. Structure (S) for roller shutter (P), comprising a tubular motor (M), end supports (1) of the tubular motor (M) intended to be fixed to a window frame (V) or to a wall, characterized in that it comprises intermediate mounting plates (2) for mounting the tubular motor (M) provided with bearing edges (22, 23, 24), the end supports (1) being provided on one of their faces (11), referred to as the inner face (11), with projections (12, 13, 14) which form positioning stops, in an operational configuration, of the intermediate mounting plates (2) relative to the end supports (1) in cooperation with the bearing edges (22, 23, 24), the system being provided with locking means (3) of the intermediate mounting plates (2) relative to the end supports (1) in the operational configuration.

2. Structure (S) according to claim 1, wherein the bearing edges (22, 23, 24) and the projections (12, 13, 14) define an insertion direction (X) of the intermediate mounting plates (2) relative to the end supports (1) and wherein the locking means (3) consist of a guide groove (25) in the respective intermediate mounting plate (2), a stop projection (15) on the inner face (11) of the respective end support (1) and a sliding piece (4) through the guide groove (25) which can be moved between: - an unlocked position in which it is completely inserted in the guide groove (25) and in which the intermediate mounting plate (2) can slide relative to the respective end support (1); and - a locking position in which, in operational configuration, it protrudes from the guide groove (25) and rests against the stop projection (15).

3. Structure (S) according to any one of the preceding claims, wherein the intermediate mounting plates (2) are provided with holes (21) for mounting the tubular motor (M).

4. Structure (S) according to claim 3, wherein an axial center coinciding with the motor axis (M) is defined in the intermediate mounting plates (2), the center (2C) being provided with a shaft mounting hole or a protruding shaft (A).

5. Structure (S) according to claim 4, wherein the mounting holes (21) for the tubular motor (M) are arranged in a ring with respect to the center (2C).

6. Structure (S) according to claim 5, wherein the mounting holes (21) for the motor tube (M) are arranged angularly and are NOT equidistant.

7. Structure (S) according to claim 2, wherein the guide groove (25) comprises notches (25m) and the sliding part (4) comprises projections (4r), or vice versa, to cooperate with the notches, so that stable positions of the sliding part (4) in the guide groove (25) are defined.

8. Structure (S) according to claim 7 in which the sliding part (4) is U-shaped, so as to define two elastic tabs which allow its deformation for insertion into the guide groove (25).

9. Structure (S) according to claim 7 or 8, wherein the sliding part (4) has a transverse projection (4t) intended to allow its actuation by a user.

10. Structure (S) according to any one of the preceding claims wherein the intermediate mounting plates (2) are symmetrical with respect to their principal plane.