Sealing sleeve, tubular joint assembly, modular integrated construction assembly and corresponding manufacturing process

The sealing sleeve with a socket and plain ring configuration addresses the challenge of watertight connections in modular construction by accommodating angular and radial offsets, providing a reliable, overpressure-resistant seal for wastewater or rainwater drainage systems.

FR3166950A1Pending Publication Date: 2026-04-03SAINT GOBAIN PAM SA
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing technologies face challenges in establishing a watertight connection between a push-fit end and a plain end, particularly in the context of modular integrated construction, where manufacturing and assembly tolerances can lead to radial and angular offsets, compromising the integrity of wastewater or rainwater evacuation systems.

Method used

A sealing sleeve with a base body comprising a socket ring and a plain ring, allowing for a coaxial or offset configuration, and a connecting portion that accommodates up to 3° or 1°45' angular offset, along with fastening elements to ensure a watertight connection, even under overpressure, using materials like EPDM with a Shore A hardness of 40-80.

Benefits of technology

The sealing sleeve provides a reliable, watertight connection capable of withstanding overpressures of at least 0.3 bar, accommodating manufacturing and assembly tolerances, and reducing noise and wear through its design and materials, ensuring effective wastewater or rainwater drainage.

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Abstract

Sealing sleeve, tubular joining assembly, modular integrated construction assembly, and corresponding manufacturing method. The present invention relates to a sealing sleeve (44) for tubular joining of a socket end and a plain end. The sealing sleeve comprises a base body (46) provided with a socket ring (48) adapted to bear against an outer surface of the socket end, a plain ring (50) adapted to bear against an outer surface (34) of the plain end, and a closed connecting portion (52) linking the socket ring to the plain ring. The sealing sleeve (44) defines a resting configuration in which the plain ring (50) extends coaxially with respect to the socket ring (48). The sealing sleeve (44) defines an offset configuration in which the plain ring (50) is radially offset relative to the socket ring (48).Application to modular integrated construction assemblies. Figure for the abstract: 1.
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Description

Title of the invention: Sealing sleeve, tubular joint assembly, modular integrated construction assembly and corresponding manufacturing method

[0001] The present invention relates to a sealing sleeve for tubular junction of a socket end and a plain end, the sealing sleeve comprising a base body which is provided with a socket ring adapted to apply to an outer surface of the socket end, a plain ring adapted to apply to an outer surface of the plain end, and a closed connecting portion linking the socket ring to the plain ring.

[0002] Devices suitable for sealing tubular elements are known. For example, one such device is known from US 6,394,505, which discloses a suitable connection for linking a toilet outlet to a drain pipe. A device for connecting a small-diameter drain pipe to a large-diameter drain stack is known from FR 1503,921.

[0003] A rapid building construction technology called "modular integrated construction" (MiC) is also known (see, for example: https: / / mic.cic.hk / en / AboutMiC). This technology involves prefabricating building modules off-site and assembling them on-site to form the building.

[0004] The invention aims to economically enable the establishment of a watertight connection between a push-fit end and a plain end, particularly for the evacuation of wastewater or rainwater in buildings and especially in the context of the construction of a building from building modules.

[0005] For this purpose, the invention relates to a sealing sleeve as indicated above, characterized in that the sealing sleeve defines a rest configuration, in which the plain ring extends coaxially with respect to the socket ring, and in that the sealing sleeve defines an offset configuration in which the plain ring is offset radially with respect to the socket ring.

[0006] According to particular embodiments of the sealing sleeve, it may comprise one or more of the following characteristics:

[0007] - the sealing sleeve allows a limiting offset angle between the plain ring and the interlocking ring, in particular the limiting offset angle is at most 3° or at most 1°45';

[0008] - the sealing sleeve defines a direction of insertion and the plain ring is offset of the interlocking ring in the interlocking direction;

[0009] - in the resting configuration, the connecting portion has a shape narrowing from the interlocking ring towards the plain ring and in particular a shape substantially of a truncated cone;

[0010] - the sealing sleeve comprises one or more of the following features following:

[0011] .a fitting fastening element adapted to clamp the fitting ring onto the outer surface of the fitting end, and

[0012] . a single fastening element adapted to hold or clamp the single ring onto the surface outer edge of the plain end; and

[0013] - the sealing sleeve includes a front lip adapted to apply against a plain end front surface.

[0014] The invention also relates to a tubular joining assembly, of the type comprising a first tubular element having the socket end, a second tubular element having the plain end, and a sealing sleeve adapted to connect the socket end and the plain end in a watertight manner, the socket end having an outer surface and the plain end having an outer surface, characterized in that the sealing sleeve is a sealing sleeve as defined above, in that the socket ring is adapted to apply in a watertight manner to the outer surface of the socket end, and in that the plain ring is adapted to apply in a watertight manner to the outer surface of the plain end.

[0015] According to particular embodiments of the tubular joining assembly, it may include one or more of the following characteristics: the socket end is provided with an external stop and in particular the tubular joining assembly includes a fixing ring adapted to fix the socket end and the plain end in relation to a wall of a building.

[0016] The invention also relates to a modular integrated building assembly, of the type comprising a first building module equipped with a first building module structure, and a second building module equipped with a second building module structure, characterized in that the modular integrated building assembly comprises a tubular junction set as defined above, in that the first tubular element is fixed to the first building module structure, and in that the second tubular element is fixed to the second building module structure.

[0017] According to particular embodiments of the assembly, it may comprise one or more of the following characteristics: the first building module and the second building modules are placed one on top of the other, in particular the second building module is placed on top of the first building module.

[0018] The invention also relates to a method for manufacturing a tubular joint comprising the following successive steps:

[0019] supply of a tubular joint assembly as defined above;

[0020] inserting the interlocking ring onto the interlocking end;

[0021] fixing the sealing sleeve onto the push-fit end; and

[0022] insertion of the plain end into the plain ring.

[0023] The invention will be better understood upon reading the following description, given solely by way of example and made with reference to the accompanying drawings, in which:

[0024] [Fig-1] Fig. 1 schematically shows a vertical section of part of a modular integrated construction assembly according to the invention comprising a tubular junction according to the invention;

[0025] [Fig.2] Fig.2 shows a perspective and partially torn-off view of the tubular junction of the [Fig.l];

[0026] [Fig.3] [Fig.3] shows, according to a view similar to that of [Fig.1], a variant of a part of a modular integrated construction assembly according to the invention; and

[0027] [Fig.4] The [Fig.4] shows a perspective and partially torn-off view of a tubular junction according to a variant of the invention.

[0028] Figure 1 schematically represents a portion of a modular integrated building assembly according to the invention, designated by the general reference numeral 2. The modular integrated building assembly 2 forms, for example, a residential or office building. The modular integrated building assembly 2 comprises a first building module 4 and a second building module 6.

[0029] Before the formation of the modular integrated building assembly 2, each building module 4 or 6 is adapted to be moved and handled independently of each of the other building modules. Each building module includes, also before the formation of the modular integrated building assembly, installation elements, such as pipes, or finishing elements, such as tiles. Each building module 4 or 6 is therefore, before the formation of the modular integrated building assembly 2, a sub-assembly.

[0030] The first building module 4 is equipped with a first building module structure 8 and the second building module 6 is equipped with a second building module structure 10.

[0031] Each building module structure includes, for example, at least one ceiling or floor and one or more walls. Figure 1 illustrates, by way of example, the ceiling 12 of the first building module structure 8 and the floor 14 of the second building module structure 10.

[0032] Figure 1 corresponds to a generally vertical orientation of the modular integrated building assembly 2. In the illustrated example, the first building module 4 is a lower building module and the second building module 6 is an upper building module. The first building module 4 and the second building module 6 are therefore arranged one on top of the other, in this case the second building module 6 being arranged on top of the first building module 4.

[0033] The first building module 4 comprises a first tubular element 20 which is, for example, fixed to the first structure of building module 8. Similarly, the second building module 6 comprises a second tubular element 22 which is, for example, fixed to the second structure of building module 10. Advantageously, the first tubular element 20 is fixed to the first structure of building module 8 and the second tubular element 22 is fixed to the second structure of building module 10 already before the building modules 4 and 6 are assembled together.

[0034] The first tubular element 20 is a pipe, in this case a lower pipe, and the second tubular element 22 is a pipe, in this case an upper pipe. In an alternative not shown, the first tubular element 20 and / or the second tubular element 22 may be one or more tubular fittings. The first tubular element 20 and the second tubular element 22 advantageously have the same nominal diameter DN, for example, a nominal diameter DN ranging from 10 mm to 300 mm. The first tubular element 20 may, however, have a nominal diameter DN up to 50 mm larger than that of the second tubular element 22. The first tubular element 20 and / or the second tubular element 22 is, for example, made of metal, in particular cast iron. The first tubular element 20 and the second tubular element 22 are, for example, components of a wastewater or rainwater drainage pipe.

[0035] The first tubular element 20 is provided with a socket end 24. The socket end 24 has an outer surface 26, an inner surface 28 and a front surface 30. The socket end 24 extends around a central axis XX of the socket end.

[0036] The second tubular element 22 is provided with a plain end 32. The plain end 32 has an outer surface 34, an inner surface 36 and a front surface 40. The plain end 32 extends around a central axis YY of plain end.

[0037] In the configuration illustrated in [Fig. 1], the central axis YY extends coaxially with the central axis XX. However, depending on manufacturing and assembly tolerances, the central axis YY may be radially offset from the central axis XX, up to a maximum offset distance DM. The maximum offset distance DM is, for example, 20 mm or 10 mm.

[0038] This configuration is illustrated by way of example in [Fig. 3]. In this [Fig. 3], the second building module 6 is assembled with the first building module 4 with an offset, in this case horizontal, relative to the aligned assembly of [Fig. 1]. Consequently, the first tubular element 20 and the second tubular element 22 are also offset from each other in the variant of [Fig. 3].

[0039] Furthermore, and not shown, depending on manufacturing and assembly tolerances, the central axis YY may be angularly offset relative to the central axis XX up to a maximum offset angle. This maximum offset angle varies according to the nominal diameter of the pipes and may, for example, be 3° for a nominal diameter less than or equal to 200 mm and 1°45' for larger nominal diameters.

[0040] The first tubular element 20 is arranged on the first building module structure 8 and the second tubular element 22 is arranged on the second building module structure 10 in such a way that, simultaneously with the assembly operation of the second building module 6 with the first building module 4, the plain end 32 fits into the socket end 24.

[0041] The modular integrated construction assembly 2 comprises a tubular joining assembly 42. In the assembled state, as shown in Figures 1 to 3, the tubular joining assembly 42 forms, or is, a tubular joint. This tubular joining assembly 42 comprises the first tubular element 20, the second tubular element 22, and a sealing sleeve 44. The sealing sleeve 44 is adapted to create a watertight connection between the socket end 24 and the plain end 32.

[0042] In the assembled state of the modular integrated construction assembly 2, and therefore of the tubular joint, the sealing sleeve 44 connects the socket end 24 and the plain end 32 in a watertight manner, even when the socket end 24 and the plain end 32 are radially offset from each other by the maximum offset distance DM. Furthermore, the sealing sleeve 44 connects the socket end 24 and the plain end 32 in a watertight manner even when the socket end 24 and the plain end 32 are angularly offset from each other by the maximum offset angle.

[0043] This seal is watertight under an overpressure of at least 0.3 bar or at least 0.5 bar. Alternatively, this seal is watertight under an overpressure of at least 1 bar. Preferably, particularly in the latter case, the push-fit fastener 60 or the plain fastener 62 (see below) is / are used to contribute to the pressure resistance.

[0044] The sealing sleeve 44 is a sealing sleeve for a tubular joint. The sealing sleeve 44 comprises a basic body 46. The basic body 46 is, for example, made of an elastic material having a Shore A hardness of, for example, between 40 and 80, particularly between 50 and 70, for example in elastomeric material. The base body 46 is preferably made of EPDM.

[0045] The base body 46 includes a spigot ring 48, adapted to apply to the outer surface 26 of the spigot end 24, a plain ring 50 adapted to apply to the outer surface 34 of the plain end 32, and a closed connecting portion 52 sealingly connecting the spigot ring 48 to the plain ring 50.

[0046] The interlocking ring 48 defines a central axis AA and the plain ring 50 defines a central axis BB. In the unmounted state, the central axis AA extends coaxially with the central axis XX and the central axis BB extends coaxially with the central axis YY.

[0047] The sealing sleeve 44 defines a rest configuration in which the plain ring 50 extends coaxially with respect to the socket ring 48. This rest configuration is shown in [Fig. 1]. The rest configuration is the configuration that the sealing sleeve 44 assumes when it is not subjected to an external force intended to offset the plain ring 50 with respect to the socket ring 48. This rest configuration corresponds, for example, to the unmounted state of the sealing sleeve. The sealing sleeve 44 also defines an offset configuration in which the plain ring 50 is offset radially with respect to the socket ring 48.

[0048] In the rest configuration, the connecting portion 52 has a narrowing shape from the interlocking ring 48 towards the plain ring 50. In this case, this narrowing shape is a truncated cone shape.

[0049] The sealing sleeve 44 also allows for an angular offset configuration between the central axis BB of the plain ring 50 and the central axis AA of the socket ring 48, up to a limiting offset angle for which the junction between the tubular elements is still leak-proof. The permissible limiting offset angle is the same as the aforementioned maximum offset angle and is therefore, in this case, a maximum of 3° or a maximum of 1°45' depending on the nominal diameters of the pipes. The limiting offset angle is schematically and exaggeratedly shown as the angle α between an axis (B) - (B) and the axis AA in [Fig. 1].

[0050] The sealing sleeve 44 defines a SE insertion direction. In this case, the SE insertion direction is the direction in which the plain end 32 is inserted into the socket end 24 and extends along the central axis AA and / or BB. The plain ring 50 is offset from the socket ring 48 in the SE insertion direction, therefore axially along the central axis.

[0051] In other words, the sealing sleeve 44 comprises an end receiving the socket end defined by the socket ring 48 and an end receiving the plain end defined by the plain ring 50. The socket direction SE is directed from the end receiving the socket end towards the end receiving the plain end.

[0052] In the assembled state of the sealing sleeve 44, the base body 46 extends partially inside the socket end 24 and defines an internal cavity 56 between this base body 46 and the socket end 24. The internal cavity 56 is open towards the first tubular element 20 such that when overpressure is established in the tubular element 20, the plain ring 50 is pressed against the plain end by the action of the overpressure. In this case, the internal cavity 56 is delimited by the plain ring 50 and the connecting portion 52.

[0053] The sealing sleeve 44 further includes a front lip 58 adapted to bear against the front surface 40 of the plain end. The front lip 58 is a rim projecting radially inwards from the plain ring 50. In the assembled state, the front surface 40 of the plain end bears against the front lip 58. The front lip 58 can bear against the socket end 24, in which case the front lip 58 contributes to the seal between the plain end and the socket end. The front lip 58 is also an acoustic damper, suitable for reducing or preventing the generation of vibrations or noise by contact between the first tubular element 20 and the second tubular element 22. The front lip 58 is also suitable for protecting the socket end 24 and the plain end 32 from wear or breakage potentially generated by direct contact between the socket end 24 and the plain end 32.

[0054] The sealing sleeve 44 is advantageously provided with a snap-fit ​​fixing element 60, adapted to tighten the snap-fit ​​ring 48 on the outer surface of the snap-fit ​​end 24. In this case, the snap-fit ​​fixing element 60 is a metal retaining ring ensuring contact between the base body 46 and the snap-fit ​​end 24 in the snap-fit ​​state.

[0055] The sealing sleeve 44 is advantageously provided with a plain fastening element 62, adapted to hold or tighten the plain ring 50 onto the outer surface of the plain end. In this case, the plain fastening element 62 is a metal retaining ring ensuring contact between the base body 46 and the plain end 32 in the inserted state.

[0056] The socket ring 48 is adapted to be applied in a watertight manner to the outer surface of the socket end 24. For this purpose, the socket ring 48 advantageously comprises at least one inner sealing lip. The plain ring 50 is adapted to be applied in a watertight manner to an outer surface of the plain end. For this purpose, the plain ring 50 advantageously comprises at least one inner sealing lip. The aforementioned seal is, in both cases, a seal against at least runoff water and / or an overpressure of at least 0.3 bar.

[0057] The socket end 24 comprises a socket portion 70 and a base portion 72. The socket portion 70 is substantially cylindrical and the portion of The base 72 is substantially conical, narrowing in the SE interlocking direction. The front lip 58 is adapted to apply against the portion of the base 72.

[0058] The push-fit end 24 is advantageously provided with an external stop 74, in the form of an external collar. This external stop 74 is adapted to limit the displacement of the first tubular element 20 relative to the first building module structure 8, and for example, relative to a ceiling. In this case, the external stop 74 is located on the side of the first building module structure 8 opposite the first building module 6. Alternatively, the external stop 74 is incorporated into the first building module structure 8 or into the ceiling 12. Alternatively still, the external stop 74 is located on the side of the first building module structure 8 facing the first building module 6.

[0059] The tubular joining assembly 42 also optionally includes a fixing ring 80 (see [Fig. 4]) adapted for fixing the socket end 24 and the plain end 32 to a building wall. The fixing ring 80 is, for example, positioned on the side of the first building module structure 8 facing the first building module 6, and the outer stop 74 is positioned on the same side and sandwiched between the fixing ring 80 and the ceiling 12. Alternatively, the fixing ring 80 and the outer stop 74 are positioned on the side of the first building module structure 8 opposite the first building module 6, with the outer stop sandwiched between the fixing ring 80 and the ceiling 12.

[0060] The modular integrated building assembly 2 is established as follows.

[0061] First, the first building module 4 and the second building module 6 are provided. In this state, the first tubular element 20 is fixed to the first building module structure 8 and the second tubular element 22 is fixed to the second building module structure 10.

[0062] The plain end 32 is in the non-inserted state in the insertable end 24.

[0063] The fixing member 62 is, where appropriate, placed on the plain ring 50.

[0064] The sealing sleeve 44 is fixed to the socket end by inserting the socket ring 48 onto the socket end. If necessary, the socket fastening member 60 is placed on the socket ring 48 and tightens the socket ring 48 against the socket end.

[0065] The sealing sleeve 44 is then in its resting configuration.

[0066] Next, the second building module 6 is placed on the first building module 4 according to the SE insertion direction. During this installation step, the plain end 32 is inserted in the SE insertion direction into the socket end 24. Before insertion, the plain end 32 may be in a radially offset position relative to the socket end 24. In this case, when the plain end 32 is inserted into the socket end 24, the plain ring 50 shifts radially relative to the ring The fitting process continues until the plain ring is radially aligned with the plain end 32 and therefore coaxial with it. The same applies to any angular offset of the plain end 32 relative to the fitting end 24. When the plain ring 50 is aligned with the plain end 32, the plain end 32 is inserted into the plain ring 50.

[0067] In any event, the uni fastening member 62 holds or clamps the uni ring 50 against the uni end 32. The uni fastening member 62 can be pre-stressed or clamped after installation.

[0068] In general, according to the invention, a method for manufacturing a tubular joint according to the invention comprises the following successive steps:

[0069] supply of the tubular joining assembly 42;

[0070] fitting the socket ring 48 onto the socket end 24,

[0071] fixing the sealing sleeve 44 onto the socket end 24, and

[0072] inserting the plain end 32 into the plain ring 50,

[0073] thus obtaining the tubular joint.

[0074] Alternatively, the tubular joint assembly 42, or the tubular joint, is not part of a modular integrated building assembly 2 but is used in another technical context. For example, the tubular joint assembly 42, or the tubular joint, is part of a rainwater or wastewater drainage system for a non-modular building. In this case, the building structure is established beforehand, and then the tubular joint assembly 42 is attached to the building structure, forming a tubular joint.

[0075] The preceding description contains technical features of the invention. These technical features, although presented in a technical context and possibly in combination with other technical features, can each time be used individually, without the other technical features, insofar as this is technically possible.

Claims

Demands

1. Sealing sleeve (44) for tubular joining of a socket end and a plain end, the sealing sleeve comprising a base body (46) which is provided with - a socket ring (48) adapted to apply to an outer surface (26) of the socket end, - a plain ring (50) adapted to apply to an outer surface (34) of the plain end, and - a connecting portion (52) closed and connecting the socket ring to the plain ring, characterized in that the sealing sleeve (44) defines a rest configuration, in which the plain ring (50) extends coaxially with respect to the socket ring (48), and in that the sealing sleeve (44) defines an offset configuration in which the plain ring (50) is offset radially with respect to the socket ring (48).

2. Sealing sleeve according to claim 1, wherein the sealing sleeve (44) admits a limiting offset angle between the plain ring (50) and the socket ring (48), in particular wherein the limiting offset angle is at most 3° or at most 1°45'.

3. Sealing sleeve according to claim 1 or 2, wherein the sealing sleeve (44) defines a direction of insertion (SE) and wherein the plain ring (50) is offset from the insertion ring (48) in the direction of insertion.

4. Sealing sleeve according to any one of claims 1 to 3, wherein, in the rest configuration, the connecting portion (52) has a shape narrowing from the socket ring (48) towards the plain ring (50) and in particular a substantially truncated cone shape.

5. A sealing sleeve according to any one of the preceding claims, wherein the sealing sleeve comprises one or more of the following features: - a socket fastening element (60) adapted to clamp the socket ring onto the outer surface (26) of the socket end, and - a plain fixing member (62) adapted to hold or tighten the plain ring on the outer surface (34) of the plain end.

6. Sealing sleeve according to any one of the preceding claims, wherein the sealing sleeve includes a front lip (58) adapted to apply against a front surface (40) of the plain end.

7. Tubular joining assembly (42), of the type comprising - a first tubular element (20) provided with the socket end (24), - a second tubular element (22) provided with the plain end (32), and - a sealing sleeve adapted to connect the socket end and the plain end in a watertight manner, the socket end having an outer surface (26) and the plain end having an outer surface (34), characterized in that the sealing sleeve is a sealing sleeve (44) according to any one of the preceding claims, in that the socket ring (48) is adapted to apply in a watertight manner to the outer surface (26) of the socket end, and in that the plain ring (50) is adapted to apply in a watertight manner to the outer surface (34) of the plain end.

8. Tubular joining assembly according to claim 7, wherein the socket end (24) is provided with an external stop (74) and in particular the assembly includes a fixing ring (80) adapted to fix the socket end and the plain end with respect to a wall of a building.

9. A modular integrated building assembly (2), of the type comprising - a first building module (4) equipped with a first building module structure (8), and - a second building module (6) equipped with a second building module structure (10), characterized in that the modular integrated building assembly comprises a tubular junction assembly (42) according to any one of claims 7 or 8, in that the first tubular element (20) is fixed to the first building module structure, and in that the second tubular element (22) is fixed to the second building module structure.

10. Modular integrated building assembly according to claim 9, wherein the first building module (4) and the second building module (6) are arranged one on top of the other, in particular the second building module (6) is arranged on top of the first building module (4).

11. Method of manufacturing a tubular joint comprising the following successive steps: supplying a tubular joint assembly (42) according to claim 7 or 8; inserting the socket ring (48) onto the socket end (24); fixing the sealing sleeve (44) onto the socket end; and inserting the plain end (32) into the plain ring (50).

Citation Information

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