Bogie assembly with mounting aid for attaching a lifting / sliding element
Patent Information
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2026-04-01
Smart Images

Figure EP2024069305_06032025_PF_FP_ABST
Abstract
Description
[0001] Carriage arrangement with mounting aid for attachment to a lift-and-slide element
[0002] The present invention relates to a carriage assembly according to the preamble of claim 1 for a lift-and-slide element, such as a lift-and-slide door or a lift-and-slide window. Such a generic carriage assembly is essentially known from DE 10 2020 113 741 A1.
[0003] In order to properly mount such a carriage assembly on a lifting / sliding element, precise knowledge is required as to whether the carriage assembly is in its raised position, its lowered position, or possibly in an intermediate position. This is important because the position of the carriage assembly corresponds to that of the actuating lever provided on the lifting / sliding element, which is coupled via a connecting rod arrangement to the carriage assembly and, in particular, its lifting device for raising and lowering the lifting / sliding element. Therefore, if the position of the actuating lever does not match that of the carriage assembly, the lifting / sliding element may not be able to be raised and / or lowered properly.
[0004] While the fitting arrangement described in DE 10 2020 113 741 A1 allows for a height adjustment of a lift-and-slide element within certain limits, it would generally be desirable to eliminate the need for subsequent height adjustment after the carriage assembly has been installed on a lift-and-slide element. The invention is therefore based on the object of meeting this requirement.
[0005] This object is achieved with a carriage arrangement having the features of claim 1 and in particular in that in the predefined position of the carriage arrangement between the base part and the carriage, a fixation made of a plastic material, in particular of a polymer material, is effective, which maintains the predefined position.
[0006] Even if the fixation maintains the predefined position, the base part of the carriage assembly for raising and lowering a lifting / sliding element can, in principle, be moved between its raised and lowered positions in a conventional manner. However, the fixation according to the invention ensures that a factory-predefined position of the base element relative to the carriage cannot be adjusted during assembly of the carriage assembly on a lifting / sliding element. An installer can thus be sure that the carriage assembly will still be in its factory-predefined position after being attached to a lifting / sliding element.
[0007] For example, if the predefined position is the lowered position of the base part and thus the lowered position of the lifting / sliding element, the operating lever can be moved to a position that corresponds to the lowered position of the lifting / sliding element before a drive-rod arrangement establishes a drive connection between the operating lever and the carriage assembly. Since the position of the operating lever thus corresponds correctly to the position of the carriage assembly or the lifting / sliding element from the outset, any subsequent height adjustment of the lifting / sliding element is eliminated.
[0008] Since the fixing device breaks when the carriage assembly is first moved between its raised position and its lowered position, provided that the force acting on the fixing device exceeds a predetermined force threshold, it is possible that any fragments of the fixing device become caught between the moving parts of the carriage assembly and / or fall onto the track or the adjacent floor covering.
[0009] According to the invention, it is therefore deliberately provided that the fixing is made as far as possible from a substantially elastic and relatively soft plastic material, as this ensures that actuation of the carriage arrangement cannot result in damage to its moving parts and / or to the guide rail and the adjacent floor covering, as would otherwise be the case if the fixing were made of metal. If, on the contrary, the fixing is overloaded during the initial actuation of the carriage arrangement, it can be assumed, due to the fact that it is made of a plastic material, that the fixing will break into two parts, one of which remains on the base part and the other on the carriage. This prevents an uncontrolled breakage of the fixing, in which fragments could otherwise become caught in the carriage arrangement and / or fall to the floor.Should it nevertheless occur, contrary to expectations, that despite the fixing being made of a plastic material, part of the fixing falls to the floor after the carriage assembly has been operated for the first time and / or gets caught in the carriage assembly, this will not result in damage to the carriage assembly and / or the guide rail or the adjacent floor covering, as the fixing is largely made of a substantially elastic plastic material with low hardness.
[0010] Preferred embodiments of the invention will now be discussed below. Further embodiments may also emerge from the dependent claims, the description of the figures, and the drawings themselves.
[0011] Thus, according to one embodiment, the carriage may comprise two transversely spaced-apart side walls and at least two rollers rotatably mounted on these, which, together with the base part, are located at a distance between the side walls. The fixation is effective between at least one side wall, preferably between both side walls, and the base part. In other words, the fixation connects one or both side walls to the base part to hold it in the predefined position for assembly purposes.
[0012] In order to connect a side panel to the base part by means of the fixation, a further embodiment can provide for a through-hole to be formed in one of the two side panels, which, in the predefined position, is aligned with a hole formed in the base part. In this case, the fixation can be a type of pin or tenon that extends both into the through-hole of the side panel and into the hole in the base part. The pin- or tenon-shaped fixation thus extends across the shear joint between the side panel and the base part.Therefore, if the base part is lifted from its predefined position in order to lift a connected lifting / sliding element for the first time after the carriage assembly has been installed, a shearing force is applied to the pin-like fixing. If a certain shear force threshold is exceeded, the pin-like fixing is sheared off and thus breaks in the desired manner. One sheared-off part of the fixing remains in the through-hole in the side panel, whereas the other sheared-off part of the fixing remains in the hole in the base part. The sheared-off parts cannot therefore become caught in the moving parts of the carriage assembly or even fall to the ground. And if they do, the risk of damage from the sheared-off parts is extremely low because the fixing is made of a soft, elastic plastic material.
[0013] According to a further embodiment, it can be provided that a through-hole is also formed in the other side cheek of the two side cheeks, which in the predefined position is aligned with the hole formed in the base part, wherein in this case the pin also extends into the through-hole of the other side cheek. One and the same pin therefore extends into the through-holes of the two side cheeks as well as the hole in the base part, which in this case is also designed as a through-hole. The pin therefore extends over the two shear joints between the two side cheeks and the base part. This embodiment proves to be particularly advantageous in that in this case the pin needs to be made less robust, since in this case the shear force applied to it is also halved due to the fact that the pin extends over both shear joints.Furthermore, with this embodiment, the carriage cannot become inclined relative to the base parts and possibly jammed, since the fixation between the two side cheeks and the base part is effective. This means that no off-center loading can occur, which could otherwise potentially cause the carriage to become inclined. As an alternative to the previously described embodiment, in which only a single pin is used, according to another embodiment, a through hole can also be formed in the other side cheek of the two side cheeks. In the predefined position, this through hole is aligned with a blind hole formed in the base part, which receives a further pin that extends into the through hole of the other side cheek.
[0014] According to yet another embodiment, the fixation can be an adhesive, in particular a hot-melt adhesive, by means of which the base part is glued to the carriage in the predefined position. As with the previously described embodiments, the adhesive fixation can be effective only between one or alternatively also between both side cheeks and the base part. The adhesive is located in the shear joint between the respective side cheek and the base part, so that the adhesive fixation can also be sheared off when the lifting-sliding element is lifted for the first time after it has been installed in the carriage arrangement.
[0015] In the following, the invention will now be described purely by way of example with reference to the drawings in which:
[0016] Fig. 1 is a schematic side view of an inventive
[0017] Carriage assembly in its lowered position; and
[0018] Fig. 2 shows a sectional view of the carriage assembly of Fig. 1 along section AA. The following briefly describes the fundamentally known mode of operation of a carriage assembly 10 according to the invention, by means of which a lifting-sliding element (not shown) or its leaf can be selectively raised and lowered.
[0019] Fig. 1 shows a carriage assembly, designated in its entirety by the reference numeral "10," which comprises a base part 12 fixed to the leaf and a carriage 14. The carriage 14 has two transversely spaced-apart side cheeks 16, on which two carriage rollers 18 are rotatably mounted, located in the space between the two side cheeks 16. An obliquely aligned slot 26 is formed in the base part 12, through which a pin (not visible) extends between the two side cheeks 16.
[0020] Therefore, if the carriage 14 is pulled to the right from the position shown in Fig. 1, the pin's guidance in the angled slot 26 causes the fixed base part 12 to be pushed upward. The lift-and-slide element is thus raised from its lowered position. If, however, the carriage 14 is moved back to the left, the fixed base part 12, and thus the lift-and-slide element, is lowered again.
[0021] In order to be able to move the carriage 14 in the manner described relative to the leaf-fixed base part 12, a deflection element 20 is articulated to the leaf-fixed base part 12, which is articulated on the one hand to the carriage 14 via a coupling rod 22 and on the other hand to a drive rod arrangement 24, which in turn is drive-effectively coupled to an actuating lever by means of which the drive rod arrangement 24 can be adjusted in the vertical direction. Therefore, if, for example, the drive rod arrangement 24 is pulled upwards by actuating the actuating lever, this vertical movement of the drive rod arrangement 24 is converted via the deflection element 20 into a horizontal movement of the carriage 14, which is converted in the manner described above into a vertical movement of the base part 12 through the obliquely aligned slot 26.
[0022] In order that the carriage arrangement 10 and in particular its base part 12 can be held in the lowered position shown in Fig. 1 for assembly purposes, wherein this lowered position in the embodiment shown corresponds to the predefined position of the carriage arrangement, in the embodiment shown in Fig. 2, through holes 28 are formed in both side cheeks 16, which serve to receive a peg-like pin 30 made of an elastic and soft plastic material, which extends through the respective through hole 28 into a respective blind hole 32 which is formed on both sides of the base part 12. In the lowered predefined position, the blind holes 32 of the base part 12 are therefore aligned with the through holes 28 of the side cheeks 16, so that the respective plastic pin 30 can extend through the through holes 28 into the blind holes 32.2, only one plastic pin 30 is visible, which is basically sufficient to fix the predefined carriage arrangement; however, two plastic pins 30 can also be used to fix the base part 12 to both side cheeks 16 for assembly purposes.
[0023] As an alternative to the embodiment shown in Fig. 2, it may also be provided that the base part 12 is penetrated by a through-hole which receives a plastic pin extending into the through-holes 28 of the two side cheeks 16. Alternatively, to fix the predefined position, it may also be provided that the base part 12 is glued to the two side cheeks 16 using an adhesive such as a hot melt adhesive.
[0024] After the carriage assembly 10 has been mounted in its predefined position on the underside of a lifting-sliding element and a drive-effective connection to the actuating lever of the lifting-sliding element has been established via the drive rod assembly 24, the fixation in the form of the plastic pin(s) 30 is sheared off when the actuating lever is actuated for the first time, so that the carriage assembly 10 is then ready for use to raise and lower the lifting-sliding element.
[0025] The sheared-off parts of the plastic pin(s) 30 remain in the through holes 18 formed in the two side cheeks 16 and the blind holes 32 of the base part 12. There is therefore no risk of the sheared-off parts of the plastic pins 30 getting caught between the moving parts of the carriage arrangement 10 and / or falling to the ground, and if they do, the risk of damage emanating from the sheared-off parts is low due to the fact that the pin(s) 30 are made of the same plastic material.
[0026] List of reference symbols
[0027] 10 Carriage arrangement
[0028] 12 wing-fixed base part 14 carriage
[0029] 16 side panels
[0030] 18 carriage rollers
[0031] 20 deflection element
[0032] 22 Coupling rod 24 Drive rod arrangement
[0033] 26 slot
[0034] 28 through hole
[0035] 30 pin, tenon
[0036] 32 blind hole drilling
Claims
Claims 1. A carriage assembly (10) for slidably supporting a lift-and-slide element, for example a lift-and-slide door or a lift-and-slide window, on a guide rail and for raising and lowering the same, wherein the carriage assembly (10) comprises a carriage (14) and a base part (12) which can be attached to the lift-and-slide element and is coupled to the carriage (14) and has a raised position relative to the carriage (14) and a lowered position relative to the carriage (14); characterized in that the carriage assembly (10) has a predefined position between the raised and lowered positions, including the raised and lowered positions, wherein in the predefined position a fixation made of a plastic material is effective between the base part (12) and the carriage (14), which fixation maintains the predefined position.
2. Carriage arrangement (10) according to claim 1, characterized in that the fixing is designed such that it breaks when a stress acting on it exceeds a predetermined stress threshold.
3. Carriage arrangement (10) according to claim 1 or 2, characterized in that the carriage (14) has two transversely spaced side cheeks (16) and at least two rollers rotatably mounted on these, which, together with the base part (12), are located at a distance between the side cheeks (16), wherein the fixing is effective between at least one side cheek (16) and the base part (12).
4. Carriage arrangement (10) according to claim 3, characterized in that a through hole (28) is formed in a side cheek (16) of the two side cheeks (16), which in the predefined position is aligned with a hole formed in the base part (12), wherein the fixing is a pin (30) which is located in the through hole (28) and in the hole of the base part (12).
5. Carriage arrangement (10) according to claim 4, characterized in that a through hole (28) is also formed in the other side cheek (16) of the two side cheeks (16), which in the predefined position is aligned with the hole formed in the base part (12), wherein the pin (30) is also located in the through hole (28) of the other side cheek (16).
6. Carriage arrangement (10) according to claim 4, characterized in that a through hole (28) is also formed in the other side cheek (16) of the two side cheeks (16), which in the predefined position is aligned with a blind hole (32) formed in the base part (12) and which receives a further pin (30) which extends into the through hole (28) of the other side cheek (16).
7. Carriage arrangement (10) according to one of the preceding claims, characterized in that the fixing is an adhesive, in particular a hot-melt adhesive, by means of which the base part (12) is glued to the carriage (14) in the predefined position.
8. Carriage arrangement (10) according to one of the preceding claims, characterized in that the predefined position corresponds to the lowered position.