Roller assembly
12297681 ยท 2025-05-13
Assignee
Inventors
Cpc classification
E06B7/16
FIXED CONSTRUCTIONS
International classification
E05D15/06
FIXED CONSTRUCTIONS
Abstract
Disclosed herein is a roller assembly for a sliding panel, the roller assembly including at least one roller sub-assembly having at least one roller wheel, the roller sub-assembly comprising at least one pivotal arm and a roller wheel rotatably mounted to the arm, wherein one end of the arm is configured for pivotally attachment to the support to permit the arm and roller wheel to pivot relative to the support in a vertical plane and the opposite end of the arm has resilient suspension means configured to allow resilient pivotal movement of said opposite end relative to the support when a force is applied to the roller wheel.
Claims
1. A roller assembly for a sliding panel, the roller assembly comprising: an inner member; at least one roller sub-assembly mounted on the inner member, the at least one roller sub-assembly comprising: a support attached to the inner member for mounting of the at least one roller sub-assembly to the inner member; a first roller wheel; a second roller wheel; a first pivotal arm rotatably mounting the first roller wheel to the support by a pivot point; a second pivotal arm rotatably mounting the second roller wheel to the support by the pivot point so that the second pivotal arm pivots about a horizontal axis extending through the pivot point; a first resilient suspension means; and a second resilient suspension means; wherein the first pivotal arm has a first end which is pivotally attached to the support and a second end opposite the first end, wherein the first resilient suspension means extends between the second end and the support to allow resilient pivotal movement of the second end relative to the support when a force is applied to the first roller wheel so that the first pivotal arm, the first resilient suspension means and the first roller wheel form a first suspension arrangement, wherein the second pivotal arm has a third end which is pivotally attached to the support and a fourth end opposite to the third end, wherein the second resilient suspension means extends between the fourth end and the support to allow resilient pivotal movement of the fourth end relative to the support when a force is applied to the second roller wheel so that the second pivotal arm, the second resilient suspension means and the second roller wheel form a second suspension arrangement, wherein the first roller wheel has a first axis extending through the centre of the first roller wheel and the second roller wheel has a second axis extending through the centre of the second roller wheel, and the at least one roller sub-assembly holds the first and second roller wheels in parallel alignment where the first axis of the first roller wheel is parallel to and spaced apart from the second axis of the second roller wheel.
2. The roller assembly according to claim 1, wherein the first roller wheel is rotatably mounted intermediate the first and second ends of the first pivotal arm, and the second roller wheel is rotatably mounted intermediate the third and fourth ends of the second pivotal arm.
3. The roller assembly according to claim 1, further comprising an outer housing.
4. The roller assembly according to claim 3, wherein the roller sub-assembly is one of a pair of roller sub-assemblies within the outer housing of the roller assembly.
5. The roller assembly according to claim 3, wherein the support of the roller sub-assembly holds four roller wheels.
6. The roller assembly according to claim 1, wherein the first resilient suspension means is a spring and the second resilient suspension means is a spring.
7. The roller assembly according to claim 6, wherein the first and second suspension means are each a coil spring.
8. The roller assembly according to claim 4, wherein the at least one roller sub-assembly is removable from the outer housing.
9. A roller cartridge for mounting on an inner member of a roller assembly for a sliding panel system, the roller cartridge comprising: a support for attachment to the inner member for mounting of the roller cartridge to the inner member; a first roller wheel; a second roller wheel; a first pivotal arm rotatably mounting the first roller wheel to the support by a pivot point; a second pivotal arm rotatably mounting the second roller wheel to the support by the pivot point so that the second pivotal arm pivots about a horizontal axis extending through the pivot point; a first resilient suspension means; and a second resilient suspension means, wherein the first pivotal arm has a first end which is pivotally attached to the support and a second end opposite to the first end, wherein the first resilient suspension means extends between the second end and the support to allow resilient pivotal movement of the second end relative to the support when a force is applied to the first roller wheel so that the first pivotal arm, the first resilient suspension means and the first roller wheel form a first suspension arrangement, wherein the second pivotal arm has a third end which is pivotally attached to the support and a fourth end opposite to the third end, wherein the second resilient suspension means extends between the fourth end and the support to allow resilient pivotal movement of the fourth end relative to the support when a force is applied to the second roller wheel so that the second pivotal arm, the second resilient suspension means and the second roller wheel form a second suspension arrangement, wherein the first roller wheel has a first axis extending through the centre of the first roller wheel and the second roller wheel has a second axis extending through the centre of the second roller wheel, and the support of the roller cartridge holds the first and second roller wheels in parallel alignment where the first axis of the first roller wheel is parallel to and spaced apart from the second axis of the second roller wheel.
10. A sealing system comprising: a roller assembly comprising: an inner member; at least one roller sub-assembly mounted on the inner member, the at least one roller sub-assembly comprising: a support attached to the inner member for mounting of the at least one roller sub-assembly to the inner member; a first roller wheel; a second roller wheel; a first pivotal arm rotatably mounting the first roller wheel to the support by a pivot point; a second pivotal arm rotatably mounting the second roller wheel to the support by the pivot point so that the second pivotal arm pivots about a horizontal axis extending through the pivot point; a first resilient suspension means; a second resilient suspension means; and wherein the first pivotal arm has a first end which is pivotally attached to the support and a second end opposite to the first end, wherein the first resilient suspension means extends between the second end and the support to allow resilient pivotal movement of the second end relative to the support when a force is applied to the first roller wheel so that the first pivotal arm, first resilient suspension means and first roller wheel form a first suspension arrangement, wherein the second pivotal arm has a third end which is pivotally attached to the support and a fourth end opposite to the third end, wherein the second resilient suspension means extends between the fourth end and the support to allow resilient pivotal movement of the fourth end relative to the support when a force is applied to the second roller wheel so that the second pivotal arm, the second resilient suspension means and the second roller wheel form a second suspension arrangement, a linkage assembly which connects a handle to the roller assembly, wherein the sealing system is configured to be adjustable, by manipulation of the handle, such that the roller assembly and a slidable panel supported by the roller assembly are movable between a first position where the slidable panel is in contact with sealing means thereby providing weatherproofing and a second position where the slidable panel is free from contact with the sealing means and the panel is able to move freely relative to an outer frame.
11. The sealing system according to claim 10, wherein the linkage assembly is configured to provide a variable force when the roller assembly and the slidable panel are moved between the positions.
12. The sealing system according to claim 10, having at least a pair of roller assemblies wherein the roller assemblies are spaced apart and mountable in a recess of a sill for supporting the slidable panel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) One or more embodiments of the present invention will hereinafter be described with reference to the accompanying Figures, in which:
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DETAILED DESCRIPTION OF THE DRAWINGS
(30) Referring now to
(31) In
(32) The roller assemblies 6, 8, are exemplified in
(33) The body of each of the roller assemblies 6, 8 includes an outer housing 20 which defines an internal volume which is sized to receive the roller sub-assemblies 14, 16, and which protects the sub-assemblies 14, 16 and further provides an aesthetic covering.
(34) The master roller assembly 6, shown more particularly in
(35) The slave roller assembly 8, shown more particularly in
(36) The upper surface 21, of each housing 20 is provided with a pair of openings 121 through which attachment means 123 extend for securing the lower surface of the panel 4 to the roller assembly 6.
(37) The linkage assembly 5 comprises a pair of connected upper and lower bell crank linkage arrangements 7, 9 at opposite end portions of a vertical rod member 11 extending therebetween as illustrated in
(38) In the roller assemblies 6, 8 the roller sub-assemblies 14, 16 are mounted to an elongate inner member 130 which is movable within the outer housing 20. A first end 131 of the inner elongate member 130 of the master roller assembly 6 is connected to the lower bell crank linkage 9, and a second end 32 of the inner member 130 is connected to a first end of the linkage bar 10. The inner member 130 is connected to the outer housing 20 by pivoting swing arms 13. In the master roller assembly 6, the swing arms 13 are located at an intermediate location between the roller sub-assemblies 14 and 16 and at an end location at the second end of the inner member 30. In the slave roller assembly 8, the swing arms 13 are located at an intermediate location between the roller sub-assemblies 14 and 16 and at opposite end locations of the inner member 130. The pivoting swing arms 13 allow each inner member 130 to move in unison horizontally and vertically relative to the outer housing 20 upon pivotal movement of the lower bell crank linkage 9. As shown in the embodiments of
(39) The pivotal arms 24 and suspension means 26 allow suspension of the roller wheel 18 relative to the outer housing 20 such that in use when the load of the slidable panel 4 rests on the roller assembly 6, 8, the roller wheel 18 recedes a pre-determined amount into the outer housing 20 compared to when the roller assembly 14, 16 is unloaded. The maximum pre-determined amount depends on the suspension means 26, such as the spring constant, the load in the form of the weight of the slidable panel 4 and the number of roller wheels 18 in the roller assembly 14, 16. This is particularly illustrated in
(40) In one embodiment exemplified in
(41) In another embodiment exemplified in
(42) Referring to
(43) It can be understood that these embodiments are presented by example only, and the sub-assemblies 14, 16 may carry any number of roller wheels 18 and where the arms 24 carrying the roller wheels 18 can be arranged with their own pivot points or with common pivots such that the arms 24 extend in the same direction or in opposing directions.
(44) Each of the roller wheels 18 includes an outer wheel surface which is adapted to engage the recessed sill when in use. The side of each roller wheel 18 can include a central aperture 32 by which the pivotal arms 24, which can be formed of a pair of parallel spaced-apart elongate plate-like members, hold the wheel 18 therebetween by inwardly directed protrusions or an axle. Each roller wheel 18, as illustrated in
(45) The support 22 of each roller-sub-assembly 14, 16 can be similarly formed to the pivotal arms 24 in that they have a pair of elongate plate-like members by which the pivotal arms 24 can be supported. The pivotal attachment of the arms 24 to the support 18 is exemplified in
(46) In addition, each of the sub-assemblies 14, 16 described above may be configured so as to be removable from and attachable to the body of the roller assembly 6, 8. Therefore, the sub-assemblies 14, 16 may be in form of a cartridge. For instance, in the case of the embodiment illustrated in
(47) The functionality of the removably attachable cartridge sub-assemblies 14, 16 allow easy replacement and maintenance of the sub-assemblies 16, 18. In addition, the removably attachable sub-assemblies 16, 18 allow the number of roller wheels 18 in the roller assembly 6, 8 to be modified as required. For instance, if heavier panels 4 are to be used, then the number of roller wheels 18 can be increased by the attachment of additional sub-assemblies 14, 16. Furthermore, the placement of the roller wheel sub-assemblies 14, 16 within the roller assembly 6, 8 can be modified so as to optimise the load distribution from the sliding panel 4 such that it is spread evenly across the roller assemblies 6, 8, and thus the roller wheels 18. Finally, a sub-assembly 14, 16 may be replaced by one with different specifications, i.e. different suspension means 26 such as different resilient means, stronger or weaker coil springs, or roller wheels with different bearings etc.
(48) As shown in
(49) In the claims which follow and in the preceding description of the invention, except where the context requires otherwise due to express language or necessary implication, the word comprise or variations such as comprises or comprising is used in an inclusive sense, i.e. to specify the presence of the stated features but not to preclude the presence or addition of further features in various embodiments of the invention.