Sliding door and window roller assembly
10808441 ยท 2020-10-20
Assignee
Inventors
Cpc classification
E06B3/42
FIXED CONSTRUCTIONS
E05Y2800/21
FIXED CONSTRUCTIONS
E05D15/06
FIXED CONSTRUCTIONS
International classification
E05D13/00
FIXED CONSTRUCTIONS
E06B3/42
FIXED CONSTRUCTIONS
Abstract
A sliding roller assembly includes a plurality of blocks, configured to be connected in series, at least one roller device provided between each of the plurality of blocks, where the roller device includes a main body having at least one roller bearing disposed in the main body.
Claims
1. A sliding roller assembly, comprising: a plurality of blocks, configured to be connected in series; at least one roller device provided between and connected to each of the plurality of blocks, wherein the roller device includes a main body having at least one roller bearing disposed in the main body, the main body further includes at least one through hole, and a shaft provided in the through hole which extends into a hole in a body of at least one of the plurality of blocks.
2. The sliding roller assembly of claim 1, wherein the plurality of blocks are fixed to or placed in a door frame or a window frame.
3. The sliding roller assembly of claim 1, wherein a sleeve is provided on an end of the shaft and at least part of the sleeve is disposed in the hole.
4. The sliding roller assembly of claim 1, wherein a washer is provided on the shaft.
5. The sliding roller assembly of claim 1, further comprising: a moving member that contacts the at least one roller bearing and slides with respect to the plurality of blocks and the at least one roller bearing and supports a window or a door provided on the moving member.
6. The sliding roller assembly of claim 1, wherein a thickness of at least one of the plurality of blocks is greater than a thickness of the at least one roller device.
7. The sliding roller assembly of claim 1, wherein the plurality of blocks are configured to be connected in series in a first direction, the at least one roller device is provided between the plurality of blocks in the first direction, and the through hole of the main body, and the shaft that is provided within the through hole, extend through the main body in the first direction.
8. The sliding roller assembly of claim 1, wherein the roller device further includes at least one cavity extending into the main body from a first side of the roller device, the at least one roller bearing is disposed within the at least one cavity, secured in the cavity by a roller bearing shaft, and the at least one through hole of the main body of the roller device is on a second side of the roller device, perpendicular to the first side, and is configured to receive the shaft in a direction perpendicular to an extending direction of the roller bearing shaft.
9. The sliding roller assembly of claim 8, wherein the at least one through hole extends through the main body of the roller device.
10. The sliding roller assembly of claim 8, wherein a sleeve or a washer is provided on at least one end of the shaft.
11. The sliding roller assembly of claim 8, wherein the at least one roller bearing is tilted away from a center of the main body.
12. The sliding roller assembly of claim 8, wherein the at least one roller bearing is tilted toward a center of the main body.
13. A sliding roller assembly configured to move a door or a window, comprising: a frame; a sliding mechanism disposed within the frame; and a moving member configured to contact the sliding mechanism and move along the sliding mechanism to move the window or the door, wherein the sliding mechanism comprises: a plurality of blocks; and a roller device, provided between and connected to each of the plurality of blocks, including at least one bearing, the moving member is configured to slide along the at least one bearing, and the roller device is connected to the plurality of blocks by a shaft provided in a through hole in the roller device which extends into a hole of a body of at least one of the plurality of blocks.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and/or other aspects will become apparent and more readily appreciated from the following description of exemplary embodiments, taken in conjunction with the accompanying drawings of which:
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DETAILED DESCRIPTION
(9) Exemplary embodiments may allow various changes or modifications, including various changes in form, and specific exemplary embodiments will be illustrated in drawings and described in detail in the specification. However, it should be understood that the specific exemplary embodiments do not limit the present inventive concept to a specific disclosing form but include every modified, equivalent, or replaced one within the spirit and technical scope of the present inventive concept. In the following description, well-known functions or constructions are not described in detail since they would obscure the invention with unnecessary detail.
(10) The terminology used in the application is used only to describe specific exemplary embodiments and does not have any intention to limit the present inventive concept. Although general terms as currently widely used as possible are selected as the terms used in the present inventive concept while taking functions in the exemplary embodiments into account, they may vary according to an intention of those of ordinary skill in the art, judicial precedents, or the appearance of new technology. In addition, in specific cases, terms intentionally selected by the applicant may be used, and in this case, the meaning of the terms will be disclosed in corresponding description of the invention. Accordingly, the terms used in the present inventive concept should be defined not by simple names of the terms but by the meaning of the terms and the content over the present inventive concept.
(11) As shown in the drawings, with reference made to the reference numerals in
(12) The main body also has at least one through hole 50 extending from a second side of the main body to an opposite third side, both being perpendicular to the first side. The through hole 50 is configured to receive a shaft 9 having end portions extending from the opposing second and third sides of the main body and extending in the longitudinal direction, as shown in
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(14) The plurality of blocks 3 and associated roller device may be disposed within a bottom of a door frame or a window frame 2, as shown in
(15) In one embodiment, the thickness of the roller device 1 in a direction perpendicular to or parallel to a moving direction of the moving member 6 is less than the thickness of the plurality of blocks 3. However, it will be understood that the thickness of the roller devices 1 and the blocks 3 can vary. Further, the dimensions of the roller device 1 and the plurality of blocks 3, including but not limited to the height and width, can vary depending on the requirements of the door or window frame.
(16) Further, it will be understood that the sliding roller assembly 100 and/or the blocks 3 may include a thermal break 11 formed from a thermally separating material to reduce the thermal conductivity of the assembly. For example, as shown in
(17) As shown in
(18) As shown in
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(20) Further, the assembly provides for adjustability in multiple dimensions. For example, the roller device 1 can be moved axially along the shaft 9 closer to or further from the blocks 3. The roller device 1 is also capable of rotating about the axis of the shaft 9 as discussed above. The roller bearings 4 are also capable of moving laterally along the bearing shaft 10 within the groove of the body. Thus, the shafts 9, sleeves 8, and roller bearings 4 may be configured to permit relative movement of the blocks 3 with respect to the roller device 1 in at least three directions. That is, the roller device 1 may move in three degrees of freedom laterally with respect to the blocks 3, rotationally with respect to the blocks 3 and axially with respect to the shaft 9.
(21) The above-described sliding roller assembly allows the moving member 6 of a window or door to slide smooth within the frame or sash. Since the roller bearings 4 and the shaft-and-sleeve 9, 8 assembly allow the roller device 1 to move on three axes, the sliding roller assembly 100 compensates for any misalignments due to installation tolerances, building movements, and/or settlement of the building and thereby avoid significant impact on the force required to move sliding panels.
(22) While the exemplary embodiments have been particularly shown and described, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the spirit and scope of the inventive concept as defined by the appended claims.