1. Field of the Invention
The present invention relates to a roller assembly, and more particularly relates to a roller assembly that allows a frameless sliding glass door to be set to parallel to the ground easily and adjust a crack between the frameless sliding glass door and the ground.
2. Description of Related Art
A frameless sliding glass door has a top, two conventional roller assemblies and a track. The conventional roller assemblies are connected to a top of the frameless sliding glass door with multiple through holes to slidably mount the frameless sliding glass door on the track. Each conventional roller assembly has a bracket, a roller and multiple fastening devices.
The bracket has a rear surface, an upper end, a lower end and multiple mounting holes. The mounting holes are formed through the bracket near the lower end and correspond to the through holes in the frameless sliding glass door.
The roller is rotatably mounted on the rear surface of the bracket at the upper end and is slidably mounted on the track.
The fastening devices are mounted in the mounting holes and the corresponding through holes to hold the frameless sliding glass door on the bracket. Therefore, the frameless sliding glass door is slidably mounted on the track with the conventional roller assembly.
However, the mounting holes in the brackets are circular holes and a person cannot adjust the position between the conventional roller assemblies and the frameless sliding glass door. When the track is mounted at an undesired angle on a wall, such as slanting or at an angle from the horizon, a bottom of the frameless sliding glass door will not be parallel to the ground and this may cause the bottom of the frameless sliding glass door to make contact with the ground. Furthermore, the mounting holes of the brackets of the conventional roller assemblies may not parallel to each other, and this also influence the accuracy of mounting the frameless sliding glass door on the track.
The roller assembly for a frameless sliding glass door in accordance with the present invention mitigates or obviates the aforementioned problems.
The main objective of the present invention is to provide a roller assembly that can allows a frameless sliding glass door to be easily set parallel to the ground.
The roller assembly for a frameless sliding glass door has a bracket, a roller and at least one fastening device. The bracket is attached to the frameless sliding glass door and a track and has a rear surface, an upper end, a lower end, a lower edge, at least one elongated hole, an adjustment hole and a set screw. The at least one elongated hole is formed through the bracket near the lower end. The adjustment hole is formed through the lower edge of the bracket and communicates with the elongated hole in the lower end of the bracket. The set screw is threaded and corresponds with the adjustment hole. The roller is rotatably connected to the rear surface of the bracket in the upper end and mounted on the track. The fastening device is connected to the bracket and the frameless sliding glass door through the elongated hole and the corresponding through hole.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The frameless sliding glass door (40) has at least one through hole (41) and a bottom. The track (50) is mounted on a wall.
The bracket (20) is attached to the frameless sliding glass door (40) and the track (50) and has a rear surface, an upper end (21), a lower end (23), a lower edge, at least one elongated hole (24), an adjustment hole (25) and a set screw (26). At least one elongated hole (24) is formed through the bracket (20) in the lower edge and corresponds to the at least one through hole (41) in the frameless sliding glass door (40). The adjustment hole (25) is formed through the lower edge of the bracket (20) and communicates with the elongated hole (24) in the lower end of the bracket (20). The set screw (26) is threaded and corresponds with the adjustment hole (25) in the bracket (20) and has a tip and a face. The tip of the set screw (26) may extend into the elongated hole (24) in the lower end of the bracket (20). The face of the set screw (26) has a keyed surface corresponding to a screwdriver used to turn the set screw (26).
The roller (22) is rotatably connected to the rear surface of the bracket (20) at the upper end (21) of the bracket (20) and is movably mounted on the track (50).
The at least one fastening device (30) is mounted through the bracket (20) and the frameless sliding glass door (40) in the elongated hole (24) and a corresponding through hole (41), and each fastening device (30) may comprise an annular sheath (31), a nut (32), a washer (33) and a bolt (34).
The annular sheath (31) is mounted in the corresponding through hole (41) in the frameless sliding glass door (40). The nut (32) is mounted in the annular sheath (31) and extends out the corresponding through hole (41) and has a rim and a connecting hole (321). The rim abuts the annular sheath (31). The connecting hole (321) is formed axially in the nut (32) and aligns with the corresponding elongated hole (24) in the bracket (20). The washer (33) is mounted around the nut (32) adjacent to the bracket (20). The bolt (34) is connected securely to the nut (32) and has a head and a shaft (341). The head abuts the bracket (20) and is larger than the elongated hole (24) and has a center. The shaft (341) is formed on and protrudes from the center of the head and is threaded and corresponding to the connecting hole (321) through the corresponding elongated hole (24). Therefore, the frameless sliding glass door (40) is slidably connected to the track (50) with the roller assemblies (10).
With further reference to
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Name | Date | Kind |
---|---|---|---|
862561 | Hunt | Aug 1907 | A |
1017757 | Hoffman | Feb 1912 | A |
2079028 | Nemec | May 1937 | A |
2145403 | Nemec | Jan 1939 | A |
2680875 | Coffey | Jun 1954 | A |
3058173 | Brydolf | Oct 1962 | A |
3148405 | Dickinson et al. | Sep 1964 | A |
3261129 | Brydolf et al. | Jul 1966 | A |
3555612 | Procton | Jan 1971 | A |
4099599 | Randall | Jul 1978 | A |
4288887 | Johnson et al. | Sep 1981 | A |
4391019 | Downes | Jul 1983 | A |
5070575 | Redman et al. | Dec 1991 | A |
6381904 | Tedescucci | May 2002 | B1 |
6865848 | Krimmel | Mar 2005 | B2 |
7065831 | Elmer | Jun 2006 | B2 |
7137172 | Elmer | Nov 2006 | B2 |
Number | Date | Country |
---|---|---|
WO 9413915 | Jun 1994 | WO |
Number | Date | Country | |
---|---|---|---|
20090000204 A1 | Jan 2009 | US |