1. Field of the Invention
The present invention relates to a rail assembly, and more particularly to a rail assembly for slide-type garage door.
2. Description of Related Art
A conventional rail structure for slide-type garage door in accordance with the prior art shown in
The present invention has arisen to mitigate and/or obviate the disadvantages of the conventional rail structure for slide-type garage door.
The main objective of the present invention is to provide an improved rail structure for slide-type garage door, which is easily assembled and transported.
To achieve the objective, the rail assembly in accordance with the present invention comprises multiple rails linearly connected to one another. Each rail has a horizontal portion adapted to allow a slide smoothly move thereon, and a vertical portion centrally and perpendicularly extending from the horizontal portion to form an inverted T-shape. Multiple connectors partially receive the vertical portion of the multiple rails. Each connector has a slot defined therein for receiving the vertical portions of two linearly connected rails. Each connector has a first side wall and a second side wall parallel with each other and integrally connected to each other for defining the slot. Multiple bolts respectively and sequentially extend through the first side wall of the connector and the vertical portion of the rail, and are screwed into the second side wall to stably fasten the multiple rails and the multiple connectors.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
Each rail (10) has a horizontal portion (11) adapted to allow a slide (50) smoothly move thereon, and a vertical portion (12) centrally and perpendicularly extending from the horizontal portion (11) to form an inverted T-shape. The vertical portion (12) has two opposite ends each having at least one through holes (121) defined therein. In the preferred embodiment of the present invention, there are two through holes (121) defined in each of the two opposite ends of the vertical portion (12) of the rail (10) for providing stable connection between two rails (10).
The connector (20) has an i-shaped cross-section and a slot (21) defined therein for receiving the vertical portions (12) of two linearly connected rails (10).
The connector (20) is integrally extracted by aluminum alloy and a groove (200) is longitudinally and centrally defined in the metal plate and located in a top of the connector (20) after forming the connector (20). The groove (200) provides a good elasticity to the processed connector (20) when the connector (20) is made of hard metal. The connector has a first side wall (22) and a second side wall (23) parallel with each other and integrally connected to each other for defining the slot (21). The connector (20) has at least two sunken holes (221) defined in the first side wall (22). The at least two sunken holes (221) in the connector (20) respectively align with the at least one through hole (121) of each of the two linearly connected rails (10). In the preferred embodiment of the present invention, there are four sunken holes (221) defined in the first side wall (22) of the connector (20). The connector (20) has at least two threaded holes (231) defined in the second side wall (23). Each threaded hole (231) aligns with a corresponding one of the at least two sunken holes (221) in the first side wall (22) of the connector (20). In the preferred embodiment of the present invention, there are four threaded holes (231) defined in the second side wall (22) of the connector (20). With reference to
When assembling the rail assembly in accordance with the present invention, the rails (10) are linearly connected to one another and connectors (20) are provided to receive the vertical portions (12) of two connected rails (10). In addition, each sunken hole (221) aligns with a corresponding one of the through holes (121) of the two connected rails (10). The bolt (30) sequentially extends through the sunken hole (221) in the first side wall (22) of the connector (20) and the through hole (121) in the vertical portion (12) of the rail (10), and is screwed into the threaded hole (231) in the second side wall (23) of the connector (20) to stably fasten the rails (10) and the connectors (20). The groove (200) and the thin portion (201) make the first side wall (22) and the second side wall (23) easily clamp the vertical portion (12) when screwing the bolts (30), that is, the operator can screw the bolts (30) more labor-saving.
With reference to
The connector (20) is integrally extracted by aluminum alloy and a groove (200) is longitudinally and centrally defined in the metal plate and located in a top of the connector (20) after forming the connector (20). The groove (200) provides a good elasticity to the processed connector (20) when the connector (20) is made of hard metal. The connector has a first side wall (22) and a second side wall (23) parallel with each other and integrally connected to each other for defining the slot (21). The connector (20) has at least two sunken holes (221) defined in the first side wall (22). The at least two sunken holes (221) in the connector (20) respectively align with the at least one through hole (121) of each of the two linearly connected rails (10). In the preferred embodiment of the present invention, there are four sunken holes (221) defined in the first side wall (22) of the connector (20). The connector (20) has at least two through holes (232) defined in the second side wall (23). Each through hole (232) aligns with a corresponding one of the at least two sunken holes (221) in the first side wall (22) of the connector (20). In the preferred embodiment of the present invention, there are four through holes (232) defined in the second side wall (22) of the connector (20).
When assembling the rail assembly in accordance with the present invention, the rails (10) are linearly connected to one another and connectors (20) are provided to receive the vertical portions (12) of two connected rails (10). In addition, each sunken hole (221) aligns with a corresponding one of the through holes (121) of the two connected rails (10). The bolt (30) sequentially extends through the sunken hole (221) in the first side wall (22) of the connector (20), the through hole (121) in the vertical portion (12) of the rail (10) and the through hole (232) in the second side wall (23) of the connector (20), and a nut (31) is screwed onto the a free end of the bolt (30) to stably fasten the rails (10) and the connectors (20).
As described above, the rail assembly in accordance with the present invention has multiple advantages as follow:
1. The rail assembly of the present invention is easily assembled because only several bolts (30) can stably and linearly connect the rails (10) and connectors (20).
2. The conventional integral rail structure is divided into multiples sections such that the rail structure is easily packaged and transported.
3. The rail assembly of the present invention can be assembled to a suitable length to the purpose of the operator. It is convenient design.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.