HEADLINER MOUNTED CENTER HIGH MOUNT STOP LAMP (CHMSL)
A console sliding armrest assembly for a vehicle includes a storage compartment having an opening for allowing ingress and egress of objects, and a console lid pivotally connected to the storage compartment. The lid may include a sliding armrest operatively engaged therewith. A guide assembly may be disposed within the lid for guiding the armrest, and may include a slider frame connected to the armrest. A guide plate may be connected to the lid for supporting the armrest, and a rail may be secured in the slider frame. The guide plate may be slidably engaged with the rail for allowing sliding movement of the armrest. A spring may be disposed between the slider frame and the rail, and may be engaged to either the slider frame or the rail for biasing the rail against the guide plate, and for thereby regulating tension in the guide assembly.
This application claims benefit of priority of Provisional Application Ser. No. 60/690,467, filed Jun. 14, 2005, hereby incorporated by reference in its entirety.
BACKGROUND OF INVENTIONa. Field of Invention
The invention relates generally to consoles for motor vehicles and the like, and more particularly to a motor vehicle center floor console including a securely guided sliding armrest having improved mechanics for facilitating the sliding operation and for minimizing cross-car deflection of the armrest.
b. Description of Related Art
Motor vehicle consoles are well known in the art and generally include a storage compartment for the storage of objects and a console lid for covering a storage compartment opening as well as for serving as an armrest. Often, the armrest is located at a fixed intermediate position most suited for persons of average size. In some luxury automobiles however, the armrest may be designed to slide in the vehicle's length-wise direction for providing adjustability for different users and their unique driving positions.
Known console sliding armrests generally include a sliding assembly which requires a user to push along the longitudinal direction of the armrest (i.e. the vehicle's length-wise) to release the armrest from a rest position and to continue the sliding movement to one of a predetermined number of locking positions particularly suited for the user. In some armrest sliding assemblies, the sliding movement may be controlled or otherwise facilitated by spring biasing means, known examples of which have thus far been relatively complicated in design and operation, and have also been unreliable during extended use.
One such known console sliding armrest is disclosed in U.S. Pat. No. 6,007,155 to Hara et al. ('155 Patent). Referring to
As readily evident from the illustration of
Accordingly, there exists a need for a console sliding armrest biasing assembly which includes fewer components for facilitating the manufacturing process. There also exists a need for an armrest biasing assembly in which the components are less susceptible to environmental elements, and are therefore highly reliable for long-term use.
Other exemplary console sliding armrests are disclosed for example in U.S. Pat. Nos. 6,719,367 to Mic et al. and 6,244,648 to Gackstatter. Each of these armrest assemblies, which include unique sliding or biasing mechanisms, are nevertheless particularly susceptible to environmental elements which hinder their long-term reliability, and are further susceptible to misalignment and/or malfunction due to the multiple components which must function together during the sliding operation.
It would therefore be of benefit to provide a console sliding armrest which is stable in operation during both extension and retraction of the armrest, and which includes a guiding system having a minimal number of components for securely guiding the armrest from both the longitudinal and lateral directions (i.e. the vehicle's length-wise and width-wise directions) of the armrest. It would also be of benefit to provide a console sliding armrest which is easier and more economical to manufacture, and which provides improved reliability for long-term use as compared to existing sliding armrest designs.
SUMMARY OF INVENTIONThe present invention thus solves the problems and overcomes the drawbacks and deficiencies of prior art console sliding armrest designs by providing an improved console sliding armrest assembly including a guide assembly which enables efficient rattle-free sliding operation.
It is therefore an exemplary object of the present invention to provide a console sliding armrest assembly which is less susceptible to environmental elements and is therefore reliable in its long-term operation.
It is also an object of the present invention to provide a console sliding armrest assembly which provides adequate vertical support for the armrest in both the extended and retracted positions.
The invention thus achieves the aforementioned exemplary objects by providing a console sliding armrest assembly for a vehicle. The assembly may include a storage compartment having an opening for allowing ingress and egress of objects. A console lid may be pivotally connected to the storage compartment for substantially covering the storage compartment opening in a closed position and for otherwise allowing ingress and egress of objects in an open position. The console lid may include a sliding armrest operatively engaged therewith and movable between extended and retracted positions. A guide assembly may be disposed substantially within the console lid for securely guiding the sliding armrest between the extended and retracted positions. The guide assembly may include a slider frame connected to the sliding armrest, and a guide plate connected to the console lid for providing vertical support and lateral stability to the sliding armrest. The guide assembly may further include a rail secured to the slider frame, with the rail being slidably engaged with the guide plate for thereby allowing sliding movement of the armrest between the extended and retracted positions. A spring may be disposed between the slider frame and the rail. The spring may be engaged to either the slider frame or the rail for biasing the rail against the guide plate. The spring may thereby regulate tension between the slider frame, the rail and the guide plate during movement of the sliding armrest.
For the console sliding armrest assembly described above, the rail may include a substantially “C” shaped channel for receiving an end of the guide plate. In a particular embodiment of the present invention, the slider frame may include a substantially “C” shaped channel for receiving the rail. The slider frame channel may thus define a substantially sealed cavity for protecting the rail and the spring from environmental elements. The rail may be made of Acetyl or other similar materials. A resilient arm may be connected adjacent a forward end of the console lid. The arm may include a detent engageable with one or more catches on a secondary plate mounted adjacent to or otherwise formed with the guide plate for limiting sliding movement of the armrest in the extended and retracted positions. The guide plate may also form a hinge arm for pivotally connecting the console lid to the storage compartment.
The invention also provides a vehicle sliding armrest assembly including a storage compartment having an opening for allowing ingress and egress of objects, and a compartment lid pivotally connected to the storage compartment and disposable between opened and closed positions. The compartment lid may include an armrest operatively engaged therewith and slidably movable between extended and retracted positions. A guide assembly may be disposed substantially within the compartment lid for securely guiding the armrest between the extended and retracted positions. The guide assembly may include a slider frame connected to the armrest, and a guide plate connected to the compartment lid for providing vertical support and lateral stability to the armrest. The guide assembly may further include a rail secured to the slider frame. The rail may be slidably engaged with the guide plate for thereby allowing sliding movement of the armrest between the extended and retracted positions. The guide assembly may also include biasing means disposed between the slider frame and the rail. The biasing means may be engaged to either the slider frame or the rail for biasing the rail against the guide plate. The biasing means may thereby regulate tension between the slider frame, the rail and the guide plate during sliding movement of the armrest.
For the sliding armrest assembly described above, the rail may include a substantially “C” shaped channel for receiving an end of the guide plate. The slider frame may include a substantially “C” shaped channel for receiving the rail, with the channel defining a substantially sealed cavity for protecting the rail and the biasing means from environmental elements. The biasing means may be a coil spring and/or a leaf spring, or other equivalent spring means. The assembly may further include a resilient arm connected adjacent a forward end of the compartment lid. The arm may include a detent engageable with one or more catches on a secondary plate mounted to or otherwise formed with the guide plate for limiting sliding movement of the armrest in the extended and retracted positions. The guide plate may also form a hinge arm for pivotally connecting the compartment lid to the storage compartment.
The invention yet further provides a method of securely guiding a console sliding armrest for a vehicle. The method may include the step of pivotally connecting a console lid to a console storage compartment. The console lid may be disposable between opened and closed positions for allowing ingress and egress of objects from the storage compartment. The method may also include the steps of operatively engaging an armrest to the console lid, with the armrest being slidably movable between extended and retracted positions relative to the storage compartment, connecting a slider frame to the armrest, and connecting a guide plate to the console lid for vertical support and lateral stability of the armrest. The method may further include the steps of securing a rail to the slider frame, with the rail being slidably engaged with the guide plate for thereby allowing sliding movement of the armrest between the extended and retracted positions, and connecting a spring to either the slider frame or the rail for biasing the rail against the guide plate. The spring may thereby regulate tension between the slider frame, the rail and the guide plate during sliding movement of the armrest.
For the method described above, the spring may be a coil spring and/or a leaf spring, or other equivalent spring structures. The method may also include the step of connecting a resilient arm adjacent a forward end of the console lid, with the arm including a detent engageable with one or more catches on a secondary plate mounted to or otherwise formed with the guide plate for limiting sliding movement of the armrest in the extended and retracted positions. The method may further include the steps of engaging an end of the guide plate with a substantially “C” shaped channel in the rail, and disposing the rail in a substantially “C” shaped channel in the slider frame. The slider frame channel may define a substantially sealed cavity for protecting the rail and the spring from environmental elements. The spring may thus enable regulation of the sliding force required for guiding the armrest between the extended and retracted positions. The force may be regulated to between approximately 6-13 N for sliding movement and less than approximately 23 N for initial movement of the armrest.
Additional features, advantages, and embodiments of the invention may be set forth or apparent from consideration of the following detailed description, drawings, and claims. Moreover, it is to be understood that both the foregoing summary of the invention and the following detailed description are exemplary and intended to provide further explanation without limiting the scope of the invention as claimed.
BRIEF DESCRIPTION OF THE DRAWINGSThe accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate preferred embodiments of the invention and together with the detail description serve to explain the principles of the invention. In the drawings:
Turning now to the drawings wherein like reference characters refer to like and corresponding parts throughout the several views,
As shown in
Referring to
Turning next to
Referring to
As shown in
Referring to
Referring next to
Referring to
Referring next to
Thus to summarize, the present invention sliding armrest assembly 10 provides a guide assembly which enables efficient rattle-free sliding operation of the armrest. The sliding armrest assembly is also less susceptible to environmental elements, is easier and more economical to manufacture, and is highly reliable for long-term use as compared to existing sliding armrest designs.
Although particular embodiments of the invention have been described in detail herein with reference to the accompanying drawings, it is to be understood that the invention is not limited to those particular embodiments, and that various changes and modifications may be effected therein by one skilled in the art without departing from the scope or spirit of the invention as defined in the appended claims.
Claims
1. A console sliding armrest assembly for a vehicle, said assembly comprising:
- a storage compartment having an opening for allowing ingress and egress of objects;
- a console lid pivotally connected to said storage compartment for substantially covering said storage compartment opening in a closed position and for otherwise allowing ingress and egress of objects in an open position, said console lid including a sliding armrest operatively engaged therewith and movable between extended and retracted positions; and
- a guide assembly disposed substantially within said console lid, said guide assembly securely guiding said sliding armrest between said extended and retracted positions, and including:
- a slider frame connected to said sliding armrest;
- a guide plate connected to said console lid for providing vertical support and lateral stability to said sliding armrest;
- at least one rail secured to said slider frame, said rail being slidably engaged with said guide plate for thereby allowing sliding movement of said armrest between said extended and retracted positions; and
- at least one spring disposed between said slider frame and said rail, said spring being engaged to either said slider frame or said rail for biasing said rail against said guide plate, said spring thereby regulating tension between said slider frame, said rail and said guide plate during movement of said sliding armrest.
2. An assembly according to claim 1, wherein said rail includes a substantially “C” shaped channel for receiving an end of said guide plate.
3. An assembly according to claim 1, wherein said slider frame includes at least one substantially “C” shaped channel for receiving said rail, said channel defines a substantially sealed cavity for protecting said rail and said spring from environmental elements.
4. An assembly according to claim 1, wherein said rail is made of Acetyl.
5. An assembly according to claim 1, further comprising a resilient arm connected adjacent a forward end of said console lid, said arm including a detent engageable with at least one catch on a secondary plate mounted to or formed with said guide plate for limiting sliding movement of said armrest in said extended and retracted positions.
6. An assembly according to claim 1, wherein said guide plate forms a hinge arm for pivotally connecting said console lid to said storage compartment.
7. A sliding armrest assembly for a vehicle, said assembly comprising:
- a storage compartment having an opening for allowing ingress and egress of objects;
- a compartment lid pivotally connected to said storage compartment and disposable between opened and closed positions, said compartment lid including an armrest operatively engaged therewith and slidably movable between extended and retracted positions; and
- a guide assembly disposed substantially within said compartment lid, said guide assembly securely guiding said armrest between said extended and retracted positions, and including:
- a slider frame connected to said armrest;
- a guide plate connected to said compartment lid for providing vertical support and lateral stability to said armrest;
- at least one rail secured to said slider frame, said rail being slidably engaged with said guide plate for thereby allowing sliding movement of said armrest between said extended and retracted positions; and
- at least one biasing means disposed between said slider frame and said rail, said biasing means being engaged to either said slider frame or said rail for biasing said rail against said guide plate, said biasing means thereby regulating tension between said slider frame, said rail and said guide plate during sliding movement of said armrest.
8. An assembly according to claim 7, wherein said rail includes a substantially “C” shaped channel for receiving an end of said guide plate.
9. An assembly according to claim 7, wherein said slider frame includes at least one substantially “C” shaped channel for receiving said rail, said channel defines a substantially sealed cavity for protecting said rail and said biasing means from environmental elements.
10. An assembly according to claim 7, wherein said rail is made of Acetyl.
11. An assembly according to claim 7, wherein said biasing means is at least one of a coil spring and a leaf spring.
12. An assembly according to claim 7, further comprising a resilient arm connected adjacent a forward end of said compartment lid, said arm including a detent engageable with at least one catch on a secondary plate mounted to or formed with said guide plate for limiting sliding movement of said armrest in said extended and retracted positions.
13. An assembly according to claim 7, wherein said guide plate forms a hinge arm for pivotally connecting said compartment lid to said storage compartment.
14. A method of securely guiding a console sliding armrest for a vehicle, said method comprising the steps of:
- pivotally connecting a console lid to a console storage compartment, said console lid being disposable between opened and closed positions for allowing ingress and egress of objects from said storage compartment;
- operatively engaging an armrest to said console lid, said armrest being slidably movable between extended and retracted positions relative to said storage compartment;
- connecting a slider frame to said armrest;
- connecting a guide plate to said console lid for providing vertical support and lateral stability to said armrest;
- securing at least one rail to said slider frame, said rail being slidably engaged with said guide plate for thereby allowing sliding movement of said armrest between said extended and retracted positions;
- connecting a spring to either said slider frame or said rail for biasing said rail against said guide plate, said spring thereby regulating tension between said slider frame, said rail and said guide plate during sliding movement of said armrest; and
- guiding said armrest between said extended and retracted positions.
15. A method according to claim 14, wherein said spring is at least one of a coil spring and a leaf spring.
16. A method according to claim 14, further comprising the step of connecting a resilient arm adjacent a forward end of said console lid, said arm including a detent engageable with at least one catch on a secondary plate mounted to or formed with said guide plate for limiting sliding movement of said armrest in said extended and retracted positions.
17. A method according to claim 14, further comprising the step of engaging an end of said guide plate with a substantially “C” shaped channel in said rail.
18. A method according to claim 14, further comprising the step of disposing said rail in a substantially “C” shaped channel in said slider frame, said channel defining a substantially sealed cavity for protecting said rail and said spring from environmental elements.
19. A method according to claim 14, wherein said rail is made of Acetyl.
20. A method according to claim 14, wherein said spring enables regulation of sliding force required for guiding said armrest between said extended and retracted positions, said force being regulated to between approximately 6-13 N for sliding movement and less than approximately 23 N for initial movement of said armrest.
Type: Application
Filed: Dec 6, 2005
Publication Date: Jun 14, 2007
Inventors: ALBERT EKLADYOUS (SHELBY TWP., MI), TOM PARTCH (TRENTON, MI), TODD SCHWANGER (FARMINGTON HILLS, MI), BRUCE WILLIAMS (GROSSE POINTE PARK, MI), EHAB KAOUD (CANTON, MI), JIM SMITHBAUER (CANTON, MI)
Application Number: 11/164,794
International Classification: A47C 7/62 (20060101);