Claims
- 1. A composite stud comprising:
a generally elongated frame member, said frame member defining a frame longitudinal axis, a frame first longitudinal end and a generally opposed frame second longitudinal end; said frame member having a generally U-shaped cross-sectional configuration defining a frame base wall and a pair of frame side walls; said frame base wall defining a base wall inner surface, a base wall outer surface and a pair of opposed base wall main peripheral edges; each of said frame side walls defining a corresponding side wall inner surface, a side wall outer surface, a side wall first main edge and a generally opposed side wall second main edge; each of said side wall first main edges being attached to a corresponding one of said base wall main peripheral edges; said frame side walls extending from said frame base wall so that said side wall inner surfaces are in a generally facing relationship relative to each other, said frame base wall and said frame side walls together defining a generally open base channel, said base channel having a channel opening located generally opposite said frame base wall; a core component; said core component defining a core longitudinal axis, a core first longitudinal end and an opposed core second longitudinal end; said core component being configured and sized for allowing said core component to be at least partially inserted in said base channel from an insertion direction generally angled relative to said frame longitudinal axis; retaining means positioned between said frame member and said core component for retaining at least a portion of said core component in said base channel once inserted thereinto.
- 2. A composite stud as recited in claim 1 wherein said retaining means releasably retains at least a portion of said core component in said base channel once inserted thereinto so as to selectively allow withdrawal of said at least a portion of said core component from said base channel.
- 3. A composite stud as recited in claim 1 wherein said core component is also configured and sized so as to be at least partially retained in said base channel by said frame side walls once inserted in said base channel.
- 4. A composite stud as recited in claim 1 wherein said core component is also configured and sized so as to be releasably and at least partially retained in said base channel by said frame side walls once inserted in said base channel so as to selectively allow withdrawal of said at least a portion of said core component from said base channel.
- 5. A composite stud as recited in claim 1 wherein said core component is configured and sized for allowing said core component to be at least partially inserted in said base channel from an insertion direction generally perpendicular relative to said frame longitudinal axis.
- 6. A composite stud as recited in claim 1 wherein at least one of said side wall first main edges is pivotally attached to a corresponding one of said base wall main peripheral edges so as to allow the corresponding frame side wall to pivot between a side wall first position and a side wall second position, wherein the pivotable frame side wall is in a generally perpendicular relationship relative to said frame base wall when the pivotable frame side wall is in said side wall first position and the pivotable frame side wall is in an outwardly angled relationship relative to said frame base wall when the pivotable frame side wall is in said side wall second position; whereby when the pivotable frame side wall is in said side wall first position it collaborates with the other frame side wall for locking at least a section of said core component in said base channel and when the pivotable frame side wall is in said side wall second position it facilitates the insertion of at least a section of said core component into said base channel along said insertion direction.
- 7. A composite stud as recited in claim 6 wherein said frame member is provided with a biasing means for biasing the pivotable frame side wall towards said side wall first position.
- 8. A composite stud as recited in claim 7 wherein said frame base wall and the pivotable frame side wall are made out of an integral and generally resilient piece of material, said at least one of said side wall first main edges being generally resiliently attached to a corresponding one of said base wall main peripheral edges.
- 9. A composite stud as recited in claim 1 wherein said frame member is made out of galvanized steel and said core component is made out of wood.
- 10. A composite stud as recited in claim 1 wherein said retaining means includes a retaining flange extending inwardly from said side wall inner surface adjacent said side wall second main edge of at least one of said frame side walls.
- 11. A composite stud as recited in claim 1 wherein said retaining means includes a retaining flange extending inwardly from said side wall inner surface adjacent said side wall second main edge of both said frame side walls, said retaining flanges extending generally towards each other.
- 12. A composite stud as recited in claim 10 wherein said core component has a generally rectangular cross-sectional configuration defining a core first main wall, a core second main wall, a core first auxiliary wall and a core second auxiliary wall; said core component being configured and sized so as to be insertable into said base channel with said core first main wall positioned generally adjacent said base wall inner surface and said core first and second auxiliary walls positioned generally adjacent a corresponding one of said side wall inner surface; said core first auxiliary wall being provided with a first retaining slot extending longitudinally at least partially therealong, said first retaining slot being configured and sized for receiving at least a section of one of said retaining flanges when said core component is inserted into said base channel.
- 13. A composite stud as recited in claim 12 wherein said first retaining slot extends generally transversely towards said core second auxiliary wall in a generally transversal slot plane, said slot plane generally dividing said core component into a core first cross-sectional area and a core second cross-sectional area.
- 14. A composite stud as recited in claim 13 wherein a section of said core first auxiliary wall located in said core first cross-sectional area is inwardly recessed relative to a section of said core first auxiliary wall located in said core second cross-sectional area.
- 15. A composite stud as recited in claim 12 wherein said core second auxiliary wall is provided with a second retaining slot extending longitudinally at least partially therealong, said second retaining slot being configured and sized for receiving at least a section of the other one of said retaining-flanges when said core component is inserted into said base channel.
- 16. A composite stud as recited in claim 15 wherein said first and second retaining slots extend generally transversally towards each other in a generally transversal slot plane, said slot plane generally dividing said core component into a first core cross-sectional area and a second core cross-sectional area; wherein a section of said core first auxiliary wall located in said core first cross-sectional area is inwardly recessed relative to a section of said core first auxiliary wall located in said core second cross-sectional area and also wherein a section of said core second auxiliary wall located in said core first cross-sectional area is inwardly recessed relative to a section of said core second auxiliary wall located in said core second cross-sectional area.
- 17. A composite stud as recited in claim 13 wherein said first retaining slot defines a slot first wall located adjacent said core first cross-sectional area and a slot second wall located adjacent said core second cross-sectional area; said slot first wall extending at an angle relative to said slot plane, said slot first wall extending towards said slot second wall in a direction leading towards said core second auxiliary wall; whereby the configuration of said first retaining slot facilitates the insertion of at least a section of said core component into said base channel along said insertion direction.
- 18. A composite stud as recited in claim 16 wherein said first retaining slot defines a slot first wall located adjacent said core first cross-sectional area and a slot second wall located adjacent said core second cross-sectional area said slot first wall extending at an angle relative to said slot plane, said slot first wall extending towards said slot second wall in a direction leading towards said core second auxiliary wall; whereby the configuration of said first retaining slot facilitates the insertion of at least a section of said core component into said base channel along said insertion direction.
- 19. A composite stud as recited in claim 12 wherein said core component is provided with an insertion recess section, said insertion recess section extending generally at an angle between said core first main wall and said core second auxiliary wall; wherein said insertion recess section is configured and sized for facilitating the insertion of at least a section of said core component into said base channel along said insertion direction.
- 20. A composite stud as recited in claim 19 wherein said insertion recess section has a generally flat configuration.
- 21. A composite stud as recited in claim 19 wherein said insertion recess section has a generally arcuate configuration.
- 22. A composite stud as recited in claim 10 wherein said core component has a generally rectangular cross-sectional configuration defining a core first main wall, a core second main wall, a core first auxiliary wall and a core second auxiliary wall; said core component being configured and sized so as to be insertable into said base channel with said core first main wall positioned generally adjacent said base wall inner surface and said core first and second auxiliary walls positioned generally adjacent a corresponding one of said side wall inner surface; said core component being provided with a pair of insertion recess sections, said insertion recess sections extending generally at an angle respectively between said core first main wall and said core first and second auxiliary walls; wherein said insertion recess sections are configured and sized for facilitating the insertion of at least a section of said core component into said base channel along a direction generally perpendicular to said frame longitudinal axis.
- 23. A composite stud as recited in claim 11 wherein said core component has a generally rectangular cross-sectional configuration defining a core first main wall, a core second main wall, a core first auxiliary wall and a core second auxiliary wall; said core component being configured and sized so as to be insertable into said base channel with said core first main wall positioned generally adjacent said base wall inner surface and said core first and second auxiliary walls positioned generally adjacent a corresponding one of said side wall inner surface; said core component being also configured and sized so that said retaining flanges abuttingly contact said core second main wall when said core component is inserted into said base channel.
- 24. A composite stud as recited in claim 23 wherein said frame base wall defines a frame reinforcement recess, said core first main wall being provided with a generally complementarily-shaped corresponding core reinforcement recess for generally fittingly receiving said frame reinforcement recess when said core component is inserted into said base channel.
- 25. A composite stud comprising:
a generally elongated frame member, said frame member defining a frame longitudinal axis, a frame first longitudinal end and a generally opposed frame second longitudinal end; said frame member having a generally U-shaped cross-sectional configuration defining a frame base wall and a pair of frame side walls; said frame base wall defining a base wall inner surface, a base wall outer surface and a pair of opposed base wall main peripheral edges; each of said frame side walls defining a corresponding side wall inner surface, a side wall outer surface, a side wall first main edge and a generally opposed side wall second main edge; each of said side wall first main edges being attached to a corresponding one of said base wall main peripheral edges; said frame side walls being in a generally perpendicular relationship relative to said base wall and said side wall inner surfaces being in a generally facing relationship relative to each other so as to define a base channel therebetween; a generally elongated core component; said core component defining a core longitudinal axis, a core first longitudinal end and an opposed core second longitudinal end; said core component being configured and sized for allowing said core component to be at least partially inserted in said base channel from an insertion direction generally angled relative to said frame longitudinal axis; retaining means positioned between said frame member and said core component for retaining at least a portion of said core component in said base channel once inserted thereinto; at least one of said side wall first main edges being pivotally attached to a corresponding one of said base wall main peripheral edges so as to allow the corresponding frame side wall to pivot between a side wall first position and a side wall second position, wherein the pivotable frame side wall is in a generally perpendicular relationship relative to said frame base wall when the pivotable frame side wall is in said side wall first position and the pivotable frame side wall is in an outwardly angled relationship relative to said frame base wall when the pivotable frame side wall is in said side wall second position; whereby when the pivotable frame side wall is in said side wall first position it collaborates with the other frame side wall for locking at least a section of said core component in said base channel and when the pivotable frame side wall is in said side wall second position it facilitates the insertion of at least a section of said core component into said base channel along said insertion direction; said retaining means including a retaining flange extending inwardly from said side wall inner surface adjacent said side wall second main edge of both said frame side walls, said retaining flanges extending generally towards each other; said core component having a generally rectangular cross-sectional configuration defining a core first main wall, a core second main wall, a core first auxiliary wall and a core second auxiliary wall; said core component being configured and sized so as to be insertable into said base channel with said core first main wall positioned generally adjacent said base wall inner surface and said core first and second auxiliary walls positioned generally adjacent a corresponding one of said side wall inner surface; said core first auxiliary wall being provided with a first retaining slot extending longitudinally at least partially therealong, said first retaining slot being configured and sized for receiving at least a section of one of said retaining flanges when said core component is inserted into said base channel; said core second auxiliary wall being provided with a second retaining slot extending longitudinally at least partially therealong, said second retaining slot being configured and sized for receiving at least a section of the other one of said retaining flanges when said core component is inserted into said base channel; said core component being provided with an insertion recess section, said insertion recess section extending generally at an angle between said core first auxiliary wall and said core first main wall; wherein said insertion recess section is configured and sized for facilitating the insertion of at least a section of said core component into said base channel along said insertion direction.
- 26. A core component for use with generally elongated frame member so as to form a composite stud, said frame member defining a frame longitudinal axis, a frame first longitudinal end and a generally opposed frame second longitudinal end; said frame member having a generally U-shaped cross-sectional configuration defining a frame base wall and a pair of frame side walls; said frame base wall defining a base wall inner surface, a base wall outer surface and a pair of opposed base wall main peripheral edges; each of said frame side walls defining a corresponding side wall inner surface, a side wall outer surface, a side wall first main edge and a generally opposed side wall second main edge; each of said side wall first main edges being attached to a corresponding one of said base wall main peripheral edges; each of said side wall second main edges being provided with a corresponding retaining flange; said frame side walls being in a generally perpendicular relationship relative to said base wall and said side wall inner surfaces being in a generally facing relationship relative to each other so as to define a base channel therebetween; said core component comprising:
a core body, said core body defining a core longitudinal axis, a core first longitudinal end and an opposed core second longitudinal end; said core body having a generally rectangular cross-sectional configuration defining a core first main wall, a core second main wall, a core first auxiliary wall and a core second auxiliary wall; said core body being configured and sized so as to be insertable into said base channel with said core first main wall positioned generally adjacent said base wall inner surface and said core first and second auxiliary walls positioned generally adjacent a corresponding one of said side wall inner surface; said core first auxiliary wall being provided with a first retaining slot extending longitudinally at least partially therealong, said first retaining slot being configured and sized for receiving at least a section of one of said retaining flanges when said core component is inserted into said base channel; said core second auxiliary wall being provided with a second retaining slot extending longitudinally at least partially therealong, said second retaining slot being configured and sized for receiving at least a section of the other one of said retaining flanges when said core component is inserted into said base channel; said core component being provided with an insertion recess section, said insertion recess section extending between said core first auxiliary wall and said core first main wall; wherein said insertion recess section is configured and sized for facilitating the insertion of at least a section of said core component into said base channel along said insertion direction.
- 27. A core component as recited in claim 26 wherein said insertion recess section extends generally at an angle between said core first auxiliary wall and said core first main wall.
- 28. A core component as recited in claim 26 wherein said core first main wall is short relative to said core second main wall and wherein said second retaining slot is a recessed section, said insertion recess section being generally arcuate and extending between said core first auxiliary wall and said short core first main wall.
- 29. A core component as recited in claim 26 further including an attachment board secured to said core body, said attachment board extending generally outwardly and transversely from said core second main wall along said core second auxiliary wall from a position adjacent said second retaining slot.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is a Continuation-In-Part (C.I.P.) application of patent application Ser. No. 10/144,711 filed on May 15, 2002, now abandoned.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
10144711 |
May 2002 |
US |
| Child |
10438006 |
May 2003 |
US |