WO2009158360A1 - Rack tower for securing crossbars on top of a vehicle - Google Patents

Rack tower for securing crossbars on top of a vehicle Download PDF

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Publication number
WO2009158360A1
WO2009158360A1 PCT/US2009/048334 US2009048334W WO2009158360A1 WO 2009158360 A1 WO2009158360 A1 WO 2009158360A1 US 2009048334 W US2009048334 W US 2009048334W WO 2009158360 A1 WO2009158360 A1 WO 2009158360A1
Authority
WO
WIPO (PCT)
Prior art keywords
tower
cover
screw member
track
crossbar
Prior art date
Application number
PCT/US2009/048334
Other languages
French (fr)
Inventor
Chris Sauter
Dave Condon
Original Assignee
Yakima Products, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Yakima Products, Inc. filed Critical Yakima Products, Inc.
Priority to CA2728703A priority Critical patent/CA2728703A1/en
Priority to EP09770893A priority patent/EP2303641B1/en
Priority to AU2009262302A priority patent/AU2009262302A1/en
Publication of WO2009158360A1 publication Critical patent/WO2009158360A1/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R9/00Supplementary fittings on vehicle exterior for carrying loads, e.g. luggage, sports gear or the like
    • B60R9/04Carriers associated with vehicle roof
    • B60R9/055Enclosure-type carriers, e.g. containers, boxes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R9/00Supplementary fittings on vehicle exterior for carrying loads, e.g. luggage, sports gear or the like
    • B60R9/04Carriers associated with vehicle roof
    • B60R9/045Carriers being adjustable or transformable, e.g. expansible, collapsible

Definitions

  • Sports equipment racks for vehicles typically include a pair of crossbars configured to extend across a vehicle roof width-wise for securing recreational equipment items.
  • each crossbar is attached to the vehicle roof via a pair of towers.
  • rack towers are known, and may be configured to be attached to a vehicle roof in any of a number of different ways.
  • some rack towers are configured for attachment to rain gutters.
  • Others are designed for attachment to vehicle roof rails.
  • Roof rails are elongate, linear, rigid structures mounted to the roofs of many vehicles, often by the vehicle manufacturer.
  • a vehicle with roof rails typically has two rails running in parallel at least partially along the length of the roof. Roof rails may include a slotted track containing one or more mounts or connectors. Roof rails may be raised or fiush with respect to the vehicle roof.
  • Fig. 1 is a perspective view of a cargo rack on the roof of a vehicle.
  • Figs. 2 and 3 are front views of a tower used to connect cross bars to the roof of a vehicle.
  • Fig. 4 is a series of isolated schematic views taken from Fig. 2.
  • Figs. 5 and 8 are partial cross-sectional views of the tower used to connect a cross bar to the roof of a vehicle.
  • Figs. 7 and 8 are partial cross-sectional views isolated from the tower shown In Fig, 5.
  • Fig. 9 is a perspective view of an alternative tower embodiment used to connect a cross bar to the roof of a vehicle.
  • Fig. 10 is a cross-sectional view of the tower embodiment shown in Fig. 9.
  • Fig. 11 is a cross-sectiona! view of another tower embodiment used to attach a cross bar to the roof of a vehicle.
  • FIG. 1 shows rack 20 configured for carrying cargo on vehicle 22.
  • Rack 20 includes a pair of cross bars 24a, 24b.
  • Rack towers 26a-d clamp cross bars 24a, 24b to roof rails 28a, 28b.
  • Towers 26a ⁇ d may be adapted to clamp cross bars onto raised raiis, having a gap between the rail and the roof of the vehicle, and also to flush rails which do not have a gap between the rail and the vehicle roof.
  • the claw assembly has two parts, an upper base portion or upper claw that attaches to the tower and translates horizontally.
  • a lower ciaw or hook portion is vertically adjustable to accommodate different rail thicknesses,
  • a lower hook portion may also be replaceable to extend the adjustment range.
  • the claw vertical position may be retained by teeth on the upper and lower claw portions. To adjust the claw, the lower claw is rotated toward the rail until the teeth clear the teeth on the upper claw. The lower claw may then slide up or down. When the lower daw is rotated back into place, the teeth retain the position of the lower daw.
  • a screw may be used to clamp together the upper and lower claws to retain the adjustment position.
  • the screw is not essential for function but may be helpful to prevent the lower ciamp from accidentally changing positions when the tower Is not mounted on the bar
  • Claw assembly 40 is shown in dashed lines, moved horizontally.
  • Claw assembly 40 includes upper claw or base portion 42.
  • Base portion 42 extends into the housing of tower 28a and is slideabie in a track.
  • Lower claw or hook member 44 is connected to base portion 42 and is slideable vertically, as shown in dashed ⁇ nes.
  • Screw 46 is provided for securing hook member 44 in a selected vertical position relative to base portion 42
  • Fig. 3 is similar to Fig. 2 except hook member 44 has been replaced with hook member 50 in order to provide an extended vertical clamping position.
  • the configuration shown in Fig. 3 adds adaptation to a taller or deeper rail dimension.
  • Fig. 4 shows a series of two views of claw assembly 40.
  • Base portion 42 has teeth 52 which compliment teeth 54 on hook member 44.
  • teeth 54 engage teeth 52, thereby fixing the vertical location of hook member 44 relative to base portion 42.
  • hook member 44 is pivoted in a clockwise direction, disengaging teeth 54 from teeth 52, thereby allowing vertical sliding of hook member 44 relative to base portion 42 in a track 56 in base portion 42
  • Figs. 5 and 8 illustrate mechanisms relating to horizontal positioning of the claw assembly relative to a fixed wall of a tower housing, for purposes of securing the tower to a rail on the top of a vehicle.
  • a claw assembly horizontal position is driven by a long screw.
  • the head of the screw may be attached to a lever and the threads may be attached to an upper claw or base portion of a claw assembly.
  • To clamp the tower onto a rail the screw is turned until the claw is loosely clamping the rail.
  • the adjustment screw may be turned by fingers or a too!.
  • a locking cam cover may then be raised or closed to cover the screw. When the cam cover is raised, a cam surface moves the lever which pulls on the screw.
  • FIGs. 5 and 8 show details of the preferred mechanism for adjusting the horizontal position of claw assembly 40.
  • Horizontal movement of daw assembly 40 relative to fixed internal wall 58 allows clamping of tower 26a to a rail on top of a vehicle.
  • Screw 60 threads into base portion 42 of claw assembly 40.
  • Head 62 of screw 60 is accessible for horizontal adjustment of claw assembly 40 when installing tower 26a on top of a vehicle. Rotation of head portion 62 of screw 60 causes lateral movement of base portion 42 in track 59 of tower 26a.
  • Head 62 of screw 60 is contained in compartment 64 of tower 26a. Pivotal lever 26 is connected to screw 60 near head 62, In use, loose adjustment of claw assembly 40 around a rail (not shown) is accomplished by manipulating head 62 of screw 60.
  • Compartment cover 70 is shown in open position in Fig 5 Fig. 6 shows compartment cover 70 pivoted to a closed position which accomplishes at least several functions First, closure of cover 62 blocks access to head 62 of screw 60, thus prohibiting adjustment or loosening of ciaw 40, i.e., removal of tower 26a from the vehicle.
  • cover 70 has cam surface 71 which engages lever 66 when cover 70 is rotated to its closed position, causing the opposite end of lever 66 to pull screw 60 horizontally, thus tightening claw assembly 40 relative to fixed wall 58 around a rail.
  • Lid 70 as shown, also has lock device 72 for locking cover 70 in the closed position to avoid theft.
  • Figs 7 and 8 show close-up cross-sectional views of another clamp device used to secure the tower's grip on a cross bar.
  • tower 26a grips and supports cross bar 24a.
  • Screw 80 is threaded through wedge member 82.
  • Head 84 on screw 80 may be manipulated to urge wedge 82 forward.
  • head 84 of screw 80 is contained in compartment 64, similar to head 62 of screw 60. Accordingly, access to screw 80 is only available when cover 70 (Figs. 5 and 6) is open.
  • Figs. 9 and 10 illustrate another embodiment of a tower for securing a cross bar to a raised rail on the roof of a vehicle.
  • tower 110 supports cross bar 112.
  • Dial 114 may be manipulated to alter the length of slack on belt 116.
  • Belt 116 is intended to loop around a raised rail.
  • Fig. 10 shows a cross section through tower 110 of Fig. 9.
  • Belt 116 wraps around rotatabie drum 118 which is connected to external dial 114.
  • Pawl 120 is spring biased toward engagement with teeth 122 on drum 118. When pawl 120 engages teeth 122, drum 118 may only be rotated in one direction (clockwise, as shown) to tighten belt 116 around a raised rail.
  • pawl 120 To loosen belt 116, pawl 120 must be manipulated causing rotation in a counterclockwise direction, thus disengaging paw! 120 from teeth 122.
  • dial 114 When pawl 120 is disengaged from teeth 122 on drum 118, dial 114 may be turned in a counterclockwise direction, thus loosening belt 118 and enabiing removal of tower 110 from a rail on top of a vehicle
  • Cover 124 may be opened or closed, in the closed position, cover 124 prevents manipulation of pawl 120. Access to pawl 120 is provided when cover 124 is open. Screw 126 engages and interacts with wedge member 128 to secure tower 110 around cross bar 112, substantially as previously described.
  • Fig. 11 shows another tower embodiment which combines elements of previously described embodiments in a different way.
  • Tower 150 supports cross bar 152.
  • Drum 154 is connected to belt 156.
  • Rotation of drum 154 in a clockwise direction causes belt 156 to pull claw assembly 158 toward fixed wal! 159.
  • daw assembly 158 includes base portion 160 and vertically slideabie hook member 162.
  • Paw! 164 is spring biased into engagement with teeth 166 on drum 154.
  • Cover 168 may be closed or open. When cover 168 is closed, as shown, access to pawl 164 is blocked. When cover 168 is open, paw!
  • pawl 164 may be manipulated in a counterclockwise direction, disengaging pawl 164 from teeth 166 of drum 154, thereby permitting horizontal movement of claw assembly 158 away from fixed wall 159 so that tower 150 may be removed from a rail on top of a vehicle. Similar to previously described configurations, screw 170 engages wedge member 172 for purposes of clamping tower 150 around cross bar 152.
  • the various structural members disclosed herein may be constructed from any suitable materia!, or combination of materials, such as metal, plastic, nylon, plastic, rubber, or any other materials with sufficient structural strength to withstand the loads incurred during use. Materials may be selected based on their durability, flexibility, weight, and/or aesthetic qualities.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Fittings On The Vehicle Exterior For Carrying Loads, And Devices For Holding Or Mounting Articles (AREA)

Abstract

A rack for carrying cargo on top of a vehicle includes a pair of crossbars. Each crossbar spans a pair of rails. The crossbars are connected to the rails by towers. Each tower has a claw assembly which is adjustable along two axes.

Description

RACK TOWER FOR SECURING CROSSBARS ON TOP OF A VEHICLE
Cross-References to Reiated Applications
This application claims priority from U.S. Provisional Patent Application Serial No. 61/132,956, filed June 23, 2008, which is incorporated herein by reference. Also incorporated herein by reference is U.S. Patent Application Publication No, US2006/0273123, published December 7, 2006.
Background
Sports equipment racks for vehicles typically include a pair of crossbars configured to extend across a vehicle roof width-wise for securing recreational equipment items. Typically, each crossbar is attached to the vehicle roof via a pair of towers.
Many different types of rack towers are known, and may be configured to be attached to a vehicle roof in any of a number of different ways. For example, some rack towers are configured for attachment to rain gutters. Others are designed for attachment to vehicle roof rails. Roof rails are elongate, linear, rigid structures mounted to the roofs of many vehicles, often by the vehicle manufacturer. A vehicle with roof rails typically has two rails running in parallel at least partially along the length of the roof. Roof rails may include a slotted track containing one or more mounts or connectors. Roof rails may be raised or fiush with respect to the vehicle roof.
One of the problems with existing towers for securing crossbars on top of vehicles is that the variability in rail configurations requires numerous different tower designs. This places a manufacturing and design burden on manufacturers which increases product costs. The complexity of rail and tower designs also complicates the purchasing process for consumers who must determine which tower design is most appropriate for a given rail configuration. Consumers typically need to select from a line of tower designs configured to fit specifically small raised rails, large raised rails, and flush rails. Reduction of the number of tower products required to fit the various types of vehicle roof rails is an important objective. Brief Description of the Drawings
Fig. 1 is a perspective view of a cargo rack on the roof of a vehicle. Figs. 2 and 3 are front views of a tower used to connect cross bars to the roof of a vehicle.
Fig. 4 is a series of isolated schematic views taken from Fig. 2. Figs. 5 and 8 are partial cross-sectional views of the tower used to connect a cross bar to the roof of a vehicle.
Figs. 7 and 8 are partial cross-sectional views isolated from the tower shown In Fig, 5. Fig. 9 is a perspective view of an alternative tower embodiment used to connect a cross bar to the roof of a vehicle.
Fig. 10 is a cross-sectional view of the tower embodiment shown in Fig. 9. Fig. 11 is a cross-sectiona! view of another tower embodiment used to attach a cross bar to the roof of a vehicle. Detailed Description
This disclosure provides numerous selected exampies of invented devices for carrying cargo on or with a vehicle. Many alternatives and modifications which may or may not be expressly mentioned, are enabled, implied, currently possessed, and are therefore supported by the disclosure. Fig. 1 shows rack 20 configured for carrying cargo on vehicle 22. Rack 20 includes a pair of cross bars 24a, 24b. Rack towers 26a-d clamp cross bars 24a, 24b to roof rails 28a, 28b. Towers 26a~d may be adapted to clamp cross bars onto raised raiis, having a gap between the rail and the roof of the vehicle, and also to flush rails which do not have a gap between the rail and the vehicle roof. Figs. 2 and 3 focus on the tower portion of rack 20, particularly an adjustable claw assembly that is used to adapt the tower to clamp onto different rail configurations, in preferred embodiments, the claw assembly has two parts, an upper base portion or upper claw that attaches to the tower and translates horizontally. A lower ciaw or hook portion is vertically adjustable to accommodate different rail thicknesses, A lower hook portion may also be replaceable to extend the adjustment range. The claw vertical position may be retained by teeth on the upper and lower claw portions. To adjust the claw, the lower claw is rotated toward the rail until the teeth clear the teeth on the upper claw. The lower claw may then slide up or down. When the lower daw is rotated back into place, the teeth retain the position of the lower daw. Clamping the tower against the bar presses the lower claw teeth into the upper claw and retains the vertical position of the hook portion. Additionally, a screw may be used to clamp together the upper and lower claws to retain the adjustment position. The screw is not essential for function but may be helpful to prevent the lower ciamp from accidentally changing positions when the tower Is not mounted on the bar
As shown in Fig. 2, tower 26a is used to clamp cross bar 24a onto a rail (not shown). Claw assembly 40 is shown in dashed lines, moved horizontally. Claw assembly 40 includes upper claw or base portion 42. Base portion 42 extends into the housing of tower 28a and is slideabie in a track. Lower claw or hook member 44 is connected to base portion 42 and is slideable vertically, as shown in dashed ϋnes. Screw 46 is provided for securing hook member 44 in a selected vertical position relative to base portion 42, Fig. 3 is similar to Fig. 2 except hook member 44 has been replaced with hook member 50 in order to provide an extended vertical clamping position. The configuration shown in Fig. 3 adds adaptation to a taller or deeper rail dimension. The curvature profile of hook member 50 is also different from the curvature on hook member 44 which may work better for particular rail shapes. Fig. 4 shows a series of two views of claw assembly 40. Base portion 42 has teeth 52 which compliment teeth 54 on hook member 44. In the first view, teeth 54 engage teeth 52, thereby fixing the vertical location of hook member 44 relative to base portion 42. In the second view, hook member 44 is pivoted in a clockwise direction, disengaging teeth 54 from teeth 52, thereby allowing vertical sliding of hook member 44 relative to base portion 42 in a track 56 in base portion 42
Figs. 5 and 8 illustrate mechanisms relating to horizontal positioning of the claw assembly relative to a fixed wall of a tower housing, for purposes of securing the tower to a rail on the top of a vehicle. In preferred embodiments, a claw assembly horizontal position is driven by a long screw. The head of the screw may be attached to a lever and the threads may be attached to an upper claw or base portion of a claw assembly. To clamp the tower onto a rail, the screw is turned until the claw is loosely clamping the rail. The adjustment screw may be turned by fingers or a too!. A locking cam cover may then be raised or closed to cover the screw. When the cam cover is raised, a cam surface moves the lever which pulls on the screw. When the screw is pulled, it moves the claw a distance, for example, a half an inch which tightens the clamp on the side rail. Closing the cam cover may also cover a second screw that is used to clamp the tower to the cross bar, as discussed in more detail below. Figs. 5 and 8 show details of the preferred mechanism for adjusting the horizontal position of claw assembly 40. Horizontal movement of daw assembly 40 relative to fixed internal wall 58 allows clamping of tower 26a to a rail on top of a vehicle. Screw 60 threads into base portion 42 of claw assembly 40. Head 62 of screw 60 is accessible for horizontal adjustment of claw assembly 40 when installing tower 26a on top of a vehicle. Rotation of head portion 62 of screw 60 causes lateral movement of base portion 42 in track 59 of tower 26a. Head 62 of screw 60 is contained in compartment 64 of tower 26a. Pivotal lever 26 is connected to screw 60 near head 62, In use, loose adjustment of claw assembly 40 around a rail (not shown) is accomplished by manipulating head 62 of screw 60. Compartment cover 70 is shown in open position in Fig 5 Fig. 6 shows compartment cover 70 pivoted to a closed position which accomplishes at least several functions First, closure of cover 62 blocks access to head 62 of screw 60, thus prohibiting adjustment or loosening of ciaw 40, i.e., removal of tower 26a from the vehicle. Further, cover 70 has cam surface 71 which engages lever 66 when cover 70 is rotated to its closed position, causing the opposite end of lever 66 to pull screw 60 horizontally, thus tightening claw assembly 40 relative to fixed wall 58 around a rail. Lid 70, as shown, also has lock device 72 for locking cover 70 in the closed position to avoid theft.
Figs 7 and 8 show close-up cross-sectional views of another clamp device used to secure the tower's grip on a cross bar. As shown in Fig. 7, tower 26a grips and supports cross bar 24a. Screw 80 is threaded through wedge member 82. Head 84 on screw 80 may be manipulated to urge wedge 82 forward. As shown in Fig. 8, as wedge 82 moves forward it also moves upward toward cross bar 24 as it slides up ramp 85. Head 84 of screw 80 is contained in compartment 64, similar to head 62 of screw 60. Accordingly, access to screw 80 is only available when cover 70 (Figs. 5 and 6) is open.
Figs. 9 and 10 illustrate another embodiment of a tower for securing a cross bar to a raised rail on the roof of a vehicle. As shown in Fig. 9, tower 110 supports cross bar 112. Dial 114 may be manipulated to alter the length of slack on belt 116. Belt 116 is intended to loop around a raised rail. Fig. 10 shows a cross section through tower 110 of Fig. 9. Belt 116 wraps around rotatabie drum 118 which is connected to external dial 114. Pawl 120 is spring biased toward engagement with teeth 122 on drum 118. When pawl 120 engages teeth 122, drum 118 may only be rotated in one direction (clockwise, as shown) to tighten belt 116 around a raised rail. To loosen belt 116, pawl 120 must be manipulated causing rotation in a counterclockwise direction, thus disengaging paw! 120 from teeth 122. When pawl 120 is disengaged from teeth 122 on drum 118, dial 114 may be turned in a counterclockwise direction, thus loosening belt 118 and enabiing removal of tower 110 from a rail on top of a vehicle Cover 124 may be opened or closed, in the closed position, cover 124 prevents manipulation of pawl 120. Access to pawl 120 is provided when cover 124 is open. Screw 126 engages and interacts with wedge member 128 to secure tower 110 around cross bar 112, substantially as previously described. Fig. 11 shows another tower embodiment which combines elements of previously described embodiments in a different way. Tower 150 supports cross bar 152. Drum 154 is connected to belt 156. Rotation of drum 154 in a clockwise direction causes belt 156 to pull claw assembly 158 toward fixed wal! 159. Similar to previously described embodiments, daw assembly 158 includes base portion 160 and vertically slideabie hook member 162. Paw! 164 is spring biased into engagement with teeth 166 on drum 154. Cover 168 may be closed or open. When cover 168 is closed, as shown, access to pawl 164 is blocked. When cover 168 is open, paw! 164 may be manipulated in a counterclockwise direction, disengaging pawl 164 from teeth 166 of drum 154, thereby permitting horizontal movement of claw assembly 158 away from fixed wall 159 so that tower 150 may be removed from a rail on top of a vehicle. Similar to previously described configurations, screw 170 engages wedge member 172 for purposes of clamping tower 150 around cross bar 152.
The various structural members disclosed herein may be constructed from any suitable materia!, or combination of materials, such as metal, plastic, nylon, plastic, rubber, or any other materials with sufficient structural strength to withstand the loads incurred during use. Materials may be selected based on their durability, flexibility, weight, and/or aesthetic qualities.
Although the present disclosure has been provided with reference to the foregoing operational principles and embodiments, it will be apparent to those skilled in the art that various changes in form and detail may be made without departing from the spirit and scope of the disclosure. The present disclosure is intended to embrace all such alternatives, modifications and variances. Where the disclosure recites "a," "a first," or "another" element, or the equivalent thereof, it should be interpreted to include one or more such elements, neither requiring nor excluding two or more such elements. Furthermore, any aspect shown or described with reference to a particular embodiment should be interpreted to be compatible with any other embodiment, alternative, modification, or variance.

Claims

WE CIAlM:
1. A rack for carrying cargo on top of a vehicle, the vehicle having a pair of rails, the rails being substantially parallel to each other and to the direction of vehicie travel, the rack comprising: a pair of crossbars, each crossbar having a pair of towers for mounting the crossbar on the rails of the vehicle, each tower including a clamp device, the damp device having a fixed wail and a claw assembly that is siideable in a first track back and forth relative to the fixed wall in a direction parallel to the crossbar, each claw assembly having a base portion connected to the first track, the base portion having a second track substantially perpendicular to the first track, and a hook member that is sSideable in the second track.
2. The rack of claim 1 , wherein the hook member has teeth that engage a corresponding array of teeth on the base portion to fix location of the hook member in the second track.
3. The rack of claim 1 , further comprising: each damp device having a screw member engaging the base portion, the screw member being parallel to the first track and having a head for manipulating the screw member, rotation of the screw member causing movement of the base portion along the first track, relative to the fixed wall.
4. The rack of claim 3, wherein each tower has a compartment containing the head of the screw member, and a psvota! cover blocking access to the head of the screw member when the cover is closed, and permitting access to the head of the screw member when the cover is open.
5. The rack of claim 4, wherein each tower has a lever operatively connected to the screw member, the cover having a cam portion contacting the lever so that closing of the cover causes the lever to pull the screw member and the claw assembly toward the fixed wall.
8. The rack of claim 4, wherein each tower has a iock device associated with the cover for blocking access to the screw member by locking the cover in a closed position.
7. The rack of claim 5, wherein each tower has a iock device associated with the cover for preventing opening of the cover and release of the screw member and claw assembly.
8. The rack of claim 1 , wherein each tower has a plurality of interchangeable hook members of different lengths for adapting the tower to rails of different dimensions.
9. The rack of claim 4 wherein each tower has a crossbar gripping device including a threaded shaft engaging a wedge member which impinges on the crossbar, the threaded shaft having a head accessible in the compartment.
10. A tower for connecting a crossbar to a rail on top of a vehicle comprising: a damp device having a fixed wal! and a daw assembly that is sSideable m a first track back and forth relative to the fixed wall, in a direction parallel to the crossbar, the claw assembly having a base portion connected to the first track, the base portion having a second track substantially perpendicular to the first track, and a hook member that is slideable in the second track.
11 , The tower of claim 10, wherein the hook member has teeth that engage a corresponding array of teeth on the base portion to fix location of the hook member in the second track,
12 The tower of claim 10, further comprising: a screw member engaging the base portion, the screw member being parallel to the first track and having a head for manipulating the screw member, rotation of the screw member causing movement of the base portion aiong the first track, relative to the fixed wait.
13. The tower of claim 12 including a housing having a compartment containing the head of the screw member, and a pivotal cover blocking access to the head of the screw member when the cover is closed, and permitting access to the head of the screw member when the cover is open.
14. The tower of claim 13 further comprising: a lever operativeiy connected to the screw member, the cover having a cam portion contacting the lever so that dosing of the cover causes the lever to pull the screw member and the claw assembly toward the fixed wall
15. The tower of claim 13 further comprising: a lock device associated with the cover for blocking access to the screw member by locking the cover in a closed position.
18. The tower of claim 14 further comprising: a lock device associated with the cover for preventing opening of the cover and release of the screw member and ciaw assembly.
17. The rack of claim 10 further comprising: a plurality of interchangeable hook members of different lengths for adapting the tower to rails of different dimensions.
18. The rack of claim 13 further comprising; a crossbar gripping device including a threaded shaft engaging a wedge member which impinges on the crossbar, the threaded shaft having a head accessible in the compartment,
19. A tower for connecting a crossbar to a rail on the top of a crossbar comprising: a housing having crossbar gripping portion and a fixed wall descending below the crossbar gripping portion, a hook member being moveable relative to the fixed wali, independently along a first axis and a second axis.
20. The tower of claim 19 wherein the first axis is substantially perpendicular to the second axis.
21. The tower of claim 19 wherein the crossbar gripping portion is configured to grip a crossbar in an orientation substantially perpendicular to the rail, the first axis being substantially parallel to the crossbar orientation.
22, The tower of claim 19 wherein the first axis is substantially perpendicular to the rail.
PCT/US2009/048334 2008-06-23 2009-06-23 Rack tower for securing crossbars on top of a vehicle WO2009158360A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CA2728703A CA2728703A1 (en) 2008-06-23 2009-06-23 Rack tower for securing crossbars on top of a vehicle
EP09770893A EP2303641B1 (en) 2008-06-23 2009-06-23 Rack tower for securing crossbars on top of a vehicle
AU2009262302A AU2009262302A1 (en) 2008-06-23 2009-06-23 Rack tower for securing crossbars on top of a vehicle

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US13295608P 2008-06-23 2008-06-23
US61/132,956 2008-06-23

Publications (1)

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WO2009158360A1 true WO2009158360A1 (en) 2009-12-30

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US (2) US8393508B2 (en)
EP (1) EP2303641B1 (en)
AU (1) AU2009262302A1 (en)
CA (1) CA2728703A1 (en)
WO (1) WO2009158360A1 (en)

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WO2010148011A1 (en) * 2009-06-15 2010-12-23 Yakima Products, Inc. Crossbar clamp devices
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WO2012137059A1 (en) * 2011-04-08 2012-10-11 Hubco Automotive Limited Roof rack leg
US8496145B2 (en) 2009-06-05 2013-07-30 Yakima Innovation Development Corporation Vehicle rack for carrying a wheel
WO2014027898A1 (en) * 2012-08-14 2014-02-20 Hubco Automotive Limited Roof rack leg for a roof rail
US9187047B2 (en) 2012-04-30 2015-11-17 Yakima Products, Inc. Retention dock
EP2995502A1 (en) * 2014-09-11 2016-03-16 ATERA GmbH Roof rack assembly for a motor vehicle
DE102014221936A1 (en) 2014-10-28 2016-04-28 Bayerische Motoren Werke Aktiengesellschaft Motor vehicle with a roof rail
US9409527B2 (en) 2007-09-21 2016-08-09 Hubco Automotive Limited Extendable roof rack
WO2018027265A1 (en) * 2016-08-08 2018-02-15 Upside Racks Pty Ltd "attachment device"
US10040403B2 (en) 2015-06-09 2018-08-07 Yakima Products, Inc. Crossbar clamp actuator
US10543771B2 (en) 2016-06-05 2020-01-28 Yakima Products, Inc. Vehicle rooftop rack assembly
US10576903B2 (en) 2016-06-05 2020-03-03 Yakima Products, Inc. Upright bike carrier
CN110949266A (en) * 2019-12-02 2020-04-03 安徽铭旋汽车零部件有限公司 Automobile luggage rack convenient to detach
WO2023086037A1 (en) * 2021-11-11 2023-05-19 Hakan Yildirim Vehicle roof rack

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US20120193493A1 (en) * 2011-02-01 2012-08-02 Klaus Rekasch Rail vehicle having an installation housing secured by means of a bracket
PL2492149T3 (en) * 2011-02-25 2014-01-31 Thule Sweden Ab Roof rack with an indication device for a load carrier foot.
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CA2728703A1 (en) 2009-12-30
US20140097220A1 (en) 2014-04-10
EP2303641A4 (en) 2011-10-05
US8393508B2 (en) 2013-03-12
EP2303641A1 (en) 2011-04-06
AU2009262302A1 (en) 2009-12-30
US20100147914A1 (en) 2010-06-17
EP2303641B1 (en) 2012-11-28

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