The present invention relates to a mounting apparatus for use in a vehicle assembly. In particular, although not exclusively, the invention relates to a mounting apparatus to mount a motor home to a vehicle. However, the invention is not strictly limited in its application to motor homes and may be applied to any situation where it is desirable to secure an auxiliary body to a vehicle.
Caravanning is a popular pastime. However, there are difficulties associated with towing a caravan behind a vehicle. In particular, inexperienced drivers may find the articulated nature of the caravan and vehicle presents difficulties in manoeuvring the caravan, especially backwards. Furthermore, accessibility of a vehicle and a towed caravan may be limited. A popular alternative is a motor home. However, there are, some distinct disadvantages associated with motor homes too. For example, once a suitable campsite base has been selected, if it is further desired to explore in the vehicle away from the campsite, the whole motor home must be packed up and the contents secured before the vehicle can be moved. This may be particularly inconvenient for small day trips from the campsite base. Another disadvantage is that the motor home incorporates a whole vehicle which is not able to be used for other requirements.
It is therefore an object of the present invention to provide an apparatus which addresses the foregoing disadvantages or at least provides the public with a useful choice.
In accordance with a first aspect of the present invention, there is provided, an apparatus for a vehicle assembly comprising a self propelled vehicle and a load mountable to the vehicle in a mounted position relative to the vehicle and being detachable therefrom, the apparatus incorporating a drive means that includes a clamp to clamp onto a predetermined fixed portion of the load, the clamp comprising two clamping portions, one movable relative to the other between a released position and a clamping position, the clamp also being selectively movable in use on a vehicle, relative to the vehicle, to draw the load towards the mounted position and to move the load away from the mounted position on the vehicle which is selectively drivable to move the load away from the mounted position on the vehicle.
The apparatus is preferably slidably mounted to the vehicle and the apparatus is operable to overcome the frictional engagement between the load and the vehicle. In a preferred form of the invention, the apparatus is also operable to secure the load in the mounted position.
In a most preferred form of the invention, the apparatus is also operable to draw the load towards the vehicle from a tripping position relative to the vehicle to the mounted position. A tripping means may also be provided to detect when the load is in the tripping position. Preferably, the apparatus is operable to allow for the load to be partially mounted on the vehicle by driving of the vehicle, with the apparatus becoming operable to draw the load to the mounted position on the load reaching the tripping position relative to the vehicle.
The drive means is most suitably independent of the drive of the vehicle. Where the invention operates to also secure the load to the vehicle, a single drive means may be provided to move the load away from the vehicle and to secure the load in the mounted position.
The clamp may be slidable relative to the vehicle. Furthermore, the clamp may be movable in the clamping position to move the load towards the mounted position. Preferably, the clamp is movable in the released position to move the load away from the mounted position.
The two clamping portions of the clamp may comprise a forward clamping portion and a movable rearward clamping portion, the apparatus being such that when the rearward clamping portion is disposed in the released position and the predetermined portion of the load is moved adjacent to the forward clamping portion, the rearward clamping portion is driven by the drive means to be moved to the clamping position, whereupon the drive means moves the clamp and thereby the load to the mounted position. Furthermore, the apparatus may be operable such that when in the mounted position, selective operation of the drive means causes the forward portion of the clamping means to move rearwardly and thereby move the predetermined portion of the load away from the mounted position on the vehicle.
In a most preferred form of the invention, the rearward clamping portion comprises a pivotally mounted toggle driven to rotate from the released position to the clamping position, such that on being further driven, the clamp is moved forwardly. A biasing means may be provided to bias the forward portion of the clamp rearwardly.
In accordance with a second aspect of the present invention, there is provided a vehicle assembly comprising a self propelled vehicle and a load mountable to the vehicle in a mounted position relative to the vehicle and being detachable therefrom, the vehicle assembly including the apparatus according to the first aspect of the present invention.
Preferably, the load comprises an accommodation unit. Alternatively, the load comprises a tray. The load may have a single axle and a plurality of struts to support the load when detached from the vehicle.
In a preferred form of the invention, the vehicle is provided with a first guide means fixed thereto and the load is provided with second guide means fixed thereto to position the load in the mounted position relative to the vehicle wherein the first guide means is complementary to the second guide means. The guide means may be tapered to facilitate positioning of the load relative to the vehicle. Furthermore, the first and second guide means preferably each comprise elongate members.
In accordance with a third aspect of the invention, there is provided an apparatus for a vehicle assembly comprising a self propelled vehicle and a load mountable to the vehicle in a fixed mounted position relative to the vehicle and being detachable therefrom, the vehicle assembly including a mounting apparatus incorporating a drive means, the load being mountable to the vehicle in part by driving the vehicle towards the load, the drive means being activated on the vehicle reaching a tripping position relative to the load whereupon the drive means is operable to draw the load further towards the vehicle to the mounted position.
Any of the features described above in connection with the first and second aspects of the invention may have application to the third aspect set out above.
In accordance with a fourth aspect of the present invention, there is provided, a vehicle assembly comprising a self propelled vehicle and a load mountable to the vehicle in a mounted position relative to the vehicle and being detachable therefrom wherein the vehicle is provided with a first guide means fixed thereto and the load is provided with second guide means fixed thereto to position the load in the mounted position relative to the vehicle, wherein the guide means are mutually cooperative to facilitate mounting of the load to the vehicle and the guide means are tapered to facilitate positioning of the load relative to the vehicle, the first guide means being of complementary shape to the second guide means when in the mounted position.
The guide means may be of rectangular section and tapered in both dimensions of their cross-sections. Preferably, the first and second guide means each comprise a pair of spaced elongate members. In a preferred form of the invention, the members of the first guide means comprise bars of rectangular section and the members of the second guide means comprise channels, inwardly pen.
In a most preferred form of the invention, the members of the first guide means are mounted to an upwardly facing surface of a trailing portion of the vehicle and the members of the second guide means is mounted to a downwardly facing surface of a leading portion of the load such that the leading portion of the load is mounted atop the trailing portion of the vehicle in the mounted position.
A preferred embodiment of the invention will now be described, by way of example only, with reference to the accompanying drawings, in which:
Referring to
The second portion 16, which forms the drive means 20 of the apparatus 14, includes a support bar 22 linked to the chassis of the vehicle 2 and a pair of spaced walls 24 depending from the bar 22. The walls 24 are joined by floor 25 (
Mounted between the runners 28 midway along their length is a pivot shaft 34 on which a rearward clamping portion, formed as toggle 36, is pivotally mounted (
The second portion 16 further includes guide means in the form of tapered members 56 that have a teflon coating on the opposed outer sides 58 to facilitate sliding engagement with the first portion 18. A switch 90 located on one wall 24 (
A helical spring 48 fixed between projections 50 respectively located on the floor 25 and one of the runners 28 provides sufficient resistance to sliding movement of the forward clamping portion 30 such that initial extension of the ram 44 (
An alternative to the helical spring 48 is shown in
The first portion 18 of the apparatus 14 includes spaced channels 70 shaped complimentarily to the tapered members 56 to receive the tapered members 56 in frictional engagement. The channels 70 are mounted to a frame 72 including a pick up bar 74 for clamping between the abutments 31 and toggle 36 when in the clamping position, and striker plate 76 for actuating the switch 90.
Assembly of the first and second portions 18, 16 is achieved by manoeuvring the vehicle 2 relative to the accommodation unit, such that the tapered members 56 are received in the channels 70. The rounded ends 57 of the tapered members assist with aligning the second portion 16 with the first portion 18 such that an angled or off-centre approach of the second portion 16 toward the first portion 18 will be corrected by the rounded ends coaxing the correct arrangement of the tapered members 56 within the channels 70. Further insertion of the tapered members 56 into the channels 70 brings the striker plate 76 closer to the switch 90. Upon a leading edge 78 of the striker plate 76 tripping the switch 90, the ram 44 is activated to extend the arm 42 and cause upward rotation of the toggle 36 relative to the runners 28. At the point that the ram is activated, the pick-up bar 74 is located in such proximity to the abutments 31 that the upward rotational movement of the toggle 36 captures the pick up bar 74 in a gap between the abutments 31 and toggle 36 in its clamping position (
Operation of the ram 44 to drag the first portion 18 to the mounted position causes the tapered members 56 and channels 70 to frictionally engage, thereby assisting to retain the first portion 18 in the mounted position relative the second portion 16.
The accommodation unit 8 is disengaged from the vehicle 2 by manually actuating ejection button 92 (
It will be appreciated that the accommodation unit would include a number of support struts for stabilising the accommodation unit 8 when it is not engaged with the vehicle 2. Preferably, the accommodation unit 8 further includes a manually operated brake acting on the wheels of the accommodation unit 8 to further prevent movement of the accommodation unit 8 when it is free of the vehicle 2.
Number | Date | Country | Kind |
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PS 1759 | Apr 2002 | AU | national |
2003203469 | Apr 2003 | AU | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/AU03/00449 | 4/15/2003 | WO | 7/1/2005 |