COLLAPSIBLE ROD AND JOINT STRUCTURE TO COUPLE WITH VARIOUS EXISTING ATVs
20190023189 ยท 2019-01-24
Inventors
Cpc classification
B60R9/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to a cargo rack enabled to get installed on an all-terrain vehicle (ATV) for providing an increased amount of cargo that an ATV can carry quickly and easily, by simply sliding the cargo rack into place. The cargo rack herein comprises a sleeve section integrally housed onto an at least one end portion of an ATV frame structure, wherein the sleeve section is further enabled to receive a collapsible U-shaped extension section made up of plurality of hollow tubes, wherein each of the plurality of hollow tubes has a longitudinal pocket enabled to receive yet another hollow tube which further enables providing a collapsible U-shaped extension section.
Claims
1. A cargo rack enabled to be installed on an all-terrain vehicle (ATV) comprises: a sleeve section integrally housed onto an at least one end portion of the ATV, wherein the sleeve section is further enabled to receive a collapsible U-shaped extension section made up of a plurality of hollow tubes, wherein each of the hollow tube has a longitudinal pocket enabled to receive yet another hollow tube.
2. The cargo rack in claim 1; wherein each of the sleeve section and the plurality of hollow tube further comprises at least one groove, wherein at least one groove is enabled to receive at least one vertical extension mean for coupling a cover member to cover a cargo loaded onto the cargo rack.
3. The cargo rack in claim 2; wherein the at least one vertical extension mean is enabled to receive at least one rack member, parallel to the at least one collapsible U-shaped extension section coupled at a back of the ATV.
4. The cargo rack in claim 1; wherein the hollow tubes into the longitudinal pocket features a wingnut or other mechanism to tighten the coupling of the plurality of hollow tubes.
5. The cargo rack in claim 1; wherein a length and a width of the cargo rack is adjusted automatically by an at least one user.
6. The cargo rack in claim 5; wherein a remote-control device enables the automatic adjustment of the length and width of the cargo rack.
7. A cargo rack enabled to be installed on an all-terrain vehicle (ATV) comprises: a. a sleeve section integrally housed onto an at least one end portion of an ATV, wherein the sleeve section is further enabled to receive a collapsible U-shaped extension section made up of a plurality of hollow tubes, wherein each of the hollow tubes has a longitudinal pocket enabled to receive yet another hollow tube; and b. at least one groove present on each of the sleeve section and on the plurality of hollow tubes, wherein at least one groove of each of the sleeve section and of the plurality of hollow tubes is enabled to receive at least one vertical extension mean for coupling a cover member to cover a cargo loaded onto the ATV.
8. The cargo rack in claim 7; wherein the at least vertical extension mean is further made up of a plurality of small section which enables an at least one user to increase or decrease the length of the at least one vertical extension mean.
9. The cargo rack in claim 7; wherein the at least one vertical extension mean is enabled to receive at least one rack member, parallel to the at least one collapsible U-shaped extension section coupled at a back of the ATV.
10. The cargo rack in claim 7; wherein the hollow tubes into the longitudinal pocket features a wingnut or other mechanism to tighten the coupling of the plurality of hollow tubes.
11. The cargo rack in claim 7; wherein an at least one user is enabled to adjust the length and width of the cargo rack automatically.
12. The cargo rack in claim 11; wherein a remote-control device enables the automatic adjustment of the length and width of the cargo rack.
13. A cargo rack enabled to be installed on an all-terrain vehicle (ATV) comprises: a. a sleeve section integrally housed onto an at least one end portion of an ATV, wherein the sleeve section is further enabled to receive a collapsible U-shaped extension section made up of a plurality of hollow tubes, wherein each of the plurality of hollow tube has a longitudinal pocket enabled to receive yet another hollow tube; b. at least one groove present on each of the sleeve section and on the plurality of hollow tubes, wherein at least one groove of each of the sleeve section and of the plurality of hollow tubes is enabled to receive at least one vertical extension mean for coupling a cover member to cover a cargo loaded onto the ATV; and c. at least one rack member enabled to get coupled to at least one vertical extension mean parallel to the cargo rack coupled at a back of the ATV.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The following drawings illustrates exemplary embodiment; however, they are helpful in illustrating objects, features and advantages of the present invention because the present invention will be more apparent from the following detailed description taken in conjunction with accompanying drawings in which:
[0013]
[0014]
[0015]
DETAIL DESCRIPTION OF THE INVENTION:
[0016] Reference will now be made in detail to the exemplary embodiment(s) of the invention, examples of which are illustrated in the accompanying drawings. Whenever possible, the same reference numerals will be used throughout the drawings to refer to the same or like parts.
[0017] References to one embodiment, at least one embodiment, an embodiment, one example, an example, for example, and so on indicate that the embodiment(s) or example(s) may include a feature, structure, characteristic, property, element, or limitation but that not every embodiment or example necessarily includes that feature, structure, characteristic, property, element, or limitation. Further, repeated use of the phrase in an embodiment does not necessarily refer to the same embodiment.
[0018]
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[0020]
[0021] In the preferred embodiment the at least one user is enabled to make a fitting or coupling of the sleeve section [104] onto the frame or onto the body of the ATV [102], wherein the sleeve section [104] herein is like a hollow tube open at both the end enabled to receive a collapsible U-shaped extension section [106] made up of plurality of hollow tubes [108], wherein each of the plurality of hollow tubes [109] has a longitudinal pocket [108a], wherein each of the longitudinal pocket [108a] is enabled to receive yet another hollow tube [108b] among the plurality of the hollow tubes [108]. Once the sleeve section [104] is fitted onto the frame or onto the body of the ATV [102] the at least one user is enabled to carry increased number of cargos lifted by the collapsible U-shaped extension section [106]. Further, if the cargo size is too big to fit into the collapsible U-shaped extension section [106] the at least one user is enabled to adjust the length of the collapsible U-shaped extension section [106] either manually or automatically by simply extending the length of the plurality of hollow tubes [108] of which the collapsible U-shaped extension section [106] is made up of. The at least one user herein, is enabled to increase the length or the width of the hollow tubes [108] and finally of the collapsible U-shaped extension section [106] automatically, by simply accessing the remote-control device provided with the ATV [102]. The remote-control device herein is any smart device or any electronic device, electronically coupled to the ATV [102]. These entire cargo rack [100] herein is made up of a solid material which is light weighted and corrosion resistant which enables providing a cargo rack [100] adaptable for all weather type and is weather protected.
[0022] In other embodiment the at least one user at least is enabled to couple a cover member [114] to cover a cargo loaded onto the ATV [102]. The at least one user herein is enabled to couple a cover member [114] with the help of the at least one vertical extension mean [112]. The at least one vertical extension mean [112] is coupled to the sleeve section [104] and to the plurality of hollow tubes [108] by the at least one groove [110]. Herein, the at least one user when reorganizes the need of the coupling a cover member [114] to the ATV [102] or to the collapsible U- shaped extension section [106] in order to provide protection either to the driver or to the loaded cargo the at least one user is enabled to fit the at least one vertical extension mean [112] to the at-least one groove [110] provided at sleeve section [104] and on the plurality of hollow tubes and is further enabled to attach the cover member [114] to at least one vertical extension mean [112] rested on at least one groove [110]. Also, the at least one user is provided with the freedom to adjust the height of the at least one vertical extension mean [112] in order to provide increased or decreased length of the at least one vertical extension mean [112]. The at least one vertical extension mean [112] is further made up of plurality of small section [112a] which enables the at least one user to increase or decrease the length of the at least one vertical extension mean [112] to attach a cover member [114].
[0023] In yet another embodiment the cargo rack [100] is coupled to the at least one rack member [118] is enabled to get coupled to at least one vertical extension mean [112] parallel to the cargo rack [100] coupled at the back of the ATV [102]. The at least one rack member [118] is enabled to get coupled to at least one opening [112b] present on the plurality of small sections [112a] of the at least one vertical extension mean [112] coupled parallel to the collapsible U-shaped extension section [106] but at the back of the ATV [102]. The at least one rack member [118] herein is enabled to carry increased number of cargos onto the same ATV [102] and therefore enables solving the various space related problem for the increased number of the cargo.