The field to which the disclosure generally relates to includes vehicle production systems including vehicle transport systems.
Vehicle production mechanisms may have various conveyers to move a vehicle during the production process.
A number of variations may include a method which may comprise providing a conveyor constructed and arranged to move a Personal Electric Vehicle (PEV). Next, moving a fully loaded PEV Host to a first location, wherein the PEV Host includes a carry platform. Additionally, removing at least one PEV from the PEV Host at the first location. Next, the remaining PEVs are laterally moved along the carry platform in order to compact the load. Moreover, additional PEVs are loaded from the conveyor onto the carrying platform of the PEV Host. The entire PEV Host is then moved to a second location. At least one PEV is removed from the PEV Host at the second location.
A number of other variations may include a method which may comprise first moving a Personal Electric Vehicle (PEV) Host to a first location, wherein the PEV Host includes at least one PEV disposed on a carry platform. Next, at least one PEV is removed from the PEV Host at a first location. Additionally, at least one PEV is moved laterally along the carry platform in order to compact the load. Next, at least one PEV from the conveyor is loaded onto the carrying platform of the PEV Host. Additionally, the PEV Host is then moved to a second location. Finally, at least one PEV from the PEV Host is removed at a second location.
Yet another variation may include a method which may comprise providing a conveyor constructed and arranged to move a Personal Electric Vehicle (PEV). Next, a fully loaded PEV Host is moved to a first location where the PEV Host may include a carry platform. Next, at least one of the PEVs may be removed from the PEV Host at the first location. Next, the remaining PEVs may be moved laterally across the carry platform in order to compact the load. The lateral movement may be done by a mechanical conveyor which may have individually rotating units which may be constructed and arranged to move the PEVs laterally across the carry platform. Next, additional PEVs may be loaded from the conveyor to the carrying platform of the PEV Host. Next, the PEV Host may be moved to a second location where at least one PEV may be removed from the PEV Host.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
Referring to
Referring now to
As illustrated in the variations shown in
As illustrated in the variations shown in
The carry platform 18 may also include a PEV lockdown and positioning system 46. The PEV lockdown and positioning system 46 may be mechanical interface which may lock PEV 14 onto the Host 16 for transport. During lateral movement by the PEVs 14, the lockdown and positioning system 46 allows the lateral movement of the PEV 14 while controlling the fore/aft position of the PEV 14 on the PEV Host 16 to maintain stability.
As illustrated in the variation shown in
As illustrated in the variations shown in
Additionally, the carry platform 18 may be operably coupled to a motion actuator control system 54 which may be constructed and arranged to activate each of the individually rotating actuators 40 and may have a mechanical or electrical engagement. It is contemplated that the PEV detection system 50 may scan a floor of the carry platform 18 and may be configured to identify the location of each PEV 14 along with any voids on the individually rotating actuators 40. The PEV detection system 50 may be a radio, laser, sonar, visual, or other based system as known by one of ordinary skill in the art for identifying object positions on a carry platform 18.
As illustrated in the variation shown in
Referring now to the variation illustrated in
It is contemplated that the exposure of the individually rotating actuators 40 may be centrally disposed on the carry platform 18. It is also contemplated that the exposed internally rotating actuators 40 may be disposed on a front or rear or any other side of the carry platform 18 as desired by one of ordinary skill in the art. The central drive motor 70 may also be disposed under the load platform 78, or may be disposed adjacent to the load platform 78 as known by one of ordinary skill in the art. It is contemplated that the central drive motor 70 may supply power to each of the individually rotating actuators 40 via belt, chain, or other method as known by one of ordinary skill in the art. It is also contemplated that pulley 72, shaft, clutches 74 or belts 76 may be covered by the load platform 78. As illustrated in
Referring now to the variations illustrated in
As illustrated in
Referring now to the variation illustrated in
The following description of variants is only illustrative of components, elements, acts, product and methods considered to be within the scope of the invention and are not in any way intended to limit such scope by what is specifically disclosed or not expressly set forth. The components, elements, acts, product and methods as described herein may be combined and rearranged other than as expressly described herein and still are considered to be within the scope of the invention.
Variation 1 may include a method which may comprise providing a conveyor constructed and arranged to move a Personal Electric Vehicle, moving a fully loaded PEV Host to a first location wherein the PEV Host may include a carry platform. Next, at least one PEV may be removed from the PEV Host at the first location. The remaining PEVs may then be laterally moved along the carry platform in order to compact the load. Additional PEVs may be loaded from the conveyor to the carrying platform of the PEV Host. The PEV Host may then be moved to a second location where at least one PEV is removed from the PEV Host at the second location.
Variation 2 may include a method as set forth in Variation 1 wherein the PEVs may be of various widths.
Variation 3 may include a method as set forth in any of Variations 1-2 wherein the carry platform may include an electric charging station which may be constructed and arranged to provide an electrical charge to the PEV.
Variation 4 may include a method as set forth in any of Variations 1-3 wherein the carry platform may include a mechanical conveyor which may have individually rotating units which may be constructed and arranged to move the PEVs laterally along the carry platform.
Variation 5 may be a method as set forth in any of Variations 1-4 wherein the Host may further include a PEV lockdown and positioning system constructed and arranged to lock in the fore/aft and lateral positions of the PEVs on the Host.
Variation 6 may include a method as set forth in any of Variations 1-4 wherein the individually rotating units may be constructed and arranged to come into abutting contact with at least one tire of the PEV.
Variation 7 may include a method as set forth in any of Variations 1-6 wherein the PEV Host may further include a detection system which may be constructed and arranged to detect foreign objects on the PEV Host carry platform.
Variation 8 may include a method as set forth in any of Variations 1-7 wherein the step of moving a fully loaded PEV to the first location, removing at least one PEV from the PEV Host at the first location, laterally moving the remaining PEVs along the carry platform to compact the load and loading additional PEVs from the conveyor to the carry platform of the PEV Host may be repeated until a final dismemberment location is reached.
Variation 9 may include a method which may include first moving a Personal Electric Vehicle (PEV) Host to a first location wherein the PEV Host may include at least one PEV disposed on a carry platform. At least one PEV from the PEV Host may be removed at the first location. At least one PEV may be laterally moved across the carry platform in order to compact the load. Additionally, at least one PEV from the conveyor may be loaded onto the carrying platform of the PEV Host. Next, the PEV Host may be moved to a second location where at least one PEV from the PEV Host may be removed.
Variation 10 may include a method as set forth in Variation 9 wherein the PEVs may be of various widths.
Variation 11 may include a method as set forth in any of Variations 9-10 wherein the carry platform may include an electric charging station which may be constructed and arranged to provide an electrical charge to the PEV.
Variation 12 may include a method as set forth in any of Variations 9-11 wherein the carry platform may include a mechanical conveyor having individually rotating units which may be constructed and arranged to move PEVs laterally along the carry platform.
Variation 13 may include a method as set forth in any of Variations 9-12 wherein the Host may further include a PEV lockdown and positioning system which may be constructed and arranged to lock the PEV in the fore/aft and lateral positions on the Host.
Variation 14 may include a method as set forth in any of Variations 9-13 wherein the individually rotating units may be constructed and arranged to come into abutting contact with at least one tire of the PEV.
Variation 15 may include a method as set forth in any of Variations 9-14 wherein the PEV Host may further include a detection system which may be constructed and arranged to detect foreign objects on the PEV Host carry platform.
Variation 16 may include a method which may comprise providing a conveyor constructed and arranged to move a Personal Electric Vehicle (PEV). A fully loaded PEV Host may be moved to a first location wherein the PEV Host may include a carry platform. At least one PEV may be removed from the PEV Host at the first location. The remaining PEVs may be moved laterally along the carry platform in order to compact the load using a mechanical conveyor having individually rotating units which may be constructed and arranged to move PEVs laterally along the carry platform. Additional PEVs may be loaded from the conveyor to carrying platform of the PEV Host. Finally, the PEV Host may be moved to a second location where at least one PEV from the PEV Host may be removed.
Variation 17 may include a method as set forth in Variation 16 wherein the PEVs may be of various widths.
Variation 18 may include a method as set forth in any of Variations 16-17 wherein the carry platform may include an electric charging station which may be constructed and arranged to provide an electrical charge to the PEV.
Variation 19 may include a method as set forth in any of Variations 16-18 wherein the Host may further include a PEV lockdown and positioning system which may be constructed and arranged to lock the PEV in the fore/aft and lateral positions on the Host.
Variation 20 may include a method as set forth in any of Variations 16-19 wherein the steps of moving a fully loaded PEV Host to a first location; removing at least one PEV from the PEV Host at the first location; laterally moving the remaining PEVs along the carry platform to compact the load; and loading additional PEVs from the conveyor to the carrying platform of the PEV Host may be repeated until a final disembarkment location is reached.
The above description of select variations within the scope of the invention is merely illustrative in nature and, thus, variations or variants thereof are not to be regarded as a departure from the spirit and scope of the invention.