Crossbar clamp devices
US-10150423-B2 · Dec 11, 2018 · US
US9682660B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9682660-B2 |
| Application number | US-201615204634-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 7, 2016 |
| Priority date | Oct 9, 2003 |
| Publication date | Jun 20, 2017 |
| Grant date | Jun 20, 2017 |
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A dual sided opening roof mount cargo box for a carrying vehicle includes a lid portion releasably hinge-connected at two lateral sides to a bottom portion of the cargo box for alternate pivotation at each of the two lateral sides between open and closed configurations. A spring-biased strut is operatively interposed between the lid portion and the bottom portion of the cargo box and located at an end region of the cargo box. The spring-biased strut includes two arms operatively interconnected for pivotation relative to one another and a biasing spring operatively interposed therebetween. The spring-biased strut is configured to control an assisting force to have a substantially zero magnitude when the lid portion is in the closed configuration.
Opening claim text (preview).
The invention claimed is: 1. A dual sided opening roof mount cargo box for a carrying vehicle comprising: a lid portion releasably hinge-connected at two lateral sides to a bottom portion of the cargo box for alternate pivotation at each of the two lateral sides between open and closed configurations, the bottom portion being adapted to be mounted to the carrying vehicle; a spring-biased strut operatively interposed between the lid portion and the bottom portion of the cargo box, the spring-biased strut being located at an end region of the cargo box; and the spring-biased strut comprising two arms operatively interconnected for pivotation relative to one another through a delimited range of motion, the two arms having a biasing spring operatively interposed therebetween, the biasing spring configured to operatively influence the two arms during transition between first and second strut orientations that respectively correspond to closed and open configurations of the cargo box, wherein the spring-biased strut is configured to control an assisting force that urges the cargo box into the open configuration to have a magnitude that substantially balances a weight of the lid portion thereby facilitating an operator's even lifting of the lid portion across the delimited range of motion of the two arms, wherein the spring-biased strut is configured to control the assisting force to have a substantially zero magnitude when the lid portion is in the closed configuration. 2. The dual sided opening roof mount cargo box as recited in claim 1 , wherein the spring-biased strut is configured to control the assisting force that urges the cargo box into the open configuration to have a magnitude that substantially balances the weight of the lid portion when operating in proximity of the closed configuration of the cargo box. 3. The dual sided opening roof mount cargo box as recited in claim 1 , wherein the spring-biased strut is configured to control the assisting force to have a magnitude that increases compared to that imposed across the range of motion of the lid portion when operating in proximity of the open configuration. 4. The dual sided opening roof mount cargo box as recited in claim 1 , wherein the lid portion is made from a semi-flexible material. 5. The dual sided opening roof mount cargo box as recited in claim 1 , further comprising a second spring-biased strut located at an opposite end region of the cargo box. 6. A method for operating a dual sided opening roof mount cargo box for a carrying vehicle, the method comprising: providing a dual sided opening roof mount cargo box having a lid portion releasably hinge-connected at two lateral sides to a bottom portion of the cargo box for alternate pivotation at each of the two lateral sides between open and closed configurations, the bottom portion being adapted to be mounted to a carrying vehicle; utilizing a spring-biased strut operatively interposed between the lid portion and the bottom portion of the cargo box, the spring-biased strut being located at an end region of the cargo box; controlling an assisting force via the spring-biased strut to have a magnitude that substantially balances a weight of the lid portion thereby facilitating an operator's even lifting of the lid portion across a delimited range of motion of the spring-biased strut; and controlling the assisting force via the spring-biased strut to have a substantially zero magnitude when the lid portion is in the closed configuration. 7. The method as recited in claim 6 , further comprising controlling the assisting force via the spring-biased strut to have a magnitude that substantially balances the weight of the lid portion when operating in proximity of the closed configuration of the cargo box. 8. The method as recited in claim 6 , further comprising controlling the assisting force via the spring-biased strut to have a magnitude that increases compared to that imposed across the range of motion of the lid portion when operating in proximity of the open configuration. 9. The method as recited in claim 6 , wherein the lid portion is made from a semi-flexible material. 10. The method as recited in claim 6 , wherein a second spring-biased strut is located at an opposite end region of the cargo box. 11. A roof mounted cargo box, comprising: a lid portion releasably hinge-connected to a bottom portion of the cargo box for pivotation between open and closed configurations, wherein the bottom portion is adapted to be mounted to a carrying vehicle; and a spring-biased strut operatively interposed between the lid portion and the bottom portion of the cargo box, wherein the spring-biased strut is located at an end region of the cargo box, wherein the spring-biased strut comprises two arms operatively interconnected, wherein the spring-biased strut is configured to transition between closed and open configurations of the cargo box, wherein the spring-biased strut is configured to control an assisting force that urges the cargo box into the open configuration to have a magnitude that substantially balances a weight of the lid portion across a delimited range of motion of the two arms, and wherein the spring-biased strut is configured to control the assisting force to have a substantially zero magnitude when the lid portion is in the closed configuration. 12. The roof mounted cargo box as recited in claim 11 , wherein the spring-biased strut is configured to control the assisting force to have a magnitude that substantially balances the weight of the lid portion when operating in proximity of the closed configuration of the cargo box. 13. The roof mounted cargo box as recited in claim 11 , wherein the spring-biased strut is configured to control the assisting force to have a magnitude that increases compared to that imposed across the range of motion of the lid portion when operating in proximity of the open configuration. 14. The roof mounted cargo box as recited in claim 11 , wherein the lid portion is made from a semi-flexible material. 15. The roof mounted cargo box as recited in claim 11 , further comprising a second spring-biased strut located at an opposite end region of the cargo box.
for counterbalancing · CPC title
Type of wing · CPC title
Enclosure-type carriers, e.g. containers, boxes (B60R9/048 takes precedence) · CPC title
pivotally mounted {around an axis (E05C3/045, E05C3/40 take precedence)} · CPC title
Assembling or joining · CPC title
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