The present disclosure relates to personal hiking equipment and specifically to convertible hiking sticks that convert into tripods for supporting objects, such as cameras, thereon.
Hikers use hiking sticks to traverse difficult terrain, and hikers also use hiking sticks on moderate- and easy-difficulty trails and/or to clear brush. In addition to hiking sticks, hikers may carry other objects with them. These objects can include water, food, first aid equipment, camera equipment, camera tripod, and/or additional clothes. However, hikers often seek to minimize the number of objects they carry to thereby reduce the weight they carry.
The present inventor recognized hikers often pack a camera tripod for use during the hike. However, conventional camera tripods are often cumbersome, bulky, and/or heavy. Accordingly, the present inventor endeavored to develop hiking sticks that are convertible into tripods such that the hiker does not need to pack a separate conventional camera tripod. Through research and development, the present inventor has developed the convertible hiking sticks disclosed herein below.
This Summary is provided to introduce a selection of concepts that are further described below in the Detailed Description. This Summary is not intended to identify key or essential features of the claimed subject matter, nor is it intended to be used as an aid in limiting the scope of the claimed subject matter.
In certain examples, a convertible hiking stick includes a handle extending along a center axis and a first leg and a second leg that couple to the handle and extend along the center axis. The hiking stick is convertible into a tripod such that the first leg is in a first bore of the handle, the second leg is in a second bore of the handle, the first leg extends transverse to the second leg, and the first leg, the second leg, and the handle together support the hiking stick with respect to a surface.
Various other features, objects, and advantages will be made apparent from the following description taken together with the drawings.
The present disclosure is described with reference to the following Figures. The same numbers are used throughout the Figures to reference like features and like components.
The handle 20 extends along the center axis 13 between a first handle end 21 and an opposite second handle end 22. The handle 20 also has an exterior surface 23, a first interior surface 24 (
The legs, namely a first leg 40 and a second leg 50, are coupled to the handle 20 and extend along the center axis 13 when the hiking stick 10 is in the hiking configuration (
In one example, a first fitting 31 on the second handle end 22 selectively engages the first leg 40 to thereby couple the first leg 40 to the handle 20. When the first fitting 31 engages the first leg 40, the first fitting 31 prevents the first leg 40 from moving relative to the handle 20 along the center axis 13. A second fitting 32 on the first leg 40 selectively engages the second leg 50 to thereby couple the second leg 50 to the first leg 40. When the second fitting 32 engages the second leg 50, the second fitting 32 prevents the second leg 50 from moving relative to the first leg 40 along the center axis 13. The fittings 31, 32 are any suitable device capable of locking onto the legs 40, 50 and/or fixing the legs 40, 50 relative to each other and/or the handle 20. In one non-limiting example, the fittings 31, 32 are nut and bolt assemblies that extend through holes (not shown) in the handle 20 and/or the legs 40, 50. In another non-limiting example, the fittings 31, 32 are clamps that clamp onto the legs 40, 50.
The handle 20 and the legs 40, 50 are formed from any suitable material such as metal alloy, carbon fiber, plastic, wood, and the like. In certain examples, the handle 20 and/or the legs 40, 50 are formed with an aluminum alloy bonded to a carbon fiber tube with plastic tips or fittings. In another example, the handle 20 and/or the legs 40, 50 are formed with an aluminum alloy and carbon fiber tubes. In still other examples, the handle 20 and/or the legs 40, 50 are formed with only carbon fiber components. In certain examples, the handle 20 and/or the legs 40, 50 are coated with a sealant. In one example, the second leg 50 has a ground engaging spike 55.
As noted above, and depicted in
The first interior surface 24 and the second interior surface 26 define the first bore 25 and the second bore 27, respectively. The bores 25, 27 are through-bores that extend through the handle 20 such that each bore 25, 27 has two opposing open ends. Note that in other examples, the bores 25, 27 are closed-ended bores having one closed end such that the bores 25, 27 do not fully extend through the handle 20. The bores 25, 27 are spaced apart from each other along the handle 20, and the bores 25, 27 each extend along center bore axes 35 (see
Referring to
To convert the hiking stick 10 into the tripod (
Once the hiking stick 10 is in the tripod configuration (as shown on
Turning now to
The cross-sectional shape of the first bore 25 generally corresponds to the cross-sectional shape of the first leg 40, and the first interior surface 24 has one or more flattened surfaces 36. As the first leg 40 slides in the first bore 25, the flattened surfaces 45 of the first leg 40 freely slide along the flattened surfaces 36 of the first interior surface 24. The first interior surface 24 can have any number of flattened surfaces 36, and first interior surface 24 depicted in
To move the first leg 40 from the unlocked position (
The present inventor recognized that in certain examples, the first leg 40 preferably has three locking surfaces 43 that each engage flattened surfaces 45 of the first interior surface 24 to thereby reduce “wobbling” between the first leg 40 and the handle 20 when the hiking stick 10 is in the tripod configuration (
In certain examples, the first leg 40 cannot slide in the second bore 27. For instance, the cross-sectional size of the first leg 40 is larger than the cross-sectional size of the second bore 27, and thus, the first leg 40 cannot fit or slide in the second bore 27. In addition, the cross-sectional size of the second leg 50 is smaller than the cross-sectional size of the first bore 25, and thus, while the second leg 50 can slide in the first bore 25, the second leg 50 cannot lock to the handle 20 while in the first bore 25. Thus, the first leg 40 must be positioned in the first bore 25 and the second leg 50 must be positioned in the second bore 27.
In certain examples, the legs 40, 50 and/or the handle 20 are formed from elastic or compressible materials such that the legs 40, 50 or the handle 20 elastically deform as the legs 40, 50 move into the locked position (
Citations to a number of references are made herein. The cited references are incorporated by reference herein in their entireties. In the event that there is an inconsistency between a definition of a term in the specification as compared to a definition of the term in a cited reference, the term should be interpreted based on the definition in the specification.
In the present description, certain terms have been used for brevity, clarity, and understanding. No unnecessary limitations are to be inferred therefrom beyond the requirement of the prior art because such terms are used for descriptive purposes and are intended to be broadly construed. The different apparatuses, systems, and method steps described herein may be used alone or in combination with other apparatuses, systems, and methods. It is to be expected that various equivalents, alternatives and modifications are possible within the scope of the appended claims.
This written description uses examples to disclose the invention, including the best mode, and also to enable any person skilled in the art to make and use the invention. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.
The present disclosure is based on and claims priority to U.S. Provisional Patent Application No. 62/861,780 filed Jun. 14, 2019, the disclosure of which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
194175 | Reynolds | Aug 1877 | A |
473357 | Serves | Apr 1892 | A |
504326 | Chapman | Sep 1893 | A |
1063106 | Bell | May 1913 | A |
1138417 | Rottenbug | May 1915 | A |
1319397 | Kelsey | Oct 1919 | A |
2690211 | Wentz | Sep 1954 | A |
2844345 | Sherman | Jul 1958 | A |
D261199 | Dockery | Oct 1981 | S |
D274100 | Axton | Jun 1984 | S |
D285861 | Jackson | Sep 1986 | S |
4742837 | Rise | May 1988 | A |
D297887 | Hattersley | Oct 1988 | S |
4796648 | Goulter | Jan 1989 | A |
5482072 | Cimino | Jan 1996 | A |
D368011 | McCoy | Mar 1996 | S |
D383049 | Concari | Sep 1997 | S |
D396742 | Raymond | Aug 1998 | S |
D448152 | Folise | Sep 2001 | S |
D448153 | Folise | Sep 2001 | S |
D517795 | Mival | Mar 2006 | S |
D518630 | Mival | Apr 2006 | S |
D553848 | Barker | Oct 2007 | S |
D661964 | Pangborn | Jun 2012 | S |
8960211 | Eng | Feb 2015 | B2 |
9044072 | Lindsay | Jun 2015 | B2 |
D745260 | Kosuge | Dec 2015 | S |
9609925 | Lenhart | Apr 2017 | B2 |
10264860 | Rau | Apr 2019 | B1 |
D880144 | Nelson | Apr 2020 | S |
D894586 | Ballentine | Sep 2020 | S |
10856629 | Unice | Dec 2020 | B1 |
20040066064 | Neely | Apr 2004 | A1 |
20050150532 | Lin | Jul 2005 | A1 |
20100038498 | Enos | Feb 2010 | A1 |
20150056002 | Olds | Feb 2015 | A1 |
20200337424 | Friederich | Oct 2020 | A1 |
Number | Date | Country |
---|---|---|
494905 | Mar 1930 | DE |
29718507 | Dec 1997 | DE |
624929 | Jul 1927 | FR |
668962 | Nov 1929 | FR |
191321326 | Sep 1914 | GB |
188153 | Nov 1922 | GB |
281964 | Dec 1927 | GB |
20150123044 | Nov 2015 | KR |
Number | Date | Country | |
---|---|---|---|
20200390204 A1 | Dec 2020 | US |
Number | Date | Country | |
---|---|---|---|
62861870 | Jun 2019 | US |