Bi-axial ball tip for use with a mobility cane
11864640 ยท 2024-01-09
Assignee
Inventors
Cpc classification
A45B1/04
HUMAN NECESSITIES
International classification
Abstract
A bi-axial ball tip for use with a mobility cane. The bi-axial ball tip includes an omni ball, at least two mirrored brackets, and a grip. The mirrored brackets form a chamber to accommodate part of the omni ball, allowing the omni ball to rotate around a horizontal axis inside the chamber. The rotation of the omni ball when the ball engages a ground surface and is provided to aid visually impaired people. The grip connects the mirrored brackets in a manner such that the mirrored brackets and the omni ball, together, rotate around a vertical axis which is orthogonal to the horizontal axis.
Claims
1. A mobility cane comprising: a mobility cane stick adapted to be held at an inclined angle relative to the ground by a user; and a bi-axial ball tip engaged with the mobility cane stick, said bi-axial ball tip comprising: an omni ball having a ground-contacting exterior surface which is generally spherical in configuration; at least two mirrored brackets; and a grip; wherein each of the mirrored brackets has an upper part and a bottom part; wherein when the upper parts of the mirrored brackets are matched together, they form a tube; wherein a vertical axle is placed in the upper parts of the mirrored brackets within the formed tube; wherein the vertical axle is inserted into an aperture defined in a top of a bearing and a bolt is threaded through the aperture defined in the bearing and into a bottom of the vertical axle; wherein the bottom parts of the mirrored brackets have arcuate surfaces which form a chamber to accommodate part of the omni ball rotating inside, allowing the omni ball to roll across the ground while rotating around a horizontal axis inside the chamber; and wherein the grip connects the mirrored brackets in a manner that the mirrored brackets and the omni ball together rotate around a vertical axis which is orthogonal to the horizontal axis; and wherein the mobility cane is movable in a lateral direction relative to a motion of the user while the omni ball is in contact with the ground.
2. The mobility cane of claim 1, wherein a bolt is screwed from outside through the bottom part of each of the mirrored brackets, is threaded through a bearing; and then threaded into a tube axle.
3. The mobility cane of claim 1, wherein the mobility cane stick has a first end and a second end; wherein the bi-axial ball tip is provided at the second end of the mobility cane stick, and wherein the omni-ball is aligned with the mobility cane stick.
4. The mobility cane of claim 3, wherein the vertical axis about which the bi-axial tip rotates extends along a shaft of the mobility cane stick.
5. The mobility cane of claim 4, wherein the horizontal axis is defined by a tube axle or two central points of heads of fasteners which secure the biaxial ball tip to the mobility cane stick.
6. The mobility cane of claim 1, wherein, during use, the bi-axial ball tip is able to rotate about the horizontal axis and the vertical axis without being lifted off the ground.
7. A mobility cane comprising: a mobility cane stick adapted to be held at an inclined angle relative to the ground by a user; and a bi-axial ball tip engaged with the mobility cane stick, said bi-axial ball tip comprising: an omni ball having a ground-contacting exterior surface which is generally spherical in configuration; at least two mirrored brackets; and a grip; wherein the mirrored brackets form a chamber to accommodate part of the omni ball, allowing the omni ball to roll across the ground while rotating around a horizontal axis inside the chamber; wherein the grip connects the mirrored brackets in a manner that the mirrored brackets and the omni ball together rotate around a vertical axis which is orthogonal to the horizontal axis; wherein the mobility cane is movable in a lateral direction relative to a motion of the user while the omni ball is in contact with the ground; and wherein the vertical axis about which the bi-axial tip rotates passes through the horizontal axis about which the omni ball rotates.
8. A mobility cane comprising: a mobility cane stick adapted to be held at an inclined angle relative to the ground by a user; and a bi-axial ball tip engaged with the mobility cane stick, said bi-axial ball tip comprising: an omni ball having a ground-contacting exterior surface which is generally spherical in configuration; at least two mirrored brackets; and a grip; wherein the mirrored brackets form a chamber to accommodate part of the omni ball, allowing the omni ball to roll across the ground while rotating around a horizontal axis inside the chamber; wherein the grip connects the mirrored brackets in a manner that the mirrored brackets and the omni ball together rotate around a vertical axis which is orthogonal to the horizontal axis; wherein the mobility cane is movable in a lateral direction relative to a motion of the user while the omni ball is in contact with the ground; and a compression bracket threadedly engaged with the grip of the bi-axial ball tip, wherein the compression bracket connects the mobility cane stick and the bi-axial ball tip to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred features, embodiments and variations of the invention may be discerned from the following Detailed Description which provides sufficient information for those skilled in the art to perform the invention. The Detailed Description is not to be regarded as limiting the scope of the preceding Summary of the Invention in any way. The Detailed Description will refer to several drawings as follows.
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DETAILED DESCRIPTION OF THE INVENTION
(14) The following detailed description of the invention refers to the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings and the following description to refer to the same and like parts. Dimensions of certain parts shown in the drawings may have been modified and/or exaggerated for the purposes of clarity or illustration.
(15) Referring to
(16) Referring to
(17) Referring to
(18) Referring to
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(20) As shown in
(21) The bottom parts of the mirrored brackets 14, including the left bracket 142 and the right bracket 144, also have arcuate surfaces which form a chamber accommodate the omni ball 12 rotating inside. One bolt 26 is screwed from outside through the bottom part of the left mirrored bracket 142 or the right mirrored bracket 144 and a bearing 22, which in a preferred embodiment is made of nylon, then threaded into the tube axle 28. The omni ball 12 is therefore included in the chamber formed by the mirrored brackets 14. As a result, mirrored brackets 14 form an integrity unit with the tube on the top and the chamber on the bottom when they are clamped together as shown in
(22) Referring to
(23) In another preferred embodiment, the tube axle 28 and the vertical axle 20 are made of aluminium with inner threads which are matched with the threads on the bolts 202 and 26. It should be noted that the inner threads or threads on the bolts are not shown in the Figures which does not affect the protection scope of the present invention.
(24) In another preferred embodiment, the grip 16 has and injection moulded thread section on the top as shown in
(25) The bi-axial ball tip 10 provided by the present invention may be used at a natural angle from the user's hand to the ground. It should be noted that, in an embodiment of the present invention, the bi-axial ball tip 10 can be inclined to the ground, between 0-60 or 90-30 degrees.
(26) When the described components are assembled, the omni ball 12 itself can roll on the ground around a horizontal axis, which is controlled by and can move laterally to the motion of the user. Meanwhile the omni ball 12 and the mirrored brackets 14 together can also rotate around a vertical axis that is orthogonal to the horizontal axis, which is also controlled by enables the user to change directions or turn around. As a result, the bi-axial ball tip 10 can move around, at the same time, rotate forwards or backwards in any direction without being lifted off of the ground, but just moving on the ground, as shown in
(27) Moreover, an important feature of the present invention that by rotating on the ground instead of dragging across it, the present invention provides a low wear and long-life ball tip use for mobility canes.
(28) It should be also noted that the bi-axial ball tip provided by the present invention is adaptable to fit most existing mobility canes.
(29) The reader will now appreciate the present invention which provides a bi-axial ball tip for use with a mobility cane which is easier to use than present solutions and that results in less wear and tear on the ball tip.
LIST OF COMPONENTS
(30) The drawings include the following integers. 10 a cane tip 12 an omni ball 14 mirrored brackets 142 left bracket 144 right bracket 16 grip 18 bracket top 20 vertical axle 202 a bolt 202 22 bearings 24 olive 26 bolts 28 tube axle 40 cane stick
(31) Further advantages and improvements may very well be made to the present invention without deviating from its scope. Although the invention has been shown and described in what is conceived to be the most practical and preferred embodiment, it is recognized that departures may be made therefrom within the scope of the invention, which is not to be limited to the details disclosed herein but is to be accorded the full scope of the claims so as to embrace any and all equivalent devices and apparatus. Any discussion of the prior art throughout the specification should in no way be considered as an admission that such prior art is widely known or forms part of the common general knowledge in this field.
(32) In the present specification and claims (if any), the word comprising and its derivatives including comprises and comprise include each of the stated integers but does not exclude the inclusion of one or more further integers.