The invention considers a weightlifting disc to be used on a bar.
Earlier, weightlifting discs were made as solid metal disc plates, but nowadays weightlifting discs normally are made of a soft material like rubber or other elastomeric material with a central hub. Competition weights as well as training discs are normally made of rubber or other elastomeric compositions with high durability and are provided with a metal hub. The elastomeric (soft) material is used to absorb the shock and deceleration when a weightlifter drops or bumps the weights against the floor, which results in a better sound dampening and shock absorption. The metal hub provides a longer lifetime of the weight disc since there is deformation (tensioning) of the soft material around the center hole of the disc when dropped on the floor repeatedly.
The metal hub is of course positive for the lifetime of the disc, but yet there is a problem with the strength of the weight disc over time. One problem with these “soft” discs with a metal hub (or other hard material) is that the available area for distribution of a shock force between the metal hub and the surrounding softer disc, when the barbell with the weight disc is dropped on the floor, is limited to the interaction surface between the hub and the disc. This means that a great impact force acts on a small area of the soft weightlifting disc material which results in a tension peak at the impact area and a local deformation of the material, which is negative for the lifetime of the weightlifting disc. Over time, this also results in a gap between the hub and the disc part.
Thus, there is a need of an improved strength of a weightlifting disc to lengthen the lifetime of a weightlifting disc of elastomeric material.
It is an object of the invention to address at least some of the problems and issues outlined above. It is possible to achieve these objects and others by a weightlifting disc as defined in the attached independent claims.
According to an aspect of the invention, a reinforced weightlifting disc to be arranged on a bar is disclosed. The weightlifting disc comprises a disc part of elastomeric material, wherein the disc part comprises an outer edge and an inner edge, wherein the inner edge is arranged close to a center of the disc part and the outer edge of the disc part is distal from the center of the disc part. The weightlifting disc further comprises at least one reinforcing device, arranged into the disc part circumferentially around the center, between the outer edge and the inner edge of the disc part, wherein the reinforcing device is arranged at a distance from the inner edge of the disc part such as elastomeric material is arranged between the inner edge of the disc part and the reinforcing device.
By this design, an impact force transferred from the floor via the disc part to the bar, is spread out over a large area via the circumferentially arranged reinforcing device. Further, by that the reinforcing device is arranged into the disc part at a distance from the inner edge (radially seen) such as elastomeric material is arranged between the inner edge and the reinforcing device, a dampening effect is disclosed as well as that the impact force in a certain part/direction is distributed to a larger area of the reinforcing device and further to the disc part before it reaches the bar. The risk of crack formation in the elastomeric material (rubber) is significantly reduced due to the force distribution and the risk of an increase of the gap between a hub part (if applicable) and the elastomeric disc part is significantly reduced. By that, the form of the disc is kept over time and tests show that the lifetime of the weightlifting disc of elastomeric material is significantly lengthened. Another aspect is that the individual disc part may be thinner such as more discs may be applied on the bar. No prior art solution provides a weightlifting disc with all these advantages.
According to an embodiment, the reinforcing device is substantially ring-shaped. Such a solution provides a good distribution of impact forces between the disc part and the bar, wherein the forces are circumferentially distributed around substantially the whole disc part, i.e. in all directions before the transfer to the bar.
According to an embodiment, the reinforcing device comprises spaced holes arranged to accommodate elastomeric material of the outer disc part. By having a number of holes distributed around the reinforcing device, which holes are arranged to accommodate elastomeric material, the transfer area available for distributing and take care of an impact force via the reinforcing device and disc part is greatly increased compared to a solid reinforcing device. Further, the reinforcing device gets good contact with the elastomeric material without the need of any pretreatment of the surfaces of the reinforcing device, which normally is needed when for example moulding different materials together; like metal and rubber for example.
According to an embodiment, the weightlifting disc further comprises a hub part arranged at the center of the disc part, wherein the disc part substantially surrounds the hub part when the hub part is arranged at the center of the disc part. The hub part is arranged to be attached at the inner edge of the disc part; and the hub part comprises a center hole for receiving a bar, A hub part, preferably made of metal, provides a complement to the reinforcing device because it also provides a transfer of an impact force from the disc part, via the hub part and further to the bar, Since there is elastomeric material between the inner edge of the disc part and the reinforcing device, there is elastomeric material between the reinforcing material and the hub part, which is positive as described above. The hub part may also be attach to the sides of the disc part, at least close to the inner edge of the disc part, which means that the hub part may serve both as a sleeve through the weightlifting disc, arranged to be in contact with the bar, by the attachment to the inner edge, and further as a reinforcement due to the contact with a part of the sides around the center of the disc.
According to an embodiment, the inner edge of the disc part comprises at least a protruding part which protrudes radially towards the center of the disc part, wherein the protruding part is arranged to be attached to the hub part. The protruding part is arranged as a protruding lip which is arranged around the inner edge of the disc part and thus extends towards the center of the weightlifting disc. The protruding part increases the distance between the reinforcing device and the inner edge of the disc part and if a hub is arranged at the inner edge, it increases the transferring area between the hub part and the disc part and provides a good fixation between the disc part and the hub part since the protruding part may be pressed between the two halves of the hub part, if the hub part is designed in that way.
According to an embodiment, the reinforcing device is made of metal, Preferably the metal is cast iron, which is a robust material well suited for the purpose, but other materials like steel, light metals like aluminium or the like may be used.
According to an embodiment, the reinforcing device is made of plastic. A plastic material provides a cost efficient solution for providing a reinforced weightlifting disc.
According to an embodiment, the reinforcing device and the disc part are moulded together to a unit such as the elastomeric material of the disc part encloses the reinforcing device.
In yet an embodiment, the hub part comprises two halves connectable to each other, wherein at least the inner edge of the disc part is arranged to be pressed between the two halves of the hub part when they are connected to each other. Such a solution is very good since the two halves so to speak clamps the disc part (and the protruding part if applicable) from both sides whereby a solid and robust attachment of the hub part is achieved as well as large area for transfer of the sudden impact force from a drop of the barbell with the assembled weightlifting discs. The two halves may preferably extend radially a distance from the center, which is enough to “enclose” at least a part of the disc part in which the reinforcing device is arranged, which by that is arranged with at least a part (nearest the inner edge) between the two halves.
According to an embodiment, the reinforcing device comprises a substantially cylindrical inner ring, a substantially cylindrical outer ring and an annular body connecting the inner ring and the outer ring. The reinforcing device looks more or less like a rim of a wheel, wherein the rings and annular body may have equal or different widths. For example, the outer ring may be wider than the inner ring or vice versa and the annular body may be thinner or wider than the outer ring and/or the inner ring. If the reinforcing device comprises holes, these may be arranged in any of the inner ring, the outer ring and the annular body. The ring-shaped reinforcing device is easy to manufacture the continuous ring-shape is very good for taking care of the impact force and distribute it along the reinforcing device and further to the disc part.
According to an embodiment, the annular body of the reinforcing device comprises a plurality of holes circumferentially distributed along the annular body and transverse the annular body. The holes are arranged to accommodate the elastomeric material of the disc part, and since the weightlifting device preferably is produced by moulding the reinforcing device and the disc part together to one unit, the reinforcing device transfers a shock force very well to the elastomeric material and over a large area, which is very positive for the lifetime of the weightlifting disc By that the holes are filled with elastomeric disc material, the material in the holes act as transverse beams in cooperation with the reinforcing device. The solution is very strong compared to prior art solutions. The holes are also positive since the reinforcing device do not need any pretreatment to make it stick to the elastomeric material, which otherwise would be needed.
According to an alternative embodiment compared to the one above, the annular body of the reinforcing device comprises a plurality of partitions extending between the inner ring and the outer ring, wherein the plurality of partitions together or with at least one of the inner ring or the outer ring forms the holes of the reinforcing device. In this embodiment, the annular body looks and function like a framework connected to the inner and outer ring.
According to an embodiment, the hub part comprises an insert arranged in the center hole of the hub part. The insert may be in plastic or in metal, but most preferred is a plastic insert. The insert acts as a vibration dampener and a silencer between the bar and the hub and the insert may be moulded to the hub/hub parts or may be a loose or pressed in place in the hub.
Further possible features and benefits of this solution will become apparent from the detailed description below.
The solution will now be described in more detail by means of exemplary embodiments and with reference to the accompanying drawings, in which:
Briefly described, an improved weightlifting disc of elastomeric material and comprising a reinforcing device, is disclosed.
The preferred embodiment of the weightlifting disc 10 further comprises a hub part 30 which comprises a first half 30a and a second half 30b. The hub part 30 is to be arranged at the center 13 of the disc part 10, such as the disc part 10 substantially surrounds the hub part 30 when the hub part 30 is arranged at the center 13 of the disc part 10, The hub part 30 is arranged to be attached at the inner edge 12 of the disc part 10, and the hub part 30 comprises a center hole 35 arranged for receiving a bar. The a first half 30a and a second half 30b of the hub 30 are connectable to each other, wherein at least the inner edge 12 of the disc part 10 is arranged to be pressed between the first and the second halves 30a, 30b of the hub part 30 when they are connected to each other. The first half 30a and a second half 30b are preferably fixedly connected to each other by means of screws 37, The hub part 30 may comprise an insert 36, which is to be arranged at the center hole 35 of the hub part 30. The insert 36 is arranged as a vibration dampener and a silencer between the bar and the hub 30 and the insert 36 may be moulded to the hub/halves 30a, 30b or may be a loose or pressed in place in the hub 30.
As can be seen in
The insert 36 preferably is a plastic cylinder like the insert 36 visible in
The first and second halves 30a, 30b of the hub part 30, which are visible in
Although the description above contains a plurality of specificities, these should not be construed as limiting the scope of the concept described herein but as merely providing illustrations of some exemplifying embodiments of the described concept. It will be appreciated that the scope of the presently described concept fully encompasses other embodiments which may become obvious to those skilled in the art, and that the scope of the presently described concept is accordingly not to be limited, Reference to an element in the singular is not intended to mean “one and only one” unless explicitly so stated, but rather “one or more.” All structural and functional equivalents to the elements of the above-described embodiments that are known to those of ordinary skill in the art are expressly incorporated herein and are intended to be encompassed hereby.
Filing Document | Filing Date | Country | Kind |
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PCT/SE2020/050441 | 5/4/2020 | WO |