EXERCISE TOOL AND WEIGHT MEMBER THEREOF
A weight member for exercise includes a resilient shell that defines an inner chamber. The inner chamber contains a filling having weighting and shock-absorbing properties. The filling includes a high specific weight material and one of a foamable low specific weight material and a non-foamable low specific weight material. An exercise tool including a handle and at least one weight member attached to the handle is also disclosed.
This application claims priority of Taiwanese application no. 096137253, filed on Oct. 4, 2007.
BACKGROUND OF THE INVENTION1. Field of the Invention
The invention relates to an exercise tool, such as dumbbells, barbells and kettle bells used in bodybuilding, weightlifting and other sports, more particularly to an exercise tool including a weight member that is safe to use.
2. Description of the Related Art
Exercise tools, such as dumbbells, barbells and kettle bells, are often used in bodybuilding and weightlifting.
Conventional dumbbells are formed using metal casting techniques, and the weight of a conventional dumbbell is controlled through the size thereof.
The conventional metal-cast dumbbell is disadvantageous in that, due to its rigidity, damage to a floor or injury to the user can occur when the dumbbell is accidentally dropped. Moreover, different molds are required to manufacture dumbbells having different weights, thereby resulting in high manufacturing costs. Furthermore, since it is difficult to control the amount of impurities in the raw material for making the dumbbells, the specific weight of the raw material can vary from one batch to another, thereby resulting in large errors in the actual weights of manufactured dumbbells.
SUMMARY OF THE INVENTIONTherefore, an object of the present invention is to provide a weight member for exercise that can overcome at least one of the aforesaid drawbacks associated with the prior art.
Another object of the present invention is to provide an exercise tool that includes the weight member.
According to one aspect of the invention, a weight member for exercise comprises a resilient shell that defines an inner chamber. The inner chamber contains a filling having weighting and shock-absorbing properties.
According to another aspect of the invention, an exercise tool includes a handle and at least one weight member for exercise. The weight member comprises a resilient shell that is attached to the handle and that defines an inner chamber. The inner chamber contains a filling having weighting and shock-absorbing properties.
Other features and advantages of the present invention will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in more detail with reference to the accompanying drawings, it should be noted that like reference numerals are used to designate like elements throughout the disclosure.
Referring to
Each weight member 100 includes a resilient shell 2 that defines an inner chamber 22, and a filling 4 that is contained in the inner chamber 22 and that has shock-absorbing and weighting properties. The shell 2 is made of a resilient material, such as rubber, thereby imparting the shell 2 with deformable and shape-restorable properties. In this embodiment, the shell 2 includes an inner lining layer 21 defining the inner chamber 22, an outer skin layer 23 enclosing the inner lining layer 21, and a carcass 26 disposed between the outer skin layer 23 and the inner lining layer 21 to enhance the strength of the shell 2. It is noted that the carcass 26 is optional and may be omitted in other embodiments of the invention. Moreover, while the shell 2 is in a shape of a cylinder with a wall thickness of at least 2 mm in this embodiment, the shape of the shell 2 is not limited thereto in other embodiments of the invention. Furthermore, the number of layers included in the shell 2 can vary depending on actual requirements, e.g., the desired resilience and strength and the cost of the weight member 100. Suitable materials for forming the shell 2 include resilient plastic, polyurethane, thermoplastic rubber, and polyvinyl chloride.
In this embodiment, a coupling seat 7 is fixed to an outer surface 25 of the outer skin layer 23 of the shell 2 of each weight member 100 for threaded coupling with the handle 201. However, other coupling mechanisms may be employed between the shell 2 and the handle 201 in other embodiments of this invention.
The filling 4 includes a low specific weight material for imparting the filling 4 with shock-absorbing and bulk properties, and a high specific weight material for imparting the filling 4 with weighting properties. The low specific weight material may be a foamable or non-foamable material.
The filling 4 is introduced into the inner chamber 22 in granular form. In particular, the filling 4 is formed from low specific weight granules 41 and high specific weight granules 42 that are uniformly mixed in suitable proportions to achieve an appropriate weight for the weight member 100, and is introduced into the inner chamber 22 via a hole 31 that extends through the outer surface 25 of the outer skin layer 23 and an inner surface 24 of the inner lining layer 21. A stopper 33 is used to close the hole 31.
Examples of materials suitable for the low specific weight granules 41 and the high specific weight granules 42 include, but are not limited to: foamable low specific weight materials such as polystyrene, ethylene-vinyl acetate copolymer, shock-absorbing foam, and polyurethane; non-foamable low specific weight materials such as wood fragments, scrap tire fragments, cork fragments, plastic granules, seeds and shells thereof, shells of fruits, fabrics, cotton, and artificial fibers; and non-foamable high specific weight materials such as sand, iron sand, natural ore powder, pebbles, etc.
In this embodiment, a foamable low specific weight material, such as polystyrene, is used for the low specific weight granules 41, and high specific weight sand is used for the high specific weight granules 42.
During manufacture of the weight member 100 of this embodiment, after forming the shell 2 and uniformly mixing the foamable low specific weight granules 41 and the high specific weight granules 42 together, the granules 41, 42 are introduced into the inner chamber 22 via the hole 31. The shell 2 is then placed in a mold, and the assembly of the shell 2 and the granules 41, 42 is heated to cause the foamable low specific weight granules 41 to swell, thereby resulting in the filling 4 that is contained in the inner chamber 22. The resultant filling 4 can have a form of a mixture of foamed low specific weight granules 41 and high specific weight granules 42, at least one low specific weight foam body with high specific weight granules 42 dispersed therein, or a combination of both. The assembly of the shell 2 and the filling 4 is then removed from the mold, and the hole 31 is closed with the use of the stopper 33.
Through the use of the resilient shell 2 and the filling 4 having shock-absorbing and weighting properties, damage to a floor and injury to the user can be alleviated when the exercise tool 200 is accidentally dropped. In addition, a desired weight for the weight member 100 can be achieved through mixing of suitable low specific weight and high specific weight materials in appropriate proportions, thereby dispensing with the need to use different molds to cast different sizes of products. It is thus possible to manufacture weight members 100 with precisely controlled weights at lower manufacturing costs.
Due to the use of the pin mechanism in this embodiment, replacement of the weight members 100 can be conducted with relative ease.
It is noted that the stoppers 33 may be provided directly on the opposite ends of the handle 201 in a possible modification of the third embodiment.
It is noted that the stoppers 33 can be provided directly on the opposite ends of the handle 201 in a possible modification of the fourth embodiment.
In yet another possible modification of the fourth embodiment, in case the tubular extensions 32 of the shells 2 of the weight members 100 are sufficiently thick and strong, the handle 201 can be omitted, and the tubular extensions 32 can be coupled to each other to serve as a handle of the exercise tool 200 (i.e., the handle is formed integrally with the shells 2 of the weight members 100).
In this embodiment, aside from choosing weight members 100 having desired weight characteristics, it is possible to attach more than two weight members 100 to the handle 201 in order to achieve a desired exercising effect.
In addition, while the stoppers 33 of the weight members 100 are configured to permit charging of air into the inner chambers 22 in a manner similar to the fifth and sixth embodiments, such a design is optional in other embodiments of this invention.
Referring to
It should be apparent to those skilled in the art that the shape of the weight members 100 of the exercise tool 200 of this invention is not limited to those of the aforementioned embodiments and can be a custom-designed shape (such as a shape of a human, an animal, a fruit, etc.) in other embodiments of the invention.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Claims
1. A weight member for exercise comprising a resilient shell that defines an inner chamber, said inner chamber containing a filling that has weighting and shock-absorbing properties.
2. The weight member of claim 1, wherein said filling includes a high specific weight material and one of a foamable low specific weight material and a non-foamable low specific weight material.
3. The weight member of claim 1, wherein said filling is formed from a mixture of high specific weight granules and low specific weight granules.
4. The weight member of claim 3, wherein said shell is formed with a hole in spatial communication with said inner chamber for introducing said filling into said inner chamber, said weight member further comprising a stopper for closing said hole.
5. The weight member of claim 4, wherein said stopper is formed with an air inflation hole that permits charging of air into said inner chamber.
6. The weight member of claim 1, wherein said shell is provided with an air inflation hole that permits charging of air into said inner chamber.
7. The weight member of claim 1, wherein said shell is formed with a handle coupling hole that is spatially isolated from said inner chamber and that is adapted for extension of a handle therethrough.
8. The weight member of claim 7, further comprising a rigid inner ring fitted in said handle coupling hole and adapted for extension of the handle therethrough.
9. The weight member of claim 1, wherein said shell is formed with at least one finger hole that is spatially isolated from said inner chamber.
10. An exercise tool, comprising:
- a handle; and
- at least one weight member for exercise, said weight member including a resilient shell that is attached to said handle and that defines an inner chamber, said inner chamber containing a filling having weighting and shock-absorbing properties.
11. The exercise tool of claim 10, wherein said filling includes a high specific weight material and one of a foamable low specific weight material and a non-foamable low specific weight material.
12. The exercise tool of claim 10, wherein said filling is formed from a mixture of high specific weight granules and low specific weight granules.
13. The exercise tool of claim 12, wherein said shell is formed with a hole in spatial communication with said inner chamber for introducing said filling into said inner chamber, said exercise tool further comprising a stopper for closing said hole.
14. The exercise tool of claim 13, wherein said stopper is formed with an air inflation hole that permits charging of air into said inner chamber.
15. The exercise tool of claim 10, wherein said shell has a tubular extension that defines a hole in spatial communication with said inner chamber for introducing said filling into said inner chamber, said handle having one end inserted fittingly into said tubular extension.
16. The exercise tool of claim 10, wherein said handle is connected integrally to said shell.
17. The exercise tool of claim 10, wherein said weight member further includes a coupling seat secured to said shell and fastened to one end of said handle.
18. The exercise tool of claim 17, wherein said coupling seat is formed with a radial pin hole and permits extension of said one end of said handle therein, said handle being provided with a spring-loaded pin mechanism to engage said pin hole.
19. The exercise tool of claim 17, wherein said coupling seat and said shell are formed with a hole in spatial communication with said inner chamber for introducing said filling into said inner chamber.
20. The exercise tool of claim 10, wherein said shell is formed with a handle coupling hole that is spatially isolated from said inner chamber and that permits extension of said handle therethrough.
21. The exercise tool of claim 20, wherein said weight member further includes a rigid inner ring fitted in said handle coupling hole, said handle extending through said inner ring.
22. The exercise tool of claim 10, comprising two of said weight members attached to opposite ends of said handle.
23. The exercise tool of claim 10, wherein said handle has opposite ends secured to said shell of said weight member.
Type: Application
Filed: Sep 15, 2008
Publication Date: Apr 9, 2009
Inventor: Wen-Ching WANG (Taichung Hsien)
Application Number: 12/210,602
International Classification: A63B 21/06 (20060101);