Auxiliary tool for barbells and anti-slip method for barbells during use
11648452 ยท 2023-05-16
Inventors
Cpc classification
A63B71/0054
HUMAN NECESSITIES
A63B2071/009
HUMAN NECESSITIES
International classification
Abstract
Disclosed are an auxiliary tool for barbells and an anti-slip method for barbells during use. The auxiliary tool comprises a sleeve which is composed of a first sleeve, a second sleeve, a third sleeve, a first sleeve wall, a second sleeve wall and a third sleeve wall, wherein the first sleeve wall is sequentially connected to the second sleeve wall and the third sleeve wall to form a complete sleeve cavity, the first sleeve wall and the third sleeve wall cover at least one part of a barbell bar, and the second sleeve wall expands outwards in the sleeve cavity to form an inner cavity; when the barbell bar is sequentially inserted into the first sleeve, the second sleeve and the third sleeve from a sleeve opening, the inner cavity is filled with gas to form a crush-resistant cavity; and protrusions are formed in an inner wall of the third sleeve, and a vent hole is formed in a bottom wall of the third sleeve. The auxiliary tool for barbells is small in size and convenient to carry and use, can be disposed around a barbell bar to serve as a fulcrum to allow trainers to make different lifting motions without being limited by the field, and can provide multiple training angles.
Claims
1. An auxiliary tool for barbells, the tool comprising a sleeve which is composed of a first sleeve, a second sleeve, a third sleeve, a first sleeve wall, a second sleeve wall and a third sleeve wall, wherein the first sleeve wall is sequentially connected to the second sleeve wall and the third sleeve wall to form a complete sleeve cavity, the first sleeve wall and the third sleeve wall cover at least one part of a barbell bar, and the second sleeve wall expands outwards in the sleeve cavity to form an inner cavity; wherein when the barbell bar is sequentially inserted through a sleeve opening into the first sleeve, the second sleeve and the third sleeve, the inner cavity is filled with gas to form a crush-resistant cavity; and wherein protrusions are formed on an inner wall of the third sleeve, and a vent hole is formed in a bottom wall of the third sleeve.
2. The auxiliary tool for barbells according to claim 1, wherein the first sleeve wall, the second sleeve wall and the third sleeve wall are formed integrally, and a wall thickness of the first sleeve wall increases gradually towards the second sleeve wall.
3. The auxiliary tool for barbells according to claim 2, wherein the sleeve is made of an elastic material.
4. The auxiliary tool for barbells according to claim 1, wherein the sleeve is made of an elastic material.
5. The auxiliary tool for barbells according to claim 4, wherein anti-slip lines are disposed on an outer wall of the sleeve.
6. The auxiliary tool for barbells according to claim 5, wherein the anti-slip lines are honeycomb-shaped or striped.
7. The auxiliary tool for barbells according to claim 1, wherein an air hole communicated with the vent hole in the bottom wall of the third sleeve is formed in an outer wall of the sleeve, and an inner diameter of the air hole is less than that of the vent hole.
8. An anti-slip method for barbells during use, the method comprising providing an anti-slip bushing, disposing the anti-slip bushing around an end of a barbell bar, and forming a pressurizing cavity in a middle section of the anti-slip bushing; when the barbell bar is inserted into a bottom of the anti-slip bushing, filling the pressurizing cavity with gas to enable a portion, corresponding to the pressurizing cavity, of an outer surface of the anti-slip bushing to contact a ground, such that the end of the barbell bar is prevented from directly applying a pressure to the anti-slip bushing; and disposing anti-slip lines on the outer surface of the anti-slip bushing to increase the friction between the anti-slip bushing and the ground, such that an anti-slip effect is realized.
9. The anti-slip method for barbells during use according to claim 8, wherein the anti-slip bushing is formed integrally.
10. The anti-slip method for barbells during use according to claim 8, wherein a vent hole is formed in a bottom of the anti-slip bushing.
11. The anti-slip method for barbells during use according to claim 9, wherein a vent hole is formed in a bottom of the anti-slip bushing.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7) In the figures: 1, sleeve; 11, first sleeve; 12, second sleeve; 13, third sleeve; 21, first sleeve wall; 22, second sleeve wall; 23, third sleeve wall; 4, sleeve cavity; 41, inner cavity, pressurizing cavity; 5, protrusion; 6, vent hole; 7, anti-slip line; 8, air hole; 9, anti-slip bushing; 10, barbell bar; 11, barbell weight.
DETAILED DESCRIPTION OF THE INVENTION
(8) Embodiment 1: As shown in
(9) In a preferred embodiment of the invention, as shown in
(10) In a preferred embodiment of the invention, the sleeve 1 is made of rubber. By means of the properties of rubber, the damage of a barbell to the ground during training can be reduced, and the service life of the auxiliary tool for barbells is prolonged. When the barbell bar 10 is sequentially inserted into the first sleeve 11, the second sleeve 12 and the third sleeve 13, the inner cavity 41 forms the crush-resistant cavity full of gas, which can effectively buffer the pressure applied to the ground by the barbell during training to reduce damage to the ground and can also protect the end of the barbell bar 10 sleeved with the auxiliary tool.
(11) In a preferred embodiment of the invention, anti-slip lines 7 are disposed on an outer wall of the sleeve 1, and the anti-slip lines 7 are preferably honeycomb-shaped. The anti-slip lines 7 can effectively increase the friction between the auxiliary tool and the ground during training, such that slipping is avoided during training, which may otherwise affect the training effect; by adoption of the honeycomb-shaped structural design, a negative pressure will be formed in the honeycomb socket by the deformation of the axillary tool when the outer wall of the sleeve 1 contacts the ground when the auxiliary tool is used for training on the smooth ground, such that the auxiliary tool can be easily adhered to the smooth ground, and the phenomenon that slipping is likely to happen when the auxiliary tool is used for training on the smooth ground is avoided.
(12) In a preferred embodiment of the invention, the protrusions 5 are formed on the inner wall of the third sleeve. The protrusions 5 can increase the friction of the end of the barbell bar 10 in the third sleeve 13, such that the barbell bar 10 is prevented from rotating or slipping with respect to the auxiliary tool. The inner diameter of the air hole 8 is less than that of the vent hole 6, such that gas in the sleeve 1 can be discharged more smoothly, and the barbell bar 10 can be inserted into the sleeve 1 more easily.
(13) Embodiment 2: as shown in
(14) As shown in
(15) Embodiment 3: According to the auxiliary tool in Embodiment 1, the sleeve 1 is made of silicone.
(16) Embodiment 4: According to the auxiliary tool in Embodiment 1, the anti-slip lines 7 are striped.
(17) The above embodiments are merely preferred ones of the invention, and are not used to limit the invention. Various modifications and changes can be made to the invention by those skilled in the art. Any amendments, equivalent substitutions and improvements made based on the spirit and principle of the invention should fall within the protection scope of the invention.