Stabilized training apparatus
Systems and methods for using a lightweight training bag assembly and apparatus provide the punch-feel of common heavy, ceiling-mounted punching bags. Unwanted motion, sound, and other undesirable side-effects associated with existing punching bag designs are successfully avoided. Various embodiments accomplish this by isolating a supporting base from the impact of a punch by using a flexible shaft assembly that translates an angular motion of a shaft into a lateral motion.
1. A shaft assembly comprising:
a gimbal bearing;
a flexible member;
a shaft extending upward from the flexible member and comprising a first end to mate with the gimbal bearing and a second end to mate with the flexible member, the shaft, in response to a force in a first direction perpendicular to the shaft, performs an angular motion in a first plane;
a set of ball bearings;
a sliding plate cover comprising one or more recesses dimensioned to receive the set of ball bearings;
a sliding plate affixed to the flexible member, the sliding plate mates, via the set of ball bearings, with the sliding plate cover, the flexible member translates the angular motion into a lateral motion in the first direction; and
a shaft spring to dampen the lateral motion.
2. The shaft assembly of claim 1 , wherein the flexible member is a shaft spring assembly.
3. The shaft assembly of claim 2 , wherein the shaft rotates within the first plane about a gimbal bearing.
4. The shaft assembly of claim 1 , wherein the shaft spring limits the lateral motion and causes the shaft to return to a resting position.
5. The shaft assembly of claim 1 , wherein the sliding plate comprises a ring-shaped contact surface.
6. The shaft assembly of claim 5 , further comprising a set of ball bearings that slidably connect to the ring-shaped contact surface.
7. The shaft assembly of claim 6 , wherein the sliding plate cover comprises one or more recesses dimensioned to receive the set of ball bearings.
8. A method for using a training apparatus, the method comprising:
in response to a force in a first direction that causes an angular motion of a shaft extending upward from a flexible member that is affixed to a sliding plate, which mates with a base, the flexible member translates the angular motion into a lateral motion in the first direction; and
using a shaft spring to dampen the lateral motion.
9. The method of claim 8 , further comprising using the angular motion to rotate the shaft about a gimbal bearing within the first plane.
10. The method of claim 8 , wherein the first direction is defined by a first plane that is perpendicular to an axis of the base.
11. The method of claim 8 , further comprising, using the shaft spring to limit the lateral motion and causing the shaft to return to a resting position.
12. The method of claim 11 , further comprising using a set of ball bearings to slidably connect the sliding plate with a sliding plate cover that comprises one or more recesses dimensioned to receive the set of ball bearings.
13. A training apparatus comprising:
a base;
a shaft assembly comprising:
a gimbal bearing;
a flexible member;
a shaft extending upward from the flexible member and comprising a first end to mate with the gimbal bearing and a second end to mate with the flexible member, the shaft, in response to a force in a first direction perpendicular to the shaft, performs an angular motion in a first plane;
a set of ball bearings;
a sliding plate cover comprising one or more recesses dimensioned to receive the set of ball bearings;
a sliding plate affixed to the flexible member, the sliding plate mates, via the set of ball bearings, with the sliding plate cover, the flexible member mates with the base and translates the angular motion into a lateral motion in the first direction; and
a shaft spring to dampen the lateral motion;
a cone-shaped assembly that at least partially envelopes the shaft; and
a substantially cylindrical assembly that at least partially encloses the cone-shaped assembly and serves as a target for the force.
14. The training apparatus of claim 13 , wherein the base comprises a hollow receptacle that is fillable with a solid, semi-solid, or liquid ballast to stabilize the training assembly.
15. The training apparatus of claim 13 , wherein at least some portion of the shaft assembly is height-adjustable.
16. The training apparatus of claim 13 , wherein the angular motion rotates the shaft about a gimbal bearing within the first plane.
17. The training apparatus of claim 16 , wherein the first plane is perpendicular to an axis of the base.
18. The training apparatus of claim 13 , wherein the shaft spring limits the lateral motion and causes the shaft to return to a resting position.
19. The training apparatus of claim 13 , wherein the sliding plate comprises a ring-shaped contact surface.
20. The training apparatus of claim 19 , wherein the set of ball bearings is slidably connect to the ring-shaped contact surface.