IP Library Granted Patent US 8,707,942
Granted Patent B2
US 8,707,942 · App. 13/481,931 · Granted Apr 29, 2014

Rotary wheel for ball pitching machine

Inventor: Sheng-Hsiao Lu (Tainan, TW)
A63B69/406A63B2069/401F41B4/00A63B2069/0008
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Quick Facts
Patent No.
US 8,707,942
App. No.
13/481,931
Granted
Apr 29, 2014
Kind
B2
Abstract

A rotary wheel for a ball pitching machine includes a wheel body and a resilient member engaged on an outer periphery of the wheel body. A shaft hole is provided in the wheel body for receiving a shaft of a motor of the ball pitching machine. The wheel body includes a spring portion arranged between the shaft hole and the outer periphery of the wheel body in a radial direction and including first and second bending portions both of which protrude from two sides of the wheel body respectively. When the rotary wheel is driven to turn by the motor, a frictional force of contact of the resilient member with a ball makes the ball shot outwardly, and the rotary wheel is not broken or damaged due to the spring portion compressed in the radial direction to absorb the impact energy.

Claims (9)

1. A rotary wheel for a ball pitching machine, comprising:

a wheel body including first and second surfaces opposite along an axis and a shaft hole provided in the wheel body and adapted to be extended through by a shaft of a motor of the ball pitching machine, with the rotary wheel further including an annular spring portion formed between the shaft hole and an outer periphery of the wheel body in a radial direction perpendicular to the axis, with the spring portion including a first bending portion protruding outwardly from the first surface and a second bending portion protruding outwardly from the second surface of the wheel body, with each of the first and second bending portions capable of being compressed or stretched in the radial direction, and

a resilient member engaged on the outer periphery of the wheel body.

2. The rotary wheel according to claim 1 , with the spring portion including a first annular wall extending outwardly from the first surface, a second annular wall extending outwardly from the second surface, and a third annular wall interconnected between outer ends of the first and second annular walls, defining the first and second bending portions, with each of the first and second annular walls extending at an obtuse angle relative to the radial direction of the wheel body, and with each of the first and second bending portions having V-shaped cross sections.

3. The rotary wheel according to claim 2 , with the spring portion further including a plurality of cutting slots provided in each of the first and second bending portions and spaced in a peripheral direction of the spring portion for adjusting resilience of the spring portion.

4. The rotary wheel according to claim 3 , with the spring portion further including an annular stiffening rib formed on each of the first and second surfaces of the wheel body and located between the outer periphery and the spring portion of the wheel body in the radial direction.

5. The rotary wheel according to claim 3 , with the rotary wheel further including spaced inner and outer convex ribs formed on one of the first and second surfaces and around the shaft hole of the wheel body, with two opposite engaging slots provided in each of the inner and outer convex ribs of the wheel body and aligned in the radial direction, defining a coupling socket for a pin rod inserted and coupled, and with the pin rod extending through a connecting hole formed in the shaft of the motor.

6. The rotary wheel according to claim 1 , with the first and second bending portions developed to be a continuous wavelike shape and having an S-shaped cross section.

7. The rotary wheel according to claim 6 , with the spring portion further including a plurality of cutting slots provided in each of the first and second bending portions and spaced in a peripheral direction of the spring portion for adjusting resilience of the spring portion.

Continuity (1)
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