1. Technical Field
The present disclosure relates to dispensing devices, and particularly to a product dispensing device in a vending machine.
2. Description of Related Art
In many vending machines, the dispensing assembly includes a rigid coil and a motor. The motor rotates the coil causing products to be pushed along a channel to eventually drop into a bin accessible by a customer of the vending machine. However, after many rotations, an error of the starting angle will gradually increase, resulting in some of the products unable to be pushed to drop into the bin. Thus, it is necessary to adjust an initial phase of the motor. Therefore, there is room for improvement in the art.
Many aspects of the embodiments can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings in which like references indicate similar elements. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean “at least one.”
The frame 10 includes a plurality of dividing plates 102. A goods channel 101 is defined between adjacent dividing plates 102. The dispensing assembly 20 can be mounted in each goods channel 101.
Referring to
The rigid coil 21 includes a proximal end 211 and a plurality of helical coils. The space between each adjacent helical coils of the plurality of helical coils is sufficient to hold a product.
The motor 22 includes a rotating shaft 221. The rotating shaft 221 includes a first shaft portion 222 and a second shaft portion 223. Each of the first shaft portion 222 and the second shaft portion 223 is substantially cylindrical. A diameter of the second shaft portion 223 is greater than a diameter of the first shaft portion 222. The first shaft portion 222 extends from a bottom end of the second shaft portion 223. A first teeth set 224 extends from the bottom end of the second shaft portion 223 and surrounds the first shaft portion 222. The first teeth set 224 can be sawteeth or freewheel teeth.
The adjusting member 23 is substantially cylindrical and includes a bottom wall 232 and a ring wall 231 extending from an edge of the bottom wall 232. The bottom wall 232 defines a receiving hole 233 for receiving the first shaft portion 222. An aperture of the receiving hole 233 is greater than the diameter of the first shaft portion 222 and smaller than the diameter of the second shaft portion 223. Thus, when the first shaft portion 222 is received in the receiving hole 233, the adjusting member 23 can slide relative to the first shaft portion 222 along an axial direction. A second teeth set 234 extends from the bottom wall 231 to engage with the first teeth set 224. The ring wall 231 defines two through holes 235 for the insertion of the proximal end 211. In one embodiment, the two through holes 235 are located in a minor arc of the ring wall 231, so that the proximal end 211 will not insert through the receiving hole 233 when the proximal end 211 is inserted in the two through holes 235. In another embodiment, a separation plate 236 extends from the bottom wall 232 to separate the proximal end 211 from the first shaft portion 222 and act as a guide for the insertion of the proximal end 211. The second teeth set 234 can be sawteeth or freewheel teeth.
The limiting member 24 defines a securing hole 241 and is substantially “C” shaped. The limiting member 24 can be secured to a distal end of the first shaft portion 222 to block the adjusting member 23 from sliding out of the first shaft portion 222. An aperture of the securing hole 241 is substantially equal to the diameter of the first shaft portion 222.
In assembly, the adjusting member 23 is moved towards the motor 22 to pass the first shaft portion 222 through the receiving hole 233. The first teeth set 224 faces the second teeth set 234. The resilient member 25 surrounds the first shaft portion 222. The limiting member 24 is secured to the distal end of the first shaft portion 222 and secures the resilient member 25 between the bottom wall 232 and the limiting member 24. The resilient member 25 abuts the bottom wall 232 and maintains an elastic force to force the meshing of the first teeth set 224 with the second teeth set 234. Thus, the adjusting member 23 is secured to the rotating shaft 221, and the adjusting member 23 is located in a first position. The proximal end 211 is inserted through the two through holes 211, and the separation plate 236 is between the first shaft portion 222 and the proximal end 211. The rigid coil 21 is thus located in an initial position.
When the motor 22 is stopped, the adjusting member 23 on the second shaft portion 223 can be twisted by hand in one direction of rotation of the motor 22, and the second teeth set 234 disengages from the first teeth set 224, and the resilient member 25 is elastically deformed. The adjusting member 23 is rotatable around the first shaft portion 222 to adjust the starting position of the two through holes 235 to a desired position. When the adjusting member 23 is released, the resilient member 25 rebounds to push the adjusting member 23 towards the second shaft portion 223 and allow the second teeth set 234 to mesh again with the first teeth set 224.
In use, the motor 22 rotates the rigid coil 21 through a single revolution or angle, causing products to be pushed along the goods channel 101 to eventually drop into a delivery bin. After many rotations, an error of the signal revolution and the angle will gradually increase, resulting in some of the products being unable to be pushed into the delivery bin. In this position, the adjusting member 23 can be twisted around to a second position, to suitably position the two through holes 235, and then released. Thus, the initial or starting position of the rigid coil 21 is adjusted to ensure proper dispensing of goods.
It is to be understood, however, that even though numerous characteristics and advantages have been set forth in the foregoing description of embodiments, together with details of the structures and functions of the embodiments, the disclosure is illustrative only and changes may be made in detail, especially in the matters of shape, size, and the arrangement of parts within the principles of the disclosure, to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
| Number | Date | Country | Kind |
|---|---|---|---|
| 2012103458489 | Sep 2012 | CN | national |