Bean grinder and automatic coffee pot equipped with the same
10433669 ยท 2019-10-08
Assignee
Inventors
Cpc classification
A47J31/42
HUMAN NECESSITIES
A47J42/40
HUMAN NECESSITIES
International classification
A47J31/42
HUMAN NECESSITIES
Abstract
A bean grinder having a bean grinding chamber part, a dynamic grinding wheel, a static grinding wheel, and a residue removing plate. The bean grinding chamber part comprises a bean grinding chamber and a powder discharge channel. An inner wall of the bean grinding chamber is provided with a planar first inner wall disposed close to a powder discharge port and located at a rear side of the powder discharge port in a rotation direction of the dynamic grinding wheel. The first inner wall is tangent to a circle of the inner wall of the bean grinding chamber. An inner wall of the powder discharge channel comprises a second inner wall located at the side of the powder discharge port provided with the first inner wall, and the second inner wall is inclined outwards at a given angle with respect to the first inner wall.
Claims
1. A bean grinder, comprising a bean grinding chamber part, a dynamic grinding wheel, a static grinding wheel, and a residue removing plate, wherein, said bean grinding chamber part comprises a bean grinding chamber and a powder discharge channel, a powder discharge port is defined on an inner wall of said bean grinding chamber, said powder discharge channel is located at one side of said bean grinding chamber, and a leading end of said powder discharge channel is in connection with said powder discharge port; said dynamic grinding wheel and said residue removing plate are installed successively, from top to bottom, to a rotor shaft disposed in the bean grinding chamber; said static grinding wheel is fixed in said bean grinding chamber and engaged with said dynamic grinding wheel; said inner wall of said bean grinding chamber is provided with a first inner wall that is planar, said first inner wall is disposed close to said powder discharge port and located at a rear side of said powder discharge port in a rotation direction of said dynamic grinding wheel, and said first inner wall is tangent to a circle (O) of said inner wall of said bean grinding chamber; and an inner wall of said powder discharge channel comprises a second inner wall located at a same side of said powder discharge port with said first inner wall, and said second inner wall is inclined outwards at a given angle with respect to said first inner wall, 0<<180, wherein said powder discharge channel comprises a primary channel adjacent to said powder discharge port, and a secondary channel distant from said powder discharge port, a width of said primary channel is smaller than a width of said secondary channel, and a stepped surface is formed between said primary channel and said secondary channel, and said inner wall of said powder discharge channel comprises a third inner wall opposite to said second inner wall, and said stepped surface is located at said third inner wall.
2. The bean grinder of claim 1, wherein 1090.
3. The bean grinder of claim 1, wherein a width (L) of said powder discharge port is 10 cm to 20 cm.
4. The bean grinder of claim 1, wherein said first inner wall and said second inner wall are connected in a manner of circular arc transition.
5. The bean grinder of claim 1, wherein a height of said stepped surface is 2 cm to 10 cm.
6. The bean grinder of claim 1, wherein a top inner wall of said powder discharge channel is arc-shaped.
7. The bean grinder of claim 6, wherein an opening is defined at a top of said powder discharge channel, said opening is provided with a powder slot cover, and an inner surface of said powder slot cover is arc-shaped.
8. An automatic coffee pot comprising a bean grinder, and the bean grinder comprising a bean grinding chamber part, a dynamic grinding wheel, a static grinding wheel, and a residue removing plate, wherein, said bean grinding chamber part comprises a bean grinding chamber and a powder discharge channel, a powder discharge port is defined on an inner wall of said bean grinding chamber, said powder discharge channel is located at one side of said bean grinding chamber, and a leading end of said powder discharge channel is in connection with said powder discharge port; said dynamic grinding wheel and said residue removing plate are installed successively, from top to bottom, to a rotor shaft disposed in the bean grinding chamber; said static grinding wheel is fixed in said bean grinding chamber and engaged with said dynamic grinding wheel; said inner wall of said bean grinding chamber is provided with a first inner wall that is planar, said first inner wall is disposed close to said powder discharge port and located at a rear side of said powder discharge port in a rotation direction of said dynamic grinding wheel, and said first inner wall is tangent to a circle (O) of said inner wall of said bean grinding chamber; and an inner wall of said powder discharge channel comprises a second inner wall located at a same side of said powder discharge port with said first inner wall, and said second inner wall is inclined outwards at a given angle with respect to said first inner wall, 0<<180, wherein said powder discharge channel comprises a primary channel adjacent to said powder discharge port, and a secondary channel distant from said powder discharge port, a width of said primary channel is smaller than a width of said secondary channel, and a stepped surface is formed between said primary channel and said secondary channel, and said inner wall of said powder discharge channel comprises a third inner wall opposite to said second inner wall, and said stepped surface is located at said third inner wall.
9. The automatic coffee pot of claim 8, wherein 1090.
10. The automatic coffee pot of claim 8, wherein a width (L) of said powder discharge port is 10 cm to 20 cm.
11. The automatic coffee pot of claim 8, wherein said first inner wall and said second inner wall are connected in a manner of circular arc transition.
12. The automatic coffee pot of claim 8, wherein a height of said stepped surface is 2 cm to 10 cm.
13. The automatic coffee pot of claim 8, wherein a top inner wall of said powder discharge channel is arc-shaped.
14. The automatic coffee pot of claim 13, wherein an opening is defined at a top of said powder discharge channel, said opening is provided with a powder slot cover, and an inner surface of said powder slot cover is arc-shaped.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6) The elements in the diagrams are denoted as follows:
(7) 10bean grinding chamber part;
(8) 11bean grinding chamber;
(9) 12inner wall of bean grinding chamber;
(10) 12afirst inner wall;
(11) 13powder discharge port;
(12) 14powder discharge channel;
(13) 141primary channel;
(14) 142secondary channel;
(15) 14asecond inner wall;
(16) 14bthird inner wall;
(17) 14cstepped surface;
(18) 14dopening;
(19) 15bottom of bean grinding chamber;
(20) 15ashaft hole;
(21) 20static grinding wheel;
(22) 30dynamic grinding wheel;
(23) 40residue removing plate;
(24) 50rotor shaft;
(25) 60powder slot cover;
(26) 70driving device.
DETAILED DESCRIPTION OF DISCLOSED EMBODIMENTS
(27) The present invention will be illustrated in detail with reference to the accompanying drawings and embodiments. It should be understood that various embodiments and the features thereof can be combined mutually under the condition of no conflict.
(28) Referring to
(29) Referring to
(30) A rotor shaft 50 is installed in the pivot hole 15a of the bottom 15 of the bean grinding chamber. A dynamic grinding wheel 30 and a residue removing plate 40 are installed, from top to bottom, coaxially to the rotor shaft 50 in the bean grinding chamber 11. The static grinding wheel 20 and the dynamic grinding wheel 30 are incorporated to grind coffee beans, and the static grinding wheel 20 is fixedly installed in the bean grinding chamber 11. A driving device 70, which includes a motor and a gearbox, is provided to rotate the rotor shaft 50.
(31) Referring further to
(32) In a working state, the rotor shaft 50 is driven by the driving device 70 to rotate the dynamic grinding wheel 30 and the residue removing plate 40. The static grinding wheel 20 is engaged with the dynamic grinding wheel 30 to grind coffee beans into powder. The ground coffee powder is thrown, by the rotating of the residue removing plate 40, out of the bean grinding chamber 11 and into the powder discharge channel 14 along the first inner wall 12a, and then directed to the brewing device of a coffee pot by the powder slot cover provided with the arc-shaped inner surface.
(33) When blocking occurs and the coffee powder needs to be cleaned up, through restarting the bean grinding function after removing coffee powder from a coffee powder collector, the dynamic grinding wheel 30 will be rotated to drive the residue removing plate 40 to rotate thereby throwing the coffee powder with the centrifugal force of rotation out from the bean grinding chamber 11 along the first inner wall 12a in the tangent direction, and in this situation, the pushing force is large. In the meantime, since the second inner wall 14a of the powder discharge channel 14 and the first inner wall 12a of the bean grinding chamber 11 form the given angle, the blocking force of coffee powder accumulated near to the second inner wall 14a is smaller than the centrifugal pushing force generated by the rotation of the residue removing plate 40. The blocking coffee powder can be pushed out by the centrifugal pushing force generated by the rotation of the residue removing plate. As a result, the cleaning problem of blocking coffee powder can be solved by autorotation of the bean grinder.
(34) During the experiment, it is found that if the powder discharge port 13 is enlarged by modifying the inner walls of the bean grinding chamber 11 and the powder discharge channel 14, blocking force will increase due to more coffee powder accumulated in the bean grinding chamber, thus blocking the residue removing plate 40 and hindering the rotation of the grinding wheels. Therefore, in order to further solve the cleaning problem of blocking coffee powder, the width L of the powder discharge port 13 is preferably in a range from about 10 cm to about 20 cm. The experiment shows that such range of width of the powder discharge port 13 can reduce the force of blocking coffee powder effectively.
(35) Further referring to
(36) Preferably, the inner wall of the powder discharge channel 14 further comprises a third inner wall 14b opposite to the first inner wall 12a with respect to the powder discharge port 13, and the stepped surface 14c is located at the third inner wall 14b. Preferably, the height of the stepped surface 14c is in a range from about 2 cm to about 10 cm.
(37) In conclusion, according to the bean grinder of the present invention, the second inner wall 14a is inclined outwards at a given angle with respect to the first inner wall 12a, which results in an increase of pushing force. Further, the size decrease of the powder discharge port 13 and the stepped structure of the powder discharge channel 14 reduces the space of the powder discharge channel 14, which further increases the powder discharge force of the bean grinder accordingly. Thus, the transfer efficiency of coffee powder to the brewing device is improved, the amount of coffee powder remaining in the bean grinding chamber is reduced, and the blocking of the coffee powder in the bean grinding chamber and the powder discharge channel. Furthermore, even if blocking occurs due to coffee powder, the coffee powder accumulated in the bean grinding chamber and the powder discharge channel can be pushed out by the centrifugal force of rotation only by simply restarting the bean grinding function of the bean grinder provided with the improved powder discharge channel, and in this way, the cleaning problem of the blocking coffee powder can be solved.
(38) What described above are several embodiments of the present invention, and they are specific and in details, but not intended to limit the scope of the present invention. It will be understood by those skilled in the prior art that various modifications and improvements can be made without departing from the spirit of the present invention, and these modifications and improvements shall be covered by the present invention.