COFFEE MACHINE WITH LEAK PREVENTING DEVICE AND WORKING METHOD THEREFOR
20180146820 ยท 2018-05-31
Inventors
Cpc classification
A47J31/42
HUMAN NECESSITIES
International classification
A47J31/42
HUMAN NECESSITIES
A47J31/44
HUMAN NECESSITIES
Abstract
A coffee machine with a leak preventing device includes a main body, a chamber for containing liquid and coffee particles, a grinding assembly for grinding coffee particles, and a driving mechanism for driving the grinding assembly. The chamber is provided in the main body and the grinding assembly is provided in the chamber. The driving mechanism is provided with a driving shaft. A driving shaft hole is provided in a bottom of the chamber. The driving shaft is detachably connected to the grinding assembly through the driving shaft hole. The leak preventing device is provided at a position corresponding to the driving shaft hole and the leak preventing device is arranged to close the driving shaft hole when the driving shaft is detached from the driving shaft hole. In addition, a working method for the coffee machine with the leak preventing device is also provided.
Claims
1. A coffee machine with a leak preventing device, comprising a main body (1), a chamber (2) for containing liquid and coffee particles, a grinding assembly for grinding coffee particles, and a driving mechanism (3) for driving the grinding assembly, the chamber (2) being provided in the main body (1), wherein, the grinding assembly is provided in the chamber (2), the driving mechanism (3) is provided with a driving shaft (31), and a driving shaft hole (221) is provided in a bottom of the chamber (2), the driving shaft (31) being detachably connected to the grinding assembly through the driving shaft hole (221), wherein the leak preventing device is provided at a position corresponding to the driving shaft hole (221), the leak preventing device being arranged to close the driving shaft hole (221) when the driving shaft (31) is detached from the driving shaft hole (221).
2. The coffee machine according to claim 1, wherein the chamber (2) is provided with a brewing chamber (21) and a leak preventing chamber (22) located at a lower side of the brewing chamber (21), the grinding assembly being inserted through a bottom of the brewing chamber (21), the leak preventing chamber (22) being provided with the driving shaft hole (221), the leak preventing chamber (22) being used for collecting coffee liquid leaked from a gap between the grinding assembly and the bottom of the brewing chamber (21), the leak preventing chamber (22) being provided with a diversion port (222) for discharging coffee liquid from the leak preventing chamber (22); and wherein the chamber (2) is provided with the leak preventing device at the driving shaft hole (221), the leak preventing device being arranged to close the driving shaft hole (221) when the driving shaft (31) is detached from the driving shaft hole (221).
3. The coffee machine according to claim 2, wherein the grinding assembly comprises a blade (41) and a blade shaft (42), and a blade shaft hole (212) is provided in the bottom of the brewing chamber (21), the blade shaft (42) being inserted through the blade shaft hole (212), one end of the blade shaft (42) located inside the brewing chamber (21) being connected to the blade (41), another end of the blade shaft (42) located outside the brewing chamber (21) being detachably connected to the driving shaft (31) such that the blade shaft (42) is driven to be rotated by the driving mechanism (3), and an interval being provided between the blade shaft (42) and the blade shaft hole (212) such that the friction between the blade shaft (42) and the blade shaft hole (212) is reduced.
4. The coffee machine according to claim 3, wherein the grinding assembly further comprises a collecting chamber (23), and the brewing chamber (21) is provided with a first filter (211) for filtering coffee liquid in the brewing chamber (21), the collecting chamber (23) being communicated with the brewing chamber (21) such that coffee liquid filtered by the first filter (211) is flowed into the collecting chamber (23), the collecting chamber (23) being communicated with the leak preventing chamber (22) via the diversion port (222), the collecting chamber (23) being provided with a discharge port (231).
5. The coffee machine according to claim 1, wherein the leak preventing device comprises an elastic mechanism which is arranged to provide an elastic force such that the driving shaft hole (221) is blocked by at least a portion of the elastic mechanism when the driving shaft (31) is detached from the driving shaft hole (221).
6. The coffee machine according to claim 5, wherein the elastic mechanism comprises a movable first blocking member (511) and first elastic members (512) provided on both sides of the first blocking member (511), the first blocking member (511) being provided at a position corresponding to the driving shaft hole (221), the first elastic members (512) provided on both sides of the first blocking member (511) being connected to the first blocking member (511) respectively such that the driving shaft hole (221) is blocked by the first blocking member (511) when the driving shaft (31) is detached from the driving shaft hole (221).
7. The coffee machine according to claim 5, wherein the elastic mechanism comprises a rotatable second blocking member (521), a rotary shaft (522), a driving member (523) and a second elastic member (524), a first end of the rotary shaft (522) being connected to the second blocking member (521), a second end of the rotary shaft (522) being detachably connected to the driving member (523), the second blocking member (521) being connected to the second elastic member (524) such that the second blocking member (521) is rotated around the rotary shaft (522) so as to block the driving shaft hole (221) when the driving shaft (31) is detached from the driving shaft hole (221), the second blocking member (521) and the rotary shaft (522) being capable of being driven to be rotated by the driving member (523) such that the second blocking member (521) is moved away from the driving shaft hole (221).
8. The coffee machine according to claim 5, wherein the elastic mechanism is an elastic assembly, a first end of the elastic assembly being elastically provided at a position corresponding to the driving shaft hole (221), a second end of the elastic assembly being capable of being elastically rotated around the first end of the elastic assembly such that the second end of the elastic assembly is deformed.
9. The coffee machine according to claim 5, wherein the elastic mechanism is an elastic single piece (541) provided at a position corresponding to the driving shaft hole (221), the elastic single piece (541) being provided with at least one cutout (542), the elastic single piece (541) being capable of being deformed by extrusion such that the cutout (542) is opened.
10. The coffee machine according to claim 1, wherein the leak preventing device comprises a movable fourth blocking member (551) and an accommodating element (552) for accommodating the fourth blocking member (551), the accommodating element (552) being provided with a groove (553), a bottom of the groove (553) being communicated with the driving shaft hole (221), the groove (553) having an inclined surface (554) extending upwardly from the bottom of the groove (553), the fourth blocking member (551) being capable of being moved freely along the inclined surface (554).
11. The coffee machine according to claim 10, wherein the accommodating element (552) is provided with an elastic limiting member (555), an elastic force is provided by the elastic limiting member (555) to define the fourth blocking member (551) in the bottom of the groove (553) such that the driving shaft hole (221) is blocked by the fourth blocking member (551), when the driving shaft (31) is detached from the driving shaft hole (221).
12. A working method for the coffee machine according to claim 1, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
13. A working method for the coffee machine according to claim 2, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
14. A working method for the coffee machine according to claim 3, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
15. A working method for the coffee machine according to claim 4, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
16. A working method for the coffee machine according to claim 5, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
17. A working method for the coffee machine according to claim 6, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
18. A working method for the coffee machine according to claim 7, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
19. A working method for the coffee machine according to claim 8, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
20. A working method for the coffee machine according to claim 9, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
21. A working method for the coffee machine according to claim 10, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
22. A working method for the coffee machine according to claim 11, comprising: a. manually or automatically adding coffee particles to the chamber (2); b. actuating the driving mechanism (3), such that the grinding assembly is driven by the driving mechanism (3) to grind the coffee particles so as to obtain the coffee powder; c. manually or automatically adding hot water to the chamber (2), such that hot water and coffee powder are mixed together to form coffee liquid; d. the driving shaft (31) being detached from the driving shaft hole (221) and the driving shaft hole (221) being closed by the leak preventing device, when the chamber (2) is taken out from the main body (1); e. the driving shaft hole (221) being opened by the leak preventing device and the driving shaft (31) being connected to the grinding assembly through the driving shaft hole (221), when the chamber (2) is mounted into the main body (1).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0039] The present invention is further described with reference to the accompanying drawings. The accompanying drawings are only for exemplary description, and shall not be construed as limiting the patent. In order to better illustrate the embodiments of the present invention, some parts are omitted, zoomed in or out in the accompanying drawings, but do not represent the actual size of the product. It is understandable for those skilled in the art that some known structures and the description thereof may be omitted in the accompanying drawings.
Embodiment 1
[0040] As shown in
[0041] Referring to
[0042] The leak preventing device is provided at a position corresponding to the driving shaft hole 221 (i.e., the shaft hole 221 at the bottom of the chamber 2) at a bottom of leak preventing chamber 22. The driving shaft hole 221 is provided with a seal member 223 which is made from a flexible material. In the present embodiment, the leak preventing device comprises a movable first blocking member 511 and two first elastic members 512 which are provided on both sides of the first blocking member 511 respectively. The first blocking member 511 is provided at a position corresponding to the driving shaft hole 221. The two first elastic members 512 are connected to the first blocking member 511, respectively. The two first elastic members 512 are symmetrically disposed at an inner bottom of the leak preventing chamber 22 and are fixed on both sides of the driving shaft hole 221. One end of each of the first elastic members 512 which is adjacent to the driving shaft hole 221 is connected to the first blocking member, respectively. The first blocking member is a sphere, and the first elastic members 512 are springs 512. The driving shaft hole 221 is covered by the first blocking member and a lower portion of the first elastic members 512 is inserted through the driving shaft hole 221 and engaged with the seal member 223, due to an elastic force from the springs 512 at the both sides of the springs 512 onto the first blocking member. When the chamber 2 is moved downwardly such that the driving shaft hole 221 is reached by the driving shaft 31, the first blocking member 511 is pushed away from the driving shaft hole 221 by the driving shaft 31 and is abutted against a side wall of the driving shaft 31. Thus the driving shaft 31 may be connected to the grinding assembly through the driving shaft hole 221. When the chamber 2 is moved upwardly, the driving shaft 31 is pulled out from the driving shaft hole 221, and the first blocking member 511 abutted against the side wall of the driving shaft 31 is pulled and moved to cover the driving shaft hole 221.
[0043] A working method for the coffee machine of the present embodiment comprises the following steps:
[0044] a. manually or automatically adding coffee particles to the chamber 2;
[0045] b. actuating the driving mechanism 3, such that the grinding assembly is driven by the driving mechanism 3 to grind the coffee particles so as to obtain coffee powder;
[0046] c. manually or automatically adding hot water to the chamber 2, such that hot water and coffee powder are mixed together to form coffee liquid;
[0047] d. the driving shaft 31 being detached from the driving shaft hole 221 and the driving shaft hole 221 being closed by the leak preventing device, when the chamber 2 is taken out from the main body 1;
[0048] e. the driving shaft hole 221 being opened by the leak preventing device and the driving shaft 31 being connected to the grinding assembly through the driving shaft hole 221, when the chamber 2 is mounted into the main body 1.
Embodiment 2
[0049] The present embodiment is substantially the same as that of Embodiment 1 except that the structure of the leak preventing device is different. As shown in
Embodiment 3
[0050] The present embodiment is substantially the same as that of Embodiment 1 except that the structure of the leak preventing device is different. As shown in
Embodiment 4
[0051] The present embodiment is substantially the same as that of Embodiment 1 except that the structure of the leak preventing device is different. As shown in
Embodiment 5
[0052] The present embodiment is substantially the same as that of Embodiment 1 except that the structure of the leak preventing device is different. As shown in
Embodiment 6
[0053] The present embodiment is substantially the same as that of Embodiment 5 except that the leak preventing device is provided with an elastic limiting member 555 in the present embodiment. As shown in