FILTER ELEMENT, SEALING ASSEMBLY AND COFFEE MACHINE
20220332597 · 2022-10-20
Inventors
Cpc classification
B01D24/165
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4084
PERFORMING OPERATIONS; TRANSPORTING
C02F2307/12
CHEMISTRY; METALLURGY
A47J31/0605
HUMAN NECESSITIES
B01D2201/34
PERFORMING OPERATIONS; TRANSPORTING
C02F1/003
CHEMISTRY; METALLURGY
B01D24/047
PERFORMING OPERATIONS; TRANSPORTING
B01D24/04
PERFORMING OPERATIONS; TRANSPORTING
A47J31/06
HUMAN NECESSITIES
C02F2303/22
CHEMISTRY; METALLURGY
C02F1/283
CHEMISTRY; METALLURGY
International classification
Abstract
Provided is a filter element comprising a filter element body having a cavity, a water inlet and a water outlet, an end cap, and a perforated partition, and the perforated partition is configured to divide the filter element body into a first chamber filled with an adsorption filter material and a second chamber filled with an ion exchange filter materials. In the present disclosure, the filter element is divided into two stages, and the primary filter material and the softening filter material are filled separately, and functions of both filtration and descaling are realized, addressing the issues blocking of water and reduced water flow in the coffee machine using a PP/PE filter element. Meanwhile, reduction in water flow caused by the mixing of the filter materials and the caking of the filter material is also solved.
Claims
1. A filter element, comprising a filter element body having a cavity, a water inlet, a water outlet and an end cap, wherein the filter element further comprises a perforated partition within the filter element body, and the perforated partition is configured to divide the filter element body into at least two chambers, the at least two chambers include a first chamber and a second chamber, the first chamber is filled with an adsorption filter material, and the second chamber is filled with an ion exchange filter material.
2. The filter element according to claim 1, wherein the perforated partition is selected from the group consisting of a filter cloth and a perforated grid.
3. The filter element according to claim 1, wherein the adsorption filter material is activated carbon and the ion exchange filter material is ion exchange resin.
4. The filter element according to claim 1, wherein the filter element further comprises a central pipe located inside the filter element body and extending in the longitudinal direction of the filter element body, the central pipe is configured to pass through the perforated partition, with one end of the central tube being connected to the water inlet where an inlet water filter mesh is provided, and the other end of the central pipe being connected to the water outlet where an outlet water filter mesh is provided; the perforated partition surrounds the outer wall of the central pipe and extends to the inner wall of the filter element body so that the inlet water from the water inlet flows through the first chamber filled with the adsorption filter material and then through the second chamber filled with the ion exchange filter material, and flows through the outlet water filter mesh at the water outlet into the central pipe, then flows out at the other end of the central pipe.
5. The filter element according to claim 1, wherein the filter element further comprises at least two water inlet holes arranged at an end of the filter element, and the water inlet holes are spaced apart from each other by a water inlet rib.
6. The filter element according to claim 1, wherein the filter element further comprises at least two sealing ribs arranged on the inner surface at the lower end of the filter element body and a sealing gasket contained in the cavity at the bottom of the filter element body; wherein the sealing gasket includes at least two sealing grooves adapted to the sealing ribs.
7. The filter element according to claim 7, wherein the filter element further comprises a base for fixing the filter element, and the base comprises a base body, a water outlet hole, a clamping rib, and a protrusion; wherein the base body is provided with the water outlet hole at the center of the base body and the base body is provided with clamping ribs circumferentially distributed on the surface of the base body, and the clamping ribs are adapted to clamp the lower end of the filter element body; the base body is provided with at least three protrusions on the surface of base body proximal to water outlet hole relative to the clamping rib, and the protrusions are configured to engage with the recesses of the sealing gasket.
8. The filter element according to claim 4, wherein the outlet water filter mesh comprises a tapered connection pipe protruding from the center of the outlet water filter mesh, and the tapered connection pipe is provided with a boss provided on the outer surface of the tapered connection pipe to facilitate socketing of the boss to the water outlet of the central pipe.
9. A sealing assembly for a filter element comprising a sealing gasket and a base body, wherein the sealing gasket includes a columnar part and at least three bosses arranged circumferentially on the end surface of the columnar part, the columnar part is provided with a central hole allowing water to pass through, a recess is provided between every two bosses, and the recess runs through diagonally or transversely between two adjacent bosses; the base body is provided with a water outlet hole at the center of the base body, and the base body is adapted to closely contact both the bosses and the recesses on the sealing gasket, or the base body is adapted to closely contact the end surface of the sealing gasket to achieve sealing between the sealing gasket and the base body.
10. A coffee machine, comprising the filter element according to claim 1.
11. The filter element according to claim 5, wherein the filter element is provided with six water inlet holes at the end of the filter element;
12. The filter element according to claim 5, wherein the water inlet holes are distributed circumferentially.
13. The filter element according to claim 6, wherein the filter element body is provided with six sealing ribs on the inner surface at the bottom of the filter element body, and the sealing gasket is provided with six sealing grooves adapted to the sealing ribs;
14. The filter element according to claim 6, wherein the sealing gasket includes a columnar part and at least three bosses arranged circumferentially on the end surface of the columnar part, and a recess is provided between every two bosses, and the recess runs through diagonally or transversely between two adjacent bosses.
15. The sealing assembly according to claim 9, wherein the end surface of the boss, which is away from the columnar part and the surfaces of the recesses between every two adjacent bosses, are in close contact with the base body to form a sealed area.
16. The sealing assembly according to claim 9, wherein the end surface on the columnar part that carries the bosses is in close contact with the base body to form a sealed area.
17. The sealing assembly according to claim 9, wherein the sealing gasket further includes at least two sealing grooves arranged on the side of the sealing gasket, and the sealing grooves are adapted to cooperate with at least two sealing ribs to achieve sealing.
18. The sealing assembly according to claim 17, wherein further preferably, the number of the sealing grooves is 6, and the number of the sealing ribs is 6.
19. The sealing assembly according to claim 9, wherein the base body is provided with clamping ribs circumferentially distributed on one surface of the base body, and the clamping ribs are adapted to clamp to the slits provided at the lower end of the filter element body.
20. The sealing assembly according to claim 19, wherein the clamping rib is provided with at least three protrusions on the surface of base body proximal to water outlet hole relative to the clamping rib, and the protrusions are in close contact with the recesses of the sealing gasket.
Description
DETAILED DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
REFERENCE SIGNS
[0044] 1: base; 2: filter element; 3: sealing gasket; [0045] 1-1: base body; 1-2: water inlet; 1-3: water outlet; 1-4: clamping rib; 1-5: protrusion; [0046] 2-1: element body; 2-2: end cap; 2-3: central pipe; 2-4: water inlet grid; 2-41: boss for water inlet grid; [0047] 2-5: water outlet grid; 2-51: leg of water outlet grid; [0048] 2-6: partition grid; 2-7: sealing rib; 2-8 water inlet hole; 2-9: water inlet rib; [0049] 3-1: gasket body; 3-2: boss; 3-3: end surface at top of the boss; 3-4: sealing groove; 3-5: recess.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0050] The present disclosure will be further described below in conjunction with the drawings and embodiments. In the present disclosure, the expression for the relative position, for example, “upper”, “lower”, “top”, “bottom”, “outer” directional terms “inner” and the like are merely for purpose of explanation and not intended to limit the scope of the present disclosure. In present disclosure, these orientation expressions are mainly based on the directions shown in
[0051] As shown in
[0052]
[0053] The central pipe 2-3 passes through the partition grid 2-6. One end of the central pipe 2-3 is connected to the water inlet grid 2-4 at the water inlet, and the other end is connected to the water outlet grid 2-5 provided at the water outlet. The partition grid 2-6 surrounds the outer wall of the central pipe and extends to the inner wall of the filter element body so that water enters from the six water inlet ribs 2-9 (shown in
[0054] In the present disclosure, the upper and lower sides of the partition grid 2-6 arranged in the filter element are separately filled with activated carbon and resin, avoiding clumping (caking) of filter material caused by the mixing of the filter materials. In addition, filter grids can be arranged at the water inlet, at the water outlet, and within the filter element, which not only increases the water passage area of the filter element, but also avoids reduction in water volume caused by the uneven precision of the PE and/or PP sintered filter material in the filter element.
[0055] In order to ensure the sealing of the filter element, an elastic rubber sealing gasket 3 is provided at the bottom of the filter element. As shown in
[0056] There are mainly two manners for sealing the bottom of the filter element in the present disclosure.
[0057] The first sealing manner is described as follows.
[0058] The end surfaces at top of the boss 3-3 of the six bosses 3-2 on the surface of the rubber sealing gasket 3 and the surfaces of the recesses 3-5 between every two adjacent bosses 3-2 form a sealed area. In other words, the sealing area is formed by the end surfaces at top of the boss 3-3 and the surface of the recess 3-5, and sealing is achieved by blocking the end surfaces at top of the boss 3-3 and the recess 3-5. The sealed area is shown as the black filled area in
[0059] The second sealing manner is described as follows.
[0060] On the bearing surface of the rubber sealing gasket 3 where with the bossed 3-2 are provided, a sealing area is formed on the remaining area on the bearing surface when the areas occupied by the boss 3-2 and the recess 3-5 are excluded, and sealing is achieved by blocking the end surface of the rubber sealing gasket. The sealed area is shown as the black filled area in
[0061] The rubber sealing gasket 3 is installed in such a manner that one end of the sealing rubber gasket 3 is installed in the cavity at the bottom of the filter element, and the sealing groove 3-4 of the sealing rubber gasket and the sealing ribs 2-7 on the inner surface in the cavity at the bottom of the filter element (see
[0062] In the two exemplary sealing manners mentioned above, both of the two sealing manners involve close contact of at least two surfaces in the longitudinal direction of the filter element. In addition, a hexagonal arrangement is formed between the six bosses 3-2. This hexagonal arrangement not only allows the filter element to be clamped more tightly, but also achieves better sealing performance.
[0063] As shown in
[0064] As shown in
[0065] The structure of the base 1 and the filter body 2-1 after being clamped is shown in
[0066] In this embodiment, the water inlet grid 2-4 is provided with a water inlet grid boss 2-41 at the center of the water inlet grid 2-4 (see
[0067] In order to ensure the tightness between the filter element and the coffee machine, an annular groove is provided on the outer periphery of the lower end of the base (see
[0068] When using the filter element of the present disclosure, water that has been preliminarily filtered is introduced into the filter element from the water inlet on the lower end of the filter element, and the water enters the filter element through the water inlet at the bottom of the filter element, and is filtered through activated carbon and resin in sequence. The purified water after the filtration is discharged from the water outlet at the lower end of the central pipe, and finally enters the coffee machine through the central hole of the base. The flow path of the water is shown in
[0069] In the present disclosure, the filter element body is divided into two chambers (the primary filter cavity and the secondary filter cavity of the filter element) by a partition grid. The two chambers realize filling of filter materials at two stages, preventing the filtering material from being mixed and causing caking due to long-term use of the filter material. At the same time, it also prevents small particles from clogging the resin gap and causing reduced water flow or even interruption of water flow. Using the filter element of the present disclosure can not only extend the service life of the filter element, but also improve work efficiency of the coffee machine the using the filter element of the present disclosure.
[0070] The present disclosure also provides a coffee machine comprising the filter element of the present disclosure. As for the cooperation between the filter element and the coffee machine, those skilled in the art have the ability to design according to the structure of the base, which will not be repeated herein.