CN211484086U - Beverage capsule - Google Patents

Beverage capsule Download PDF

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Publication number
CN211484086U
CN211484086U CN201922095889.7U CN201922095889U CN211484086U CN 211484086 U CN211484086 U CN 211484086U CN 201922095889 U CN201922095889 U CN 201922095889U CN 211484086 U CN211484086 U CN 211484086U
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CN
China
Prior art keywords
guide ring
water guide
cavity
floating
beverage capsule
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CN201922095889.7U
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Chinese (zh)
Inventor
王旭宁
李大治
张道民
周升铭
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Hangzhou Jiuchuang Home Appliances Co.,Ltd.
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Hangzhou Yibei Food Technology Co ltd
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Priority to CN201922095889.7U priority Critical patent/CN211484086U/en
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Abstract

The utility model discloses a beverage capsule, including having the open-ended casing and inciting somebody to action the sealed diaphragm of opening, beverage capsule still includes water guide ring and the filtration support that floats, the water guide ring sets up in the casing, it is equipped with the mounting hole on the filtration support to float, the water guide ring passes the mounting hole, it can fix to float the filtration support the not co-altitude department of water guide ring, it will to float the filtration support space separation in the casing is close to the first cavity of open-ended with keep away from the open-ended second cavity. This drink capsule separates first cavity and second cavity of size adjustable through setting up the filtration support that floats, utilizes a filtration support that floats to replace multiple fixed bolster, has reduced the cost of manufacture, makes things convenient for storage management, has reduced manufacturing cost.

Description

Beverage capsule
Technical Field
The utility model relates to a drink preparation technical field, concretely relates to drink capsule.
Background
At present, natural, healthy and quick beverages are increasingly popular with the improvement of the quality and grade of life of people.
However, since different beverages require different proportions of coffee, tea and milk powder, latte coffee: the ratio of milk is 1:3, and the ratio of tea leaves of milk tea is: the milk ratio is 1:2, so the amount of coffee and milk required is not consistent when making different drinks. Particularly, when the extraction beverage capsule is manufactured, because the milk coffee and the milk tea are manufactured by a single capsule, the space size in the capsule is fixed, the capsule is divided into an upper space and a lower space by a bracket in the middle of the capsule, coffee and tea are placed at the lower layer, and milk powder is placed at the upper layer. Because the coffee, tea and milk powder needed in the process of manufacturing milk coffee and milk tea are different, the upper space and the lower space in the capsule are required to be different in size, so that different beverages need specific supports, milk coffee and milk tea supports, and milk tea supports, which cause the supports with various specifications, therefore, the early-stage mold investment is large, the manufacturing cost is high, and the difficulty in warehouse management and production and manufacturing is large.
When the black coffee is made, only ground coffee powder is used, milk powder is not used, in order to guarantee the flavor of the coffee, more coffee powder needs to be filled in the capsule to guarantee the concentration and the flavor of the coffee, and the coffee powder is only filled in the lower layer space of the capsule support, so that the lower layer space is required to be larger, otherwise, the concentration and the taste of the whole cup of coffee are influenced. When the tea is made, because less tea is needed for making one cup of tea, the space requirement for filling the tea in the capsule is less, the tea can be fully filled, the tea can be fully extracted, and the product quality is guaranteed.
SUMMERY OF THE UTILITY MODEL
At least one for solving the problem, the utility model provides a drink capsule separates out first cavity and the second cavity of big or small adjustable through setting up the filtration support that floats, utilizes one kind to float and has filtered the support and replaced multiple fixed bolster, has reduced the cost of manufacture, makes things convenient for storage management, has reduced manufacturing cost.
In order to achieve the purpose of the utility model, the utility model discloses the technical scheme who takes as follows:
the utility model provides a beverage capsule, including having the open-ended casing and inciting somebody to action the sealed diaphragm of opening, beverage capsule still includes water guide ring and floating filter holder, the water guide ring sets up in the casing, be equipped with the mounting hole on the floating filter holder, the water guide ring passes the mounting hole, floating filter holder can fix the not co-altitude department of water guide ring, floating filter holder will space separation in the casing is for being close to open-ended first cavity with keep away from open-ended second cavity.
Optionally, a plurality of clamping grooves are formed in the outer side wall surface of the water guide ring, the plurality of clamping grooves are located at different heights of the water guide ring, and a buckle is arranged on the floating filter support and can be clamped at any one of the clamping grooves.
Optionally, the buckle is a protrusion arranged on the inner side wall surface of the mounting hole, and the end surface of the protruding end is arc-shaped.
Optionally, the mounting hole is in interference fit with the water guide ring, and the protrusion and the clamping groove are both arranged annularly.
Optionally, the outer side wall surface of the water guide ring is provided with an external thread, the inner side wall surface of the mounting hole is provided with an internal thread, and the internal thread is in threaded fit with the external thread so as to limit and fix the floating filter support at different heights of the water guide ring along the axial direction.
Optionally, the floating filter support has a support bottom wall, the mounting hole is arranged on the support bottom wall, and the support bottom wall can axially move relative to the water guide ring to be fixed at 1/4-2/5 height from the bottom end of the beverage capsule.
Optionally, the top end of the water guide ring is fixedly connected with the diaphragm, and a water passing gap is formed between the bottom end of the water guide ring and the bottom wall of the shell;
or the top end of the water guide ring is fixedly connected with the diaphragm, the bottom end of the water guide ring is abutted against the bottom wall of the shell, and the bottom end of the water guide ring is provided with a water through hole;
or the top end of the water guide ring is abutted to the membrane, the bottom end of the water guide ring is abutted to the bottom wall of the shell, and the bottom end of the water guide ring is provided with a water through hole.
Optionally, the bottom wall of the shell is provided with a splash-proof bulge, and the bottom end of the water guide ring is arranged right opposite to the splash-proof bulge.
Optionally, a filtering part is arranged in the water guide ring, and filtering holes are formed in the filtering part.
Optionally, the floating filter support comprises a floating support and annular filter paper, the mounting hole is arranged in the center of the floating support, the floating support can be fixed at different heights of the water guide ring, and the filter paper is fixed on the floating support around the mounting hole;
or, the floating filter support is of an integrated structure, a plurality of filter holes are formed in the floating filter support, and the filter holes are arranged around the mounting holes.
After the technical scheme is adopted, the utility model discloses following beneficial effect has:
1. in the beverage capsule, the water guide ring is arranged in the shell and penetrates through the floating filtering support, the floating filtering support divides the inner cavity of the shell into a first cavity and a second cavity, and the water guide ring is used for supplying water into the second cavity. The floating filter support can be fixed at different heights of the water guide ring so as to adjust the space size of the first cavity and the second cavity, and meet the requirements of different beverages such as milk coffee, milk tea, black coffee, herb tea and the like on different filling spaces. The floating filter support structure can replace various fixed supports in the prior art, so that the mold cost of the support is reduced, the manufacturing cost is reduced, the storage management is convenient, and the production and manufacturing cost is greatly reduced.
2. In an embodiment, a plurality of clamping grooves are formed in the outer side wall surface of the water guide ring and are located at different heights of the water guide ring, and a buckle is arranged on the floating filter support and can be clamped at any clamping groove. When the buckle and the draw-in groove joint of difference, the space size of first cavity and second cavity changes to satisfy the different demands of different drink kinds to the cavity size.
Wherein, the buckle is the arch that sets up on the inside wall face of the mounting hole of floating filter holder, and the terminal surface of bellied protrusion end is circular-arcly to the buckle realizes the joint with the draw-in groove and breaks away from, and the not co-altitude department at the water guide ring is fixed to the filter holder of being convenient for float. The water guide ring penetrates through the mounting hole of the floating filter support, and the mounting hole is in interference fit with the water guide ring, so that after the floating filter support and the water guide ring are fixed, the contact surfaces of the floating filter support and the water guide ring are in a sealing state, and the beverage raw materials of the first cavity and the second cavity in the beverage capsule are prevented from being mixed with each other.
3. In another embodiment, the outer side wall surface of the water guide ring is provided with external threads, the inner side wall surface of the mounting hole of the floating filter support is provided with internal threads, and the internal threads are in threaded connection with the external threads so as to limit and fix the floating filter support at different heights of the water guide ring along the axial direction. Through the screwing fit of the internal thread and the external thread, the stepless adjustment of the floating filter support on different heights of the water guide ring is realized, the adjustment range of the sizes of the first cavity and the second cavity is wider, and the height adjustment mode of the floating filter support is simple and convenient.
In addition, through the cooperation of screwing of internal and external screw thread, can also play sealed effect, avoided the drink raw materials intermixture in first cavity and the second cavity.
4. The bottom wall of the bracket of the floating filtering bracket is provided with a mounting hole for the water guide ring to pass through, and the bottom wall of the bracket can be fixed at the 1/4-2/5 height from the bottom end of the beverage capsule on the water guide ring, so that the volume ratio of the second cavity to the beverage capsule is about 1/4-2/5, and the space volume ratio of the first cavity to the second cavity is about 3/2-3/1, thereby meeting the requirements of different types of beverages.
5. In one embodiment, the top end of the water guide ring can be fixed with the membrane, the bottom end of the water guide ring is not connected with the bottom wall of the shell, and a water passing gap is formed between the top end of the water guide ring and the bottom wall of the shell, so that water flow entering from the water guide ring flows into the second cavity through the water passing gap to brew the beverage raw materials in the second cavity, and then the brewed liquid flow can flow into the first cavity from the second cavity through the floating filter support.
In another embodiment, the top end of the water guide ring is fixedly connected with the diaphragm, and the bottom end of the water guide ring is abutted against the bottom wall of the shell, so that the water guide ring is fixedly arranged; the bottom of the water guide ring is provided with water through holes, so that water flow entering from the water guide ring flows into the second cavity through the water through holes to brew beverage raw materials in the second cavity, and then brewed liquid flow can flow into the first cavity from the second cavity through the floating filter support.
In still another embodiment, the top end of the water guide ring is abutted with the membrane, the bottom end of the water guide ring is abutted with the bottom wall of the shell, and the bottom end of the water guide ring is provided with a water through hole, so that water flow entering from the water guide ring flows into the second cavity through the water through hole to brew the beverage raw material in the second cavity, and then brewed liquid flow can flow into the first cavity from the second cavity through the floating filter support. The top end of the water guide ring is not connected with the membrane, so that water flow can enter the first cavity through a gap between the membrane and the top end of the water guide ring, and the beverage raw materials in the first cavity are brewed.
6. The water guide ring is internally provided with a filtering part which is provided with filtering holes. The setting of filter house can avoid the drink raw materials intermix in first cavity and the second cavity, ensures the independence of the drink raw materials in first cavity and the second cavity. In addition, when the top end of the water guide ring is abutted to the membrane, a gap can exist between the top end of the water guide ring and the membrane under the pressure action of water flow due to the arrangement of the filtering part, so that the water flow enters the first cavity through the gap between the membrane and the top end of the water guide ring, and the brewing of the beverage raw materials in the first cavity is realized.
7. In one embodiment, the floating filter support may include a floating support that may be fixed at different heights of the water guide ring, and a ring-shaped filter paper that is fixed to the floating support around the mounting hole of the floating support.
In another embodiment, the floating filter support is of an integrated structure, a plurality of filter holes are formed in the floating filter support, and the plurality of filter holes are arranged around the mounting hole.
Due to the arrangement of the filter paper or the filter holes, the drink raw materials in the first cavity and the second cavity can be prevented from being mixed with each other, and the independence of the drink raw materials in the first cavity and the second cavity is guaranteed; in addition, the problem that the quality of the beverage is influenced when the extracted beverage raw materials in the second cavity enter the first cavity and then enter the brewed beverage in the beverage brewing process can be avoided.
Other features and advantages of the present invention will be set forth in the description that follows.
Drawings
The accompanying drawings are included to provide a further understanding of the technical solutions of the present invention, and are incorporated in and constitute a part of this specification, together with the embodiments of the present invention for explaining the technical solutions of the present invention, and do not constitute a limitation on the technical solutions of the present invention.
Fig. 1 is a schematic exploded view of a beverage capsule (without a membrane) according to a first embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of the assembled structure of the beverage capsule shown in FIG. 1;
FIG. 3 is a schematic cross-sectional view of an assembly structure of a water guide ring and a floating filter holder of the beverage capsule shown in FIG. 1;
fig. 4 is an exploded schematic view of a beverage capsule (without a membrane) according to a second embodiment of the present invention;
FIG. 5 is a schematic cross-sectional view of the assembled structure of the beverage capsule shown in FIG. 4;
fig. 6 is a schematic cross-sectional structure view of a beverage capsule (without a membrane) according to the third embodiment of the present invention.
The reference signs are:
1-shell, 11-first cavity, 12-second cavity, 13-anti-splashing bulge, 3-water guide ring, 31-clamping groove, 32-external thread, 33-filtering part, 34-water gap, 35-water hole, 4-floating filtering bracket, 41-mounting hole, 42-buckle, 43-internal thread, 44-floating bracket, 45-filtering paper, 46-bracket bottom wall and 47-bracket side wall.
Detailed Description
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings. It should be noted that the embodiments and features of the embodiments in the present application may be arbitrarily combined with each other without conflict.
The first embodiment is as follows:
the embodiment provides a beverage capsule, as shown in fig. 1-3, comprising a shell 1 with an opening and a membrane sealing the opening, the beverage capsule further comprises a water guide ring 3 and a floating filter support 4, the water guide ring 3 is arranged in the shell 1, the floating filter support 4 is provided with a mounting hole 41, the water guide ring 3 penetrates through the mounting hole 41, the floating filter support 4 can be fixed at different heights of the water guide ring 3, and the floating filter support 4 divides the space in the shell 1 into a first cavity 11 close to the opening and a second cavity 12 far away from the opening.
Specifically, the upper end of the casing 1 is provided with an opening, the floating filter support 4 separates the inner cavity of the casing 1 into a first cavity 11 close to the opening and a second cavity 12 far away from the opening along the axial direction of the beverage capsule, wherein the first cavity 11 is positioned at the upper part and can be used for containing beverage raw materials or not containing beverage raw materials, the second cavity 12 is positioned at the lower part and is used for containing beverage raw materials, and the first cavity 11 and the second cavity 12 are independent spaces from top to bottom. The water guide ring 3 can be used for supplying water into the second cavity 12, a water inlet pricker of the capsule beverage machine can penetrate through the membrane and then extend into the water guide ring 3, water from the water inlet pricker can enter the second cavity 12 through the water guide ring 3 to brew beverage raw materials in the second cavity 12, and then liquid flow can flow into the first cavity 11 from the second cavity 12 through the floating filter support 4.
The floating filter support 4 can be fixed at different heights of the water guide ring 3 so as to adjust the space size of the first cavity 11 and the second cavity 12, and meet the requirements of different beverages such as milk coffee, milk tea, black coffee, herbal tea and the like on different filling spaces. Because the floating filter support 4 can adjust the space size of the first cavity 11 and the second cavity 12, the arrangement of various fixed supports in the prior art is avoided, the mold cost of the support is reduced, the manufacturing cost is reduced, the storage management is convenient, and the production and manufacturing cost is greatly reduced.
Alternatively, as shown in fig. 1-3, the floating filter support 4 has a support bottom wall 46, the support bottom wall 46 is provided with a mounting hole 41, and the support bottom wall 46 is axially movable relative to the water guide ring 3 to be fixed at 1/4-2/5 height from the bottom end of the beverage capsule.
The height of the beverage capsule is H, the bottom wall 46 of the bracket can be fixed at the height of 1/4H-2/5H from the bottom end of the beverage capsule, namely, the distance between the bottom wall 46 of the bracket and the bottom end of the beverage capsule is 1/4H-2/5H, so that the volume ratio of the second cavity 12 to the beverage capsule is 1/4-2/5, and the space volume ratio of the first cavity 11 to the second cavity 12 is 3/2-3/1, thereby meeting the requirements of different types of beverages.
It should be understood that the height position of the bottom wall 46 of the rack is not limited to the above, and the ratio of the volumes of the first cavity 11 and the second cavity 12 can be adjusted by specifically setting the height position of the bottom wall 46 of the rack according to the volume of each beverage material in different beverages.
Optionally, as shown in fig. 1-2, the floating filter support 4 further has a support sidewall 47, a bottom end of the support sidewall 47 is connected to the support bottom wall 46, and the support sidewall 47 can abut against and tightly contact with the sidewall of the housing 1 to prevent the beverage material in the second cavity 12 from entering the first cavity 11, or the beverage material in the first cavity 11 enters the second cavity 12, thereby causing the beverage materials in the first cavity 11 and the second cavity 12 to mix.
It should be understood that the floating filter holder 4 may have only the holder bottom wall 46, by the outer edge of the holder bottom wall 46 abutting, closely contacting, the side wall of the housing 1 to prevent the beverage ingredients in the first and second cavities 11 and 12 from mixing.
Optionally, as shown in fig. 1 to fig. 3, a plurality of (two or more than two) locking grooves 31 are provided on the outer side wall surface of the water guide ring 3, the plurality of locking grooves 31 are located at different heights of the water guide ring 3, and a buckle 42 is provided on the floating filter support 4, and the buckle 42 can be locked at any locking groove 31. When the buckle 42 is clamped in different clamping grooves 31, the sizes of the first cavity 11 and the second cavity 12 are changed to meet different requirements of different beverage types on the sizes of the cavities.
Alternatively, as shown in fig. 3, the catch 42 is a protrusion provided on an inner side wall surface of the mounting hole 41, and an end surface of a protruding end of the protrusion is arc-shaped. Accordingly, the inner wall surface of the card slot 31 is arc-shaped.
As shown in fig. 3, a circular mounting hole 41 is formed in a bracket bottom wall 46 of the floating filter bracket 4, and a protrusion with an arc-shaped protruding end surface is formed on the inner side wall surface of the mounting hole 41 to form a buckle 42; the outer side wall surface of the water guide ring 3 is provided with a plurality of clamping grooves 31 with arc-shaped inner wall surfaces at different heights. Because the middle of the floating filter support 4 is designed to be hollow, and the inner side wall surface of the hollow mounting hole 41 is provided with the arc-shaped buckle 42, the buckle 42 has elasticity and can deform, so that the buckle 42 and the clamping groove 31 on the water guide ring 3 are buckled, and the floating support 44 is fixed on the water guide ring 3 and cannot move up and down.
Optionally, the mounting hole 41 is in interference fit with the water guide ring 3, and the protrusion and the clamping groove 31 are both arranged annularly.
The mounting hole 41 is in interference fit with the water guide ring 3, so that after the floating filter support 4 is fixed with the water guide ring 3, the contact surface of the floating filter support and the water guide ring is in a sealing state, and the beverage raw materials in the first cavity 11 and the second cavity 12 are prevented from being mixed with each other.
Specifically, as shown in fig. 3, three fastening grooves 31 are provided on the outer side wall surface of the water guide ring 3, wherein the fastening groove 31 of the first layer is located at 1/4 which is close to the bottom end of the water guide ring 3 and occupies approximately the whole height of the water guide ring 3 (the height of the water guide ring 3 is approximately equal to the height of the beverage capsule), and the volume of the second cavity 12: the volume of the beverage capsule is about 1:4, the volume of the second cavity 12 is smaller, and the beverage capsule is suitable for being filled with tea leaves and is made into a tea capsule. The position of the second layer of clamping groove 31 is close to the bottom end of the water guide ring 3 and occupies 1/3 of the height of the whole water guide ring 3, and the volume of the second cavity 12 is as follows: the volume of the beverage capsule is about 1:3, the volume ratio of the second cavity 12 to the first cavity 11 is suitable for filling tea leaves or coffee into the second cavity 12, milk powder is filled into the first cavity 11, and the beverage capsule is made into milk tea or milk coffee capsule. The third layer of clamping grooves 31 is positioned at 2/5 which is close to the bottom end of the water guide ring 3 and occupies the height of the whole water guide ring 3, and the volume of the second cavity 12 is as follows: the volume of the beverage capsule is about 2:5, the volume of the second cavity 12 is large, and the beverage capsule is suitable for being filled with coffee and is made into black coffee capsules.
Different beverage capsules can be manufactured, different clamping grooves 31 on the water guide ring 3 can be selected to be matched with the buckles 42 of the floating filter support 4, and the floating filter support 4 is fixed at different heights of the water guide ring 3, so that the upper and lower space requirements of different beverage capsules are met.
Optionally, as shown in fig. 2, the top end of the water guide ring 3 is fixedly connected with the membrane, the bottom end of the water guide ring 3 is not connected with the bottom wall of the housing 1, and a water passing gap 34 is formed between the bottom end of the water guide ring 3 and the bottom wall of the housing 1.
The top end of the water guide ring 3 is fixed with the membrane, so that the water guide ring 3 is prevented from moving up and down, the water guide ring 3 is fixed, and the floating filter support 4 fixed on the water guide ring 3 is fixed up and down. When in brewing, the water flow entering from the water guide ring 3 flows into the second cavity 12 through the water passing gap 34 to brew the beverage raw material in the second cavity 12, and then the liquid flow can flow into the first cavity 11 from the second cavity 12 through the floating filter bracket 4.
Optionally, as shown in fig. 2, the bottom wall of the housing 1 is provided with a splash-proof protrusion 13, and the bottom end of the water guide ring 3 is disposed opposite to the splash-proof protrusion 13.
The arrangement of the splashing protrusions 13 is beneficial to the water flow entering the second cavity 12 to splash back to form a vortex, so that the brewing or extracting effect of the beverage raw materials in the second cavity 12 is improved.
Alternatively, as shown in fig. 2 and 3, a filter portion 33 is provided in the water guide ring 3, and a filter hole is provided in the filter portion 33.
Set up filter house 33 in the water guide ring 3, avoid the drink raw materials intermix in first cavity 11 and the second cavity 12, ensure the independence of drink raw materials in first cavity 11 and the second cavity 12.
Alternatively, the filter portion 33 may be located above the card slot 31.
Alternatively, in one embodiment, as shown in fig. 3, the floating filter support 4 includes a floating support 44 and a ring-shaped filter paper 45, the mounting hole 41 is provided at the center of the floating support 44, and the floating support 44 may be fixed at different heights of the water guide ring 3, and the filter paper 45 is fixed to the floating support 44 around the mounting hole 41.
Specifically, the floating mount 44 includes a mount bottom wall 46 and a mount side wall 47, and the mounting hole 41 is provided at the center of the mount bottom wall 46. The floating holder 44 may be a plastic member, and the filter paper 45 may be heat-welded to a holder bottom wall 46 at the bottom of the floating holder 44. In order to prevent coffee powder and tea leaves in the lower second cavity 12 from entering the upper first cavity 11 when being brewed and being brewed into a beverage together with beverage raw materials, the filter paper 45 can be annular filter paper, the outer ring of the support bottom wall 46 of the floating support 44 is hermetically welded with the filter paper 45, and the inner ring of the support bottom wall 46 is also hermetically welded with the filter paper 45. Furthermore, the floating support 44 can be provided with ribs, and the ribs can be hermetically welded with the filter paper 45 to form a structure of hermetically welded plastic parts and the filter paper 45, so that the situation that the beverage raw materials in the second cavity 12 enter the first cavity 11 and then enter the brewed beverage in the brewing process to influence the quality of the beverage is avoided.
In another embodiment, the floating filter support 4 is an integrated structure, and a plurality of filter holes are formed in the floating filter support 4, and the plurality of filter holes are arranged around the mounting hole 41.
Example two:
the present embodiment provides a beverage capsule, which is different from the first embodiment mainly in the fixing manner of the floating filter holder 4 and the water guide ring 3.
In the present embodiment, as shown in fig. 4 and 5, an external thread 32 is provided on an outer side wall surface of the water guide ring 3, an internal thread 43 is provided on an inner side wall surface of the mounting hole 41, and the internal thread 43 is in threaded engagement with the external thread 32 to axially limit and fix the floating filter support 4 at different heights of the water guide ring 3. Wherein the external thread 32 may be located below the filter part 33.
Through the screwing fit of the internal thread 43 and the external thread 32, the stepless adjustment of the floating filter support 4 on different heights of the water guide ring 3 is realized, the adjustment range of the first cavity 11 and the second cavity 12 is wider, and the height adjustment mode of the floating filter support 4 is simple and convenient.
In addition, through the screwing fit of the internal thread 43 and the external thread 32, a sealing effect can be achieved, and the beverage raw materials in the first cavity 11 and the second cavity 12 are prevented from being mixed with each other.
Specifically, when the screwing position of the floating filter support 4 is at 1/4 which is close to the bottom end of the water guide ring 3 and occupies the height of the whole water guide ring 3, the volume of the second cavity 12 is as follows: the volume of the beverage capsule is about 1:4, and the volume of the second cavity 12 at the lower layer of the capsule is smaller, so that the beverage capsule is more suitable for being filled with tea leaves to be made into a tea capsule. When the screwing position of the floating filter support 4 is at 1/3 which is close to the bottom end of the water guide ring 3 and occupies the height of the whole water guide ring 3, the volume ratio of the first cavity 11 and the second cavity 12 on the upper layer and the lower layer of the capsule is more suitable for filling tea leaves or coffee into the second cavity 12 on the lower layer, and the first cavity 11 on the upper layer is filled with milk powder to prepare the milk tea or milk coffee capsule. When the screwing position of the floating filter support 4 is at 2/5 which is close to the bottom end of the water guide ring 3 and occupies the height of the whole water guide ring 3, the volume of the second cavity 12 at the lower layer of the capsule is large, and the capsule is suitable for filling coffee into the second cavity 12 to be made into a black coffee capsule.
Different beverage capsules can be manufactured, different screwing positions on the water guide ring 3 can be selected, and the floating filter support 4 is fixed on different heights of the water guide ring 3 through screwing matching with the floating filter support 4, so that the upper and lower space requirements of different beverage capsules are met.
Example three:
the present embodiment provides a beverage capsule, which is different from the first embodiment mainly in the fixing manner of the water guide ring 3.
In the present embodiment, as shown in fig. 6, the top end of the water guide ring 3 is fixedly connected to the diaphragm, the bottom end of the water guide ring 3 abuts against the bottom wall of the housing 1, and the bottom end of the water guide ring 3 is provided with the water through hole 35. Wherein, the water through hole 35 may be a circle of saw-tooth openings uniformly arranged around the circumference of the water guide ring 3.
The top of water guide ring 3 is fixed with the diaphragm, and the diapire butt of bottom and casing 1 avoids water guide ring 3 to reciprocate for water guide ring 3 is fixed, and then makes the floating filter support 4 of fixing on water guide ring 3 fixed from top to bottom. When brewing, the water flow entering from the water guide ring 3 flows into the second cavity 12 through the water through holes 35 to brew the beverage raw material in the second cavity 12, and then the liquid flow can flow into the first cavity 11 from the second cavity 12 through the floating filter support 4.
Example four:
the present embodiment provides a beverage capsule, which is different from the first embodiment mainly in the fixing manner of the water guide ring 3.
In this embodiment, the top end of the water guide ring 3 abuts against the membrane, the bottom end of the water guide ring 3 abuts against the bottom wall of the housing 1, and the bottom end of the water guide ring 3 is provided with the water through hole 35.
When brewing, the water flow entering from the water guide ring 3 flows into the second cavity 12 through the water passing holes to brew the beverage raw materials in the second cavity 12. The top end of the water guide ring 3 is not connected with the membrane, so that water flow can enter the first cavity 11 through a gap between the membrane and the top end of the water guide ring 3 during brewing, and the brewing of the beverage raw materials in the first cavity 11 is realized.
In addition, when the top of water guide ring 3 and the diaphragm butt, the bottom and the diapire butt of casing 1, the setting of filter part 33 in the water guide ring 3 for there can be the clearance between the top of water guide ring 3 and the diaphragm under the pressure effect of rivers, so that the rivers pass through the clearance between diaphragm and the water guide ring 3 top and get into in the first cavity 11, realize the dashing and steep to the drink raw materials in the first cavity 11.
In addition, when the top end of the water guide ring 3 is abutted to the membrane and the bottom end of the water guide ring is abutted to the bottom wall of the shell 1, the bottom end of the water guide ring 3 can be abutted to the opposite anti-splashing bulge 13, and the water guide ring 3 is favorably fixed.
The brewing process of the beverage capsule according to the embodiment of the present invention is described below with reference to several specific examples.
Example one:
1. preparing milk coffee and milk tea drinks: when the milk, coffee and milk tea are brewed, the assembled beverage capsule is placed in a capsule beverage machine, the machine drives the beverage capsule to move through a motor, and then the water inlet pricking needles and the leading-out pricking needles pierce membranes on the beverage capsule. Then, the water is pumped into the boiler by the water pump, the boiler heats the water into hot water with the temperature of 60-70 ℃, the hot water flows into the beverage capsule by the water pump through the water inlet pricker, the hot water firstly enters the first cavity 11 on the upper layer of the beverage capsule through the gap between the membrane and the top end of the water guide ring 3, and the milk powder raw material in the first cavity 11 is emulsified and dissolved; and then, heating the water into hot water at the temperature of 80-95 ℃ by a boiler, pumping the hot water into the second cavity 12 at the lower layer of the beverage capsule by a water pump, extracting ground coffee or tea leaves in the second cavity 12 at the lower layer in a segmented manner, and then leading out the pricker to flow out, thus finishing the beverage preparation.
2. Making a coffee beverage: when coffee is brewed, the assembled beverage capsule is placed in a capsule beverage machine, the machine drives the beverage capsule to move through a motor, and then a membrane on the beverage capsule is punctured by a water inlet puncturing needle and a leading-out puncturing needle. Then, the water pump pumps water into the boiler, the boiler heats the water into hot water of 80-95 ℃, the water pump pumps the hot water into the second cavity 12 through the water inlet pricker, the ground coffee at the lower layer is extracted in sections, and then the ground coffee flows out through the extraction pricker, and the beverage is made.
3. Preparing a flower and plant tea beverage: when the flower and plant tea is brewed, the assembled beverage capsules are placed in a capsule beverage machine, the machine drives the beverage capsules to move through a motor, and then the water inlet pricking pins and the extraction pricking pins pierce membranes on the beverage capsules. Then, the water pump pumps water into the boiler, the boiler heats the water into hot water with the temperature of 75-95 ℃, the water pump pumps the hot water into the second cavity 12 through the water inlet pricker, the lower layer of herb tea is extracted in a segmented manner, and the herb tea flows out through the extraction pricker, and the beverage is made.
When making different drinks, the capsule drink chance chooses different brewing procedures for use automatically, and the drink capsule of different grade type can use the floating filter support 4 structure of same section simultaneously, greatly reduced material cost and manufacturing cost.
It should be understood that the fixing manner of the floating filter support and the water guide ring is not limited to the above-mentioned snap and snap groove, and the internal thread and the external thread are screwed together, and the floating filter support and the water guide ring can also be fixed by other manners, such as: the mounting hole of the floating filter support is directly in interference fit with the outer side wall surface of the water guide ring, and the height position of the floating filter support is adjusted by sliding the floating filter support up and down; or, be equipped with spacing piece and lower spacing piece on the lateral wall face of water guide ring, float and filter the support and spacing between spacing piece and lower spacing piece, set up the spring between the support diapire of spacing piece and floating filter the support, through compression spring, adjustable floating filter the height position of support.
The above-mentioned embodiments only express the exemplary embodiments of the present invention, and the description thereof is specific and detailed, but the contents described are only the embodiments adopted for the convenience of understanding the present invention, and are not used to limit the present invention. It will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. The utility model provides a beverage capsule, including having the open-ended casing and inciting somebody to action the sealed diaphragm of opening, its characterized in that, beverage capsule still includes water guide ring and floating filter holder, water guide ring sets up in the casing, floating filter holder is last to be equipped with the mounting hole, water guide ring passes the mounting hole, floating filter holder can fix the not co-altitude department of water guide ring, floating filter holder will space in the casing is for being close to the first cavity of open-ended with keep away from the open-ended second cavity.
2. The beverage capsule of claim 1, wherein a plurality of slots are formed in the outer wall surface of the water guide ring, the slots are located at different heights of the water guide ring, and a buckle is arranged on the floating filter support and can be clamped in any one of the slots.
3. The beverage capsule of claim 2, wherein the buckle is a protrusion disposed on an inner side wall surface of the mounting hole, and an end surface of a protruding end of the protrusion is arc-shaped.
4. The beverage capsule of claim 3, wherein the mounting hole is in interference fit with the water guide ring, and the protrusion and the slot are both annularly arranged.
5. The beverage capsule of claim 1, wherein the outer side wall surface of the water guide ring is provided with an external thread, the inner side wall surface of the mounting hole is provided with an internal thread, and the internal thread is in threaded connection with the external thread to limit and fix the floating filter support at different heights of the water guide ring along the axial direction.
6. The beverage capsule of any one of claims 1-5, wherein the floating filter holder has a holder bottom wall with the mounting hole provided thereon, the holder bottom wall being axially movable relative to the water guide ring to be fixed at an elevation 1/4-2/5 from a bottom end of the beverage capsule.
7. The beverage capsule according to any one of claims 1 to 5, wherein the top end of the water guide ring is fixedly connected with the membrane, and a water passing gap is formed between the bottom end of the water guide ring and the bottom wall of the shell;
or the top end of the water guide ring is fixedly connected with the diaphragm, the bottom end of the water guide ring is abutted against the bottom wall of the shell, and the bottom end of the water guide ring is provided with a water through hole;
or the top end of the water guide ring is abutted to the membrane, the bottom end of the water guide ring is abutted to the bottom wall of the shell, and the bottom end of the water guide ring is provided with a water through hole.
8. The beverage capsule of claim 7, wherein the bottom wall of the housing is provided with a splash projection, and the bottom end of the water guide ring is arranged opposite to the splash projection.
9. The beverage capsule according to any one of claims 1 to 5, wherein a filter part is arranged in the water guide ring, and a filter hole is arranged on the filter part.
10. The beverage capsule of any one of claims 1 to 5, wherein the floating filter support comprises a floating support and a ring-shaped filter paper, the mounting hole is arranged in the center of the floating support, the floating support can be fixed at different heights of the water guide ring, and the filter paper is fixed on the floating support around the mounting hole;
or, the floating filter support is of an integrated structure, a plurality of filter holes are formed in the floating filter support, and the filter holes are arranged around the mounting holes.
CN201922095889.7U 2019-11-28 2019-11-28 Beverage capsule Active CN211484086U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922095889.7U CN211484086U (en) 2019-11-28 2019-11-28 Beverage capsule

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922095889.7U CN211484086U (en) 2019-11-28 2019-11-28 Beverage capsule

Publications (1)

Publication Number Publication Date
CN211484086U true CN211484086U (en) 2020-09-15

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022160128A1 (en) * 2021-01-27 2022-08-04 宝景实业(东莞)有限公司 Coffee bean grinder

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022160128A1 (en) * 2021-01-27 2022-08-04 宝景实业(东莞)有限公司 Coffee bean grinder

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Effective date of registration: 20230329

Address after: Building 2, No. 52, 22nd Street, Baiyang Street, Qiantang New District, Hangzhou City, Zhejiang Province, 310000

Patentee after: Hangzhou Jiuchuang Home Appliances Co.,Ltd.

Address before: 310018 No. 760 Yinhai Street, Xiasha Street, Hangzhou Economic and Technological Development Zone, Zhejiang Province

Patentee before: HANGZHOU YIBEI FOOD TECHNOLOGY CO.,LTD.