The present invention relates to a beverage container and more particularly to a beverage container having a strainer.
There are many cup or bottle products on the market. One of those, such as that disclosed in TW Utility Patent No. M495808, includes a strainer assembled on the opening of the bottle. Tea leaves are put in the strainer for separation from liquid when in brewing. However, position of the strainer in the bottle is fixed. When water level is low, the strainer cannot be submerged in the water to brew drinks.
Another bottle, as disclosed in TW Utility Patent No. M465867, includes a lid with a hole and a strainer tied with a string. The strainer is hanged in the bottle with the string passing through the hole. Accordingly, position of the strainer in the bottle can be changed by pulling the string. Moreover, a strainer disclosed in TW Utility Patent No. M465868 includes a plurality of hangers, each of the hangers being provided at different levels. Accordingly, position of the strainer in the bottle can be changed by the chosen hanger hanged on the bottle.
Although positions of both of the two strainers abovementioned can be changed, volumes in the two strainers are still fixed to contain a fixed amount of tea leaves. No more tea leaves can be contained to get stronger tea.
The primary objective of the present invention is to provide a beverage container having a strainer that is able to change volume and position level in the beverage container for determining the quantity of tea leaves and the brewing situation.
To achieve the above objective, the present invention provides a strainer with changeable volume including a ring member with a positioning portion provided on a periphery of the ring member for connection with a beverage container. A connecting member having a plurality of bridge portions is connected with the ring member. A plurality of outlets is formed between the bridge portions and the ring member. A first bucket member is connected with the connecting member. The first bucket member includes a first annular wall with a first opening and a first stopping portion. A second bucket member includes a second annular wall connected with a bottom wall. A top end of the second annular wall has a second opening communicated with the first opening and a second stopping portion. A plurality of side sieve holes is disposed on the second annular wall. The second annular wall is movably connected with the first annular wall so that the second bucket member is capable of moving upwardly or downwardly along the first bucket member. The second stopping portion is blocked by the first stopping portion to prevent the second bucket member from leaving the first bucket member.
In one embodiment, the second bucket member is provided inside the first bucket member. The first stopping portion is an inner flange formed on the first opening while the second stopping portion is an outer flange formed on the second opening.
Preferably, a top end of the first annular wall detachably connects with the bottom end of the connecting member by threads.
Preferably, the second annular wall is provided with a slip proof portion abutting against the first annular wall.
Preferably, the bottom wall of the second bucket member is provided with a plurality of bottom sieve holes.
In another embodiment, an interior and an exterior of the first bucket member are not in communication with each other through the first annular wall directly. The bottom end of the first annular wall is provided with a waterproof ring closely connected with the second annular wall.
Furthermore, the present invention provides a beverage container having the strainer abovementioned, including a body having a first opening end with a coupling portion. The strainer including a ring member with a positioning portion provided on a periphery of the ring member for connection with the coupling portion. A connecting member having a plurality of bridge portions is connected with the ring member. A plurality of outlets is formed between the bridge portions and the ring member. A first bucket member is connected with the connecting member. The first bucket member includes a first annular wall with a first opening and a first stopping portion. A second bucket member includes a second annular wall connected with a bottom wall. A top end of the second annular wall has a second opening communicated with the first opening and a second stopping portion. A plurality of side sieve holes is disposed on the second annular wall. The second annular wall is movably connected with the first annular wall so that the second bucket member is capable of moving upwardly or downwardly along the first bucket member. The second stopping portion is blocked by the first stopping portion to prevent the second bucket member from leaving the first bucket member.
Preferably, a second opening end with a detachable lid is disposed at an end of the body opposite to the first opening end.
Referring to
A bottom end 231A of the connecting member 2A expands and engages with the first bucket member 3A by threads.
The first bucket member 3A has a first annular wall 31A provided with a plurality of side sieve holes 311 while the second bucket member 4A has a second annular wall 41A provided with a plurality of side sieve holes 411. A top end of the first annular wall 31A is connected with the bottom end 231A of the connecting member 2A. A bottom end of the first annular wall 31A has a first opening 33 with an inner flange 331. The second bucket member 4A has a second annular wall 41A connected with a bottom wall 42A having a plurality of bottom sieve holes 421. A top end of the second annular wall 41A has a second opening 43 with an outer flange 431.
The second bucket member 4A is provided inside the first bucket member 3A. The second opening 43 is in communication with the first opening 33. The second annular wall 41A is movably connected with the first annular wall 31A so that the second bucket member 4A is capable of moving upwardly or downwardly along the first bucket member 3A. Accordingly, volume of the strainer 100 can be changed.
When pulling down the second bucket member 4A, the outer flange 431 is blocked by the inner flange 331 so as to prevent the second bucket member 4A from leaving the first bucket member 3A.
In this embodiment, a plurality of slip proof portion 45 is provided on the second annular wall 41A. Each of the slip proof portion 45 is a flake bent outwardly from second annular wall 41A to abut against the first annular wall 31A, making the second bucket member 4A position on the first bucket member 3A.
As shown in
Tea leaves can be put in the strainer 100 for separation from liquid when in brewing. Since flavor of the tea depends upon the amount of tea leaves, volume of the strainer 100 is able to increase for more tea leaves through that the second bucket member 4A being pulled down relative to the first bucket member 3A, as shown in
In addition, as shown in
As shown in
Referring to
A bottom end 231B of the connecting member 2B expands and engages with the first bucket member 3B by threads.
The first bucket member 3B has a first annular wall 31B with no sieve hole, and thus an interior and an exterior of the first bucket member 3B are not in communication with each other through the first annular wall 31B directly. The second bucket member 4B has a second annular wall 41B provided with a plurality of side sieve holes 411. The second annular wall 41B is connected with a bottom wall 42B provided with no sieve hole, and thus an interior and an exterior of the second bucket member 4B are not in communication with each other through the second annular wall 41B directly.
A top end of the first annular wall 31B is connected with the bottom end 231B of the connecting member 2B. A bottom end of the first annular wall 31B has a first opening 33 with an inner flange 331. A top end of the second annular wall 41B has a second opening 43 with an outer flange 431.
The second bucket member 4B is provided inside the first bucket member 3B. The second opening 43 is in communication with the first opening 33. The second annular wall 41B is movably connected with the first annular wall 31B so that the second bucket member 4B is capable of moving upwardly or downwardly along the first bucket member 3B. Accordingly, volume of the strainer 200 can be changed.
When pulling down the second bucket member 4B, the outer flange 431 is blocked by the inner flange 331 so as to prevent the second bucket member 4B from leaving the first bucket member 3B. Furthermore, the bottom end of the first annular wall 31B is provided with a waterproof ring 34 closely connected with the second annular wall 41B.
As shown in
Referring to