A tea dispersing and quantitative taking-out device and a quantitative tea taking-out method thereof

The tea dispersion and quantitative extraction device designed with a multi-layer cylindrical tank body and a fan blade rotary partition is solved, and the tea dispersion and quantitative extraction are realized to ensure the sealing and quality of the tea.

CN115384927BActive Publication Date: 2025-08-12ZHEJIANG SCI-TECH UNIV
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Patent Information

Application Number
CN202210977076.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-15
Publication Date
2025-08-12
Estimated Expiration
2042-08-15

AI Technical Summary

Technical Problem

Existing tea pots are prone to crocheting and sticking when taking tea, and are difficult to quantitatively remove, affecting the quality and usage experience of tea.

Method used

The multi-layer cylindrical tank rotary splicing method is adopted, combined with the fan blade and rotary partition design, and the tea leaves are dispersed and quantitatively removed through the rotation of the fan blade and partition adjustment. The paper fan blade is rotated to form a sealing effect, and the transparent quantitative extraction block is combined to achieve accurate tea withdrawal.

Benefits of technology

The dispersion and quantitative removal of tea leaves are achieved to ensure the sealing and quality of tea leaves, avoid tea damage, and meet different tea drinking needs.

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Abstract

The present invention discloses a tea dispersing and quantitative extraction device and a quantitative tea extraction method thereof. When extracting tea leaves from existing tea cans, the tea leaves are easily hooked and stuck due to their own shape characteristics, and quantitative extraction of tea leaves cannot be achieved. The present invention provides a tea dispersing device and a tea quantitative box; the two ends of the fan blade are respectively fixed to the middle fixed frame and the rotating cylindrical barrel; the two ends of the fixed rod are respectively fixed to the middle fixed frame and the rotating cylindrical barrel; the rotating cylindrical barrel is rotatably connected to the tea storage box; the fixed partition is fixed to the fixed barrel; the rotating partition is rotatably connected to the fixed partition; the fixed block 1 and the fixed block 2 are fixed to the fixed barrel, and the quantitative extraction block is rotatably connected to the fixed barrel; the fixed barrel is rotatably connected to the rotating cylindrical barrel. The fan blades provided in the tea dispersing device of the present invention can disperse the tea leaves when rotating with the rotating cylindrical barrel; the tea quantitative box is provided with a fixed partition and a rotating partition, and the rotating partition is adjusted to form different tea amount holding areas to achieve quantitative tea extraction.
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Description

Technical Field

[0001] The invention belongs to the technical field of bottles and cans, and in particular relates to a tea-tea dispersing and quantitative taking-out device and a quantitative tea-tea taking-out method thereof. Background Art

[0002] The tea industry has a long history in my country, and in particular, the country's tea export trade has seen sustained and stable growth in recent years, leading to the development and upgrading of a range of related industries, including tea cans. Tea cans need to meet certain requirements, such as good sealing, sun protection, and moisture resistance. Most tea cans on the market are made of tins. Due to their shape, tea leaves easily snag and stick together. This makes it easy to remove stuck tea leaves from tins, and the amount of tea removed often falls short of the required quantity. If a large amount is removed, placing the excess tea back into the tin can contaminate the tea and affect its quality. If a small amount is removed, it may not meet the tea drinker's expectations. Therefore, a tea can was needed that could both disperse the tea leaves and allow for quantitative removal. Summary of the Invention

[0003] The purpose of the present invention is to overcome the shortcomings of the above-mentioned background technology and provide a tea dispersing and quantitative taking-out device and a quantitative tea taking-out method thereof. It adopts a multi-layer cylindrical tank rotation splicing method, which can not only realize the rotation of the fan blades, so that the fan blades can break up the tea leaves stuck together without damaging the tea leaves, but also each fan blade can form a paper cover shape when placed upright, which has a sealing effect on the tea leaves in the tea storage box; moreover, the quantitative tea taking-out function is realized.

[0004] The present invention provides a tea dispersing and quantitative extraction device, comprising a bottle cap, a tea dispersing device, a tea quantitative box and a tea storage box. The tea dispersing device comprises a fixed rod, a fan blade, a rotating cylindrical barrel and an intermediate fixed frame; the fan blade is provided with n pieces uniformly distributed along the circumference of the intermediate fixed frame, n≥3; one end of the fan blade is fixed to the intermediate fixed frame, and the other end is fixed to the rotating cylindrical barrel; the fan blade is made of paper material; adjacent fan blades overlap each other; a fixed rod is provided under each fan blade, one end of the fixed rod is fixed to the intermediate fixed frame, and the other end is fixed to the rotating cylindrical barrel; the bottom of the rotating cylindrical barrel is rotatably connected to the top of the tea storage box; the tea quantitative box comprises a fixed barrel, a fixed partition, a rotating partition and a quantitative extraction block; the fixed partition is fixed to the fixed Inside the cylinder, the inner cavity of the fixed cylinder is divided into two parts of equal volume; the rotating partition and the fixed partition constitute a rotating pair, and the two end faces of the rotating partition are in contact with the inner wall of the fixed cylinder to form a friction pair; by manually adjusting the rotating partition, the area of the four regions divided by the rotating partition and the fixed partition changes, thereby realizing the quantitative removal of tea leaves; the bottom of the quantitative removal block is rotatably connected to the top of the fixed cylinder; the bottom of the fixed cylinder is rotatably connected to the rotating cylindrical cylinder; the quantitative removal block is provided with a fan-shaped through groove, and the quantitative removal block is made of transparent material; a bottle cap is provided on the quantitative removal block, and the bottom surface of the bottle cap fits with the top surface of the quantitative removal block.

[0005] Preferably, the structure of the rotational connection between the bottom of the rotating cylindrical drum and the top of the tea storage box is: a convex ring integrally formed at the bottom of the rotating cylindrical drum is embedded in an annular groove with a major arc cross section at the top of the tea storage box.

[0006] Preferably, the structure of the rotatable connection between the bottom of the quantitative removal block and the top of the fixed cylinder is: a convex ring integrally formed at the bottom of the quantitative removal block is embedded in an annular groove with a major arc cross section at the top of the fixed cylinder.

[0007] Preferably, the structure of the rotational connection between the bottom of the fixed cylinder and the top of the rotating cylindrical cylinder is: a convex ring integrally formed at the bottom of the fixed cylinder is embedded in an annular groove with a major arc cross section at the top of the rotating cylindrical cylinder.

[0008] Preferably, the tea storage box is made of iron with a galvanized inner wall, has strong sealing and corrosion resistance, and is used for storing tea.

[0009] Preferably, fixed block one and fixed block two are fixed at intervals on the inner wall of the fixed cylinder at one side of the fixed partition, and fixed block one and fixed block two are located on both sides of the rotating partition. The rotating partition can be quickly positioned to the recommended few or many area division gears and the moderate gear with equal division of each area.

[0010] More preferably, the central angles between the second fixing block and both ends of the fixed partition are 90°, the central angle between the first fixing block and the second fixing block is 60°, and the central angle of the fan-shaped through groove is 30°.

[0011] The quantitative tea taking method of the tea dispersing and quantitative taking device is as follows:

[0012] Remove the tea storage box from the rotating cylinder, and remove the quantitative removal block together with the bottle cap from the fixed cylinder; after filling the tea storage box with tea, install it on the rotating cylinder again; according to the amount of tea required, manually adjust the position of the rotating partition, or directly select the recommended gear and manually adjust the rotating partition to the fixed block one or fixed block two position; after adjusting the rotating partition, reinstall the quantitative removal block together with the bottle cap on the fixed cylinder; turn the bottle cap, tea quantitative box, tea dispersing device and tea storage box upside down, shake the tea storage box up and down with one hand, and use the other hand to rotate the rotating cylinder to drive the fan blades to rotate. Since the fan blades are formed into an arc with a low middle and high ends due to gravity, the tea leaves are discharged from the gaps between adjacent fan blades. The tea will fall into the tea dosing box through the gap. If there are multiple pieces of tea leaves woven together, they will be dispersed when they collide with the fan leaves. At this time, the tea leaves are distributed in various areas of the fixed cylinder cavity. Then, the bottle cap, tea dosing box, tea dispersing device and tea storage box are all placed upright. At this time, each fan leaf does not sink in the middle under the support of the corresponding fixed rod, the adjacent fan leaves overlap with each other, and all the fan leaves form a closed surface. Next, remove the bottle cap, rotate the quantitative removal block, so that the fan-shaped slot of the quantitative removal block is rotated to above the area of the fixed cylinder cavity corresponding to the required amount of tea, tilt the tea dosing box, tea dispersing device and tea storage box downward, and pour out the tea in this area of the fixed cylinder cavity from the fan-shaped slot.

[0013] The beneficial effects of the present invention are:

[0014] 1) The tea dispersing device of the present invention is equipped with fan blades. When placed upright, the fan blades are subjected to the action of gravity and the support of the fixed rod to form a paper cover shape, which has a sealing effect and ensures the sealing of the tea packaging.

[0015] 2) When the tea dispersing device of the present invention is turned upside down and rotated, the fan blades collide with the curved, arc-shaped, crocheted tea leaves, and the tea leaves are dispersed during the slight vibration. Since the fan blades are made of paper material, they will not damage high-quality teas such as West Lake Longjing, and the structure of the fan blades can straighten the slender tea leaves of the high-quality tea, thereby achieving the purpose of breaking up the tea leaves without damaging them.

[0016] 3) The tea quantitative box of the present invention is provided with a fixed partition and a rotating partition. The rotating partition forms areas for holding different amounts of tea, realizing quantitative functions of different levels, thereby realizing quantitative tea taking. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.

[0018] Figure 2 It is a schematic diagram of the tea dispersing device of the present invention.

[0019] Figure 3 It is a schematic diagram of the assembly of the intermediate fixing frame and the fixing rod of the present invention.

[0020] Figure 4 It is a schematic diagram of the sealing state of each fan blade when the present invention is placed upright.

[0021] Figure 5 It is a schematic diagram of the state in which each fan blade generates an arc when the present invention is inverted.

[0022] Figure 6 It is a schematic diagram of the rotating partition of the present invention being located at a position of the fixed block.

[0023] Figure 7 It is a schematic diagram of the rotating partition of the present invention being located at the second position of the fixed block.

[0024] Figure 8 It is a schematic diagram of a tea quantitative box of the present invention. DETAILED DESCRIPTION

[0025] The present invention will be further described below with reference to the accompanying drawings.

[0026] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 6 and Figure 8 As shown, a tea dispersing and quantitative taking-out device comprises a bottle cap 1, a tea quantitative box 2, a tea dispersing device 3 and a tea storage box 4. The tea dispersing device 3 comprises a fixed rod 3-1, a fan blade 3-2, a rotating cylindrical barrel 3-3 and an intermediate fixed frame 3-4; the fan blade 3-2 is provided with n pieces uniformly distributed along the circumference of the intermediate fixed frame 3-4, n ≥ 3; one end of the fan blade 3-2 is fixed to the intermediate fixed frame 3-4, and the other end is fixed to the rotating cylindrical barrel 3-3; the fan blade 3-2 is made of paper material; adjacent fan blades 3-2 overlap each other; a fixed rod 3-1 is provided under each fan blade 3-2, one end of the fixed rod 3-1 is fixed to the intermediate fixed frame 3-4, and the other end is fixed to the rotating cylindrical barrel 3-3; the bottom of the rotating cylindrical barrel 3-3 is rotatably connected to the top of the tea storage box 4; the tea quantitative box 2 comprises a fixed barrel 2-1, a fixed partition 2-2, a rotating partition 2-3 and a quantitative taking-out block 2-6; the fixed partition 2-2 It is fixed in the fixed cylinder 2-1, dividing the inner cavity of the fixed cylinder 2-1 into two parts of equal volume; the rotating partition 2-3 and the fixed partition 2-2 form a rotating pair, and the two end faces of the rotating partition 2-3 are in contact with the inner wall of the fixed cylinder 2-1 to form a friction pair; by manually adjusting the rotating partition 2-3, the area of the four regions divided by the rotating partition 2-3 and the fixed partition 2-2 is changed, thereby realizing the quantitative removal of tea leaves; the bottom of the quantitative removal block 2-6 is rotatably connected to the top of the fixed cylinder 2-1; the bottom of the fixed cylinder 2-1 is rotatably connected to the rotating cylindrical cylinder 3-3; the quantitative removal block 2-6 is provided with a fan-shaped through groove, and the quantitative removal block 2-6 is made of transparent material; the quantitative removal block 2-6 is provided with a bottle cap 1, and the bottom surface of the bottle cap 1 is in contact with the top surface of the quantitative removal block 2-6.

[0027] As a preferred embodiment, the structure of the rotational connection between the bottom of the rotating cylindrical barrel 3-3 and the top of the tea storage box 4 is as follows: a convex ring (not shown) integrally formed at the bottom of the rotating cylindrical barrel 3-3 is embedded in an annular groove (not shown) with a major arc cross-section at the top of the tea storage box 4.

[0028] As a preferred embodiment, the structure of the rotational connection between the bottom of the quantitative removal block 2-6 and the top of the fixed cylinder 2-1 is: the convex ring (not shown) integrally formed at the bottom of the quantitative removal block 2-6 is embedded in an annular groove (not shown) with a major arc cross-section at the top of the fixed cylinder 2-1.

[0029] As a preferred embodiment, the structure of the rotational connection between the bottom of the fixed cylinder 2-1 and the top of the rotating cylindrical cylinder 3-3 is: the convex ring (not shown) integrally formed at the bottom of the fixed cylinder 2-1 is embedded in an annular groove (not shown) with a major arc cross-section at the top of the rotating cylindrical cylinder 3-3.

[0030] As a preferred embodiment, the tea storage box 4 is made of iron with a galvanized inner wall, has strong sealing and corrosion resistance, and is used for storing tea.

[0031] As a preferred embodiment, the inner wall of the fixed cylinder 2-1 is located on one side of the fixed partition 2-2 and fixed block 1 2-4 and fixed block 2-5 are fixed with a spacing arrangement, and fixed block 1 2-4 and fixed block 2-5 are located on both sides of the rotating partition 2-3. The rotating partition 2-3 can be quickly positioned to the recommended few or many area division gears and the moderate gear with equal division of each area.

[0032] More preferably, the central angles between the second fixing block 2-5 and both ends of the fixed partition 2-2 are 90°, the central angle between the first fixing block 2-4 and the second fixing block 2-5 is 60°, and the central angle of the fan-shaped through groove is 30°.

[0033] The quantitative tea taking method of the tea dispersing and quantitative taking device is as follows:

[0034] Remove the tea storage box 4 from the rotating cylindrical barrel 3-3, and remove the quantitative removal block 2-6 together with the bottle cap 1 from the fixed barrel 2-1; after the tea storage box 4 is filled with tea, it is installed on the rotating cylindrical barrel 3-3 again; the position of the rotating partition 2-3 can be manually adjusted according to the amount of tea to be taken out, or the recommended gear can be directly selected to manually adjust the rotating partition 2-3 to the fixed block 1 2-4 or fixed block 2 2-5 position. When the rotating partition 2-3 is adjusted to the fixed block 1 2-4 position, as shown in FIG. Figure 6 As shown, the inner cavity of the fixed cylinder 2-1 is divided into two smaller areas and two larger areas. When the rotating partition 2-3 is adjusted to the position of the fixed block 2-5, as shown in FIG. Figure 7As shown, the inner cavity of the fixed cylinder 2-1 is divided into four areas of equal volume; after adjusting the rotating partition 2-3, the quantitative removal block 2-6 together with the bottle cap 1 is reinstalled on the fixed cylinder 2-1; the bottle cap 1, the tea quantitative box 2, the tea dispersing device 3 and the tea storage box 4 are all turned upside down, and the tea storage box 4 is shaken up and down by one hand, and the rotating cylindrical cylinder 3-3 is rotated with the other hand to drive the fan blades 3-2 to rotate. Due to the gravity, the fan blades 3-2 form an arc shape with a low middle and high ends, as shown in FIG. Figure 2 and Figure 5 As shown, tea leaves fall into the tea metering box 2 through the gaps between adjacent blades 3-2. If there are multiple tea leaves woven together, they will be dispersed when they collide with the blades 3-2. At this time, the tea leaves are evenly distributed in all areas of the inner cavity of the fixed cylinder 2-1. Then, the bottle cap 1, tea metering box 2, tea dispersing device 3 and tea storage box 4 are all placed upright. At this time, each blade 3-2 does not sink in the middle under the support of the corresponding fixed rod 3-1. Adjacent blades 3-2 overlap with each other, and all blades 3-2 form a closed surface, as shown in FIG. Figure 4 As shown, it supports the tea in the tea dosing box 2 and seals the remaining tea in the tea storage box 4. Next, remove the bottle cap 1. Since the quantitative removal block 2-6 is made of transparent material, the four areas of the fixed cylinder 2-1 can be directly observed. Rotate the quantitative removal block 2-6 so that the fan-shaped slot of the quantitative removal block 2-6 is above the area of the fixed cylinder 2-1 corresponding to the required amount of tea. Tilt the tea dosing box 2, tea dispersing device 3, and tea storage box 4 downward, and the tea in this area of the fixed cylinder 2-1 can be poured out through the fan-shaped slot.

Claims

1. A tea dispersing and quantitative taking-out device, comprising a bottle cap and a tea storage box, characterized in that: The invention also includes a tea dispersing device and a tea quantitative box; the tea dispersing device includes a fixed rod, a fan blade, a rotating cylindrical barrel and an intermediate fixed frame; the fan blade is provided with n pieces uniformly distributed along the circumference of the intermediate fixed frame, n ≥ 3; one end of the fan blade is fixed to the intermediate fixed frame, and the other end is fixed to the rotating cylindrical barrel; the fan blade is made of paper material; adjacent fan blades overlap each other; a fixed rod is provided under each fan blade, one end of the fixed rod is fixed to the intermediate fixed frame, and the other end is fixed to the rotating cylindrical barrel; the bottom of the rotating cylindrical barrel is rotatably connected to the top of the tea storage box; the tea quantitative box includes a fixed barrel, a fixed partition, a rotating partition and a quantitative removal block; the fixed partition is fixed to the fixed barrel inside; the rotating partition and the fixed partition form a rotating pair, and the two end surfaces of the rotating partition are in contact with the inner wall of the fixed cylinder to form a friction pair; the bottom of the quantitative removal block is rotatably connected to the top of the fixed cylinder; the bottom of the fixed cylinder is rotatably connected to the rotating cylindrical cylinder; the quantitative removal block is provided with a fan-shaped through groove, and the quantitative removal block is made of transparent material; a bottle cap is provided on the quantitative removal block, and the bottom surface of the bottle cap fits with the top surface of the quantitative removal block; when placed upright, the fan blades form a paper cover shape under the action of gravity and the support of the fixed rod, which has a sealing effect. When the tea dispersing device is inverted and rotated, the fan blades collide with the curved and hooked tea leaves, and the tea leaves are dispersed during the vibration process.

2. The tea leaf dispersing and quantitative extraction device according to claim 1, characterized in that: The structure of the rotational connection between the bottom of the rotating cylindrical drum and the top of the tea storage box is as follows: a convex ring integrally formed at the bottom of the rotating cylindrical drum is embedded in an annular groove with a major arc cross section at the top of the tea storage box.

3. The tea leaf dispersing and quantitative extraction device according to claim 1, characterized in that: The structure of the rotatable connection between the bottom of the quantitative removal block and the top of the fixed cylinder is as follows: the convex ring integrally formed at the bottom of the quantitative removal block is embedded in the annular groove with a major arc cross section at the top of the fixed cylinder.

4. The tea leaf dispersing and quantitative extraction device according to claim 1, characterized in that: The structure of the rotational connection between the bottom of the fixed cylinder and the top of the rotating cylindrical cylinder is as follows: the convex ring integrally formed at the bottom of the fixed cylinder is embedded in the annular groove with a major arc cross section at the top of the rotating cylindrical cylinder.

5. The tea leaf dispersing and quantitative extraction device according to claim 1, characterized in that: The tea storage box is made of iron, and the inner wall thereof is galvanized.

6. The tea leaf dispersing and quantitative extraction device according to claim 1, characterized in that: A fixed block 1 and a fixed block 2 are fixed at a distance from each other on the inner wall of the fixed cylinder at one side of the fixed partition, and the fixed block 1 and the fixed block 2 are located on both sides of the rotating partition.

7. The tea leaf dispersing and quantitative extraction device according to claim 6, characterized in that: The central angles between the second fixing block and both ends of the fixed partition are both 90°, the central angle between the first fixing block and the second fixing block is 60°, and the central angle of the fan-shaped through groove is 30°.

8. A quantitative tea taking method according to any one of claims 1 to 7, characterized in that: The method is as follows: Remove the tea storage box from the rotating cylinder, and remove the quantitative removal block together with the bottle cap from the fixed cylinder; after filling the tea storage box with tea, install it on the rotating cylinder again; according to the amount of tea required, manually adjust the position of the rotating partition, or directly select the recommended gear and manually adjust the rotating partition to the fixed block one or fixed block two position; after adjusting the rotating partition, reinstall the quantitative removal block together with the bottle cap on the fixed cylinder; turn the bottle cap, tea quantitative box, tea dispersing device and tea storage box upside down, shake the tea storage box up and down with one hand, and use the other hand to rotate the rotating cylinder to drive the fan blades to rotate. Since the fan blades are formed into an arc with a low middle and high ends due to gravity, the tea leaves are discharged from the gaps between adjacent fan blades. The tea will fall into the tea dosing box through the gap. If there are multiple pieces of tea leaves woven together, they will be dispersed when they collide with the fan leaves. At this time, the tea leaves are distributed in various areas of the fixed cylinder cavity. Then, the bottle cap, tea dosing box, tea dispersing device and tea storage box are all placed upright. At this time, each fan leaf does not sink in the middle under the support of the corresponding fixed rod, the adjacent fan leaves overlap with each other, and all the fan leaves form a closed surface. Next, remove the bottle cap, rotate the quantitative removal block, so that the fan-shaped slot of the quantitative removal block is rotated to above the area of the fixed cylinder cavity corresponding to the required amount of tea, tilt the tea dosing box, tea dispersing device and tea storage box downward, and pour out the tea in this area of the fixed cylinder cavity from the fan-shaped slot.

Citation Information

Patent Citations

  • Anti-adhesion quantitative taking mechanism

    CN112110054A

  • Bottle lid and feeding device

    CN205312254U