A method for processing tea bags
By forming a cross groove on the bottom of the non-woven fabric of the tea bag and pressing it into a cylinder in the processing device, the problem that water is difficult to fully enter when the tea bag is soaked is solved, and the rapid flushing of tea leaves and the convenient opening of tea bags are achieved.
Patent Information
- Application Number
- CN202310209340.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-07
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2043-03-07
AI Technical Summary
The existing tea bags are difficult to fully enter the water when soaking in water, resulting in the inability to be washed away quickly, and the tea bags are fixed in size and cannot expand rapidly.
By forming a cross groove at the bottom of the non-woven fabric, and pressing the non-woven fabric into a cylinder using a round box and a cross plate in the processing device, the tea leaves are poured in and compacted after being shaped with glutinous rice water, and finally sealed and bundled.
This makes it easy to open the tea bags when soaking in water, and the tea leaves have sufficient space to be washed away by water, solving the problem that the tea leaves cannot be washed away quickly.
Smart Images

Figure CN116161286B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of tea, and more specifically to a method for processing tea bags. Background Art
[0002] A tea bag is made of cloth wrapped around tea leaves. It can be stored for a long time and is convenient to be rinsed with water when in use. The invention of the tea bag is for the convenience of carrying and brewing tea leaves, mainly considering convenience. However, a tea bag has a drawback that when there is too much tea leaves in the tea bag, water is not easy to enter the tea bag to fully rinse the tea leaves, and generally the size of a tea bag is fixed and cannot expand and open quickly when encountering water, so that the tea leaves cannot be quickly rinsed. Summary of the Invention
[0003] To overcome the deficiencies of the prior art, the present invention provides a method for processing tea bags, and its beneficial effect is that a tea bag that is convenient to open when soaked in water can be made.
[0004] A method for processing tea bags includes the following steps:
[0005] S1: Place the non-woven fabric on the processing device;
[0006] S2: Press it into a round box on the processing device to make the tube-shaped into a tubular shape;
[0007] S3: Form a cross groove at the bottom of the tubular non-woven fabric through the cross plate at the bottom of the round box;
[0008] S4: Sprinkle glutinous rice water on the tubular non-woven fabric to shape the non-woven fabric;
[0009] S5: Pour the tea leaves into the tubular non-woven fabric and compact the tea leaves;
[0010] S6: Seal the upper part of the tubular non-woven fabric.
[0011] Further, after the sealing in S6, use cotton thread to tie the sealed part.
[0012] Further, the tea leaves are green tea.
[0013] Further, the tea leaves are black tea. Brief Description of the Drawings
[0014] The following further elaborates on the present invention in detail in conjunction with the drawings and specific implementation methods.
[0015] Figure 1 It is a flowchart of a method for processing tea bags;
[0016] Figure 2 It is a flowchart of Example 1;
[0017] Figure 3Flow chart of the second embodiment;
[0018] Figure 4 Structural schematic of the processing device Figure 1 ;
[0019] Figure 5 Structural schematic of the processing device Figure 2 ;
[0020] Figure 6 Structural schematic of the processing device Figure 3 ;
[0021] Figure 7 Structural schematic of the round box Figure 1 ;
[0022] Figure 8 Structural schematic of the round box Figure 2 ;
[0023] Figure 9 Structural schematic of the round box Figure 3 ;
[0024] Figure 10 Structural schematic of the pressing frame and the ejector rod;
[0025] Figure 11 Structural schematic of the base Figure 1 ;
[0026] Figure 12 Structural schematic of the base Figure 2 .
[0027] In the figure: round box 101; side strip 102; circulation groove 103; convex seat 104; lifting frame 105; grille 106; cross plate 107; handle 108; motor I 109; telescopic rod I 110;
[0028] Pressing frame 201; connecting column 202; square plate 203; convex shaft 204; rotating rod 205;
[0029] Ejector rod 301; elastic leaf 302; motor II 303; limit post 304; elastic rod I 305;
[0030] Base 401; convex plate 402; track 403; telescopic rod II 404; sliding frame 405; V-shaped rod 406; elastic rod II 407; straight rod 408; stop block 409; inclined surface 410. Specific implementation method
[0031] Embodiment 1:
[0032] A tea bag processing method, comprising the following steps:
[0033] S1: Place the non-woven fabric on the processing device;
[0034] S2: Press it into the round box 101 on the processing device so that the non-woven fabric becomes a tube shape.
[0035] S3: Form a cross groove at the bottom of the tubular non-woven fabric through the cross plate 107 at the bottom of the round box 101.
[0036] S4: Sprinkle glutinous rice water on the tubular non-woven fabric to shape the non-woven fabric.
[0037] S5: Pour green tea into the tubular non-woven fabric and compact the tea leaves.
[0038] S6: Seal the upper part of the tubular non-woven fabric, and tie the sealed part with cotton thread after sealing.
[0039] Example Two:
[0040] A method for processing tea bags, including the following steps:
[0041] S1: Place the non-woven fabric on the processing device.
[0042] S2: Press it into the round box 101 on the processing device so that the non-woven fabric becomes a tube shape.
[0043] S3: Form a cross groove at the bottom of the tubular non-woven fabric through the cross plate 107 at the bottom of the round box 101.
[0044] S4: Sprinkle glutinous rice water on the tubular non-woven fabric to shape the non-woven fabric.
[0045] S5: Pour black tea into the tubular non-woven fabric and compact the tea leaves.
[0046] S6: Seal the upper part of the tubular non-woven fabric, and tie the sealed part with cotton thread after sealing.
[0047] As Figures 7 - 9 shown, this example can achieve the effect of facilitating the opening of the bottom of the non-woven fabric.
[0048] Since the processing device includes the round box 101, and the processing device includes that the round box 101 is welded with the cross plate 107. Place the non-woven fabric on the upper side of the round box 101, and then press the non-woven fabric into the round box 101. At this time, the non-woven fabric will be pressed on the cross plate 107, and a cross groove will be formed at the bottom of the tubular non-woven fabric. When the non-woven fabric is soaked in water, this cross groove will facilitate the opening of the bottom of the non-woven fabric, so that there is sufficient space for the tea leaves in the non-woven fabric, and the tea leaves can be fully soaked.
[0049] As Figures 7 - 9 shown, this example can achieve the effect of facilitating the shaping of the non-woven fabric to become hard after drying.
[0050] Since the inner edge of the round box 101 is welded with multiple grids 106 in a ring shape, a circulation groove 103 is provided on the upper part of the round box 101, and the glutinous rice water is poured into the circulation groove 103, and then the glutinous rice water flows down along the multiple grids 106 and is absorbed by the non-woven fabric. After the non-woven fabric is dried, it is convenient for the non-woven fabric to harden and be shaped.
[0051] like Figures 7 - 10 As shown, this example can achieve the effect of pressing the non-woven fabric onto the cross plate 107 in the round box 101 .
[0052] Since the four pressing frames 201 are arranged above the round box 101, the upper parts of the four pressing frames 201 are welded with connecting columns 202, and the upper parts of the four connecting columns 202 are welded to the square plate 203. The four pressing frames 201 are respectively located at four right angles of the cross plate 107. The four pressing frames 201 can be driven to move through the four connecting columns 202 through the square plate 203, so that the four pressing frames 201 are pressed toward the non-woven fabric located on the upper side of the round box 101, so that the non-woven fabric is pressed on the cross plate 107 in the round box 101, so that a cross groove is formed at the bottom of the non-woven fabric.
[0053] like Figure 10 As shown, this example can achieve the effect of shaking pressing to easily press down the non-woven fabric or tea leaves.
[0054] Since a convex shaft 204 is welded on the upper part of the square plate 203, the convex shaft 204 is rotatably connected to the front part of the top rod 301, and a rotating rod 205 is welded on the rear side of the convex shaft 204. Elastic rods I305 are welded on both sides of the rotating rod 205, and the outer ends of the two elastic rods I305 are welded on the top rod 301. Two limiting posts 304 are fixed on the upper side of the top rod 301, and the rotating rod 205 is located between the two limiting posts 304. When the rotating rod 205 is toggled, the convex shaft 204 can be driven to rotate, and the two elastic rods I305 make the rotating rod 205 and the convex shaft 204 return to their original positions through elastic force. The two limiting posts 304 make the rotating rod 205 only move within the range between the two limiting posts 304, so that the convex shaft 204 continuously rotates in a small range in the forward and reverse directions, so that the four pressing frames 201 continuously rotate in a small range in the forward and reverse directions to press the non-woven fabric, so that the shaking pressing-in makes it convenient to press the non-woven fabric or tea leaves.
[0055] like Figure 10 As shown, this example can achieve the effect of causing the four pressing frames 201 to continuously rotate and shake in a small range in the forward and reverse directions.
[0056] Since the upper part of the ejector rod 301 is connected with the motor II 303 by screws, a plurality of elastic blades 302 are annularly arranged on the output shaft of the motor II 303. The plurality of elastic blades 302 are all located at the rear of the rotating rod 205. The motor II 303 drives the plurality of elastic blades 302 to rotate, and then the plurality of elastic blades 302 continuously push the rotating rod 205, so that the four pressing frames 201 continuously rotate and vibrate in a small range in the forward and reverse directions.
[0057] As Figures 7 - 10 shown, this example can achieve the effect that the plurality of pressing frames 201 rotate away from the upper side of the round box 101.
[0058] Since the convex seat 104 is welded to the rear side of the round box 101, the lifting frame 105 is vertically slidably connected to the convex seat 104. The lifting frame 105 is driven by the telescopic rod I 110. The lower part of the lifting frame 105 is connected with the motor I 109 by screws. The upper part of the output shaft of the motor I 109 is fixed to the lower side rear part of the ejector rod 301. When the telescopic rod I 110 expands and contracts, it can drive the lifting frame 105 to lift and lower, and then drive the ejector rod 301 and the plurality of pressing frames 201 to lift and lower. When the motor I 109 rotates, it can drive the ejector rod 301 to rotate, and then drive the plurality of pressing frames 201 to rotate around the axis of the motor I 109, so that the plurality of pressing frames 201 can be rotated away from the upper side of the round box 101 when needed.
[0059] Side strips 102 are welded to the left and right ends of the lower side of the round box 101. Convex plates 402 are fixed to the left and right ends of the base 401. The two side strips 102 are respectively horizontally slidably connected to the two convex plates 402. Compression springs are welded to the two ends of the lower side of the round box 101. The outer ends of the two compression springs are respectively welded to the inner sides of the two convex plates 402. A handle 108 is welded to the front side of the round box 101.
[0060] As Figures 11 - 12 shown, this example can achieve the effect of evenly loading the tea leaves into the non-woven fabric according to the density.
[0061] Manually, the handle 108 can be toggled, so that the round box 101 slides on the two convex plates 402 through the two side strips 102 respectively. The two compression springs help the round box 101 to return to the center, and then shake the tea leaves placed inside the non-woven fabric, so that the tea leaves are evenly loaded into the non-woven fabric according to the density. The tea leaves can be compacted by pressing the tea leaves through the four pressing frames 201.
[0062] Both the left and right ends of the base 401 are provided with rails 403. Slide frames 405 are slidably connected to both rails 403. Both slide frames 405 are driven to slide by telescopic rods II 404. On the upper opposite sides of both slide frames 405, straight rods 408 are welded. A V-shaped rod 406 is welded to the straight rod 408 at the left end. A V-shaped rod 406 is hinged to the straight rod 408 at the right end. A stopper 409 is welded to the lower side of the V-shaped rod 406 at the right end. The stopper 409 abuts against the lower side of the straight rod 408. An elastic rod II 407 is welded to the upper side of the V-shaped rod 406 at the right end. The other end of the elastic rod II 407 is welded to the straight rod 408 at the right end. On the front and rear ends of the upper side of the V-shaped rod 406 on the left side, inclined surfaces 410 are provided. On the front and rear ends of the lower side of the V-shaped rod 406 on the right side, inclined surfaces 410 are provided.
[0063] As Figures 11 - 12 shown, this example can achieve the effect of gathering and sealing the upper end of the non-woven fabric.
[0064] When it is necessary to seal the non-woven fabric filled with tea, drive the two slide frames 405 to slide closer to each other on the two rails 403 respectively, so that the two straight rods 408 and the two V-shaped rods 406 approach each other. When the two V-shaped rods 406 come into contact, the two V-shaped rods 406 come into contact through the inclined surfaces 410 thereon. At this time, the V-shaped rod 406 on the right side will rotate upward against the elastic force of the elastic rod II 407 pressing downward, so that the two V-shaped rods 406 continue to approach each other, and then the two V-shaped rods 406 cross each other, and then the upper end of the non-woven fabric is gathered and sealed. After sealing, it can be tied with cotton thread at the sealed part.
Claims
1. A method for processing tea bags, characterized in that, it comprises the following steps: S1: Place the non-woven fabric on the processing device; S2: Press the non-woven fabric into the round box (101) on the processing device to make the non-woven fabric into a cylindrical shape; S3: Form a cross slot at the bottom of the cylindrical non-woven fabric through the cross plate (107) at the bottom of the round box (101); S4: Sprinkle glutinous rice water on the cylindrical non-woven fabric to shape the non-woven fabric; S5: Pour the tea leaves into the cylindrical non-woven fabric and compact the tea leaves; S6: Seal the upper part of the cylindrical non-woven fabric; The processing device includes a round box (101), and a cross plate (107) is arranged on the inner bottom surface of the round box (101); A plurality of grilles (106) are annularly fixed on the inner edge of the round box (101), and a circulating groove (103) is arranged on the upper part of the round box (101); Four pressing frames (201) are arranged above the round box (101), connecting columns (202) are fixed on the upper parts of the four pressing frames (201), the upper parts of the four connecting columns (202) are fixed on the square plate (203), and the four pressing frames (201) are respectively located at the four right angles of the cross plate (107); A convex shaft (204) is fixed on the upper part of the square plate (203), the convex shaft (204) is rotatably connected to the front part of the top rod (301), a rotating rod (205) is fixed on the rear side of the convex shaft (204), elastic rods I (305) are fixed on both sides of the rotating rod (205), the outer ends of the two elastic rods I (305) are fixed on the top rod (301), two limit columns (304) are fixed on the upper side of the top rod (301), and the rotating rod (205) is located between the two limit columns (304); A motor II (303) is fixed on the upper part of the top rod (301), and a plurality of elastic leaves (302) are annularly arranged on the output shaft of the motor II (303), and the plurality of elastic leaves (302) are all located behind the rotating rod (205); A convex seat (104) is fixed on the rear side of the round box (101), a lifting frame (105) is vertically slidably connected to the convex seat (104), the lifting frame (105) is driven by a telescopic rod I (110), and a motor I (109) is fixed on the lower part of the lifting frame (105), and the upper part of the output shaft of the motor I (109) is fixed on the lower rear side of the top rod (301).
2. The method for processing tea bags according to claim 1, characterized in that: After the sealing in S6, use cotton thread to tie the sealing part.
3. The method for processing tea bags according to claim 1, characterized in that: The tea leaves are green tea.
4. The method for processing tea bags according to claim 1, characterized in that: The tea leaves are black tea.
Citation Information
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