A drying and shaping device for the production of peony flower tea and its shaping process

The flower tea drying device secures and rotates flowers to prevent scattering and deformation, enhancing appearance and drying efficiency.

CN116481277BActive Publication Date: 2025-07-15TONGLING FENGDAN PLANTING TECH DEV
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Patent Information

Application Number
CN202310568098.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-19
Publication Date
2025-07-15
Estimated Expiration
2043-05-19

AI Technical Summary

Technical Problem

During the drying process of the existing peony tea drying device, the hot air flow will blow away the peony flowers, causing the collision, extrusion and deformation of adjacent flowers, affecting the aesthetics and quality.

Method used

A drying and shaping process including a fixed drying device, an auxiliary drying device, an auxiliary feeding device and a flower tea impurity recovery device is designed. The peony flowers are fixed and rotated through structures such as semicircular mesh boxes, semi-arc mesh plates, and spike rods. Combined with the frictional force of the friction ring and the rotor, it ensures uniform contact between the hot air flow, and can achieve convenient removal and impurity recovery through the cooperation of the U-shaped counterweight plate and the fork-shaped elastic convex ball plate.

Benefits of technology

It effectively avoids the distraction and deformation of peony flowers, improves aesthetics, and improves drying efficiency and effect, and facilitates removal and impurities treatment.

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Abstract

The present invention discloses a drying and shaping process for the production of peony flower tea, which relates to the technical field of flower tea processing. The present invention includes a device main body, a dryer main body is embedded at the bottom of the device main body, a shaping and drying device is arranged inside the device main body, the shaping and drying device includes a rotating shaft frame, the rotating shaft frame is rotatably installed inside the device main body, the rotating shaft frame is driven by an external motor, a semi-circular shell is rotatably installed on the outer side of the rotating shaft frame through a frame plate, and a semi-circular mesh box is fixed inside the semi-circular shell. Through the setting of the shaping and drying device, the open circular cover shell pushes the telescopic rod to drive the sliding push rod to abut against the semi-circular mesh plate to swing, and the semi-circular mesh plate drives the spiked rod thereon to stab the peony flower, so as to achieve the purpose of assisting in fixing the peony flower, thus avoiding the problem that the hot air flow will blow away the peony flower and the peony flower collides and deforms, and further improving the aesthetics of the peony flower tea.
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Description

Technical Field

[0001] The present invention relates to the technical field of flower tea processing, and specifically relates to a drying and shaping process for the production of peony flower tea. Background Art

[0002] As a tea beverage, peony flower tea has excellent nutritional components and has functions such as promoting blood circulation and dredging collaterals and related health preservation effects. Generally, peony flower tea needs to be processed before it can be soaked and drunk. During the processing of peony flower tea, a drying device is required to shape and dry the peony flowers.

[0003] When the existing peony flower tea is dried, the hot air flow in the drying device will blow the peony flowers away, and the adjacent peony flowers will collide and squeeze each other, resulting in the deformation of the peony flowers, which in turn affects the aesthetics of the peony flower tea, reduces the quality and selling value of the peony flower tea. Therefore, we propose a drying and shaping process for the production of peony flower tea. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a drying and shaping process for the production of peony flower tea, which solves the problem that when the peony flower tea is dried, the hot air flow in the drying device will blow the peony flowers away, and the adjacent peony flower teas will collide and squeeze each other, resulting in the deformation of the peony flower tea, which in turn affects the aesthetics of the peony flower tea, reduces the quality and selling value of the peony flower tea as mentioned in the above background art.

[0005] To achieve the above object, the present invention is realized by the following technical solutions: A drying and shaping device for the production of peony flower tea, including a device main body. A dryer main body is embedded at the bottom of the device main body. A shaping and drying device is arranged inside the device main body. The shaping and drying device includes a rotating shaft frame. The rotating shaft frame is rotatably installed inside the device main body. The rotating shaft frame is driven by an external motor. A semi-circular shell is rotatably installed on the outside of the rotating shaft frame through a frame plate. A semi-circular mesh box is fixed inside the semi-circular shell. Semi-circular mesh plates are hinged on the left and right sides of the top of the semi-circular mesh box. A torsion spring is arranged between the semi-circular mesh plate and the semi-circular mesh box. A positioning rod is arranged on the left side of the top of the semi-circular shell. An open circular cover shell is slidably installed on the outside of the positioning rod of the semi-circular shell. A card slot is arranged on the right side of the semi-circular shell. A push-button buckle is arranged on the right side of the open circular cover shell. Telescopic rods are hinged on the left and right sides of the bottom of the open circular cover shell. One end of the telescopic rod far away from the open circular cover shell is hinged with a sliding push rod. The sliding push rod is slidably installed on the inner wall of the semi-circular shell. The sliding push rod contacts the side of the semi-circular mesh plate away from the semi-circular mesh box. A number of partitions are arranged at intervals on the bottom inner wall of the semi-circular mesh box. A number of spike rods are fixed on the side of the semi-circular mesh plate away from the sliding push rod, and the spike rods are located between adjacent two partitions. The open circular cover shell pushes the telescopic rod to drive the sliding push rod to abut against the semi-circular mesh plate to swing towards the center of the semi-circular mesh box. The semi-circular mesh plate closes the semi-circular mesh box. The semi-circular mesh plate drives the spike rods on it to stab the peony flowers, so as to achieve the purpose of assisting in fixing the peony flowers, thus avoiding the problem that the hot air flow will blow away the peony flowers and the peony flowers collide and deform, and further improving the aesthetics of the peony flower tea.

[0006] Preferably, an auxiliary drying device is arranged on the inner wall of the device main body. The auxiliary drying device includes a friction ring and a runner. There are two friction rings. The two friction rings are respectively fixed on the front and back of the inner wall of the device main body. There are a number of runners, and two runners are in a group. The two runners are respectively fixed on the front and back of the rotating shaft of the semi-circular shell. The outside of the runner contacts the inner wall of the friction ring. An inlet and outlet is opened on the right side of the device main body. A groove is opened on the side of the inner wall of the friction ring close to the inlet and outlet of the device main body. Under the action of the friction force between the runner and the friction ring, the friction ring abuts against the runner to rotate. The runner drives the semi-circular shell to rotate synchronously, so that the semi-circular shell drives the peony flowers to rotate when rotating in the device main body, so that the hot air generated by the dryer main body can fully contact the peony flowers, and further improving the drying efficiency of the peony flowers.

[0007] Preferably, an auxiliary feeding device is provided at the bottom of the semi-circular shell. The auxiliary feeding device includes a U-shaped counterweight plate fixed to the bottom of the semi-circular shell. A heat-conducting arc plate is fixed to the bottom of the U-shaped counterweight plate. The hot air flow generated by the dryer main body will converge towards the peony flowers under the guidance of the heat-conducting arc plate, thereby further improving the drying effect on the peony flowers. At the same time, when the runner rotates to the groove of the friction ring, the runner does not contact the friction ring. Under the action of the gravity of the U-shaped counterweight plate, the U-shaped counterweight plate drives the semi-circular shell to swing back to the right position, facilitating the staff to open the open circular cover shell to take out the peony flowers.

[0008] Preferably, a flower tea impurity recovery device is provided below the semi-circular mesh box. The flower tea impurity recovery device includes a semi-circular arc slideway and a semi-circular slideway. There are four semi-circular arc slideways, which are respectively fixed to the front and back of the opposite sides of the left and right semi-circular mesh plates. There are two semi-circular slideways, which are respectively fixed to the front and back of the semi-circular mesh box. A U-shaped plate is slidably installed inside the semi-circular slideway. A counterweight block is fixed to the bottom of the U-shaped plate. A collection box is fixed to the bottom inner wall of the U-shaped plate. Fork-shaped elastic convex ball plates are fixed to both the left and right sides of the collection box. The end of the fork-shaped elastic convex ball plate away from the collection box contacts the outer wall of the semi-circular mesh box. A number of convex balls are fixed to the fork teeth of the fork-shaped elastic convex ball plate. Convex columns are fixed to the opposite sides of the front and back semi-circular slideways. The convex columns of the semi-circular slideway contact the convex balls on the front and back of the fork teeth of the fork-shaped elastic convex ball plate. The convex blocks of the semi-circular slideway drive the convex ball blocks of the fork-shaped elastic convex ball plate to strike the semi-circular mesh box by pushing the convex ball blocks of the fork-shaped elastic convex ball plate. The semi-circular mesh box vibrates and shakes out the impurities in the peony flowers. The fallen impurities will fall into the collection box for collection. At the same time, the vibration of the semi-circular mesh box can avoid the problem that the peony flowers will adhere to the inner wall of the semi-circular mesh box during drying.

[0009] A shaping process for a drying and shaping device for peony flower tea production includes the following steps

[0010] S1. Place the peony flowers between the partitions of the semi-circular mesh box through the inlet and outlet of the device main body.

[0011] S2. Press down the open circular cover shell so that the push-button buckle of the open circular cover shell is engaged with the card slot of the semi-circular shell.

[0012] S3. The open circular cover shell pushes the sliding push rod through the telescopic rod to abut against the semi-circular mesh plate and swing towards the center of the semi-circular mesh box, and the semi-circular mesh plate closes the semi-circular mesh box.

[0013] S4. The spike rod of the semi-circular mesh plate contacts the peony flowers and assists in fixing the peony flowers.

[0014] S5. Close the inlet and outlet of the device main body, start the dryer main body, and drive the rotating shaft frame to rotate through an external motor to perform the shaping and drying operation on the peonies.

[0015] The present invention provides a drying and shaping process for the production of peony tea. It has the following beneficial effects:

[0016] (1). Through the setting of the shaping and drying device in the present invention, the open round cover shell pushes the telescopic rod to drive the sliding push rod to contact and swing the semi-circular net plate. The semi-circular net plate drives the spiked rod on it to stab the peonies, thereby achieving the purpose of assisting in fixing the peonies, avoiding the problem that the hot air flow will blow away the peonies and the peonies will collide and deform, and further improving the aesthetics of the peony tea.

[0017] (2). Through the setting of the auxiliary drying device in the present invention, under the frictional force of the rotating wheel and the friction ring, the friction ring contacts and rotates the rotating wheel, and the rotating wheel drives the semi-circular shell to rotate synchronously. Thus, when the semi-circular shell drives the peonies to rotate in the device main body, the peonies will also rotate on their own, enabling the hot air generated by the dryer main body to fully contact the peonies, and further improving the drying efficiency of the peonies.

[0018] (3). Through the setting of the auxiliary feeding device in the present invention, the hot air flow generated by the dryer main body will converge towards the peonies under the diversion of the heat-conducting arc plate, further improving the drying effect on the peonies; at the same time, when the rotating wheel rotates to the groove of the friction ring, the rotating wheel does not contact the friction ring, and under the gravity of the U-shaped counterweight plate, the U-shaped counterweight plate drives the semi-circular shell to swing back to the correct position, facilitating the staff to open the open round cover shell to take out the peonies.

[0019] (4). Through the setting of the tea impurity recovery device in the present invention, the convex block of the semi-circular slideway drives the convex ball block of the fork-shaped elastic convex ball plate to knock on the semi-circular net box through the convex ball block of the fork-shaped elastic convex ball plate. The semi-circular net box vibrates and shakes out the impurities in the peonies, and the fallen impurities will fall into the collection box for collection. At the same time, the vibration of the semi-circular net box can avoid the problem that the peonies will adhere to the inner wall of the semi-circular net box during drying. Description of the Drawings

[0020] Figure 1 It is a schematic diagram of the whole of the present invention;

[0021] Figure 2 It is a partial cross-sectional schematic diagram of the whole of the present invention;

[0022] Figure 3 It is a partial cross-sectional schematic diagram of the shaping and drying device of the present invention;

[0023] Figure 4 It is a schematic diagram of the auxiliary drying device of the present invention;

[0024] Figure 5 Schematic diagram of the auxiliary feeding device of the present invention;

[0025] Figure 6 Partial sectional schematic diagram of the flower tea impurity recovery device of the present invention.

[0026] In the figure: 1. Device main body; 2. Dryer main body; 3. Shaping and drying device; 31. Rotating shaft frame; 32. Semi-circular shell; 33. Open circular cover shell; 34. Semi-circular mesh box; 35. Arc-shaped mesh plate; 36. Telescopic rod; 37. Sliding push rod; 4. Auxiliary drying device; 41. Friction ring; 42. Runner; 5. Flower tea impurity recovery device; 51. Semi-circular arc slideway; 52. Semi-circular slideway; 53. U-shaped plate; 54. Collection box; 55. Counterweight; 56. Fork-shaped elastic convex ball plate; 6. Auxiliary feeding device; 61. U-shaped counterweight plate; 62. Heat-conducting arc plate. Embodiment

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Example

[0028] Please refer to Figure 1-6, the present invention provides a technical solution: a drying and shaping device for the production of peony flower tea, including a device main body 1. A dryer main body 2 is embedded at the bottom of the device main body 1. A shaping and drying device 3 is arranged inside the device main body 1. The shaping and drying device 3 includes a rotating shaft frame 31. The rotating shaft frame 31 is rotatably installed inside the device main body 1 and is driven by an external motor. A semi-circular shell 32 is rotatably installed on the outside of the rotating shaft frame 31 through a shelf plate. A semi-circular mesh box 34 is fixed inside the semi-circular shell 32. Semi-circular mesh plates 35 are hinged to the left and right sides of the top of the semi-circular mesh box 34 respectively. A torsion spring is arranged between the semi-circular mesh plate 35 and the semi-circular mesh box 34. A positioning rod is arranged on the left side of the top of the semi-circular shell 32. An open circular cover shell 33 is slidably installed on the outside of the positioning rod of the semi-circular shell 32. A clamping groove is arranged on the right side of the semi-circular shell 32. A push-button buckle is arranged on the right side of the open circular cover shell 33. Telescopic rods 36 are hinged to the left and right sides of the bottom of the open circular cover shell 33 respectively. One end of the telescopic rod 36 away from the open circular cover shell 33 is hinged to a sliding push rod 37. The sliding push rod 37 is slidably installed on the inner wall of the semi-circular shell 32. The sliding push rod 37 contacts the side of the semi-circular mesh plate 35 away from the semi-circular mesh box 34. A plurality of partitions are arranged at intervals on the bottom inner wall of the semi-circular mesh box 34. A plurality of spike rods are fixed on the side of the semi-circular mesh plate 35 away from the sliding push rod 37, and the spike rods are located between adjacent partitions. The open circular cover shell 33 pushes the telescopic rod 36 to drive the sliding push rod 37 to abut against the semi-circular mesh plate 35 and swing towards the center of the semi-circular mesh box 34. The semi-circular mesh plate 35 closes the semi-circular mesh box 34. The semi-circular mesh plate 35 drives the spike rods thereon to stab the peony flowers, so as to achieve the purpose of assisting in fixing the peony flowers, thus avoiding the problem that the hot air flow will blow away the peony flowers and the peony flowers collide and deform, and further improving the beauty of the peony flower tea.

[0029] An auxiliary drying device 4 is arranged on the inner wall of the device main body 1. The auxiliary drying device 4 includes a friction ring 41 and a runner 42. There are two friction rings 41, and the two friction rings 41 are respectively fixed on the front and back of the inner wall of the device main body 1. There are a plurality of runners 42, and two runners 42 are a group. The two runners 42 are respectively fixed on the front and back of the rotating shaft of the semi-circular shell 32. The outside of the runner 42 contacts the inner wall of the friction ring 41. An inlet and outlet is opened on the right side of the device main body 1. A groove is opened on the inner wall of the friction ring 41 near the inlet and outlet of the device main body 1. Under the friction force between the runner 42 and the friction ring 41, the friction ring 41 abuts against the runner 42 and rotates. The runner 42 drives the semi-circular shell 32 to rotate synchronously, so that the semi-circular shell 32 drives the peony flowers to rotate self while rotating in the device main body 1, so that the hot air generated by the dryer main body 2 can fully contact the peony flowers, and further improves the drying efficiency of the peony flowers.

[0030] An auxiliary feeding and taking device 6 is provided at the bottom of the semicircular shell 32, and the auxiliary feeding and taking device 6 includes a U-shaped counterweight plate 61, which is fixed to the bottom of the semicircular shell 32, and a heat-conducting arc plate 62 is fixed to the bottom of the U-shaped counterweight plate 61. The hot air flow generated by the dryer body 2 will converge toward the peony flower under the guidance of the heat-conducting arc plate 62, thereby further improving the effect of drying the peony flower; at the same time, the rotating wheel 42 rotates to the groove of the friction ring 41, and the rotating wheel 42 does not contact the friction ring 41. Under the gravity of the U-shaped counterweight plate 61, the U-shaped counterweight plate 61 drives the semicircular shell 32 to swing back to the center, thereby facilitating the staff to open the open circular cover shell 33 to open and take out the peony flower.

[0031] A scented tea impurity recovery device 5 is provided below the semicircular net box 34. The scented tea impurity recovery device 5 includes a semi-arc slide 51 and a semi-circular slide 52. There are four semi-arc slides 51, which are respectively fixed on the front and back sides of the semi-arc net plates 35 on the left and right sides. There are two semi-circular slides 52, which are respectively fixed on the front and back sides of the semi-circular net box 34. A U-shaped plate 53 is slidably installed inside the semi-circular slide 52, a counterweight block 55 is fixed at the bottom of the U-shaped plate 53, a collecting box 54 is fixed at the bottom of the inner wall of the U-shaped plate 53, and a fork-shaped elastic convex ball plate 56 is fixed on the left and right sides of the collecting box 54. The fork-shaped elastic convex ball plate 56 is away from the collecting box 5 One end of 4 contacts the outer wall of the semicircular net box 34, a plurality of convex balls are fixed on the fork teeth of the fork-shaped elastic convex ball plate 56, and convex columns are fixed on the opposite sides of the front and back semicircular slideways 52. The convex columns of the semicircular slideway 52 contact the convex balls on the front and back sides of the fork teeth of the fork-shaped elastic convex ball plate 56. The convex blocks of the semicircular slideway 52 drive the convex blocks of the fork-shaped elastic convex ball plate 56 to knock the semicircular net box 34 by pushing the convex ball blocks of the fork-shaped elastic convex ball plate 56. The semicircular net box 34 vibrates and shakes out impurities in the peony flowers. The impurities that fall out will fall into the collection box 54 for collection. At the same time, the vibration of the semicircular net box 34 can avoid the problem that the peony flowers will adhere to the inner wall of the semicircular net box 34 when drying. Example

[0032] A shaping process of a drying and shaping device for producing peony tea, comprising the following steps

[0033] S1, placing the peony flowers between the partitions of the semicircular net box 34 through the inlet and outlet of the device body 1;

[0034] S2, press the open circular cover shell 33 downward, so that the press-type buckle of the open circular cover shell 33 is engaged with the slot of the semicircular shell 32;

[0035] S3, the open circular cover shell 33 pushes the sliding rod 37 through the telescopic rod 36 to contact the semi-arc mesh plate 35 and swing toward the center of the semi-circular mesh box 34, and the semi-arc mesh plate 35 closes the semi-circular mesh box 34;

[0036] S4. The spike rods of the semi-circular net plate 35 come into contact with the peonies and assist in fixing the peonies.

[0037] S5. Close the inlet and outlet of the device main body 1, start the dryer main body 2, and drive the rotating shaft frame 31 to rotate through an external motor, then the peonies can be subjected to shaping and drying operations.

[0038] During use, place the peonies between the partitions of the semi-circular net box 34 through the inlet and outlet of the device main body 1, press down the open round cover shell 33, so that the press-fastening buckle of the open round cover shell 33 is engaged with the card slot of the semi-circular shell 32. At the same time, when the open round cover shell 33 moves downward, it will push the telescopic rod 36 to drive the sliding push rod 37 to move towards the semi-circular net box 34. The sliding push rod 37 touches the semi-circular net plate 35 and swings towards the center of the semi-circular net box 34. The semi-circular net plate 35 closes the semi-circular net box 34. At the same time, the semi-circular net plate 35 drives the spike rods on it to stab the peonies, so as to achieve the purpose of assisting in fixing the peonies, thus avoiding the problem that the hot air flow will blow the peonies away and the peonies collide and deform, and further improving the aesthetics of the peony tea. Close the inlet and outlet of the device main body 1, start the dryer main body 2, and drive the rotating shaft frame 31 to rotate through an external motor. The rotating shaft frame 31 drives the semi-circular shell 32 to rotate, then the peonies can be subjected to shaping and drying operations.

[0039] When the rotating shaft frame 31 drives the semi-circular shell 32 to rotate, the runner 42 rotates synchronously. Under the frictional force between the runner 42 and the friction ring 41, the friction ring 41 touches the runner 42 and rotates. The runner 42 drives the semi-circular shell 32 to rotate synchronously, so that the semi-circular shell 32 drives the peonies to rotate self when the device main body 1 rotates, so that the hot air generated by the dryer main body 2 can fully contact the peonies, and further improving the drying efficiency of the peonies.

[0040] At the same time, during the drying process of the peonies, when the semi-circular shell 32 drives the heat conduction arc plate 62 to rotate to the upper position, the hot air flow generated by the dryer main body 2 will converge towards the peonies under the diversion of the heat conduction arc plate 62, thus further improving the drying effect on the peonies. After the peonies are dried, open the inlet and outlet of the device main body 1, rotate the semi-circular shell 32 to the position of the inlet and outlet of the device main body 1. At the same time, the runner 42 rotates to the groove of the friction ring 41, and the runner 42 does not contact the friction ring 41. Under the gravity of the U-shaped counterweight plate 61, the U-shaped counterweight plate 61 drives the semi-circular shell 32 to swing back to the correct position, thus facilitating the staff to open the open round cover shell 33 to take out the peonies.

[0041] During the drying process of peonies, when the semi-circular net plate 35 closes the semi-circular net box 34, the semi-circular slideway 51 and the semi-circular slideway 52 will form an annular slideway. When the semi-circular shell 32 drives the semi-circular net box 34 and the semi-circular net plate 35 to rotate, under the gravity of the counterweight 55, the U-shaped plate 53 always maintains a downward state. At the same time, the U-shaped plate 53 will slide inside the annular slideway formed by the semi-circular slideway 51 and the semi-circular slideway 52. The convex block of the semi-circular slideway 52 will push the convex ball block of the fork-shaped elastic convex ball plate 56 to drive the fork-shaped elastic convex ball plate 56 to move away from the semi-circular net box 34. When the convex block of the semi-circular slideway 52 does not push the convex ball block of the fork-shaped elastic convex ball plate 56, under the action of the self-elastic force of the fork-shaped elastic convex ball plate 56, the fork-shaped elastic convex ball plate 56 drives the convex ball thereon to strike the semi-circular net box 34. The semi-circular net box 34 vibrates and shakes out the impurities in the peonies. The fallen impurities will fall into the collection box 54 for collection. At the same time, the vibration of the semi-circular net box 34 can avoid the problem that the peonies will adhere to the inner wall of the semi-circular net box 34 during drying.

[0042] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A drying and shaping device for the production of peony flower tea, comprising a device main body (1), characterized in that: The bottom of the device main body (1) is embedded with a dryer main body (2). A shaping and drying device (3) is arranged inside the device main body (1). The shaping and drying device (3) includes a rotating shaft frame (31). The rotating shaft frame (31) is rotatably installed inside the device main body (1). The rotating shaft frame (31) is driven by an external motor. A semi-circular shell (32) is rotatably installed on the outside of the rotating shaft frame (31) through a frame plate. A semi-circular mesh box (34) is fixed inside the semi-circular shell (32). Semi-circular mesh plates (35) are hinged on the left and right sides of the top of the semi-circular mesh box (34). A torsion spring is arranged between the semi-circular mesh plate (35) and the semi-circular mesh box (34). A positioning rod is arranged on the left side of the top of the semi-circular shell (32). An open circular cover shell (33) is slidably installed on the outside of the positioning rod of the semi-circular shell (32). Expansion rods (36) are hinged on the left and right sides of the bottom of the open circular cover shell (33). The end of the expansion rod (36) away from the open circular cover shell (33) is hinged with a sliding push rod (37). The sliding push rod (37) is slidably installed on the inner wall of the semi-circular shell (32). A plurality of partition plates are arranged at intervals on the bottom inner wall of the semi-circular mesh box (34). A plurality of spike rods are fixed on the side of the semi-circular mesh plate (35) away from the sliding push rod (37), and the spike rods are located between adjacent two partition plates.

2. The drying and shaping device for the production of peony flower tea according to claim 1, wherein: A clamping groove is arranged on the right side of the semi-circular shell (32). A push-button buckle is arranged on the right side of the open circular cover shell (33). The sliding push rod (37) contacts the side of the semi-circular mesh plate (35) away from the semi-circular mesh box (34).

3. A drying and shaping device for the production of peony flower tea according to claim 1, characterized in that: An auxiliary drying device (4) is arranged on the inner wall of the device main body (1). The auxiliary drying device (4) includes a friction ring (41) and a runner (42). There are two friction rings (41). The two friction rings (41) are respectively fixed on the front and back of the inner wall of the device main body (1). There are a plurality of runners (42). And two runners (42) are in a group. The two runners (42) are respectively fixed on the front and back of the rotating shaft of the semi-circular shell (32). The outside of the runner (42) contacts the inner wall of the friction ring (41).

4. A drying and shaping device for the production of peony flower tea according to claim 3, characterized in that: A feeding and discharging port is arranged on the right side of the device main body (1). A groove is arranged on the inner wall of the friction ring (41) close to the feeding and discharging port of the device main body (1).

5. A drying and shaping device for the production of peony flower tea according to claim 3, characterized in that: An auxiliary feeding and discharging device (6) is arranged at the bottom of the semi-circular shell (32). The auxiliary feeding and discharging device (6) includes a U-shaped counterweight plate (61). The U-shaped counterweight plate (61) is fixed at the bottom of the semi-circular shell (32). A heat-conducting arc plate (62) is fixed at the bottom of the U-shaped counterweight plate (61).

6. The drying and shaping device for the production of peony flower tea according to claim 1, characterized in that: A flower tea impurity recovery device (5) is provided below the semi-circular mesh box (34). The flower tea impurity recovery device (5) includes a semi-circular slideway (51) and a semi-circular chute (52). There are four semi-circular slideways (51), and the four semi-circular slideways (51) are respectively fixed on the front and back of the opposite sides of the left and right semi-circular mesh plates (35). There are two semi-circular chutes (52), and the two semi-circular chutes (52) are respectively fixed on the front and back of the semi-circular mesh box (34). A U-shaped plate (53) is slidably installed inside the semi-circular chute (52). A counterweight block (55) is fixed to the bottom of the U-shaped plate (53). A collection box (54) is fixed to the bottom of the inner wall of the U-shaped plate (53). Fork-shaped elastic convex ball plates (56) are fixed to both the left and right sides of the collection box (54). One end of the fork-shaped elastic convex ball plate (56) away from the collection box (54) contacts the outer wall of the semi-circular mesh box (34).

7. A drying and shaping device for the production of peony flower tea according to claim 6, characterized in that: A number of convex balls are fixed to the fork teeth of the fork-shaped elastic convex ball plate (56). Convex columns are fixed to the opposite sides of the front and back semi-circular chutes (52). The convex columns of the semi-circular chute (52) contact the convex balls on the front and back of the fork teeth of the fork-shaped elastic convex ball plate (56).

8. The shaping process of a drying and shaping device for the production of peony flower tea according to any one of claims 1-7, characterized in that: Including the following steps S1. Place the peonies between the partitions of the semi-circular mesh box (34) through the inlet and outlet of the device main body (1). S2. Press down the open circular cover shell (33) so that the push-button buckle of the open circular cover shell (33) is engaged with the card slot of the semi-circular shell (32). S3. The open circular cover shell (33) pushes the sliding push rod (37) through the telescopic rod (36) to contact the semi-circular mesh plate (35) and swing it towards the center of the semi-circular mesh box (34), and the semi-circular mesh plate (35) closes the semi-circular mesh box (34). S4. The spike rod of the semi-circular mesh plate (35) contacts the peonies and assists in fixing the peonies. S5. Close the inlet and outlet of the device main body (1), start the dryer main body (2), and drive the rotary shaft frame (31) to rotate through an external motor to perform the shaping and drying operation on the peonies.

Citation Information

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