A self-made bag sealing device for camellia production and processing
By developing a self-made sealing device for the production and processing of Camellia chrysantha, and by using sealing heating components, vibration auxiliary components, and sealing detection components, the problem of the sealing device being unable to adapt to the volume of Camellia chrysantha was solved. This enabled the protection of Camellia chrysantha and automatic detection of sealing quality, thereby improving sealing efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUIZHOU ACAD OF FORESTRY SCI
- Filing Date
- 2026-01-14
- Publication Date
- 2026-04-14
AI Technical Summary
Existing sealing devices cannot adapt to changes in the volume of camellia flowers, which can easily damage the flowers and cannot effectively detect the sealing quality, thus affecting the consistency of product quality.
A self-made golden camellia production and processing bag sealing device was designed, which includes a bag sealing heating element, a vibration auxiliary element, a pressure protection element, and a sealing detection element. By adjusting the sealing area, preventing damage to the camellia flowers, and automatically detecting the sealing quality, the bag sealing protection can be adapted to the volume of the camellia flowers.
The structural adaptability of the sealing device has been improved, the rate of tea flower movement and breakage has been reduced, the consistency of sealing quality has been ensured, the efficiency of quality inspection has been improved, and the tedious work of manual quality inspection has been reduced.
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Figure CN121516362B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sealing equipment technology, and in particular to a sealing device for the production and processing of homemade golden camellia. Background Technology
[0002] In the actual production and processing of Camellia chrysantha, a sealing machine is needed to pour the camellia flowers into the camellia flower bags and seal them. To reduce the movement of the camellia flowers inside the bags during transportation and other processes, and to ensure the packaging bags better contain the flowers and reduce the amount of debris, a "tofu block" packaging method is usually adopted. This means maximizing the sealing area so that the volume of the camellia flower bag matches the volume of the camellia flowers. Currently, changing the sealing area of the sealing device usually requires changing the heating plate, which is not very versatile. When adding the camellia flowers, due to their looseness, the volume of the same weight of camellia flowers is not the same. Traditional fixed heating plates are prone to directly clamping and damaging the camellia flowers when holding the bag opening because of their high looseness, resulting in losses. It is not convenient to adapt to the volume of the camellia flowers for sealing protection, nor is it convenient to automatically detect the sealing quality. It is not convenient to promptly indicate when the bag opening fails to fold or when camellia flowers adhere to the bag opening due to static electricity or other factors, affecting the consistency of product quality. Summary of the Invention
[0003] This disclosure relates to a self-made sealing device for the production and processing of Camellia chrysantha, which solves the problems of current sealing devices being inconvenient for adaptive sealing and protection of camellia flower volume, and also inconvenient for automatic detection of sealing quality.
[0004] In a first aspect, this disclosure provides a sealing device for the production and processing of homemade golden camellia, specifically including sealing heating elements, wherein two sealing heating elements are provided, and the two sealing heating elements have the same structure; the two sealing heating elements are respectively used to be installed on a sealing machine; a sealing conveyor is installed on the sealing heating element; the sealing conveyor is used to increase the sealing area; a vibration auxiliary element is installed at the bottom of the sealing heating element; the vibration auxiliary element is used to vibrate and level the camellia flowers; an anti-pressure protection element is installed on the sealing heating element; the anti-pressure protection element is used to prevent the camellia flowers from being squeezed and damaged; a sealing detection element is installed on the sealing heating element; the sealing detection element is used to prevent the camellia flowers from obstructing the seal; the sealing heating element includes: a sealing mounting shell and a baffle, the baffle is fixedly installed at the bottom of the sealing mounting shell; the sealing mounting shell has two insertion holes; and an iron metal plate is provided on the rear side of the sealing mounting shell.
[0005] In at least some embodiments, the bag-sealing heating element further includes: a tension spring shaft, a frame plate, and an electromagnet. A tension spring shaft is inserted into two holes on the bag-sealing mounting shell. Tension springs are respectively sleeved on the two tension spring shafts, and the tension springs on the two tension spring shafts are respectively fixedly connected between the tension spring shaft and the bag-sealing mounting shell. A frame plate is fixedly mounted on the two tension spring shafts by bolts. The frame plate has two through holes. An electromagnet is fixedly embedded in the frame plate. The electromagnet is used to magnetically attract the iron metal plate on the rear side of the bag-sealing mounting shell.
[0006] In at least some embodiments, the bag-sealing heating element further includes: a buzzer and an electric heating plate; the buzzer is fixedly installed on the bag-sealing mounting shell; the electric heating plate is fixedly installed inside the bag-sealing mounting shell; the electric heating plate has an arc-shaped structure; and the buzzer is used to prompt sorting.
[0007] In at least some embodiments, the bag-sealing conveyor includes: a bag-sealing motor and a bag-sealing roller; the bag-sealing motor is fixedly mounted on the bag-sealing mounting shell, and the output shaft of the bag-sealing motor passes through the bag-sealing mounting shell; the bag-sealing roller is fixedly mounted on the output shaft of the bag-sealing motor, and the bag-sealing roller is rotatably sleeved on the bag-sealing mounting shell; the outer side of the electric heating plate is attached to the inner side of the bag-sealing roller.
[0008] In at least some embodiments, the vibration auxiliary component includes: a vibration mounting plate, a bottom support plate, and a vibration motor. The vibration mounting plate is rotatably mounted on the bottom of the sealing bag mounting shell, and the bottom support plate is fixedly mounted on the bottom of the vibration mounting plate. The bottom support plate is used to fit the camellia bag. The vibration motor is mounted on the bottom of the vibration mounting plate via a bracket, and the vibration motor is used to vibrate the camellia.
[0009] In at least some embodiments, the pressure-resistant protective component includes: a protective upper flap and a rubber anti-slip strip, wherein the protective upper flap is rotatably mounted on the bottom of the sealing bag mounting shell; the baffle is used to block and limit the movement of the protective upper flap; the rubber anti-slip strip is fixedly mounted on the end of the protective upper flap; the rubber anti-slip strip is located below the sealing bag mounting shell; the rubber anti-slip strip is used to be rubbed by the camellia bag; and the vibration mounting plate passes through the protective upper flap.
[0010] In at least some embodiments, the anti-pressure protective component further includes: an anti-pressure spring and a fixing patch, wherein the anti-pressure spring is fixedly installed on the protective upper flap; the anti-pressure spring is an elastic structure; the bottom of the sealing bag mounting shell is fixedly installed with a fixing patch; a gap is provided between the end of the anti-pressure spring and the fixing patch; and the anti-pressure spring, the fixing patch, and the electromagnet are connected in series with a power supply.
[0011] In at least some embodiments, the sealing detection component includes: a stop post and a collapse spring, wherein the stop post is fixedly mounted on the sealing bag mounting shell; the collapse spring is fixedly mounted on the stop post and is located inside the sealing bag mounting shell.
[0012] In at least some embodiments, the sealing detection component further includes a switch post, which is slidably inserted into the sealing bag mounting shell, and the tail of the switch post is connected to the end of the collapsible spring; the switch post is used for retraction.
[0013] In at least some embodiments, the sealing detection component further includes: a detection switch, wherein the detection switch is fixedly installed on the switch post and is located inside the frame plate; the detection switch is electrically connected to a buzzer.
[0014] This invention provides a sealing bag device for the production and processing of homemade golden camellia, which has the following beneficial effects:
[0015] In this invention, the use of a sealing heating element in conjunction with a sealing conveyor can help increase the sealing area and improve structural adaptability. At the same time, it can ensure that the tea flower bag is conveyed and the sealing position is adjusted while heating and sealing, without the need to replace the heating plate, reducing the fragmentation caused by the movement of tea flowers. In addition, the use of a vibration auxiliary element can assist in the sealing of tea flower bags by vibration, reducing the looseness of tea flowers, promoting the aggregation of tea flowers, and promoting the flatness of tea flowers inside the tea flower bag.
[0016] In addition, the use of pressure-resistant protective components in conjunction with a sliding sealing bag mounting shell can effectively prevent the breakage rate from increasing due to inconsistent looseness of the tea flowers after filling. Traditional fixed heating plates can easily crush tea flowers when they are large. This structure can automatically control the sealing process to prevent the sealing length from being too long and can automatically control the tea flower bags to detach.
[0017] Furthermore, the sealing detection device can automatically trigger an alarm when the pressure protection device prematurely shortens the sealing length. It can also automatically detect unexpected increases in sealing thickness caused by wrinkles or static electricity at the bag opening, leading to the direct sealing of camellia petals. The detection is accurate and efficient, without affecting normal sealing operations. It prompts staff to inspect and sort the bags for further quality control, ensuring consistent quality of the finished products. This eliminates the need for tedious manual inspection of each item, directly providing alerts and improving quality control efficiency. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0020] In the attached diagram:
[0021] Figure 1 This invention provides a schematic diagram of the overall structure of a sealing device for the production and processing of homemade golden camellia.
[0022] Figure 2 This invention provides a schematic diagram of the bottom structure of a sealing device for the production and processing of homemade golden camellia.
[0023] Figure 3 A schematic diagram of the installation position of the vibration mounting plate of this application is shown;
[0024] Figure 4 A schematic diagram of the overall structure of the bag-sealing heating element of this application is shown;
[0025] Figure 5 This application shows Figure 3 Enlarged view of the structure of region A in the middle;
[0026] Figure 6 This application shows Figure 3 Enlarged view of the structure of region B in the middle;
[0027] Figure 7 A schematic diagram of the overall structure of the bag sealing conveyor of this application is shown;
[0028] Figure 8 A schematic diagram of the overall structure of the vibration aid component of this application is shown;
[0029] Figure 9 A schematic diagram of the overall structure of the pressure-resistant protective component of this application is shown;
[0030] Figure 10 A cross-sectional view of the sealing detection component structure of this application is shown.
[0031] List of reference numerals
[0032] 1. Bag sealing heating element; 101. Bag sealing mounting shell; 1011. Baffle; 102. Tension spring shaft; 103. Frame plate; 1031. Electromagnet; 104. Buzzer; 105. Electric heating plate; 2. Bag sealing conveyor; 201. Bag sealing motor; 202. Bag sealing roller; 3. Vibration auxiliary element; 301. Vibration mounting plate; 3011. Bottom support plate; 302. Vibration motor; 4. Anti-pressure protection element; 401. Protective top flap; 4011. Rubber anti-slip strip; 402. Anti-pressure spring; 403. Fixing patch; 5. Sealing detection element; 501. Stop post; 5011. Collapse spring; 502. Switch post; 503. Detection switch. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the described embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] Example 1: Please refer to Figures 1 to 10 :
[0035] This invention proposes a sealing bag device for the production and processing of homemade golden camellia, including a sealing heating element 1. Two sealing heating elements 1 are provided, and the two sealing heating elements 1 have identical structures. The two sealing heating elements 1 are respectively installed on a sealing machine. A sealing conveyor 2 is installed on the sealing heating element 1 to increase the sealing area. A vibration auxiliary element 3 is installed at the bottom of the sealing heating element 1 to vibrate and level the camellia flowers. An anti-pressure protection element 4 is installed on the sealing heating element 1 to prevent squeezing damage to the camellia flowers. A sealing detection element 5 is installed on the sealing heating element 1 to prevent the camellia flowers from obstructing the seal. The sealing heating element 1 includes a sealing mounting shell 101 and a baffle 1011. The baffle 1011 is fixedly installed at the bottom of the sealing mounting shell 101. The sealing mounting shell 101 has two insertion holes. An iron metal plate is provided on the rear side of the sealing mounting shell 101.
[0036] In this embodiment, the bag-sealing heating element 1 further includes: a tension spring shaft 102, a frame plate 103, and an electromagnet 1031. A tension spring shaft 102 is inserted into two holes on the bag-sealing mounting shell 101. Tension springs are sleeved on the two tension spring shafts 102, and the tension springs on the two tension spring shafts 102 are fixedly connected between the tension spring shaft 102 and the bag-sealing mounting shell 101. A frame plate 103 is fixedly mounted on the two tension spring shafts 102 by bolts. The frame plate 103 has two through holes. An electromagnet 1031 is fixedly embedded in the frame plate 103. The electromagnet 1031 is used to magnetically attract the iron metal plate on the rear side of the bag-sealing mounting shell 101. The bag-sealing heating element 1 also includes: a buzzer 104 and an electric heating plate 105. A buzzer 104 is fixedly installed on the bag sealing housing 101; an electric heating plate 105 is fixedly installed inside the bag sealing housing 101; the electric heating plate 105 has an arc-shaped structure; the buzzer 104 is used to prompt sorting; the bag sealing conveyor 2 includes: a bag sealing motor 201 and a bag sealing roller 202, the bag sealing motor 201 is fixedly installed on the bag sealing housing 101, and the output shaft of the bag sealing motor 201 passes through the bag sealing housing 101; the bag sealing roller 202 is fixedly installed on the output shaft of the bag sealing motor 201, and the bag sealing roller 202 is rotatably sleeved on the bag sealing housing 101; the outer side of the electric heating plate 105 is attached to the inner side of the bag sealing roller 202; the vibration auxiliary component 3 includes: a vibration mounting plate 301, a bottom support plate 3011, and a vibration motor 302. A vibrating mounting plate 301 is rotatably mounted on the bottom of the sealing bag mounting shell 101, and a bottom-supporting auxiliary plate 3011 is fixedly mounted on the bottom of the vibrating mounting plate 301. The bottom-supporting auxiliary plate 3011 is used to fit the camellia bag. A vibrating motor 302 is mounted on the bottom of the vibrating mounting plate 301 via a bracket, and the vibrating motor 302 is used to vibrate the camellia. The sealing heating element 1, in conjunction with the sealing conveyor 2, can help increase the sealing area, effectively improving structural adaptability. At the same time, it can ensure that the heating and sealing are carried out simultaneously, and the sealing position of the camellia bag can be adjusted without replacing the heating plate. It can also adjust the sealing area according to the amount of camellia, that is, the time for the bag-sealing machine's pushing mechanism to advance and clamp the bag opening, reducing the fragments caused by the movement of the camellia. The vibration auxiliary component 3 can assist in the sealing of the tea flower bags, reducing the looseness of the tea flowers and promoting their aggregation. At the same time, it can also promote the flatness of the tea flowers inside the bag, making it easier to seal more accurately later. It also reduces the breakage rate of the tea flowers with rough tips when squeezed and sealed. The structure is simple. After the tea flower bag is filled with tea flowers and falls onto the platform of the sealing machine, the vibration motor 302 vibrates in real time. The bottom auxiliary plate 3011 can be attached to the tea flower bag to transmit vibration. At this time, the bag opening is located between the two sealing rollers 202. The electric heating plate 105 can heat the sealing rollers 202 in real time. The sealing motor 201 drives the sealing rollers 202 to rotate. During the process, the rotation of the sealing rollers 202 does not affect the heating and sealing of the bag opening by the electric heating plate 105.
[0037] In this embodiment, the anti-pressure protection component 4 includes: a protective upper flap 401 and a rubber anti-slip strip 4011. The protective upper flap 401 is rotatably mounted on the bottom of the sealing bag mounting shell 101; a baffle 1011 is used to block and limit the protective upper flap 401; the rubber anti-slip strip 4011 is fixedly mounted on the end of the protective upper flap 401; the rubber anti-slip strip 4011 is located below the sealing bag mounting shell 101; the rubber anti-slip strip 4011 is used to be rubbed by the camellia bag; a vibration mounting plate 301 passes through the protective upper flap 401; the anti-pressure protection component 4 also includes: The pressure-resistant spring clip 402 and the fixing patch 403 are used. The pressure-resistant spring clip 402 is fixedly installed on the protective upper flap 401. The pressure-resistant spring clip 402 is an elastic structure. The fixing patch 403 is fixedly installed at the bottom of the sealing bag mounting shell 101. There is a gap between the end of the pressure-resistant spring clip 402 and the fixing patch 403. The pressure-resistant spring clip 402, the fixing patch 403 and the electromagnet 1031 are connected in series with a power supply. The pressure-resistant protective component 4, together with the sliding sealing bag mounting shell 101, can effectively prevent the body from being damaged due to the inconsistent looseness of the camellia after filling. Inconsistent volume can easily increase breakage rates because packaging is usually based on weight. However, the volume of tea flowers of the same weight is greatly affected by factors such as the curling during roasting. When sealing the tea flowers in "tofu block" packaging, effectively wrapping the tea flowers in the bag can reduce the risk of breakage during subsequent transportation due to the tea flowers being too loose. Traditional methods of using fixed heating plates to hold and heat the tea flowers can easily cause them to be crushed when they are large. This structure can automatically control the sealing process to prevent the sealing length from being too long and can automatically control the tea flower bag to detach. The structure is simpler and more reasonable. When the sealing roller 202 is rolling and conveying the camellia bag, before the propulsion mechanism of the sealing machine drives the frame plate 103 to retract, if the camellia bag is already full and bulging due to the support of the large volume of camellia inside, it will move upward prematurely and touch the rubber anti-slip strip 4011. This will cause the protective flip plate 401 to flip upward, and cause the anti-pressure spring 402 to move upward and squeeze and stick to the fixing patch 403. At this time, the electromagnet 1031 quickly activates the electromagnetic attraction to the sealing bag mounting shell 101, causing the sealing bag mounting shell 101 to retract for protection, without damaging the camellia.
[0038] In Example 2, based on Example 1, the sealing detection component 5 includes: a stop post 501 and a collapse spring 5011. The stop post 501 is fixedly installed on the sealing bag mounting shell 101; the collapse spring 5011 is fixedly installed on the stop post 501 and is located inside the sealing bag mounting shell 101; the sealing detection component 5 also includes: a switch post 502, which is slidably inserted into the sealing bag mounting shell 101, and the tail of the switch post 502 is connected to the end of the collapse spring 5011; the switch post 502 is used for retraction; the sealing detection component 5 also includes: a detection switch 503, which is fixedly installed on the switch post 502 and is located inside the frame plate 103; the detection switch 503 is electrically connected to the buzzer 104. Using the sealing detection component 5, the pressure protection component 4 can be automatically controlled. The system provides an alarm when the sealing length is shortened in advance. It also automatically detects unexpected increases in sealing thickness caused by wrinkles or static electricity at the bag opening, leading to camellia petals adhering to the bag before sealing. The detection is accurate and efficient, without affecting normal sealing operations. It prompts staff to inspect and sort the bags for further quality control, ensuring consistent packaging quality. This eliminates the need for tedious manual inspection, improving efficiency. The system has a compact and reasonable structure. When the bag opening is conveyed by two sealing rollers 202, if the bag opening thickness increases, the elastically sliding sealing housing 101 can be used. When the bag opening thickness increases, the sealing housing 101 can be moved backward on the tension spring shaft 102, causing the detection switch 503 to move the extruder frame 103, controlling the buzzer 104 to sound an alarm to prompt the sorting and removal of the camellia petal bags.
[0039] The working principle of this embodiment is as follows: First, when making tea, flowers can be picked one after another when they are half open. Except on rainy days, wear disposable food-grade catering gloves, use your thumb and forefinger to pinch off the flowers from the base of the flower and stem, put them into a food bag, prepare a food-grade plate with holes at the bottom, open the food bag, pour out the picked golden tea flowers, spread them thinly on the plate to dry slightly, and then carry out the withering and frying process. Then, further dry the tea flowers before proceeding to the subsequent bagging process. Special packaging bags are used for bagging. The frame plate 103 is installed on the heating plate mounting frame of the bagging machine by bolts passing through the through holes on the frame plate 103.
[0040] After the tea flowers are filled into the tea flower bag, the filling structure of the sealing machine releases the clamp on the bag, and the tea flower bag falls onto the bottom support plate 3011. The vibration motor 302 vibrates in real time, and the bottom support plate 3011 can be attached to the bottom of the tea flower bag to transmit vibration. At this time, the bag opening is located between the two sealing rollers 202. The electric heating plate 105 can heat the sealing rollers 202 in real time, and the sealing motor 201 drives the sealing rollers 202 to rotate. The propulsion mechanism of the sealing machine pushes the frame plate 103 to move the sealing rollers 202 to fit against the bag opening. At this time, the tension spring on the tension spring shaft 102 is used to achieve elastic fit against the bag opening, and the tea flower bag is conveyed upward by the sealing rollers 202. During the process, the sealing rollers 202 adhere to the bag opening. The rotation of the camellia bag does not affect the heating and sealing of the bag opening by the electric heating plate 105. Subsequently, when the propulsion mechanism of the sealing machine drives the frame plate 103 to retract, the sealing and conveying process automatically releases, meaning the clamping is released. After sealing, the camellia bag can fall naturally and be pushed out by the camellia bag ejection structure of the sealing machine. However, when the sealing roller 202 is rolling and conveying the camellia bag, before the propulsion mechanism of the sealing machine drives the frame plate 103 to retract, if the camellia bag has a low density of camellia flowers, resulting in a large volume of camellia flowers inside and the bag is already full, it is considered defective. When the camellia bag is bulging due to the large volume of camellia flowers inside, it will prematurely move upwards and touch the rubber anti-slip strip 4011, triggering the protective flip plate 40. 1. The upward flip causes the anti-pressure spring 402 to move upward and press against the fixing patch 403. At this time, the electromagnet 1031 quickly activates the electromagnetic attraction to the sealing bag mounting shell 101, causing the sealing bag mounting shell 101 to retract and stretch the tension spring on the tension spring shaft 102. At this time, the camellia bag can fall quickly, avoiding the sealing roller 202 from continuously conveying the camellia bag and squeezing and damaging the camellia. The sealing length is shortened in advance, achieving adaptive control. Even if the sealing roller 202 continues to rotate and convey the camellia bag, it will start from the beginning. Before reaching the camellia, the propulsion mechanism of the sealing machine will also drive the frame plate 103 to retract during automatic operation, so as not to damage the camellia. When the two sealing rollers 202 clamp the bag mouth for conveying, once the bag mouth thickness increases, the elastic sliding device will be used to prevent damage to the camellia. The sealing bag mounting shell 101 can be installed. When the thickness of the bag opening increases, the sealing bag mounting shell 101 can be moved backward on the tension spring shaft 102 to adapt to it, stretching the tension spring on the tension spring shaft 102. At this time, the switch column 502 will also move backward, driving the detection switch 503 to move the extruder frame plate 103. The detection switch 503 can then control the buzzer 104 to sound an alarm to indicate that the problematic tea bags have been sorted out. Similarly, when the electromagnet 1031 is activated to attract the sealing bag mounting shell 101 to move backward, it can also drive the sealing bag mounting shell 101 to move backward, driving the detection switch 503 to move the extruder frame plate 103. During the process, the collapsible spring 5011 can be elastically compressed to prevent jamming. Similarly, the buzzer 104 can be controlled to sound an alarm to indicate that the problematic tea bags have been sorted out.
[0041] The following points should be noted in this article:
[0042] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.
[0043] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0044] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A sealing bag device for the production and processing of homemade golden camellia, comprising a sealing heating element (1), wherein two sealing heating elements (1) are provided, and the two sealing heating elements (1) have the same structure; the two sealing heating elements (1) are respectively used to be installed on a sealing machine; a sealing conveyor (2) is installed on the sealing heating element (1); characterized in that: The sealing bag conveyor (2) is used to increase the sealing area; the sealing bag heating element (1) is equipped with a vibration auxiliary element (3) at the bottom; the vibration auxiliary element (3) is used to vibrate and flatten the camellia flowers; The sealing heating element (1) is equipped with a pressure-resistant protective element (4); the pressure-resistant protective element (4) is used to prevent the tea flowers from being crushed and damaged. A sealing detection component (5) is installed on the sealing heating element (1); the sealing detection component (5) is used to prevent camellia flowers from obscuring the sealing. The bag sealing heating element (1) includes: a bag sealing mounting shell (101), a baffle (1011), a tension spring shaft (102), a frame plate (103), an electromagnet (1031), a buzzer (104), and an electric heating plate (105). The baffle (1011) is fixedly installed at the bottom of the bag sealing mounting shell (101). The bag sealing mounting shell (101) has two insertion holes. An iron metal plate is provided on the rear side of the bag sealing mounting shell (101). The sealing detection component (5) includes: a stop post (501) and a collapse spring (5011). The stop post (501) is fixedly installed on the sealing bag mounting shell (101). The collapse spring (5011) is fixedly installed on the stop post (501), and the collapse spring (5011) is located inside the sealing bag mounting shell (101). The sealing detection component (5) further includes: a switch post (502), on which the switch post (502) is slidably inserted, and the tail of the switch post (502) is connected to the end of the collapsible spring (5011); the switch post (502) is used for retraction; The sealing detection component (5) further includes: a detection switch (503), which is fixedly installed on the switch post (502) and is located inside the frame plate (103); the detection switch (503) is electrically connected to a buzzer (104).
2. The sealing device for self-made golden camellia production and processing according to claim 1, characterized in that, Two tension spring shafts (102) are inserted into the two holes on the sealing bag mounting shell (101); tension springs are respectively sleeved on the two tension spring shafts (102), and the tension springs on the two tension spring shafts (102) are respectively fixedly connected between the tension spring shafts (102) and the sealing bag mounting shell (101); a frame plate (103) is fixedly installed on the two tension spring shafts (102) by bolts; the frame plate (103) is provided with two through holes; an electromagnet (1031) is fixedly embedded on the frame plate (103); the electromagnet (1031) is used to magnetically attract the iron metal plate on the rear side of the sealing bag mounting shell (101).
3. The sealing device for self-made golden camellia production and processing according to claim 1, characterized in that, A buzzer (104) is fixedly installed on the sealing bag mounting shell (101); an electric heating plate (105) is fixedly installed inside the sealing bag mounting shell (101); the electric heating plate (105) has an arc-shaped structure; the buzzer (104) is used to prompt sorting.
4. The sealing device for self-made golden camellia production and processing according to claim 1, characterized in that, The bag sealing conveyor (2) includes: a bag sealing motor (201) and a bag sealing roller (202). The bag sealing motor (201) is fixedly installed on the bag sealing mounting shell (101), and the output shaft of the bag sealing motor (201) passes through the bag sealing mounting shell (101). The bag sealing roller (202) is fixedly installed on the output shaft of the bag sealing motor (201), and the bag sealing roller (202) is rotatably sleeved on the bag sealing mounting shell (101). The outer side of the electric heating plate (105) is attached to the inner side of the bag sealing roller (202).
5. A sealing device for self-made golden camellia production and processing according to claim 1, characterized in that, The vibration auxiliary component (3) includes: a vibration mounting plate (301), a bottom support plate (3011), and a vibration motor (302). The bottom of the sealing bag mounting shell (101) is rotatably mounted with the vibration mounting plate (301), and the bottom support plate (3011) is fixedly mounted on the bottom of the vibration mounting plate (301). The bottom support plate (3011) is used to fit the camellia bag. The bottom of the vibration mounting plate (301) is mounted with the vibration motor (302) through a bracket, and the vibration motor (302) is used to vibrate the camellia.
6. A sealing device for self-made golden camellia production and processing according to claim 5, characterized in that, The pressure-resistant protective component (4) includes: a protective upper flap (401) and a rubber anti-slip strip (4011). The protective upper flap (401) is rotatably installed at the bottom of the sealing bag mounting shell (101). The baffle (1011) is used to block and limit the protective upper flap (401). The rubber anti-slip strip (4011) is fixedly installed at the end of the protective upper flap (401). The rubber anti-slip strip (4011) is located below the sealing bag mounting shell (101). The rubber anti-slip strip (4011) is used to be rubbed by the camellia bag. The vibration mounting plate (301) passes through the protective upper flap (401).
7. A sealing device for self-made golden camellia production and processing according to claim 6, characterized in that, The pressure-resistant protective component (4) further includes: a pressure-resistant spring sheet (402) and a fixing patch (403). The pressure-resistant spring sheet (402) is fixedly installed on the protective upper flap (401). The pressure-resistant spring sheet (402) is an elastic structure. The bottom of the sealing bag mounting shell (101) is fixedly installed with the fixing patch (403). There is a gap between the end of the pressure-resistant spring sheet (402) and the fixing patch (403). The pressure-resistant spring sheet (402), the fixing patch (403) and the electromagnet (1031) are connected in series with a power supply.
Citation Information
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