Quantitative subpackaging device for donkey-hide gelatin tableted candies

By adopting the staggered material extraction grid from bottom to top in the quantitative packaging device, the problem of insufficient quantitative packaging in the prior art is solved, and reliable material extraction and precise quantity packaging of long-shaped tablet candies are achieved.

CN222988490UActive Publication Date: 2025-06-17SHANDONG DONGE SHENGLIYUAN EJIAO BIOENG CO LTD
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Patent Information

Application Number
CN202421407754.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-19
Publication Date
2025-06-17
Estimated Expiration
2034-06-19

AI Technical Summary

Technical Problem

When collecting materials, it is difficult to effectively deal with long strip-shaped tablet candy, resulting in insufficient quantitative partitioning.

Method used

The material is collected by staggered material extraction grids from bottom to top. Through the alternately lifted material extraction plate and pallet structure, it is ensured that the material extraction process is not affected by the shape of the compressed piece candy.

Benefits of technology

Reliable and stable material collection for long-shaped tablet candies is achieved, and the material collection failure is avoided and the accuracy of quantitative partitioning is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of quantitative sub-packaging devices, in particular to a quantitative sub-packaging device for donkey-hide gelatin tabletted candies, which adopts a mode of staggered material taking grids from bottom to top to take materials, the material taking is not influenced by the shape of the donkey-hide gelatin tabletted candies, and the quantitative sub-packaging accuracy is improved. Comprising a candy box; the candy box further comprises a first material taking plate, a second material taking plate, supporting plates, an installation frame, a first discharging groove and a second discharging groove, the first material taking plate and the second material taking plate are installed on the candy box in a relative lifting and sliding mode, the first material taking plate and the second material taking plate are each provided with a side plate and a side plate, the upper ends of the two side plates are each provided with a discharging port, and the multiple supporting plates are installed on the first material taking plate and the second material taking plate in a hinged mode. A plurality of supporting plates and side plates and side plates of the first material taking plate and the second material taking plate form a plurality of material taking grids, the mounting frame is mounted on the candy box, the first discharging groove and the second discharging groove are mounted on the two sides of the mounting frame respectively, the input end of the first discharging groove is aligned to a discharging port of the first material taking plate, and the input end of the second discharging groove is aligned to a discharging port of the second material taking plate.
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Description

Technical Field

[0001] The utility model relates to the technical field of quantitative packaging devices, in particular to a quantitative packaging device for Ejiao tablet candies. Background Technique

[0002] After the Ejiao tablet candies are produced, they need to be quantitatively packaged. After quantitative packaging, they are packaged. In order to improve the accuracy of quantitative packaging, a variety of quantitative packaging devices are disclosed in the prior art. For example, a quantitative packaging device for candy production proposed in the Chinese utility model patent with the publication number CN215753116U. This quantitative packaging device pushes the candies on the upper end of the fixed disk bottom plate into the candy packaging holes through a rotating vertical push plate. The excess candies are pushed by the vertical push plate and wait for the next candy packaging hole to be vacant, and then enter the candy packaging hole. Since only one candy is pushed down each time, the amount of candies is controllable, and there is no situation where candies still fall after reaching the weight.

[0003] However, the above-mentioned quantitative packaging device uses the method of taking materials by dropping the tablet candies through the packaging holes. It is relatively reliable for taking circular or spherical tablet candies, but for strip-shaped tablet candies, it may cause the failure of taking materials due to the misalignment of the shapes of the packaging holes and the tablet candies, resulting in the problem of insufficient quantitative packaging. Content of the Utility Model

[0004] In order to solve the above technical problems, the utility model provides a quantitative packaging device for Ejiao tablet candies that uses an interlaced material-taking grid from bottom to top to take materials, and the material-taking is not affected by the shape of the Ejiao tablet candies, thereby improving the accuracy of quantitative packaging.

[0005] A quantitative packaging device for Ejiao tablet candies of the utility model includes a candy box, and the candy box is provided with a containing chamber; it also includes a first material taking plate, a second material taking plate, a supporting plate, a mounting frame, a first discharge chute and a second discharge chute. The first material taking plate and the second material taking plate are installed on the candy box in a lifting and sliding manner. The first material taking plate and the second material taking plate are arranged oppositely. The first material taking plate and the second material taking plate are both provided with side plates aligned on the inner side and side plates perpendicular to the outer edges of the side plates. Discharge ports are arranged at the upper ends of the two side plates. A plurality of supporting plates are hingedly installed on the first material taking plate and the second material taking plate. The plurality of supporting plates and the side plates and side plates of the first material taking plate and the second material taking plate form a plurality of material taking grids arranged in the vertical direction. The mounting frame is installed on the candy box. The two first discharge chutes and the second discharge chutes are respectively installed on both sides of the mounting frame. The input end of the first discharge chute is aligned with the discharge port of the first material taking plate, and the input end of the second discharge chute is aligned with the discharge port of the second material taking plate; during operation, the containing chamber of the candy box is filled with Ejiao tablet candies. The first material taking plate and the second material taking plate are alternately lifted and lowered. During this process, the second material taking plate descends so that the lowermost material taking grid extends into the containing chamber, so that an Ejiao tablet candy enters the lowermost material taking grid. The second material taking plate rises to take out the Ejiao tablet candy from the containing chamber. The second material taking plate is lifted to align with the first material taking plate. And in the order from bottom to top, the first, second, third, and fourth supporting plates of the second material taking plate are respectively aligned with the first, second, third, and fourth supporting plates 4 on the first material taking plate. At this time, the sugar pressing tablets on the second material taking plate are respectively transferred to the first, second, third, and fourth supporting plates of the first material taking plate. The second material taking plate descends again and stops when the lowermost material taking grid extends into the containing chamber. The first material taking plate starts to rise. The first material taking plate is lifted to intersect with the second material taking plate. And in the order from bottom to top, the first, second, third, and fourth supporting plates of the first material taking plate are respectively aligned with the second, third, fourth, and fifth supporting plates on the second material taking plate. At this time, the sugar pressing tablets on the first material taking plate are respectively transferred to the second, third, fourth, and fifth supporting plates of the second material taking plate, so that a plurality of Ejiao tablet candies are alternately lifted between the first material taking plate and the second material taking plate, and the Ejiao tablet candy in the uppermost material taking grid of the first material taking plate is conveyed to the subsequent packaging station through the first discharge chute, and the Ejiao tablet candy in the uppermost material taking grid of the second material taking plate is conveyed to the subsequent packaging station through the second discharge chute. The material taking is carried out in the way of staggered material taking grids from bottom to top. The material taking is not affected by the shape of the Ejiao tablet candies. The material taking is reliable and stable, avoiding material taking failure and improving the accuracy of quantitative packaging.

[0006] Preferably, it further includes two sliding chutes, and the two sliding chutes are installed on the inner walls of the containing chamber of the candy box. The first material taking plate and the second material taking plate are respectively slidably installed on the two sliding chutes in a liftable manner; the first material taking plate and the second material taking plate are respectively slidably installed on the candy box through the two sliding chutes, making the sliding of the first material taking plate and the second material taking plate smoother and more stable.

[0007] Preferably, it further includes a plurality of rotating shafts and a plurality of spring pieces. The outer ends of the plurality of supporting plates are respectively rotatably mounted on the first material taking plate and the second material taking plate through the plurality of rotating shafts. The plurality of rotating shafts are close to the side plates of the first material taking plate and the second material taking plate. One ends of the plurality of spring pieces are respectively connected to the plurality of rotating shafts, and the other ends of the plurality of spring pieces are respectively connected to the side plates of the first material taking plate and the second material taking plate. The elastic forces of the plurality of spring pieces support the inner ends of the plurality of supporting plates to incline upward; the elastic forces of the plurality of spring pieces cause the inner ends of the plurality of supporting plates 4 to incline upward, so that when the material taking grids on the second material taking plate and the first material taking plate collect and lift the tablet candies, the tablet candies roll to the edge of the material taking grid close to the side plate. When the first material taking plate is lifted upward and intersects with the second material taking plate, the inner ends of the plurality of supporting plates 4 on the first material taking plate are blocked by the inner ends of the plurality of stationary supporting plates 4 on the second material taking plate. The first material taking plate continues to lift, causing the inner ends of the plurality of supporting plates on the first material taking plate to incline downward. At this time, the plurality of supporting plates on the first material taking plate and the plurality of supporting plates on the second material taking plate that are aligned form an inclined overall channel, so that the tablet candies on the plurality of supporting plates on the first material taking plate roll onto the plurality of supporting plates on the second material taking plate. Similarly, when the second material taking plate is lifted, the tablet candies on the plurality of supporting plates on the second material taking plate roll onto the plurality of supporting plates on the first material taking plate. At this time, the plurality of supporting plates of the second material taking plate start to descend and reset, avoiding the problem of the tablet candies falling during the lifting process and improving the stability of material taking.

[0008] Preferably, it further includes a plurality of limiting rods and a plurality of arc-shaped chutes. Limiting rods are arranged at the outer ends of the plurality of supporting plates, and a plurality of arc-shaped chutes are evenly arranged on the side plates of the first material taking plate and the second material taking plate. The plurality of limiting rods are respectively slidably mounted in the plurality of arc-shaped chutes; the plurality of arc-shaped chutes limit the sliding range of the plurality of limiting rods, thereby restricting the inclination angle range of the plurality of supporting plates, avoiding excessive inclination of the plurality of supporting plates, and improving the stability of the plurality of supporting plates.

[0009] Preferably, it further includes a motor, a half gear, a first gear, a first swing arm, a first pull rod, a second gear, a second swing arm and a second pull rod. The motor is installed on the mounting frame, the half gear is concentrically installed on the output shaft of the motor, the first gear is rotatably installed on the mounting frame, the first gear meshes with the half gear intermittently, one end of the first swing arm is installed on the first gear, the other end of the first swing arm is rotatably connected to the upper end of the first pull rod, the lower end of the first pull rod is rotatably connected to the first material taking plate, the second gear is rotatably installed on the mounting frame, the second gear meshes with the half gear intermittently, the second gear and the first gear alternately mesh with the half gear, one end of the second swing arm is installed on the second gear, the other end of the second swing arm is rotatably connected to the upper end of the second pull rod, and the lower end of the second pull rod is rotatably connected to the second material taking plate; the motor drives the half gear to rotate. When the half gear meshes with the first gear, it drives the first gear and the first swing arm to rotate. The first swing arm drives the first material taking plate to perform a lifting process through the first pull rod. After the half gear disengages from the first gear, it meshes with the second gear, so that the first gear stops rotating and the second gear and the second swing arm start to rotate. The second swing arm drives the second material taking plate to perform a lifting process through the second pull rod, realizing the alternating lifting of the tablet candy on the first material taking plate and the second material taking plate, with stable driving and good practicability.

[0010] Preferably, it further includes a contact switch and a convex block. The contact switch is installed on the mounting frame, the convex block is installed on the half gear, and the convex block is aligned with the contact arm of the contact switch; every time the half gear rotates one week, it drives the convex block to contact the contact arm of the contact switch once, so that the contact switch generates an electrical signal, and the tablet candy is counted and quantified through the electrical signal. The technology is mature and reliable, the counting and quantification are accurate, and the practicability is good.

[0011] Preferably, it further includes a driving rod, a first bevel gear, a long shaft rod, a second bevel gear and a dial rod. One end of the driving rod is concentrically connected to the half gear, a first bevel gear is concentrically arranged at the other end of the driving rod, the lower end of the long shaft rod is rotatably connected to the candy box, the upper end of the long shaft rod is rotatably connected to the mounting frame through a bracket, the second bevel gear is concentrically installed on the long shaft rod, the second bevel gear meshes with the first bevel gear, and a plurality of dial rods are installed on the long shaft rod. The end parts of the plurality of dial rods respectively extend into a plurality of material taking grids of the first material taking plate and the second material taking plate; when the motor drives the half gear to rotate, the half gear drives the driving rod and the first bevel gear to rotate, the first bevel gear meshes and drives the second bevel gear to rotate, the second bevel gear drives the long shaft rod and a plurality of dial rods to rotate, so that the plurality of dial rods intermittently sweep across the middle parts of a plurality of material taking grids of the first material taking plate and the second material taking plate, thereby sweeping out the excess tablet candies in the material taking grids to ensure that only one tablet candy is collected in the plurality of material taking grids, improving the accuracy of material taking.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The material taking method of using the staggered material taking grids from bottom to top is adopted. The material taking is not affected by the shape of the donkey-hide gelatin tablet candy, the material taking is reliable and stable, the material taking failure is avoided, and the accuracy of quantitative packaging is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic structural view of the present utility model;

[0014] Figure 2 is a front sectional structural view of the present utility model;

[0015] Figure 3 is a schematic structural view of the state of the staggered transfer of pressed candies of structures such as the material taking plate one, the material taking plate two and the supporting plate;

[0016] Figure 4 is a schematic structural view of structures such as the mounting frame, the motor, the half gear, the gear one, the swing arm one, the pull rod one, the gear two, the swing arm two and the pull rod two;

[0017] Figure 5 is a schematic structural view of structures such as the supporting plate, the rotating shaft, the spring piece and the limiting rod;

[0018] Figure 6 is Figure 3 a partial enlarged structural view of the position A in;

[0019] Figure 7 is Figure 3 a partial enlarged structural view of the position B in.

[0020] Reference numerals in the drawings: 1, candy box; 2, material taking plate one; 3, material taking plate two; 4, supporting plate; 5, mounting frame; 6, discharge chute one; 7, discharge chute two; 8, rotating shaft; 9, spring piece; 10, limiting rod; 11, arc chute; 12, motor; 13, half gear; 14, gear one; 15, swing arm one; 16, pull rod one; 17, gear two; 18, swing arm two; 19, pull rod two; 20, contact switch; 21, convex block; 22, slideway; 23, driving rod; 24, bevel gear one; 25, long shaft rod; 26, bevel gear two; 27, dial rod. Detailed implementation manners

[0021] For the convenience of understanding the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the disclosure of the present utility model is more thorough and comprehensive.

[0022] Embodiment 1

[0023] As Figures 1 to 4As shown in the figure, a quantitative packaging device for Ejiao tablets includes a candy box 1 with a containing chamber. It also includes a first material-taking plate 2, a second material-taking plate 3, a supporting plate 4, a mounting frame 5, a first discharge chute 6 and a second discharge chute 7. The first material-taking plate 2 and the second material-taking plate 3 are installed on the candy box 1 in a lifting and sliding manner. The first material-taking plate 2 and the second material-taking plate 3 are arranged oppositely. Both the first material-taking plate 2 and the second material-taking plate 3 are provided with side plates that are aligned on the inner side and side plates that are perpendicular to the outer edges of the side plates. Discharge ports are provided at the upper ends of the two side plates. A plurality of supporting plates 4 are hingedly installed on the first material-taking plate 2 and the second material-taking plate 3. The plurality of supporting plates 4 and the side plates and side plates of the first material-taking plate 2 and the second material-taking plate 3 form a plurality of material-taking grids arranged in the vertical direction. The mounting frame 5 is installed on the candy box 1. The two first discharge chutes 6 and the second discharge chute 7 are respectively installed on both sides of the mounting frame 5. The input end of the first discharge chute 6 is aligned with the discharge port of the first material-taking plate 2, and the input end of the second discharge chute 7 is aligned with the discharge port of the second material-taking plate 3. It also includes two sliding chutes 22 installed on the inner walls of the containing chamber of the candy box 1. The first material-taking plate 2 and the second material-taking plate 3 are respectively slidably installed on the two sliding chutes 22 in a liftable manner. It further includes a motor 12, a semi-gear 13, a first gear 14, a first swing arm 15, a first pull rod 16, a second gear 17, a second swing arm 18 and a second pull rod 19. The motor 12 is installed on the mounting frame 5. The semi-gear 13 is concentrically installed on the output shaft of the motor 12. The first gear 14 is rotatably installed on the mounting frame 5. The first gear 14 meshes with the semi-gear 13 intermittently. One end of the first swing arm 15 is installed on the first gear 14, and the other end of the first swing arm 15 is rotatably connected to the upper end of the first pull rod 16. The lower end of the first pull rod 16 is rotatably connected to the first material-taking plate 2. The second gear 17 is rotatably installed on the mounting frame 5. The second gear 17 meshes with the semi-gear 13 intermittently. The second gear 17 and the first gear 14 alternately mesh with the semi-gear 13. One end of the second swing arm 18 is installed on the second gear 17, and the other end of the second swing arm 18 is rotatably connected to the upper end of the second pull rod 19. The lower end of the second pull rod 19 is rotatably connected to the second material-taking plate 3. It also includes a contact switch 20 and a convex block 21. The contact switch 20 is installed on the mounting frame 5. The convex block 21 is installed on the semi-gear 13. The convex block 21 is aligned with the contact arm of the contact switch 20.

[0024] The material taking plate 1 and the material taking plate 2 are respectively slidably mounted on the candy box 1 through two slide ways 22, making the sliding of the material taking plate 1 and the material taking plate 2 smoother and more stable. During operation, the containing chamber of the candy box 1 is filled with donkey-hide gelatin tablets. The motor 12 drives the half gear 13 to rotate. When the half gear 13 meshes with the first gear 14, it drives the first gear 14 and the first swing arm 15 to rotate. The first swing arm 15 drives the material taking plate 1 to perform a lifting process through the first pull rod 16. After the half gear 13 disengages from the first gear 14 and meshes with the second gear 17, the first gear 14 stops rotating and the second gear 17 and the second swing arm 18 start to rotate. The second swing arm 18 drives the material taking plate 2 to perform a lifting process through the second pull rod 19, realizing the alternating lifting of the material taking plate 1 and the material taking plate 2. Every time the half gear 13 rotates one week, the convex block 21 contacts the contact arm of the proximity switch 20 once, causing the proximity switch 20 to generate an electrical signal, and the tablet candies are counted and quantified through the electrical signal. During this process, the material taking plate 2 descends so that the lowermost material taking grid extends into the containing chamber, enabling a donkey-hide gelatin tablet to enter the lowermost material taking grid. The material taking plate 2 rises to take out the donkey-hide gelatin tablet from the containing chamber. The material taking plate 2 is lifted to align with the material taking plate 1. And in the order from bottom to top, the first, second, third, and fourth supporting plates 4 of the material taking plate 2 are respectively aligned with the first, second, third, and fourth supporting plates 4 on the material taking plate 1. At this time, the pressed sugar tablets on the material taking plate 2 are respectively transferred to the first, second, third, and fourth supporting plates 4 of the material taking plate 1. When the material taking plate 2 descends again and the lowermost material taking grid extends into the containing chamber and then stops, the material taking plate 1 starts to rise. The material taking plate 1 is lifted to intersect with the material taking plate 2. And in the order from bottom to top, the first, second, third, and fourth supporting plates 4 of the material taking plate 1 are respectively aligned with the second, third, fourth, and fifth supporting plates 4 on the material taking plate 2. At this time, the pressed sugar tablets on the material taking plate 1 are respectively transferred to the second, third, fourth, and fifth supporting plates 4 of the material taking plate 2, enabling multiple donkey-hide gelatin tablets to alternately rise between the material taking plate 1 and the material taking plate 2, and enabling the donkey-hide gelatin tablet in the uppermost material taking grid of the material taking plate 1 to be conveyed to the subsequent packaging station through the first discharge chute 6, and enabling the donkey-hide gelatin tablet in the uppermost material taking grid of the material taking plate 2 to be conveyed to the subsequent packaging station through the second discharge chute 7. By adopting the method of taking materials with staggered material taking grids from bottom to top, the material taking is not affected by the shape of the donkey-hide gelatin tablets, the material taking is reliable and stable, the failure of material taking is avoided, and the accuracy of quantitative packaging is improved.

[0025] Embodiment 2

[0026] Such as Figures 5 to 7As shown in the figure, on the basis of Embodiment 1, it further includes a plurality of rotating shafts 8 and a plurality of spring pieces 9. The outer ends of the plurality of supporting plates 4 are respectively rotatably installed on the first material taking plate 2 and the second material taking plate 3 through the plurality of rotating shafts 8. The plurality of rotating shafts 8 are close to the side plates of the first material taking plate 2 and the second material taking plate 3. One ends of the plurality of spring pieces 9 are respectively connected to the plurality of rotating shafts 8, and the other ends of the plurality of spring pieces 9 are respectively connected to the side plates of the first material taking plate 2 and the second material taking plate 3. The elastic forces of the plurality of spring pieces 9 support the inner ends of the plurality of supporting plates 4 to tilt upward; it further includes a plurality of limiting rods 10 and a plurality of arc-shaped chutes 11. Limiting rods 10 are arranged at the outer ends of the plurality of supporting plates 4, and a plurality of arc-shaped chutes 11 are evenly arranged on the side plates of the first material taking plate 2 and the second material taking plate 3. The plurality of limiting rods 10 are respectively slidably installed in the plurality of arc-shaped chutes 11.

[0027] The elastic forces of the plurality of spring pieces 9 cause the inner ends of the plurality of supporting plates 4 to tilt upward. When the material taking grids on the second material taking plate 3 and the first material taking plate 2 receive and lift the tablet candies, the tablet candies roll to the edge of the material taking grid close to the side plate. When the first material taking plate 2 is lifted upward and is staggered with the second material taking plate 3, the inner ends of the plurality of supporting plates 4 on the first material taking plate 2 are blocked by the inner ends of the plurality of stationary supporting plates 4 on the second material taking plate 3. The first material taking plate 2 continues to be lifted, causing the inner ends of the plurality of supporting plates 4 on the first material taking plate 2 to tilt downward. At this time, the plurality of supporting plates 4 on the first material taking plate 2 and the plurality of supporting plates 4 on the aligned second material taking plate 3 form an inclined overall channel, so that the tablet candies on the plurality of supporting plates 4 on the first material taking plate 2 roll onto the plurality of supporting plates 4 on the second material taking plate 3. Similarly, when the second material taking plate 3 is lifted, the tablet candies on the plurality of supporting plates 4 on the second material taking plate 3 roll onto the plurality of supporting plates 4 on the first material taking plate 2. At this time, the plurality of supporting plates 4 of the second material taking plate 3 start to descend and reset, avoiding the problem of the tablet candies falling during the lifting process, improving the stability of material taking. The plurality of arc-shaped chutes 11 limit the sliding range of the plurality of limiting rods 10, thereby restricting the tilting angle range of the plurality of supporting plates 4 and avoiding excessive tilting of the plurality of supporting plates 4, improving the stability of the plurality of supporting plates 4.

[0028] Embodiment 3

[0029] As Figure 1 and Figure 2 shown in the figure, on the basis of Embodiment 1, it further includes a driving rod 23, a first bevel gear 24, a long shaft rod 25, a second bevel gear 26 and a shifting rod 27. One end of the driving rod 23 is concentrically connected to the half gear 13, and a first bevel gear 24 is concentrically arranged at the other end of the driving rod 23. The lower end of the long shaft rod 25 is rotatably connected to the candy box 1, and the upper end of the long shaft rod 25 is rotatably connected to the mounting frame 5 through a bracket. The second bevel gear 26 is concentrically installed on the long shaft rod 25, and the second bevel gear 26 meshes with the first bevel gear 24. A plurality of shifting rods 27 are installed on the long shaft rod 25, and the end parts of the plurality of shifting rods 27 respectively extend into the plurality of material taking grids of the first material taking plate 2 and the second material taking plate 3.

[0030] When the motor 12 drives the half gear 13 to rotate, the half gear 13 drives the drive rod 23 and the first bevel gear 24 to rotate. The first bevel gear 24 meshes with and drives the second bevel gear 26 to rotate. The second bevel gear 26 drives the long shaft rod 25 and multiple lever rods 27 to rotate, causing the multiple lever rods 27 to intermittently sweep across the middle parts of multiple material taking cells of the first material taking plate 2 and the second material taking plate 3, thereby sweeping out the excess tablet candies in the material taking cells, ensuring that only one tablet candy is collected in the multiple material taking cells, and improving the accuracy of material taking.

[0031] As Figures 1 to 7 shown, in a quantitative packaging device for Ejiao tablet candies of the present utility model, during operation, first, the storage chamber of the candy box 1 is filled with Ejiao tablet candies. The motor 12 operates to drive the first material taking plate 2 and the second material taking plate 3 to alternately lift. When the second material taking plate 3 descends, the lowermost material taking cell of the second material taking plate 3 extends into the storage chamber, enabling one Ejiao tablet candy to enter the lowermost material taking cell. The second material taking plate 3 rises to take out the Ejiao tablet candy from the storage chamber. Then, when the multiple support plates 4 on the second material taking plate 3 are aligned with the multiple support plates 4 on the first material taking plate 2, the inner ends of the multiple support plates 4 of the second material taking plate 3 are blocked by the inner ends of the multiple support plates 4 on the first material taking plate 2. The multiple support plates 4 of the second material taking plate 3 continue to lift, causing the inner ends of the multiple support plates 4 of the second material taking plate 3 to tilt downward, so that the tablet candies thereon roll onto the multiple support plates 4 of the first material taking plate 2. At this time, the second material taking plate 3 descends again and stops when the lowermost material taking cell extends into the storage chamber. Then, the first material taking plate 2 starts to rise, aligning the multiple support plates 4 on the first material taking plate 2 with the multiple support plates 4 on the second material taking plate 3, enabling the Ejiao tablet candies in the multiple material taking cells on the first material taking plate 2 to roll into the multiple material taking cells of the second material taking plate 3 respectively. Repeating the above operations causes the multiple Ejiao tablet candies to alternately rise between the first material taking plate 2 and the second material taking plate 3. Finally, the Ejiao tablet candy in the uppermost material taking cell of the first material taking plate 2 is conveyed to the subsequent packaging station through the first discharge chute 6, and the Ejiao tablet candy in the uppermost material taking cell of the second material taking plate 3 is conveyed to the subsequent packaging station through the second discharge chute 7.

[0032] The main functions achieved by the present utility model are as follows:

[0033] 1. Adopting the method of taking materials with staggered material taking cells from bottom to top, the material taking is not affected by the shape of Ejiao tablet candies, improving the accuracy of quantitative packaging;

[0034] 2. By setting support plates that can be elastically tilted, it is avoided that the tablet candies fall during the lifting process, improving the stability of material taking;

[0035] 3. It can sweep out the excess tablet candies, improving the accuracy of quantitative packaging.

[0036] A quantitative packaging device for donkey-hide gelatin tablet candies of the present utility model has an installation method, a connection method, or a setting method that are all common mechanical methods, and any implementation that can achieve its beneficial effects can be carried out; the candy box 1, the rotating shaft 8, the spring piece 9, the motor 12, the half gear 13, the first gear 14, the second gear 17, the contact switch 20, the slideway 22, the first bevel gear 24, and the second bevel gear 26 of the quantitative packaging device for donkey-hide gelatin tablet candies of the present utility model are purchased on the market. Those skilled in the art only need to install and operate according to the attached user manual, without the need for those skilled in the art to perform creative labor.

[0037] All the technical and scientific terms used in this article have the same meanings as those commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the specification of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0038] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the technical field, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A quantitative packaging device for donkey-hide gelatin tablet candies, comprising a candy box (1), wherein the candy box (1) is provided with a containing chamber; characterized in that: The candy box also comprises a first feeding plate (2), a second feeding plate (3), a supporting plate (4), a mounting frame (5), a first discharging trough (6) and a second discharging trough (7). The first feeding plate (2) and the second feeding plate (3) are installed on the candy box (1) in a lifting and sliding manner. The first feeding plate (2) and the second feeding plate (3) are arranged opposite to each other. The first feeding plate (2) and the second feeding plate (3) are both provided with side plates aligned with the inner sides and side plates arranged perpendicular to the outer edges of the side plates. The upper ends of the two side plates are both provided with discharging ports. The first feeding plate (2) and the second feeding plate (3) are arranged on the candy box (1) in a lifting and sliding manner. A plurality of support plates (4) are hingedly mounted on the second material plate (3); the plurality of support plates (4) and the side plates and edge plates of the first material plate (2) and the second material plate (3) form a plurality of material taking grids arranged in a vertical direction; a mounting frame (5) is mounted on the candy box (1); two discharge troughs (1) and a second material plate (7) are mounted on both sides of the mounting frame (5); the input end of the discharge trough (6) is aligned with the discharge port of the first material plate (2); and the input end of the discharge trough (7) is aligned with the discharge port of the second material plate (3).

2. A quantitative packaging device for donkey-hide gelatin tablet candy as claimed in claim 1, characterized in that: It also comprises two slideways (22), which are mounted on the inner wall of the containing chamber of the candy box (1), and the first material taking plate (2) and the second material taking plate (3) are respectively mounted on the two slideways (22) in a manner that they can be lifted and lowered.

3. The quantitative packaging device for donkey-hide gelatin tablet candy according to claim 1, characterized in that: It also includes a plurality of rotating shafts (8) and a plurality of spring sheets (9), the outer ends of the plurality of support plates (4) are rotatably mounted on the first feeding plate (2) and the second feeding plate (3) through the plurality of rotating shafts (8), the plurality of rotating shafts (8) are close to the side plates of the first feeding plate (2) and the second feeding plate (3), one ends of the plurality of spring sheets (9) are respectively connected to the plurality of rotating shafts (8), the other ends of the plurality of spring sheets (9) are respectively connected to the side plates of the first feeding plate (2) and the second feeding plate (3), and the plurality of spring sheets (9) elastically support the inner ends of the plurality of support plates (4) to tilt upward.

4. A quantitative packaging device for donkey-hide gelatin tablet candy as claimed in claim 3, characterized in that: It also includes a plurality of limit rods (10) and a plurality of arc-shaped slide grooves (11), wherein the outer ends of the plurality of support plates (4) are all provided with limit rods (10), the side plates of the first material taking plate (2) and the second material taking plate (3) are evenly provided with a plurality of arc-shaped slide grooves (11), and the plurality of limit rods (10) are respectively slidably installed in the plurality of arc-shaped slide grooves (11).

5. The quantitative packaging device for donkey-hide gelatin tablet candy according to claim 1, characterized in that: The invention also comprises a motor (12), a half gear (13), a gear 1 (14), a swing arm 1 (15), a pull rod 1 (16), a gear 2 (17), a swing arm 2 (18) and a pull rod 2 (19), wherein the motor (12) is mounted on a mounting frame (5), the half gear (13) is coaxially mounted on an output shaft of the motor (12), the gear 1 (14) is rotatably mounted on the mounting frame (5), the gear 1 (14) is intermittently meshed with the half gear (13), one end of the swing arm 1 (15) is mounted on the gear 1 (14), and the other end of the swing arm 1 (15) is One end is rotatably connected to the upper end of pull rod 1 (16), the lower end of pull rod 1 (16) is rotatably connected to material picking plate 1 (2), gear 2 (17) is rotatably mounted on the mounting frame (5), gear 2 (17) is intermittently meshed with the half gear (13), gear 2 (17) and gear 1 (14) are alternately meshed with the half gear (13), one end of swing arm 2 (18) is mounted on gear 2 (17), the other end of swing arm 2 (18) is rotatably connected to the upper end of pull rod 2 (19), and the lower end of pull rod 2 (19) is rotatably mounted on material picking plate 2 (3).

6. A quantitative packaging device for donkey-hide gelatin tablet candy as claimed in claim 5, characterized in that: It also includes a contact switch (20) and a convex block (21), wherein the contact switch (20) is mounted on the mounting frame (5), the convex block (21) is mounted on the half gear (13), and the convex block (21) is aligned with the contact arm of the contact switch (20).

7. A quantitative packaging device for donkey-hide gelatin tablet candy as claimed in claim 5, characterized in that: The invention also comprises a driving rod (23), a bevel gear 1 (24), a long shaft rod (25), a bevel gear 2 (26) and a lever (27). One end of the driving rod (23) is concentrically connected to the half gear (13). The other end of the driving rod (23) is concentrically provided with a bevel gear 1 (24). The lower end of the long shaft rod (25) is rotatably connected to the candy box (1). The upper end of the long shaft rod (25) is rotatably connected to the mounting frame (5) through a bracket. The bevel gear 2 (26) is concentrically mounted on the long shaft rod (25). The bevel gear 2 (26) is meshed with the bevel gear 1 (24). A plurality of levers (27) are mounted on the long shaft rod (25). The ends of the plurality of levers (27) respectively extend into a plurality of material taking grids of the material taking plate 1 (2) and the material taking plate 2 (3).

Citation Information

Patent Citations

  • Quantitative subpackaging equipment for candy production

    CN215753116U