Jelly production line

By introducing a first pouring mechanism, a second pouring mechanism, and a refrigeration mechanism into the jelly production line, the problem of the single structure of the existing production line is solved, and diversified jelly production is realized to meet the diversified market demand.

CN223982772UActive Publication Date: 2026-03-10CHAOZHOU CHAOAN RIXIN IND & TRADE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing jelly production lines can only produce gel jelly with a simple structure, making it difficult to adapt to rapidly changing market demands and consumer preferences.

Method used

A jelly production line was designed, comprising a first pouring mechanism, a second pouring mechanism, and a refrigeration mechanism. It can pour gel jelly liquid and fruit juice pulp into jelly cups respectively, and quickly cool them through the refrigeration mechanism. Finally, the sealing mechanism packages the jelly, enabling the production of diversified jelly products.

Benefits of technology

This achieves structural flexibility in the jelly production line, enabling the production of different styles of jelly to meet diverse market demands.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of jelly production, and discloses a jelly production line which comprises a frame body, the conveying mechanism is arranged on the frame body, the conveying mechanism comprises a conveying belt and a carrier arranged on the conveying belt, and the carrier is provided with a containing concave part used for bearing the jelly cup body; the first pouring mechanism is arranged on the frame body and is configured to pour gel jelly liquid into the jelly cup body carried by the carrier; the second pouring mechanism is arranged on the frame body, and the second pouring mechanism is located on the downstream of the first pouring mechanism and is configured to pour fruit juice and pulp into the jelly cup bodies borne by the carrier; the refrigerating mechanism is arranged on the frame body, and the refrigerating mechanism is located at the downstream of the second pouring mechanism and is configured to refrigerate the poured jelly cup bodies; and the sealing mechanism is arranged on the frame body, and the sealing mechanism is located on the downstream of the refrigerating mechanism and is configured to seal and package the jelly cup bodies. The device is more flexible in structure, can be used for producing jellies with fruit juice and pulp, and is suitable for producing jellies of different styles.
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Description

Technical Field

[0001] This utility model relates to the field of jelly production line technology, and in particular to a jelly production line. Background Technology

[0002] Jelly is a gelatinous food made from water, sugar, and thickeners through processes such as sol-gel, mixing, filling, sterilization, and cooling.

[0003] Jelly production lines are used to automate the production and processing of jelly. However, existing jelly production lines can only produce simple gel-like jellies, making it difficult to adapt to rapidly changing market demands and consumer preferences.

[0004] Therefore, there is an urgent need to provide a jelly production line with a more flexible structure that is suitable for producing different styles of jelly. Utility Model Content

[0005] Therefore, it is necessary to provide a jelly production line with a more flexible structure that is suitable for producing different styles of jelly, in order to address the existing problems.

[0006] Embodiments of this application provide a jelly production line, which includes:

[0007] Frame;

[0008] A conveying mechanism is provided on the frame, the conveying mechanism includes a conveyor belt and a carrier provided on the conveyor belt, the carrier having a receiving recess for carrying the jelly cup;

[0009] A first pouring mechanism is disposed on the frame and configured to pour gel jelly liquid into the jelly cup carried by the carrier;

[0010] A second pouring mechanism is disposed on the frame, the second pouring mechanism is located downstream of the first pouring mechanism and is configured to pour fruit juice or fruit pulp into the jelly cup body carried by the carrier.

[0011] A cooling mechanism is disposed on the frame, the cooling mechanism being located downstream of the second pouring mechanism and configured to cool the jelly cup after pouring;

[0012] A sealing mechanism is provided on the frame, the sealing mechanism is located downstream of the refrigeration mechanism and is configured to seal and package the jelly cup.

[0013] In some embodiments, the first pouring mechanism includes:

[0014] A first material tank is disposed on the frame, and the first material tank is configured to store gel jelly liquid;

[0015] A first pouring valve assembly is disposed on the frame and is connected to the first material tank for controlling the pouring of gel jelly liquid into the jelly cup.

[0016] In some embodiments, the first casting valve assembly includes:

[0017] The first compression cylinder includes a first cylinder body disposed on the frame, the first cylinder body having a first receiving cavity, and a first piston rod being slidably inserted into the first receiving cavity;

[0018] A first drive cylinder is disposed on the frame, and the first drive cylinder is connected to the first piston rod to drive the first piston rod to perform retraction and extension movements;

[0019] A first control valve is fixed to the frame. The first control valve includes a first valve port, a second valve port, and a third valve port. The first receiving cavity of the first retractable squeezing cylinder is connected to the first valve port. The second valve port is configured to face the jelly cup body. The third valve port is connected to the first material tank.

[0020] In some embodiments, the second pouring mechanism includes:

[0021] A second material tank is disposed on the frame, and the second material tank is configured to store fruit juice and pulp.

[0022] The second pouring valve assembly is disposed on the frame and is connected to the second material tank for controlling the pouring of fruit juice or pulp into the jelly cup.

[0023] In some embodiments, the second casting valve assembly includes:

[0024] The second compression cylinder includes a second cylinder body disposed on the frame, the second cylinder body having a second receiving cavity, and a second piston rod being slidably inserted into the second receiving cavity;

[0025] A second drive cylinder is disposed on the frame and is connected to the second piston rod to drive the second piston rod to perform retraction and extension movements.

[0026] The second control valve is fixed to the frame and includes a fourth valve port, a fifth valve port, and a sixth valve port. The second receiving cavity of the second receiving and releasing squeezing cylinder is connected to the fourth valve port. The fifth valve port is configured to deliver fruit juice or pulp to the jelly cup. The sixth valve port is connected to the second material tank.

[0027] In some embodiments, the jelly production line further includes a lifting nozzle assembly disposed on the frame, the fifth valve port being connected to the inlet of the lifting nozzle assembly, the lifting nozzle assembly being configured to descend vertically and insert into the gel jelly liquid in the jelly cup to inject fruit juice or pulp, and the lifting nozzle assembly being further configured to rise vertically to an initial clearance position to avoid the conveyor belt.

[0028] In some embodiments, the lifting nozzle assembly includes:

[0029] A support frame is provided on the frame body;

[0030] A lifting power cylinder is fixed to the support frame;

[0031] The nozzle is located at the output end of the lifting power cylinder. The nozzle is connected to the fifth valve port. The lifting power cylinder drives the nozzle to move up and down.

[0032] In some embodiments, the refrigeration mechanism includes:

[0033] A cooling fan is fixed to the frame, and the conveyor belt moves through the air outlet of the cooling fan.

[0034] In some embodiments, the sealing mechanism includes:

[0035] A sealing film feed roller is disposed on the frame and is used to provide sealing film to cover the jelly cup.

[0036] A heat-sealing mechanism is provided on the frame and is configured to heat-press a sealing film onto the jelly cup body;

[0037] A heat-cutting mechanism is disposed on the frame, located downstream of the heat-sealing mechanism and configured to heat-cut the sealing film carried by the heat-sealed jelly cup.

[0038] In some embodiments, the jelly production line further includes:

[0039] A tension drive roller is disposed on the frame and located upstream of the heat sealing mechanism. A film channel is formed between the tension drive roller and the conveyor belt. The tension drive roller is configured to pull the sealing film through the film channel by rolling, so as to cover the sealing film over the frozen cup.

[0040] The beneficial effects of this utility model are:

[0041] This utility model discloses a jelly production line comprising a first pouring mechanism, a second pouring mechanism, and a cooling mechanism. The first pouring mechanism pours gel jelly liquid into a jelly cup held by a carrier. The second pouring mechanism, located downstream of the first pouring mechanism, is configured to pour fruit juice or fruit pulp into the jelly cup held by the carrier. The cooling mechanism, located downstream of the second pouring mechanism, is configured to cool the poured jelly cup. A sealing mechanism seals the jelly cup. Therefore, its structure is more flexible; the first pouring mechanism can inject gel jelly liquid, and the second pouring mechanism can subsequently inject fruit juice or fruit pulp, thereby producing jelly containing fruit juice or fruit pulp, suitable for producing different styles of jelly. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only one embodiment of this utility model. For those skilled in the art, other embodiments can be obtained from these drawings without creative effort.

[0043] Figure 1 A perspective view of a jelly production line provided for the implementation of this application;

[0044] Figure 2 A perspective view of a first casting mechanism in a jelly production line provided for embodiments of this application;

[0045] Figure 3 A perspective view of a second pouring mechanism in a jelly production line provided for embodiments of this application;

[0046] Figure 4 This is a partial schematic diagram of the sealing mechanism location in a jelly production line, provided for an embodiment of this application.

[0047] Figure 5 A schematic diagram illustrating the working principle of the sealing mechanism of a jelly production line provided for an embodiment of this application.

[0048] Figure label:

[0049] 100. Frame;

[0050] 200. Conveying mechanism; 210. Carrier; 211. Receiving recess;

[0051] 300, First casting mechanism; 310, First material tank; 320, First casting valve assembly; 321, First cylinder body; 322, First piston rod; 323, First drive cylinder; 324, First control valve;

[0052] 400. Second pouring mechanism; 410. Second material tank; 420. Second pouring valve assembly; 421. Second cylinder; 422. Second piston rod; 423. Second drive cylinder; 424. Second control valve; 425. Lifting nozzle assembly; 4251. Nozzle;

[0053] 500. Refrigeration mechanism;

[0054] 600 Sealing mechanism; 610 Sealing film feed roller; 620 Heat sealing mechanism; 630 Heat cutting mechanism; 640 Tensioning drive roller. Detailed Implementation

[0055] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.

[0056] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0057] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0058] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0059] In this utility model, unless otherwise explicitly specified and limited, a feature "above" or "below" the second feature may mean that the feature is in direct contact with the second feature or indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature may mean that the feature is directly above or diagonally above the second feature, or simply indicates that the feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "beneath" the second feature may mean that the feature is directly below or diagonally below the second feature, or simply indicates that the feature is at a lower horizontal level than the second feature.

[0060] It should be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. When an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0061] refer to Figure 1-4 The present application provides a jelly production line, which includes a frame 100, a conveying mechanism 200, a first pouring mechanism 300, a second pouring mechanism 400, a cooling mechanism 500, and a sealing mechanism 600. The conveying mechanism 200 is disposed on the frame 100 and includes a conveyor belt and a carrier 210 disposed on the conveyor belt. The carrier 210 has a receiving recess 211 for carrying jelly cups. The first pouring mechanism 300 is disposed on the frame 100 and configured to pour jelly into the jelly cups carried by the carrier 210. A gel jelly liquid; a second pouring mechanism 400 is disposed on the frame 100, the second pouring mechanism 400 is located downstream of the first pouring mechanism 300 and is configured to pour fruit juice or pulp into the jelly cup body carried by the carrier 210; a cooling mechanism 500 is disposed on the frame 100, the cooling mechanism 500 is located downstream of the second pouring mechanism 400 and is configured to cool the poured jelly cup body; a sealing mechanism 600 is disposed on the frame 100, the sealing mechanism 600 is located downstream of the cooling mechanism 500 and is configured to seal and package the jelly cup body.

[0062] The jelly production line in this application includes a first pouring mechanism 300, a second pouring mechanism 400, and a cooling mechanism 500. The first pouring mechanism 300 pours gel jelly liquid into a jelly cup held by a carrier 210; the second pouring mechanism 400 is located downstream of the first pouring mechanism 300 and configured to pour fruit juice or pulp into the jelly cup held by the carrier 210; the cooling mechanism 500 is located downstream of the second pouring mechanism 400 and configured to cool the poured jelly cup; and a sealing mechanism 600 seals and packages the jelly cup. Therefore, its structure is more flexible; the first pouring mechanism 300 can inject gel jelly liquid, and the second pouring mechanism 400 can subsequently inject fruit juice or pulp, thereby producing jelly containing fruit juice or pulp, suitable for producing different types of jelly.

[0063] refer to Figure 1-4 In some embodiments, the first pouring mechanism 300 includes a first material tank 310 and a first pouring valve assembly 320. The first material tank 310 is disposed on the frame 100 and is configured to store gel jelly liquid; the first pouring valve assembly 320 is disposed on the frame 100 and communicates with the first material tank 310. The first pouring valve assembly 320 is used to control the pouring of gel jelly liquid into the jelly cup, thereby realizing the pouring control of gel jelly liquid.

[0064] Specifically, in some implementation methods, refer to Figure 1-4 The first pouring valve assembly 320 includes a first retracting extrusion cylinder, a first drive cylinder 323, and a first control valve 324. The first retractable squeezing cylinder includes a first cylinder body 321 disposed on the frame 100, the first cylinder body 321 having a first receiving cavity, and a first piston rod 322 slidably inserted into the first receiving cavity; a first drive cylinder 323 disposed on the frame 100, the first drive cylinder 323 being connected to the first piston rod 322 to drive the first piston rod 322 to perform retractable movement; a first control valve 324 fixed to the frame 100, the first control valve 324 including a first valve port, a second valve port and a third valve port, the first receiving cavity of the first retractable squeezing cylinder communicating with the first valve port, the second valve port being configured to face the jelly cup body, and the third valve port communicating with the first material tank 310, thereby allowing the gel jelly liquid in the first receiving cavity to be squeezed out through the second valve port by the first piston rod 322 when the first valve port and the second valve port are communicating; when the first valve port and the third valve port are communicating, the gel jelly liquid in the first material tank 310 is drawn into the first receiving cavity by the stretching of the first piston rod 322, which is beneficial for quantitative control of pouring.

[0065] refer to Figure 1-4In some embodiments, the second pouring mechanism 400 includes a second material tank 410 and a second pouring valve assembly 420. The second material tank 410 is disposed on the frame 100 and is configured to store fruit juice or fruit pulp; the second pouring valve assembly 420 is disposed on the frame 100 and communicates with the second material tank 410, and is used to control the pouring of fruit juice or fruit pulp into the jelly cup.

[0066] Specifically, in some implementation methods, refer to Figure 1-4 The second pouring valve assembly 420 includes a second retractable extrusion cylinder, a second drive cylinder 423, and a second control valve 424. The second retractable extrusion cylinder includes a second cylinder body 421 disposed on the frame 100, the second cylinder body 421 having a second receiving cavity, and a second piston rod 422 slidably inserted into the second receiving cavity; the second drive cylinder 423 is disposed on the frame 100, the second drive cylinder 423 is connected to the second piston rod 422 to drive the second piston rod 422 to perform retractable movement; the second control valve 424 is fixed to the frame 100, the second control valve 424 includes a fourth valve port, a fifth valve port, and a sixth valve port, the second receiving cavity of the second retractable extrusion cylinder is connected to the fourth valve port, the fifth valve port is configured to deliver fruit juice or fruit pulp to the jelly cup, and the sixth valve port is connected to the second material tank 410. The specific working process will not be described in detail.

[0067] Furthermore, refer to Figure 1-4 In some embodiments, the jelly production line also includes a lifting nozzle assembly 425, which is disposed on the frame 100. The fifth valve port is connected to the inlet of the lifting nozzle assembly 425. The lifting nozzle assembly 425 is configured to descend vertically and insert into the gel jelly liquid in the jelly cup to inject fruit juice or pulp. The lifting nozzle assembly 425 is also configured to rise vertically to the initial clearance position to avoid the conveyor belt. Thus, the fruit juice or pulp can be injected into the interior of the gel jelly liquid by insertion. At the same time, it can rise to the initial clearance position to avoid the conveyor belt by lifting.

[0068] For details, please refer to Figure 1-4 In some embodiments, the lifting nozzle assembly 425 includes a support frame, a lifting power cylinder, and a nozzle 4251. The support frame is mounted on the frame 100; the lifting power cylinder is fixed to the support frame; the nozzle 4251 is located at the output end of the lifting power cylinder, and the nozzle 4251 is connected to the fifth valve port. The lifting power cylinder drives the nozzle 4251 to move up and down. The support frame and lifting power cylinder will not be described in detail; existing ones can be used.

[0069] In some implementations, reference Figure 1-4The cooling mechanism 500 includes a cooling fan. The cooling fan is fixed to the frame 100, and the conveyor belt travels through the air outlet of the cooling fan. Air cooling is used to rapidly solidify the gel jelly liquid.

[0070] refer to Figure 1-5 In some embodiments, the sealing mechanism 600 includes a sealing film feed roller 610, a heat sealing mechanism 620, and a heat cutting mechanism 630. The sealing film feed roller 610 is disposed on the frame 100 and is used to provide a sealing film covering the jelly cup. The heat sealing mechanism 620 is disposed on the frame 100 and is configured to heat-press the sealing film onto the jelly cup. The heat cutting mechanism 630 is disposed on the frame 100, downstream of the heat sealing mechanism 620, and is configured to heat-cut the sealing film carried by the heat-sealed jelly cup.

[0071] For details, please refer to Figure 1-5 In some embodiments, the jelly production line also includes a tension drive roller 640. The tension drive roller 640 is disposed on the frame 100 and located upstream of the heat sealing mechanism 620. A film channel is formed between the tension drive roller 640 and the conveyor belt. The tension drive roller 640 is configured to pull the sealing film through the film channel by rolling to cover the frozen cup body with the sealing film.

[0072] In actual production, this device can be used to produce runny egg-flavored jelly, specifically including the following steps:

[0073] (1) Ingredients: Weigh the materials of the two components, gel jelly and fruit juice / pulp, according to the proportions, and mix them evenly.

[0074] (2) Cooking: Heat the two mixed components to boiling and maintain for 10-20 minutes to obtain cooked gel jelly liquid and fruit juice pulp liquid;

[0075] (3) Filling: The cooked gel jelly liquid and fruit juice pulp liquid are sequentially filled into the jelly container, so that the gel jelly liquid covers the fruit juice pulp liquid, and the jelly is filled;

[0076] (4) Sterilization: The canned jelly is sterilized by pasteurization. The sterilization temperature is controlled at 80-85℃ and the sterilization time is 10-15 minutes.

[0077] (5) Cooling: After sterilization, use refrigeration equipment to quickly cool the jelly to room temperature. During the cooling process, the jelly will gradually solidify and form, eventually resulting in a runny egg-flavored jelly.

[0078] Finally, it should be noted that the technical features of the above embodiments can be combined arbitrarily. For the sake of brevity, not all possible combinations of the technical features in the above embodiments have been described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0079] The above embodiments illustrate only one implementation of the present utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present utility model, and these all fall within the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be determined by the appended claims.

Claims

1. A jelly production line, characterized by, The jelly production device comprises: a frame body (100); a conveying mechanism (200) arranged on the frame body (100), the conveying mechanism (200) comprising a conveying belt and a carrier (210) arranged on the conveying belt, the carrier (210) being provided with a containing recess (211) for carrying a jelly cup body; a first pouring mechanism (300) arranged on the frame body (100) and configured to pour a gel jelly liquid into the jelly cup body carried by the carrier (210); a second pouring mechanism (400) arranged on the frame body (100), the second pouring mechanism (400) being located downstream of the first pouring mechanism (300) and being configured to pour a juice pulp into the jelly cup body carried by the carrier (210); a refrigeration mechanism (500) arranged on the frame body (100), the refrigeration mechanism (500) being located downstream of the second pouring mechanism (400) and being configured to refrigerate the jelly cup body after pouring is completed; a sealing mechanism (600) arranged on the frame body (100), the sealing mechanism (600) being located downstream of the refrigeration mechanism (500) and being configured to seal and package the jelly cup body.

2. The jelly production line according to claim 1, characterized by The first pouring mechanism (300) comprises: a first material tank (310) arranged on the frame body (100), the first material tank (310) being configured to store the gel jelly liquid; a first pouring valve assembly (320) arranged on the frame body (100), the first pouring valve assembly (320) being in communication with the first material tank (310) and being used to control pouring of the gel jelly liquid into the jelly cup body.

3. The jelly production line according to claim 2, characterized by The first pouring valve assembly (320) comprises: a first retractable extrusion cylinder, comprising a first cylinder body (321) arranged on the frame body (100), the first cylinder body (321) having a first containing cavity, and a first piston rod (322) being slidingly inserted into the first containing cavity; a first driving cylinder (323) arranged on the frame body (100), the first driving cylinder (323) being connected with the first piston rod (322) to drive the first piston rod (322) to perform retracting and extending movements; a first control valve (324) fixed on the frame body (100), the first control valve (324) comprising a first valve port, a second valve port and a third valve port, the first containing cavity of the first retractable extrusion cylinder being in communication with the first valve port, the second valve port being configured to face the jelly cup body, and the third valve port being in communication with the first material tank (310).

4. The jelly production line according to claim 1, characterized by The second pouring mechanism (400) comprises: a second material tank (410) arranged on the frame body (100), the second material tank (410) being configured to store the juice pulp; a second pouring valve assembly (420) arranged on the frame body (100), the second pouring valve assembly (420) being in communication with the second material tank (410) and being used to control pouring of the juice pulp into the jelly cup body.

5. The jelly production line according to claim 4, characterized in that, The second pouring valve assembly (420) comprises: The second retractable extrusion cylinder comprises a second cylinder body (421) arranged on the frame body (100), and the second cylinder body (421) has a second accommodating cavity in which a second piston rod (422) is slidingly inserted; The second driving cylinder (423) is arranged on the frame body (100) and connected with the second piston rod (422) to drive the second piston rod (422) to perform retractable movement; The second control valve (424) is fixed on the frame body (100) and comprises a fourth valve port, a fifth valve port and a sixth valve port. The second accommodating cavity of the second retractable extrusion cylinder is in communication with the fourth valve port. The fifth valve port is configured to deliver juice pulp to the jelly cup body. The sixth valve port is in communication with the second material tank (410).

6. The jelly production line according to claim 5, characterized by Further comprising a lifting nozzle assembly (425) arranged on the frame body (100). The fifth valve port is in communication with the inlet of the lifting nozzle assembly (425). The lifting nozzle assembly (425) is configured to descend along the vertical direction and insert into the gel jelly liquid in the jelly cup body to inject juice pulp. The lifting nozzle assembly (425) is also configured to ascend to an initial avoiding position along the vertical direction to avoid the conveying belt.

7. The jelly production line according to claim 6, characterized in that, The lifting nozzle assembly (425) comprises: A support frame arranged on the frame body (100); A lifting power cylinder fixed on the support frame; A nozzle (4251) arranged on the output end of the lifting power cylinder. The nozzle (4251) is in communication with the fifth valve port. The lifting power cylinder drives the nozzle (4251) to perform lifting movement.

8. The jelly production line according to claim 1, characterized by The refrigeration mechanism (500) comprises: A cooling fan fixed on the frame body (100). The movement path of the conveying belt passes through the air outlet of the cooling fan.

9. The jelly production line according to claim 1, characterized by The sealing mechanism (600) comprises: A sealing film feeding roller (610) arranged on the frame body (100) and used to provide sealing film covering the jelly cup body; A heat sealing mechanism (620) arranged on the frame body (100) and configured to heat press the sealing film on the jelly cup body; A heat cutting mechanism (630) arranged on the frame body (100) and located downstream of the heat sealing mechanism (620) and configured to perform heat cutting treatment on the sealing film carried by the jelly cup body after heat sealing.

10. The jelly production line according to claim 9, characterized in that, Further comprising: A tensioning driving roller (640) arranged on the frame body (100) and located upstream of the heat sealing mechanism (620). A film channel is formed between the tensioning driving roller (640) and the conveying belt. The tensioning driving roller (640) is configured to pull the sealing film through the film channel by rolling to cover the sealing film above the jelly cup body.