Continuous conveying device for soft strip products

By combining the frame and circulating conveyor components with stoppers, the power structure is simplified, solving the problems of complexity and product damage in traditional soft strip product conveying devices, and achieving efficient and stable continuous conveying.

CN223950199UActive Publication Date: 2026-02-27BAODING JIADE MASCH TECH CO LTD
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Patent Information

Application Number
CN202520721216.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-02-27
Estimated Expiration
2035-04-16

AI Technical Summary

Technical Problem

In traditional flexible strip product conveying devices, the automatic opening and closing structure at the bottom of the material frame is complex, increasing maintenance costs, and the flexible strip products are easily damaged when released at the designated position.

Method used

It adopts a combination structure of frame, circulating conveyor and stop. The stop pushes the bottom of the material frame to swing, and opens the discharge port for unloading when needed, which simplifies the power structure and protects the product.

Benefits of technology

It reduces equipment and maintenance costs, avoids damage to flexible strip products during unloading, and achieves efficient and stable continuous conveying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of conveying devices, and provides a continuous conveying device for soft strip products, which comprises a rack provided with a blocking part and a discharge port, and the blocking part is positioned above the discharge port; the circulating conveying piece is circularly arranged on the rack; the material frame is arranged on the circulating conveying part in a swinging mode, the material frame is configured to swing after being subjected to external force, the soft strip products are poured into the discharging opening, and the circulating conveying part is configured to be capable of driving the material frame to pass through the blocking part so that the blocking part can push the bottom of the material frame; the blocking piece is movably or rotatably arranged at the discharging opening and used for blocking the discharging opening, and the blocking piece is configured to open the discharging opening after moving or rotating. By means of the technical scheme, the technical problems that in the prior art, a conveying device releases soft strip products in a specified position through an automatic opening and closing structure at the bottom of a material frame, so that the structure is complicated, and even the soft strip products are broken are solved.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present disclosure relate to the technical field of conveying devices, and in particular, to a soft strip product continuous conveying device. BACKGROUND

[0002] In many industrial production fields, such as the production of noodles and vermicelli in the food processing industry, and the production of rubber strips in the rubber product industry, efficient and stable conveying of soft strip products is required. These soft strip products usually have characteristics such as softness, easy deformation, and easy adhesion, which pose certain challenges to the conveying process.

[0003] Traditional soft strip product conveying is usually carried out by manual handling or simple belt conveying, which is difficult to meet the needs of large-scale production. With the development of industrial automation, devices that use chains to drive material frames for long-distance conveying have appeared to meet the above needs. However, enterprises are increasingly demanding the automation of soft strip product conveying devices. For example, it is required to release the soft strip products in the material frame at a specified position during the conveying process. However, to achieve the above action, the current conveying device usually upgrades the bottom of the material frame to an automatic opening and closing structure.

[0004] The above structure has the following disadvantages: the power structure of the automatic opening and closing structure is relatively complex, and each material frame needs to be arranged, greatly increasing the maintenance cost. In addition, when releasing the soft strip products at a specified position, if they are released directly, they may be damaged. CONTENT OF THE INVENTION

[0005] To overcome the above-mentioned defects, embodiments of the present disclosure provide a soft strip product continuous conveying device, which solves the technical problem that the conveying device in the related art uses a material frame bottom automatic opening and closing structure to release the soft strip products therein at a specified position, resulting in complex structure and even damage to the soft strip products.

[0006] According to one aspect, at least one embodiment of the present disclosure provides a soft strip product continuous conveying device, comprising:

[0007] a rack, the rack having a blocking portion and a discharge port, the blocking portion being located above the discharge port;

[0008] a circulating conveying member, the circulating conveying member being cyclically arranged on the rack;

[0009] a material frame, the material frame being swingably arranged on the circulating conveying member, the material frame being configured to swing after being subjected to an external force to pour the soft strip products into the discharge port, the circulating conveying member being configured to drive the material frame to pass through the blocking portion so that the blocking portion pushes the bottom of the material frame;

[0010] A blocking piece is movably or rotatably arranged at the discharge port to block the discharge port, and is configured to open the discharge port after being moved or rotated.

[0011] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0012] The blocking part is in the shape of a rod, the length of the blocking part is greater than the length of the material frame, and the height of the blocking part is lower than the height of the material frame rotating shaft.

[0013] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0014] The circulating conveying member is a horizontal chain, the rack further has a guide block, the guide block has a guide surface, is located at the front side of the circulating direction of the circulating conveying member, and is located above the discharge port, and the circulating conveying member is configured to drive the material frame to pass through the blocking part and the guide block in sequence, so that the blocking part first pushes the bottom of the material frame, and the guide surface abuts against the top of the material frame to guide the opening of the material frame to face the discharge port.

[0015] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0016] The guide surface is in the shape of an arc.

[0017] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0018] The blocking piece is movably arranged at the discharge port.

[0019] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0020] The blocking piece is movably arranged at the discharge port by a torsion spring, the blocking piece has a material blocking part and a force receiving part, and the torsion spring elastically pushes the blocking piece to drive the material blocking part to open the discharge port by swinging the blocking piece;

[0021] The rack is connected with a force applying wheel on one side of the blocking piece, the force applying wheel has an avoiding groove for pushing the force receiving part to block the swinging of the blocking piece, and the force applying wheel is configured to drive the material blocking part to enter the avoiding groove to swing the blocking piece after being rotated.

[0022] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0023] The blocking piece is in the shape of L, and the material blocking part is perpendicular to the force receiving part.

[0024] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0025] The material frame is U-shaped, and a material blocking plate is slidably connected to each end of the material frame along the length direction of the material frame, and the circulating conveying member has a support shaft connected with the material blocking plate.

[0026] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0027] The material blocking plate has a connecting port above the center line thereof, and the support shaft is connected to the connecting port.

[0028] For example, the soft strip product continuous conveying device provided by at least one embodiment of the present disclosure further comprises:

[0029] The material frame is detachably provided with a plurality of partition plates arranged at intervals along the length direction of the material frame, and the plurality of partition plates are located between the two material blocking plates, and the partition plates are used to divide the material frame into a plurality of material storage areas.

[0030] The embodiments of the present disclosure have the following beneficial effects:

[0031] 1. Simplified power structure: compared with the complex power structure of the traditional upgrade material frame with automatic opening and closing at the bottom, the device only drives the material frame by the circulating conveying member, and uses the blocking part to push the bottom of the material frame to make it swing and unload, so that the power structure is greatly simplified. Each material frame does not need a complex automatic opening and closing power device, thereby reducing the equipment cost and maintenance cost.

[0032] 2. Protection of soft strip products: a movable or rotating blocking part is arranged at the discharge port, and the discharge port is opened only when unloading is needed. In this way, the situation of falling and damaging the soft strip products caused by direct release of the soft strip products can be avoided, the easily damaged soft strip products are effectively protected, the product quality is improved, and continuous conveying can be realized. In combination with the swingably arranged material frame, the demand for efficient and stable conveying of soft strip products in large-scale production can be met, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed in the description of the embodiments of the present disclosure will be briefly introduced. Obviously, the drawings in the following description are only some example embodiments of the present disclosure. Those skilled in the art can obtain other drawings according to the content of the example embodiments of the present disclosure and the drawings without creating any creative labor.

[0034] Figure 1 FIG. 1 is a structural schematic diagram of a soft strip product continuous conveying device according to an embodiment of the present disclosure;

[0035] Figure 2 for Figure 1 The diagram shows the blocking state of the baffle in the embodiment;

[0036] Figure 3 for Figure 1 The diagram shows the material feeding state of the stop in the embodiment;

[0037] Figure 4 for Figure 2 Enlarged view of section A in the middle;

[0038] Figure 5 for Figure 3 Enlarged view of section B in the middle;

[0039] Figure 6 for Figure 1 A schematic diagram of the force-applying wheel in the embodiment;

[0040] Figure 7 for Figure 1 The schematic diagram of the baffle plate and the partition plate in the embodiment is shown.

[0041] In the diagram: 1. Frame, 101. Stop, 102. Discharge port, 103. Guide block, 104. Guide surface, 2. Circulating conveyor, 201. Support shaft, 3. Material frame, 4. Stop, 401. Stop part, 402. Force-bearing part, 5. Force-applying wheel, 501. Clearance groove, 6. Stop plate, 601. Connection port, 7. Divider plate. Detailed Implementation

[0042] The present disclosure will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present disclosure and are not intended to limit the scope of the disclosure.

[0043] To keep the drawings concise, each drawing only schematically shows the parts relevant to the disclosure; these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some drawings, only one of components with the same structure or function is schematically shown, or only one is labeled. In this document, "one" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."

[0044] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linkage" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this disclosure based on the specific circumstances.

[0045] In this disclosure, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0046] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of description and simplification of operation, 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. Therefore, they should not be construed as limitations on this disclosure.

[0047] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0048] like Figures 1-6 The diagram illustrates a continuous conveying device for soft strip products according to an embodiment of the present disclosure, comprising: a frame 1 having a baffle 101 and a discharge port 102, the baffle 101 being located above the discharge port 102; a circulating conveyor 2 being circulatedly disposed on the frame 1; a material frame 3 being oscillatingly disposed on the circulating conveyor 2, the material frame 3 being configured to oscillate after being subjected to an external force, pouring the soft strip products into the discharge port 102, the circulating conveyor 2 being configured to drive the material frame 3 past the baffle 101, so that the baffle 101 pushes the bottom of the material frame 3; and a baffle 4 being movable or rotatably disposed at the discharge port 102 for blocking the discharge port 102, the baffle 4 being configured to open the discharge port 102 after being moved or rotated.

[0049] Working process: the circulating conveying member 2 circulates on the rack 1, and drives the material frame 3 arranged thereon to move. The material frame 3 is conveyed to various positions along with the movement of the circulating conveying member 2, realizing long-distance conveying of the soft strip product. When the material frame 3 moves to the position of the blocking part 101 along with the circulating conveying member 2, the circulating conveying member 2 drives the material frame 3 to continue moving forward, and the blocking part 101 starts to push the bottom of the material frame 3. Since the material frame 3 is swingingly arranged on the circulating conveying member 2, after being pushed by the blocking part 101, the material frame 3 starts to swing, and the soft strip product in the material frame 3 gradually inclines to the direction of the discharging port 102. When the opening of the material frame 3 faces the discharging port 102, the soft strip product falls onto the blocking piece 4 of the discharging port 102 under the action of gravity. Then, the blocking piece 4 is driven to move or rotate, and the discharging port 102 is opened, thereby realizing stable discharging, and finally returning to wait for the next discharging.

[0050] Compared with the traditional discharging mode in which each material frame 3 needs to be equipped with a complex automatic opening and closing power structure, the device only relies on the cooperation of the simple blocking part 101 and the circulating conveying member 2 to realize discharging, and the power structure is greatly simplified, thereby reducing the equipment procurement cost and the later maintenance cost. Moreover, through the arrangement of the blocking piece 4, the discharging port 102 can be opened at the appropriate time, thereby avoiding the damage of the product caused by direct falling and reducing the rate of defective products.

[0051] Specifically, the rack 1 is a supporting structure of the whole device, and is made of a solid metal material such as steel. The blocking part 101 can be a metal rod fixed on the rack 1, and is usually located in the bottom interval of the region passed by the material frame 3, so as to ensure that the bottom of the material frame 3 can be accurately pushed. The discharging port 102 is usually arranged below the blocking part 101, and the cross-sectional shape thereof is usually trapezoidal, so as to facilitate the collection of the soft strip product after discharging. The blocking piece 4 can be driven by a driving device such as an electric push rod or an air cylinder to move, or can be driven by a transmission mechanism such as a motor-driven gear to rotate, and the material thereof should have certain wear resistance and sealing performance, such as rubber or metal material. The size and shape of the blocking piece 4 are designed according to the size of the discharging port 102, so as to ensure that the discharging port 102 can be effectively blocked and opened.

[0052] As shown in Figures 1-6 In some examples, the blocking part 101 is rod-shaped, the length of the blocking part 101 is greater than the length of the material frame 3, and the height of the blocking part 101 is lower than the height of the rotating shaft of the material frame 3.

[0053] The blocking part 101 is rod-shaped and the length thereof is greater than the length of the material frame 3, so that when the bottom of the material frame 3 is pushed, more uniform force can be applied to the bottom of the material frame 3, thereby avoiding that the material frame 3 is stuck or cannot swing to a suitable angle during the swinging process due to uneven force. Similarly, the height of the blocking part 101 is lower than the height of the rotating shaft of the material frame 3, and such design ensures that the blocking part 101 effectively pushes the bottom of the material frame 3, so that the material frame 3 completes the swinging.

[0054] As shown in Figures 1-6As shown, in some examples, the circulating conveyor 2 is a horizontal chain, and the frame 1 also has a guide block 103 with a guide surface 104, located in front of the circulating conveyor 2 in the circulation direction and above the discharge port 102. The circulating conveyor 2 is configured to drive the material frame 3 through the stop 101 and the guide block 103 in sequence, so that the stop 101 pushes the bottom of the material frame 3 first, and the guide surface 104 then abuts the top of the material frame 3 to guide the opening of the material frame 3 toward the discharge port 102.

[0055] The guide surface 104 is arc-shaped.

[0056] The guide block 103 and its guide surface 104, after the stop 101 pushes the bottom of the material frame 3 to start swinging, further ensure that the opening of the material frame 3 is accurately facing the discharge port 102. By abutting the top of the material frame 3 with the guide surface 104, the swing direction of the material frame 3 can be further stabilized and controlled, preventing the material frame 3 from deviating from the optimal unloading angle due to inertia or other factors due to the pushing action of the stop 101 in the form of a stop bar alone.

[0057] During the unloading process, after the stop 4 pushes the material frame 3 to swing, the guide surface 104 provides stable support and guiding force to the top of the material frame 3, controlling the opening of the material frame 3 to gradually and stably face the discharge port 102, so that the soft strip products inside fall stably onto the stop 4.

[0058] Specifically, the guide block 103 is located in front of the circulating conveyor 2 in the circulation direction and above the discharge port 102. This arrangement allows for timely intervention to guide the material frame 3 after the baffle 101 pushes the bottom of the material frame 3 to start swinging, ensuring that the opening of the material frame 3 is accurately adjusted to face the discharge port 102 at a critical position near the discharge port 102, so as to achieve smooth unloading.

[0059] In addition, the guide surface 104 of the guide block 103 is usually a smooth curved surface or a slope, which can also increase the duration for which the opening of the control frame 3 faces the discharge port 102, and prevent the frame 3 from swinging back quickly, resulting in the soft strip product not being completely discharged.

[0060] like Figures 1-6 As shown, in some examples, the stop 4 is horizontally oscillating at the discharge port 102.

[0061] The baffle 4 is set to swing horizontally, which can quickly and stably block or open the discharge port 102. When unloading is required, the baffle 4 swings horizontally to open the discharge port 102, so that the soft strip products in the material frame 3 can be smoothly poured into the discharge port 102. The movement trajectory is relatively stable and will not cause a large impact or interference to the soft strip products around the discharge port 102, thus avoiding damage or crushing of the soft strip products due to the baffle 4.

[0062] In addition, the horizontal swing of the blocking piece 4 can be achieved by a rotary air cylinder or a motor combined with a crank linkage mechanism. The rotary air cylinder can directly provide rotary power, and through the connection of the piston rod and the blocking piece 4, the horizontal swing of the blocking piece 4 around the fixed shaft is controlled. A fixed shaft is arranged on one side of the discharge port 102, and the blocking piece 4 is sleeved on the fixed shaft through a shaft sleeve, so that the blocking piece 4 can swing horizontally around the fixed shaft flexibly.

[0063] As shown in Figures 1-6 some examples, the blocking piece 4 is arranged at the discharge port 102 by a torsional spring swing. The blocking piece 4 has a blocking part 401 and a force receiving part 402. The torsional spring elastically pushes the blocking piece 4 to make the blocking piece 4 swing to drive the blocking part 401 to open the discharge port 102. A force applying wheel 5 is connected to the rack 1 and located on one side of the blocking piece 4. The force applying wheel 5 has an avoiding groove 501 for pushing the force receiving part 402 to prevent the blocking piece 4 from swinging. When the force applying wheel 5 is configured to rotate, the blocking part 401 enters the avoiding groove 501 to make the blocking piece 4 swing.

[0064] The blocking piece 4 is L-shaped, and the blocking part 401 is perpendicular to the force receiving part 402.

[0065] First, the torsional spring elastically pushes the blocking piece 4, so that the blocking part 401 of the blocking piece 4 blocks the discharge port 102 to stably support the soft strip product falling down. At this time, the avoiding groove 501 of the force applying wheel 5 is not opposite to the force receiving part 402 of the blocking piece 4, the outer periphery of the force applying wheel 5 pushes the force receiving part 402 to prevent the blocking piece 4 from swinging under the action of the torsional spring. When discharging, the force applying wheel 5 starts to rotate until the force receiving part 402 enters the avoiding groove 501, and the outer periphery does not provide a pushing action. At this time, under the action of the torsional spring, the blocking part 401 swings to open the discharge port 102, and the discharging is completed. After that, the force applying wheel 5 continues to rotate, and the outer periphery of the force applying wheel 5 pushes the force receiving part 402 of the blocking piece 4 again to prevent the blocking piece 4 from continuing to swing under the action of the torsional spring, and to gradually reset the blocking piece 4. The blocking part 401 reblocks the discharge port 102, waiting for the next discharging instruction.

[0066] The structure has the following advantages: the automatic opening and closing control of the blocking piece 4 is realized by the cooperation of the torsional spring and the force applying wheel 5, and is accurately matched with the running speed of the circulating conveying piece 2 and the position of the material frame 3. By controlling the rotation angle and time of the force applying wheel 5, the blocking piece 4 can be accurately opened when the material frame 3 reaches directly above the discharge port 102, precise discharging is realized, and material waste or poor conveying caused by early or delayed discharging is avoided.

[0067] Specifically, the blocking piece 4 can be L-shaped, and the blocking part 401 is perpendicular to the force receiving part 402, so that the force applying wheel 5 can act on the force receiving part 402. The avoiding groove 501 on the force applying wheel 5 is fan-shaped, so that after the blocking piece 4 swings, the force receiving part 402 can stably extend into the avoiding groove 501 to complete the swing.

[0068] AsFigure 7 As shown, in some examples, the material frame 3 is U-shaped, and baffle plates 6 are slidably connected to both ends of the material frame 3 along the length direction of the material frame 3. The circulating conveyor 2 has a support shaft 201, which is connected to the baffle plate 6.

[0069] The baffle plate 6 has a connection port 601 above its center line, and the support shaft 201 is connected to the connection port 601.

[0070] The material frame 3 is designed in a U-shape, which can increase the volume of the material frame 3. At the same time, the baffle plate 6 slides along the length of the material frame 3 and is connected to the support shaft 201 on the circulating conveyor 2 through the connection port 601. This allows the baffle plate 6 to slide and disconnect from the support shaft 201, thus completing the removal of the material frame 3. The connection port 601 is located above the center line, so that the material frame 3 can remain in a horizontal state regardless of the direction of circulation of the circulating conveyor 2, preventing the material from falling off due to the back-and-forth swinging of the circulating conveyor 2.

[0071] like Figure 7 As shown, in some examples, the material frame 3 is detachably provided with a number of partition plates 7 arranged at intervals along the length of the material frame 3. The partition plates 7 are all located between two baffle plates 6. The partition plates 7 are used to divide the material frame 3 into a number of storage areas.

[0072] The divider 7 divides the material frame 3 into several storage areas, allowing soft strip products to be stored in separate areas. For soft strip products that are prone to sticking, separate storage can reduce the contact area between different batches or parts of the product, thereby reducing the risk of sticking, especially in the food industry.

[0073] Specifically, the partition plate 7 can be connected to the material frame 3 via a bolt and nut assembly. Threaded holes are pre-drilled on both sides of the material frame 3 corresponding to the installation positions of the partition plate 7. Through holes matching the threaded holes of the material frame 3 are also drilled on the partition plate 7. During installation, the partition plate 7 is placed in the designated position, and bolts are screwed through the through holes of the partition plate 7 into the threaded holes of the material frame 3 to tighten them, thus fixing the partition plate 7 to the material frame 3. This method allows for flexible adjustment of the number and position of the partition plates 7 according to actual production needs. At the same time, when adjusting the position of the baffle plate 6 to accommodate different product lengths, the position of the partition plate 7 can also be adjusted accordingly.

[0074] It should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure and are not intended to limit it. Although this disclosure has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this disclosure without departing from the spirit and scope of the technical solutions of this disclosure, and all such modifications and substitutions should be covered within the scope of the claims of this disclosure.

Claims

1. A soft stick product continuous conveying apparatus characterized by comprising: The application relates to a soft strip product discharging device. The device comprises a rack (1) with a blocking part (101) and a discharging port (102), the blocking part (101) is located above the discharging port (102); a circulating conveying part (2) is arranged on the rack (1) in a circulating mode; a material frame (3) is swingingly arranged on the circulating conveying part (2), the material frame (3) is configured to swing under the action of an external force and pour the soft strip product into the discharging port (102), the circulating conveying part (2) is configured to drive the material frame (3) to pass through the blocking part (101) so that the blocking part (101) pushes the bottom of the material frame (3); a blocking part (4) is movably or swingingly arranged at the discharging port (102) and used for blocking the discharging port (102), the blocking part (4) is configured to open the discharging port (102) after being moved or swung. The blocking part (101) is in the shape of a rod, the length of the blocking part (101) is greater than the length of the material frame (3), and the height of the blocking part (101) is lower than the height of the rotating shaft of the material frame (3). The circulating conveying part (2) is a horizontal chain, the rack (1) further comprises a guide block (103) with a guide surface (104), the guide block (103) is located on the front side of the circulating direction of the circulating conveying part (2) and above the discharging port (102), the circulating conveying part (2) is configured to drive the material frame (3) to pass through the blocking part (101) and the guide block (103) in sequence, so that the blocking part (101) pushes the bottom of the material frame (3) first, and the guide surface (104) abuts against the top of the material frame (3) to guide the material frame (3) to open towards the discharging port (102). The guide surface (104) is in the shape of an arc.

2. A soft strip product continuous conveyor as claimed in claim 1, wherein, The blocking part (4) is swingingly arranged at the discharging port (102).

3. A continuous conveyor for soft stick products as claimed in claim 1, wherein, The blocking part (4) is swingingly arranged at the discharging port (102) by a torsional spring, the blocking part (4) has a material blocking part (401) and a force receiving part (402), the torsional spring elastically pushes the blocking part (4) to make the blocking part (4) swing and drive the material blocking part (401) to open the discharging port (102); 4. A soft bar product continuous conveyor as claimed in claim 3, wherein, The rack (1) is connected with a force applying wheel (5) located on one side of the blocking part (4), the force applying wheel (5) has an avoiding groove (501) used for pushing the force receiving part (402) to block the swing of the blocking part (4), the force applying wheel (5) is configured to rotate, the material blocking part (401) enters the avoiding groove (501) to make the blocking part (4) swing.

5. A soft strip product continuous conveyor as defined in claim 1, wherein, The blocking part (4) is in the shape of L, the material blocking part (401) is perpendicular to the force receiving part (402).

6. A soft bar product continuous conveyor as claimed in claim 5, wherein, The material frame (3) is in the shape of U, the material frame (3) is slidably connected with a material blocking plate (6) at both ends along the length direction of the material frame (3), the circulating conveying part (2) has a supporting shaft (201), and the supporting shaft (201) is connected with the material blocking plate (6). ​ 7. A soft bar product continuous conveyor as claimed in claim 6, wherein, ​ 8. A soft strip product continuous conveyor as defined in claim 1, wherein, ​ 9. A soft bar product continuous conveyor as claimed in claim 8, wherein, The baffle plate (6) has a connecting port (601) above the center line, and the supporting shaft (201) is connected to the connecting port (601).

10. A soft bar product continuous conveyor as defined in claim 8, wherein, A plurality of partition plates (7) are arranged on the material frame (3) in a length direction of the material frame (3) and are detachably arranged on the material frame (3), the plurality of partition plates (7) are located between two baffle plates (6), and the partition plates (7) are used for partitioning the material frame (3) into a plurality of storage areas.