A raw material mixing device for bird's nest processing

By designing a raw material mixing equipment for bird's nest processing, and utilizing the synergistic work of a premixing cavity, stirring mechanism, and dispersing components, the problem of traditional equipment being unable to disperse bird's nest strips has been solved, thereby improving the quality of bird's nest products and production efficiency.

CN120900464BActive Publication Date: 2026-02-03NANTONG AKETE FOOD CO LTD
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Patent Information

Application Number
CN202511439453.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2026-02-03
Estimated Expiration
2045-10-10

AI Technical Summary

Technical Problem

Traditional mixing equipment cannot effectively disperse bird's nest strips, affecting the product appearance and the accuracy of light inspection results.

Method used

A raw material mixing device for bird's nest processing was designed, comprising a premixing cavity, a stirring mechanism, an adjusting mechanism, and a dispersing component. Through the coordinated work of the adjusting component and the dispersing component, uniform stirring and effective dispersion of the bird's nest solid-liquid mixture are achieved.

Benefits of technology

It improved the quality and production efficiency of bird's nest products, reduced the amount of bird's nest that formed clusters, simplified operation and maintenance, and improved the stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of bird's nest processing raw material mixing equipment, including premixing cavity and the stirring mechanism of premixing cavity, adjusting mechanism, dispersion component has a collection cylinder for containing bird's nest strip and setting on the carding component of collection cylinder, carding component is used to disperse bird's nest, when the first station and the second station between dispersion component activity, collection cylinder can be deflected relative to adjusting plate occurs.The bird's nest processing raw material mixing equipment provided by the application can not only collect the bird's nest solid in the solid-liquid mixture of carding bird's nest, but also can make the bird's nest that is formed into group be scattered, so that it can form the bird's nest strip that can pass through carding component.Moreover, it can also avoid the inherent streamline of bird's nest solid-liquid mixture, further carding bird's nest by dispersion component, reduce the formation amount of bird's nest that is formed into group in bird's nest solid-liquid mixture.
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Description

Technical Field

[0001] This invention relates to the field of food processing equipment technology, and in particular to a raw material mixing device for processing bird's nest. Background Technology

[0002] As a precious food ingredient, the demand for bird's nest is increasing year by year with the improvement of people's living standards. The bird's nest processing industry mainly includes the harvesting, processing, and packaging of bird's nests. Among these, the processing stage is crucial to the quality of the final product. In the bird's nest processing, light inspection is a very important step, as it relates to the quality of the final product. The performance of the mixing equipment also greatly affects the quality of the product. During the mixing process, the bird's nest strands often clump together, and traditional mixing equipment cannot effectively disperse them. This not only affects the appearance of the product but may also affect the accuracy of the light inspection results.

[0003] The information disclosed in the background section of this invention is intended only to enhance the understanding of the general background of this invention, and should not be construed as an admission or in any way implying that such information constitutes prior art known to those skilled in the art. Summary of the Invention

[0004] Therefore, it is necessary to provide a raw material mixing device for bird's nest processing to address the problem that current traditional mixing equipment cannot effectively disperse bird's nest strips.

[0005] The above objectives are achieved through the following technical solutions:

[0006] A raw material mixing device for processing bird's nest includes a premixing cavity for holding a solid-liquid mixture of bird's nest, and a stirring mechanism and an adjusting mechanism disposed in the premixing cavity;

[0007] The premixed cavity is also provided with a second annular frame, which has several grooves.

[0008] The stirring mechanism is able to stir the bird's nest solid-liquid mixture in the premixed cavity under the drive of a driving mechanism;

[0009] The adjustment mechanism includes an adjustment plate, a rotating mechanism, an adjustment component, and a dispersing component. The adjustment plate is connected to the drive mechanism and has an adjustment structure. The rotating mechanism is connected to the drive mechanism and is also elastically connected to the adjustment component. The adjustment component can abut against the second ring frame under elastic action. The adjustment component includes at least one protrusion, which is movably disposed in the adjustment structure. The dispersing component has a collection tube for holding bird's nest strips and a combing component disposed on the collection tube for dispersing bird's nest. The adjustment component is connected to the dispersing component and can drive the dispersing component to move between the first station and the second station.

[0010] When the adjusting component abuts against the second annular frame, the dispersing component is in the first position. When the adjusting component abuts against the groove under elastic action, the dispersing component is in the second position. When the dispersing component moves between the first and second positions, the collecting cylinder can deflect relative to the adjusting plate.

[0011] Furthermore, the rotating mechanism includes a rotating frame that is connected to the drive mechanism for transmission, and several connecting rods disposed on the rotating frame, each connecting rod being elastically connected to an adjusting component.

[0012] Furthermore, the adjustment assembly includes a movable frame and a rack frame. A protrusion is disposed on the movable frame, and the rack frame is constrained to abut against the premixed cavity. The rack frame is movably connected to the movable frame, and a first elastic element is disposed between the rack frame and the movable frame. The first elastic element is connected to or in contact with the rack frame and can drive the rack frame to move in a specified direction, which is connected to the combing assembly. When the rack frame moves, the combing assembly can rotate around its own circumference.

[0013] Furthermore, a raw material mixing device for bird's nest processing also includes a mixing shell and a first annular frame. The mixing shell has a premixing cavity, the first annular frame is connected to the mixing shell, and at least a portion of the rack frame abuts against the first annular frame. When the movable frame moves, the rack frame is constrained to move along the annular track of the first annular frame.

[0014] Furthermore, the adjustment structure has straight and inclined slots that are interconnected and set at an angle.

[0015] Furthermore, the stirring mechanism includes at least one set of stirring blades, the set of stirring blades including multiple blades arranged in a spiral shape, the multiple blades having at least one edge extending radially.

[0016] Furthermore, the combing component can be movably disposed at one end of the collection tube or in the middle of the collection tube.

[0017] Furthermore, the combing component includes a rotating ring that is movably connected to the collecting cylinder. The rotating ring is drivenly connected to the rack frame. Mounting blocks are also spaced apart on the rotating ring, and a channel for the bird's nest strips to pass through is formed between any two mounting blocks.

[0018] Furthermore, the combing assembly also includes a hinge plate, which is hinged to the mounting block, and its length direction is parallel to the length direction of the channel through which the bird's nest strips can pass.

[0019] Furthermore, the combing assembly also includes a fixed sleeve disposed on the collection cylinder, a sliding dispersion mechanism slidably disposed on the fixed sleeve, the sliding dispersion mechanism being able to slide in the through hole of the collection cylinder, a gear ring being rotatably connected to the fixed sleeve, the gear ring being drivenly connected to the rack frame, a limit structure being provided in the gear ring, at least a portion of the sliding dispersion mechanism abutting against the limit structure, and when the gear ring rotates, the sliding dispersion mechanism being able to reciprocate along the radial direction of the collection cylinder.

[0020] Furthermore, the sliding dispersion mechanism includes a plurality of sliding tubes slidably connected to the fixed sleeve, and a piston rod movably connected to the sliding tubes. The limiting structure has a first limiting surface and a second limiting surface that are arranged opposite to each other. The first limiting surface and the second limiting surface are arranged sequentially along a first direction, which is radially from the outside of the fixed sleeve to the center of the fixed sleeve. The piston rod abuts against the first limiting surface.

[0021] A second elastic element is provided between the piston rod and the sliding tube, and the second elastic element is connected to or in contact with the sliding tube, and can drive the sliding tube to move radially along the collecting cylinder; or, the first limiting surface has a magnetic structure, and the piston rod is made of magnetic material.

[0022] Furthermore, the sliding tube has a cavity and a tube hole communicating with the cavity.

[0023] The beneficial effects of this invention are:

[0024] The present invention provides a raw material mixing device for bird's nest processing that can not only collect and comb the solid bird's nest in the solid-liquid mixture, breaking up clumps of bird's nest into strips that can pass through the combing components, but also prevent the formation of inherent flow lines in the solid-liquid mixture. Furthermore, the device uses a dispersing component to further comb the bird's nest, reducing the amount of clumps formed in the solid-liquid mixture. Attached Figure Description

[0025] Figure 1 This is a perspective view of an embodiment provided by the present invention;

[0026] Figure 2 A partial cross-sectional view of an embodiment provided by the present invention;

[0027] Figure 3 This is an exploded view of an embodiment of the present invention;

[0028] Figure 4 A perspective view of the adjustment mechanism in one embodiment of the present invention;

[0029] Figure 5 A front view of a motor in one embodiment of the present invention;

[0030] Figure 6 for Figure 5 Sectional view along line AA;

[0031] Figure 7 This is an exploded view of some parts of the adjustment mechanism in one embodiment of the present invention;

[0032] Figure 8 This is a schematic diagram of a distributed component in one embodiment of the present invention;

[0033] Figure 9 for Figure 8 Cross-sectional view along the BB direction;

[0034] Figure 10 This is an exploded view of a dispersion component in one embodiment of the present invention;

[0035] Figure 11 This is an exploded view of the rotating ring in one embodiment of the present invention.

[0036] in:

[0037] 100. Mixed shell; 101. First annular frame; 102. Second annular frame; 103. Groove;

[0038] 200. Cover plate;

[0039] 300, Motor; 3000, Adjusting plate; 301, Straight slot; 302, Inclined slot;

[0040] 400. Agitator blades;

[0041] 5000, Rotating mechanism; 500, Rotating frame; 501, Connecting rod;

[0042] 600. Adjustment component; 610. Movable frame; 611. Protrusion; 612. First slide groove; 613. Second slide groove; 614. Third slide groove; 615. First top block; 620. Sliding frame; 621. Second top block; 622. First elastic element; 623. Telescopic tube; 630. Rotating shaft; 640. First rack frame; 650. Second rack frame;

[0043] 700. Dispersing component; 710. Collecting cylinder; 711. Through hole; 712. Connecting shaft; 720. Combing component; 721. Rotating ring; 722. Mounting block; 723. Hinge plate; 724. Gear ring; 7241. First limiting surface; 7242. Second limiting surface; 725. Fixing sleeve; 726. Sliding dispersing mechanism; 7261. Sliding tube; 7262. Piston rod. Detailed Implementation

[0044] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0045] The component designations used in this document, such as "first" and "second," are merely for distinguishing the described objects and do not have any sequential or technical meaning. The terms "connection" and "linkage" used in this invention, unless otherwise specified, include both direct and indirect connections (linkages). It should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are used only for the convenience of describing the invention and simplifying the description. They do not 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 limiting the invention.

[0046] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "over," and "on top" of the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0047] Example:

[0048] like Figures 1-7As shown, this application provides a raw material mixing device for bird's nest processing, including a premixing cavity for holding a solid-liquid mixture of bird's nest, a stirring mechanism, and an adjusting mechanism. The premixing cavity is provided with a second annular frame 102, which has several grooves 103. The stirring mechanism and the adjusting mechanism are disposed in the premixing cavity. The stirring mechanism can stir the solid-liquid mixture of bird's nest in the premixing cavity under the drive of a driving mechanism. The adjusting mechanism includes an adjusting plate 3000, a rotating mechanism 5000, an adjusting component 600, and a dispersing component 700. The adjusting plate 3000 is driven by the driving mechanism and has an adjusting structure. The rotating mechanism 5000 is driven by the driving mechanism and is also elastically connected to the adjusting component 600. The adjusting component 600 can abut against the second annular frame 102 under elastic action. The adjusting component 600 includes at least one protrusion 611. The protrusion 611 is movably disposed in the adjusting structure. The dispersing component 700 has a collecting cylinder 710 for holding bird's nest strips and a combing component 720 disposed on the collecting cylinder 710. The combing component 720 is used to disperse the bird's nest. The adjusting component 600 is kinetically connected to the dispersing component 700 and can drive the dispersing component 700 to move between a first working position and a second working position. When the adjusting component 600 abuts against the second annular frame 102, the dispersing component 700 is in the first working position; when the adjusting component 600 abuts against the groove 103 under elastic action, the dispersing component 700 is in the second working position. When the dispersing component 700 moves between the first and second working positions, the collecting cylinder 710 can deflect relative to the adjusting plate 3000. Specifically, the adjusting component can be understood as being subjected to the elastic action of a spring, which can drive the adjusting component 600 to remain in contact with the groove 103, which will not be elaborated further below.

[0049] Specifically, such as Figure 4 As shown, the driving mechanism can be a motor 300. When the motor 300 starts, its drive shaft rotates. The adjusting plate 3000 is connected to the drive shaft of the motor 300, ensuring that the adjusting plate 3000 can rotate with the start of the motor 300. The stirring mechanism is driven by the motor 300 to stir the bird's nest solid-liquid mixture. The stirring mechanism includes at least one set of stirring blades 400, which includes multiple blades arranged in a spiral shape, each blade having at least one radially extending edge. This design allows the stirring blades 400 to generate a strong stirring force in the premixing cavity, effectively dispersing and mixing the bird's nest solid-liquid mixture, improving processing efficiency and product quality.

[0050] For more details, please see Figure 2 When the drive mechanism is started, the adjustment plate 3000 rotates along with the drive shaft of the drive mechanism, and the adjustment component 600 can be connected to the adjustment structure on the adjustment plate 3000 through the protrusion 611 provided thereon.

[0051] When the adjusting plate 3000 rotates, the adjusting component 600 abuts against the second annular frame 102 under elastic action and always rotates at the same speed as the adjusting plate 3000. At this time, the dispersing component 700 is in the first working position, and the collecting cylinder 710 in the dispersing component 700 can collect the bird's nest solids in the bird's nest solid-liquid mixture during rotation. When the adjusting component 600 rotates to the groove 103, the protrusion 611 of the adjusting component 600 slides along the adjusting structure, so that the adjusting component 600 moves outward under elastic action and enters the groove 103. At this time, the dispersing component 700, which is driven by the adjusting component 600, moves to the second working position.

[0052] Further reading is available. Figures 5-6 The adjusting structure of the adjusting plate 3000 has a straight groove 301 and an inclined groove 302 that are interconnected and set at an angle. The protrusion 611 is movably disposed in the adjusting structure and can move in the straight groove 301 and the inclined groove 302. When the protrusion 611 is in the straight groove 301, the dispersing component 700 is in the first position. When the protrusion 611 slides into the inclined groove 302, the dispersing component 700 is in the second position. The adjusting structure is used to adjust the deflection angle or deflection displacement of the collecting cylinder 710, which can be adjusted according to actual working requirements.

[0053] Taking the adjustment component 600 being able to rotate counterclockwise when the motor 300 drives the adjustment component 600 as an example, when the motor 300 starts, the adjustment component 600 rotates counterclockwise. At this time, the dispersing component 700 abuts against the second annular frame 102 and is in the first working position. The dispersing component 700 collects the solid-liquid mixture of bird's nest. Bird's nest that has already formed into strips can pass through the combing component 720, while bird's nest that has formed into clumps is blocked in the combing component 720 and the collection cylinder 710. With the continuous rotation of the dispersing component 700, the clumps of bird's nest will be combed and broken up by the combing component 720.

[0054] As the adjusting component 600 continues to rotate counterclockwise, it enters the groove 103 under elastic action. It is easy to understand that, since the adjusting component 600 is temporarily confined in the groove 103, the dispersing component 700, which is connected to the adjusting component 600, is deflected. Specifically, the collecting cylinder 710 deflects clockwise relative to the adjusting plate 3000. The deflection of the collecting cylinder 710 creates flow interference, breaking the original flow characteristics of the bird's nest solid-liquid mixture along a specific path in the premixed cavity. The combing component 720 and the collecting cylinder 710 collect bird's nest solids on non-specific paths. At this time, the dispersing component 700 is in the second working position.

[0055] As the adjusting component 600 continues to rotate counterclockwise, it disengages from the groove 103 and re-enters the state of contact with the second annular frame 102, while the dispersing component 700 also resets and returns to the first working position.

[0056] In this embodiment, a raw material mixing device for bird's nest processing can not only collect and comb the solid bird's nest in the solid-liquid mixture, breaking up clumps of bird's nest to form strips that can pass through the combing component 720, but also the dispersing component 700 can intermittently move and deflect between the first and second work stations, preventing the solid-liquid mixture from forming inherent flow lines, improving the working efficiency of the dispersing component 700, and reducing the amount of clumps of bird's nest formed in the solid-liquid mixture.

[0057] Furthermore, a raw material mixing device for bird's nest processing achieves uniform stirring and effective dispersion of the solid-liquid mixture of bird's nest through precise transmission connections and a coordinated working principle. Simultaneously, this raw material mixing device for bird's nest processing also features a simple structure, ease of operation and maintenance, improving production efficiency and product quality. Through precise control between the adjusting component 600 and the dispersing component 700, the raw material mixing device for bird's nest processing can flexibly switch between different workstations to meet diverse processing needs. In addition, the raw material mixing device for bird's nest processing improves the motion stability of the adjusting component 600, reducing the equipment failure rate.

[0058] Furthermore, see [reference] Figures 3-4The rotating mechanism 5000 includes a rotating frame 500 that is driven by a motor 300 and several connecting rods 501 mounted on the rotating frame 500. The rotating frame 500 is fixed to the drive shaft of the motor 300, and the rotating frame 500 also supports and connects the connecting rods 501. Each connecting rod 501 is elastically connected to an adjusting component 600, enabling the driving and movement of the adjusting component 600. It is easy to understand that the connecting rods 501 and the adjusting component 600 can be connected by an elastic element, which can be a spring and can be configured in a manner conventional in the mechanical field. This design allows the adjusting component 600 to be flexibly adjusted as needed to adapt to different processing requirements for bird's nest solid-liquid mixtures.

[0059] Further reading is available. Figure 4 The adjusting assembly 600 includes a movable frame 610 and a rack frame. A protrusion 611 is disposed on the movable frame 610, and the movable frame 610 is constrained to abut against the inner wall of the premixed cavity. The rack frame is movably connected to the movable frame 610, and a first elastic element 622 is disposed between the rack frame and the movable frame 610. The first elastic element 622 is connected to the rack frame and can drive the rack frame to move in a specified direction. Simultaneously, the rack frame is drively connected to the combing assembly 720, and when the rack frame moves, the combing assembly 720 can rotate circumferentially. The first elastic element 622 can be a spring, which can be disposed between the rack frame and the movable frame 610 in a manner conventional in the mechanical field. The aforementioned adjusting structure is used to adjust and constrain the active area of ​​the movable frame 610.

[0060] Of course, the rack frame in the adjusting component 600 can also be drivenly connected to the combing component 720. Specifically, the rack frame can include a first rack frame 640, which can be drivenly connected to the combing component 720. The first rack frame 640 is slidably disposed in the movable frame 610. When the dispersing component 700 moves from the first station to the second station, since the movable frame 610 always remains in contact with the inner wall of the premixed cavity, and the movable frame 610 enters the groove 103, the movable frame 610 and the first rack frame 640 move relative to each other. The movable frame 610 can be connected to the collecting cylinder 710 through a connecting shaft 712, so that the collecting cylinder 710 and the movable frame 610 remain relatively stationary. Then the first rack frame 640 will move relative to the collecting cylinder 710, and the combing component 720 drivenly connected to the first rack frame 640 will rotate.

[0061] Specifically, the combing component 720 is actually used to break up clumps of bird's nest. When it rotates, it can collect clumps of bird's nest together with the collecting cylinder 710. At the same time, when it rotates on its own and in the premixed cavity, it collides and rubs with the clumps of bird's nest, gradually breaking up the clumps of bird's nest, forming a dynamic combing and breaking mechanism, making its work of breaking up bird's nest more flexible.

[0062] Furthermore, such as Figure 4 As shown, the combing component 720 is movably disposed at one end of the collection cylinder 710. Of course, the combing component 720 can also be movably disposed in the middle of the collection cylinder 710, which is not shown in the figure.

[0063] For details, please refer to Figures 10-11 The combing assembly 720 includes a rotating ring 721 movably connected to the collecting cylinder 710. The rotating ring 721 is drivenly connected to the first rack in the rack frame. The rotating ring 721 is also provided with mounting blocks 722 at intervals. A channel for bird's nest strips to pass through is formed between any two mounting blocks 722. That is, during the operation of a raw material mixing device for bird's nest processing, clumps of bird's nest are collected into the collecting cylinder 710 and impact the mounting blocks 722 of the rotating ring 721. The mounting blocks 722 can break up the clumps of bird's nest into bird's nest strips. The bird's nest strips can pass through the channel between the mounting blocks 722. This channel is defined as a passageway. By repeating this process, the clumps of bird's nest in the solid-liquid mixture gradually decrease.

[0064] In order to further improve the dispersing effect of bird's nest, the combing component 720 also includes a hinge plate 723, which is hinged to the mounting block 722 and its length direction is parallel to the length direction of the channel through which the bird's nest strips can pass.

[0065] As described in the previous embodiment, during the rotation of the dispersing component 700, the bird's nest solid-liquid mixture can be received in the space formed by the combing component 720 and the collecting cylinder 710. The bird's nest solid-liquid mixture in the premixed cavity flows along a specific path and impacts the hinge plate 723, causing the hinge plate 723 and the passage channel to be in an open state. When the dispersing component 700 moves from the first station to the second station, the collecting cylinder 710 deflects briefly. The hinge plate 723 and the rotating ring 721 in the combing component 720 cause flow interference to the bird's nest solid-liquid mixture in the premixed cavity. At the same time, when the hinge plate 723 deflects, it will rotate towards the side where the passage channel is located, presenting a state of closing the passage channel. At this time, the hinge plate 723, the mounting block 722 and the rotating ring 721 can block the flow path of the bird's nest solid-liquid mixture, intercept some of the clumps of bird's nest, and make it easier for the bird's nest to gather in the collecting cylinder 710.

[0066] In a preferred embodiment of this application, see [reference]. Figures 8-11 The combing assembly 720 further includes a fixed sleeve 725 disposed on the collection cylinder 710. A sliding dispersion mechanism 726 is slidably disposed on the fixed sleeve 725. The sliding dispersion mechanism 726 can slide within the through hole 711 of the collection cylinder 710. A gear ring 724 is also rotatably connected to the fixed sleeve 725. Figure 4 As shown, the rack frame also includes a second rack frame 650, and the gear ring 724 is connected to the second rack frame 650 in a transmission manner. The gear ring 724 is provided with a limiting structure, and at least a portion of the sliding dispersion mechanism 726 abuts against the limiting structure. When the gear ring 724 rotates, the sliding dispersion mechanism 726 can reciprocate along the radial direction of the collecting cylinder 710.

[0067] For easy understanding, please refer to Figures 1-7 The movable frame 610 is provided with a sliding groove for the rack frame to be movably connected. Specifically, in this embodiment, it includes a first rack frame 640 and a second rack frame 650. The movable frame 610 is provided with a first sliding groove 612, a second sliding groove 613, and a third sliding groove 614. The first sliding groove 612 allows the second rack frame 650 to be slidably connected, and the third sliding groove 614 allows the first rack frame 640 to be slidably connected. More specifically, a raw material mixing device for bird's nest processing may further include a mixing shell 100 and a first annular frame 101. The mixing shell 100 has the premixed cavity, and the second annular frame 102 is disposed in the premixed cavity. The first annular frame 101 is connected to the mixing shell 100, and at least a portion of the rack frame abuts against the first annular frame 101. When the movable frame 610 moves, the rack frame is constrained to move along the annular track of the first annular frame 101. More specifically, a raw material mixing device for bird's nest processing may also include a cover plate 200 for sealing the premixing cavity to prevent splashing of solid and liquid during combing and breaking up of the bird's nest.

[0068] Specifically, such as Figure 7 As shown, the adjusting assembly 600 further includes a sliding frame 620, on which a telescopic tube 623 is provided. The telescopic tube 623 is connected to the first rack frame 640 and the second rack frame 650 via a rotating shaft 630. The sliding frame 620 is slidably disposed in the second slide groove 613, and the first elastic element 622 is disposed between the sliding frame 620 and the second slide groove 613. Figure 7 As shown, the first elastic element 622 can be a spring. A second top block 621 is also provided on the sliding frame 620. Figure 2The second top block 621 of the sliding frame 620 can always abut against the first annular frame 101 under the action of the first elastic element 622, ensuring the limiting of the first rack frame 640 and the second rack frame 650. Of course, the movable frame 610 can not only be provided with a protrusion 611 for movably connecting with the adjusting structure, but also with a first top block 615, which can maintain contact with the second annular frame 102 and the groove 103. The first top block 615 and the second top block 621 are used to ensure the contact state of the components, concentrate the force, and avoid damage to other components.

[0069] Furthermore, the dispersing component 700 can be equipped with multiple combing components 720 to improve the efficiency of combing bird's nests. Therefore, the rack frame can also be provided in multiple ways. In this embodiment, only its working principle is described, and its quantity is not elaborated. Any improvements made to the number, specifications, and structure of components based on the actual work content and on the basis of this application are within the protection scope of this application.

[0070] Furthermore, in order to promote the dispersing of bird's nest clusters, in another preferred embodiment, the sliding dispersion mechanism 726 in a raw material mixing device for bird's nest processing includes a sliding tube 7261 slidably connected to the fixed sleeve 725, and a piston rod 7262 movably connected to the sliding tube 7261. The limiting structure has a first limiting surface 7241 and a second limiting surface 7242 arranged opposite to each other. The first limiting surface 7241 and the second limiting surface 7242 are arranged sequentially along a first direction, which is radially from the outside of the fixed sleeve 725 to the center of the fixed sleeve 725. The piston rod 7262 abuts against the first limiting surface 7241.

[0071] For easy understanding, please refer to Figure 9 The piston rod 7262 can abut against the limiting structure in the gear ring 724. With the transmission action of the rack frame on the gear ring 724, the gear ring 724 can rotate on the fixed sleeve 725. A second elastic element is provided between the piston rod 7262 and the sliding tube 7261, and the second elastic element is connected to the sliding tube 7261, driving the sliding tube 7261 to move radially along the collecting cylinder 710.

[0072] In other words, when the gear ring 724 rotates, the piston rod 7262 always remains in contact with the first limiting surface 7241, which has a recessed structure along a first direction. Figure 9When rotated counterclockwise as shown, the piston rod 7262 and the sliding tube 7261 move in the first direction to insert into the clumps of bird's nest present in the receiving cylinder 710, which helps to break up the clumps of bird's nest. The dispersing component 700 may include a plurality of sliding tubes 7261 and piston rods 7262 that are matched with the sliding tubes 7261. The sliding tubes 7261 may be evenly arranged along the circumference of the fixed sleeve 725, or multiple sets of sliding tubes 7261 may be arranged along the axis of the fixed sleeve 725 to improve the efficiency of inserting and separating clumps of bird's nest.

[0073] In a preferred embodiment of this application, the first limiting surface 7241 and the second limiting surface 7242 have magnetic structures, and the through hole 711 and the piston rod 7262 are made of magnetic materials. It is readily understood that the piston rod 7262, made of magnetic material, can be attracted by the first limiting surface 7241 with its magnetic structure, ensuring that the piston rod 7262 always remains in contact with the first limiting surface 7241. The side of the through hole 711 closest to the second limiting surface 7242 can also be made of magnetic material, and the second limiting surface 7242 can also have a magnetic structure, ensuring that the through hole 711 and the second limiting surface 7242 maintain relative attraction. The gear ring 724 is connected to the second rack frame 650 in a transmission connection. When the raw material mixing equipment for bird's nest processing is working, the gear ring 724 actually reciprocates within a stroke. Therefore, the attraction between the through hole 711 and the second limiting surface 7242 ensures that the gear ring 724 quickly resets.

[0074] Furthermore, the sliding tube 7261 has a cavity and a tube hole communicating with the cavity. During the reciprocating rotation of the gear ring 724, it actually involves the sliding tube 7261 being inserted into and reset towards the center of the collecting cylinder 710. The sliding tube 7261 is inserted into the clump of bird's nest. During the insertion process, liquid can enter the cavity through the tube hole of the sliding tube 7261. Some liquid remains in the clump of bird's nest. The sliding tube 7261 can quickly drain the liquid, avoiding the problem of bird's nest breakage caused by mechanical separation, improving the dispersion effect of bird's nest, and also improving the quality of the dispersed bird's nest.

[0075] Specifically, in a preferred embodiment of this application, when using a raw material mixing device for bird's nest processing, a bird's nest solid-liquid mixture can be added to the premixed cavity of the mixing shell 100, taking the adjustment component 600 being able to rotate counterclockwise when the motor 300 drives the adjustment component 600 as an example.

[0076] When the motor 300 starts, the adjusting component 600 rotates counterclockwise, and the dispersing component 700 abuts against the second annular frame 102. At this time, the dispersing component 700 is in the first working position. The dispersing component 700 collects the solid-liquid mixture of bird's nest. Bird's nest that has already formed into strips can pass through the combing component 720, while clumps of bird's nest are blocked in the combing component 720 and the collecting cylinder 710. With the continuous rotation of the dispersing component 700, the clumps of bird's nest will be combed and broken up by the combing component 720.

[0077] As the adjusting component 600 continues to rotate counterclockwise, it enters the groove 103 under elastic action, at which point the dispersing component 700 is in the second position. The dispersing component 700, which is drive-connected to the adjusting component 600, deflects. Simultaneously, the first rack frame 640 and the second rack frame 650 both move relative to the movable frame 610.

[0078] The combing assembly 720, which is connected to the first rack and pinion 640, rotates to comb and break up the clumps of bird's nest.

[0079] The gear ring 724, which is connected to the second rack frame 650, rotates, and the sliding dispersion mechanism 726 is able to reciprocate along the radial direction of the collecting cylinder 710.

[0080] Specifically, the piston rod 7262 in the sliding dispersion mechanism 726 remains in contact with the first limiting surface 7241. When the sliding dispersion mechanism 726 performs radial reciprocating motion, the sliding tube in the sliding dispersion mechanism 726 inserts into the receiving cylinder to collect the clustered bird's nests. During the insertion process, liquid can enter the cavity through the tube hole of the sliding tube 7261. Since some liquid remains in the clustered bird's nests, the sliding tube 7261 can quickly drain the liquid.

[0081] As the adjusting component 600 continues to rotate counterclockwise, it disengages from the groove 103 and re-enters the state of contact with the second annular frame 102, while the dispersing component 700 also resets and returns to the first working position, and the operation is repeated in sequence.

[0082] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are 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.

[0083] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the appended claims.

Claims

1. A raw material mixing device for bird's nest processing, characterized in that, include: A premixed cavity for holding a solid-liquid mixture of bird's nest, wherein a second annular frame (102) is provided in the premixed cavity, the second annular frame (102) is provided with a plurality of grooves (103), and a stirring mechanism and an adjusting mechanism are provided in the premixed cavity; The stirring mechanism is capable of stirring the bird's nest solid-liquid mixture in the premixed cavity under the drive of a driving mechanism; The adjustment mechanism includes an adjustment plate (3000), a rotating mechanism (5000), an adjustment component (600), and a dispersing component (700). The adjustment plate (3000) is driven by the driving mechanism and has an adjustment structure. The rotating mechanism (5000) is driven by the driving mechanism and is also elastically connected to the adjustment component (600). The adjustment component (600) can abut against the second annular frame under elastic action. (102) The adjusting component (600) includes at least one protrusion (611), the protrusion (611) is movably disposed in the adjusting structure, the dispersing component (700) has a collecting cylinder (710) for holding bird's nest strips and a combing component (720) disposed on the collecting cylinder (710) for dispersing bird's nest, the adjusting component (600) is connected to the dispersing component (700) in a driving connection and is able to drive the dispersing component (700) to move between the first station and the second station; When the adjusting component (600) abuts against the second annular frame (102), the dispersing component (700) is in the first position. When the adjusting component (600) abuts against the groove (103) under elastic action, the dispersing component (700) is in the second position. When the dispersing component (700) moves between the first position and the second position, the collecting cylinder (710) can deflect relative to the adjusting plate (3000). The adjustment assembly (600) includes a movable frame (610) and a rack frame. The protrusion (611) is disposed on the movable frame (610), and the rack frame is constrained to abut against the premixed cavity. The rack frame is movably connected to the movable frame (610), and a first elastic element is disposed between the rack frame and the movable frame (610). The first elastic element is connected to or in contact with the rack frame and can drive the rack frame to move in a specified direction. It is connected to the combing assembly (720) in a transmission manner, and when the rack frame moves, the combing assembly (720) can rotate in its own circumference. A mixing shell (100) and a first annular frame (101) having the premixed cavity, the first annular frame (101) being connected to the mixing shell (100), at least a portion of the rack frame abutting against the first annular frame (101), and the rack frame being constrained to move along an annular track of the first annular frame (101) when the movable frame (610) moves; The combing assembly (720) includes a rotating ring (721) movably connected to the collecting cylinder (710), the rotating ring (721) being drivenly connected to the rack frame, and mounting blocks (722) are also spaced apart on the rotating ring (721), with a channel for the bird's nest strip to pass through formed between any two mounting blocks (722); The combing assembly (720) also includes a hinge plate (723), which is hinged to the mounting block (722) and its length direction is parallel to the length direction of the channel through which the bird's nest strips can pass.

2. The raw material mixing equipment for bird's nest processing according to claim 1, characterized in that: The rotating mechanism (5000) includes a rotating frame (500) that is connected to the driving mechanism, and a plurality of connecting rods (501) disposed on the rotating frame (500), each of the connecting rods (501) being elastically connected to an adjusting component (600).

3. The raw material mixing equipment for bird's nest processing according to claim 1, characterized in that: The adjustment structure has a straight groove (301) and an inclined groove (302) that are interconnected and set at an angle; And / or, the stirring mechanism includes at least one set of stirring blades (400), the set of stirring blades (400) including a plurality of blades arranged in a spiral shape, the plurality of blades having at least one radially extending edge; And / or, the combing assembly (720) may be movably disposed at one end of the collection tube (710) or in the middle of the collection tube (710).

4. The raw material mixing equipment for bird's nest processing according to claim 1, characterized in that: The combing assembly (720) further includes a fixed sleeve (725) disposed on the collection cylinder (710). A sliding dispersion mechanism (726) is slidably disposed on the fixed sleeve (725). The sliding dispersion mechanism (726) can slide in the through hole (711) of the collection cylinder (710). A gear ring (724) is also rotatably connected to the fixed sleeve (725). The gear ring (724) is drivenly connected to the rack frame. A limit structure is provided in the gear ring (724). At least a portion of the sliding dispersion mechanism (726) abuts against the limit structure. When the gear ring (724) rotates, the sliding dispersion mechanism (726) can reciprocate along the radial direction of the collection cylinder (710).

5. The raw material mixing equipment for bird's nest processing according to claim 4, characterized in that: The sliding dispersion mechanism (726) includes a plurality of sliding tubes (7261) slidably connected to the fixed sleeve (725), and a piston rod (7262) movably connected to the sliding tubes (7261). The limiting structure has a first limiting surface (7241) and a second limiting surface (7242) arranged opposite to each other. The first limiting surface (7241) and the second limiting surface (7242) are arranged sequentially along a first direction, which is radially from the outside of the fixed sleeve (725) to the center of the fixed sleeve (725). The piston rod (7262) abuts against the first limiting surface (7241). A second elastic element is provided between the piston rod (7262) and the sliding tube (7261), and the second elastic element is connected to or in contact with the sliding tube (7261), and can drive the sliding tube (7261) to move radially along the collecting cylinder (710); Alternatively, the first limiting surface (7241) has a magnetic structure, and the piston rod (7262) is made of magnetic material.

6. The raw material mixing equipment for bird's nest processing according to claim 5, characterized in that: The sliding tube (7261) has a cavity and a tube hole communicating with the cavity.

Citation Information

Patent Citations

  • Vortex spinning covering yarn raw material mixing device

    CN117839490A