Raw material mixing equipment for cubilose processing
By designing a raw material mixing equipment for bird's nest processing, and utilizing the synergistic work of the regulating and dispersing components, the problem of traditional equipment being unable to effectively disperse bird's nest strips has been solved. This achieves uniform mixing and efficient dispersion of bird's nest, thereby improving product quality and production efficiency.
Patent Information
- Application Number
- CN202511439453.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-10-10
AI Technical Summary
Traditional mixing equipment cannot effectively disperse bird's nest strips, affecting the product appearance and the accuracy of light inspection results.
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.
It improves the dispersion effect of bird's nest products, reduces the amount of bird's nest clumping, enhances product quality and production efficiency, simplifies operation and maintenance, and reduces equipment failure rate.
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Figure CN120900464A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of food processing equipment, in particular to a raw material mixing device for bird's nest processing. BACKGROUND
[0002] As a kind of precious food material, with the improvement of people's living standards, the demand for bird's nest also increases year by year. Bird's nest processing industry mainly includes bird's nest collection, processing, processing and packaging, etc. Among them, the processing link is very important to the quality of the final product. In the processing of bird's nest, lamp detection is a very important link, which is related to the quality of the final product. In the processing of bird's nest, the performance of the stirring and mixing device also has a great influence on the quality of the product. In the stirring process, the bird's nest strips often gather together, and the traditional stirring and mixing device cannot effectively disperse the bird's nest strips, which not only affects the appearance of the product, but also may affect the accuracy of the lamp detection result.
[0003] The information disclosed in the background section of this application is only intended to deepen the understanding of the general background of the application and should not be considered as recognition or in any form as admitting that this information constitutes prior art known to those skilled in the art. SUMMARY
[0004] Therefore, it is necessary to provide a raw material mixing device for bird's nest processing in view of the problem that the traditional stirring and mixing device cannot effectively disperse the bird's nest strips.
[0005] The above-mentioned purpose is realized by the following technical scheme: A raw material mixing device for bird's nest processing includes a premixing cavity for containing a bird's nest solid-liquid mixture, and a stirring mechanism and an adjusting mechanism arranged in the premixing cavity. A second annular frame is further arranged in the premixing cavity, and a plurality of grooves are arranged on the second annular frame. The stirring mechanism can stir the bird's nest solid-liquid mixture in the premixing cavity under the drive of a driving mechanism. The adjusting mechanism includes an adjusting plate, a rotating mechanism, an adjusting assembly and a dispersing assembly. The adjusting plate is in transmission connection with the driving mechanism, and the adjusting plate is provided with an adjusting structure. The rotating mechanism is in transmission connection with the driving mechanism, and the rotating mechanism is further elastically connected with the adjusting assembly. The adjusting assembly can abut against the second annular frame under the elastic action. The adjusting assembly at least includes a protrusion, and the protrusion is movably arranged in the adjusting structure. The dispersing assembly has a collecting cylinder for containing the bird's nest strips and a carding assembly arranged on the collecting cylinder for dispersing the bird's nest. The adjusting assembly is in transmission connection with the dispersing assembly and can drive the dispersing assembly to move between the first station and the second station. When the adjusting assembly abuts against the second annular frame, the dispersing assembly is in the first station, when the adjusting assembly abuts against the groove under the elastic action, the dispersing assembly is in the second station, when the dispersing assembly moves between the first station and the second station, the collecting cylinder can deflect relative to the adjusting plate.
[0006] Further, the rotating mechanism comprises a rotating frame in transmission connection with the driving mechanism, and a plurality of connecting rods arranged on the rotating frame, each of which is elastically connected with an adjusting assembly.
[0007] Further, the adjusting assembly comprises a movable frame and a rack frame, the protrusion is arranged on the movable frame, and the rack frame is constrained to abut against the premixing cavity, the rack frame is movably connected with the movable frame, and a first elastic element is arranged between the rack frame and the movable frame, the first elastic element is connected with or in contact with the rack frame and can drive the rack frame to move in a specified direction, the combing assembly is in transmission connection with the rack frame, and when the rack frame moves, the combing assembly can rotate along the circumferential direction thereof.
[0008] Further, the raw material mixing device for bird's nest processing further comprises a mixing shell and a first annular frame, the mixing shell has a premixing cavity, the first annular frame is connected with the mixing shell, at least part of the rack frame abuts against the first annular frame, and when the movable frame moves, the rack frame is constrained to move along the annular track of the first annular frame.
[0009] Further, the adjusting structure has a straight groove and an inclined groove which are in communication with each other and are arranged at an angle.
[0010] Further, the stirring mechanism comprises at least one set of stirring blades, one set of stirring blades comprises a plurality of blades arranged in a spiral shape, and the plurality of blades have at least one edge extending in the radial direction.
[0011] Further, the combing assembly is movably arranged at one end of the collecting cylinder or in the middle of the collecting cylinder.
[0012] Further, the combing assembly comprises a rotating ring movably connected with the collecting cylinder, the rotating ring is in transmission connection with the rack frame, and the rotating ring is further spacedly provided with mounting blocks, and a passage for passing the bird's nest strip is formed between any two mounting blocks.
[0013] Further, the combing assembly further comprises a hinged plate hinged with the mounting block, and the length direction of the hinged plate is arranged in parallel with the length direction of the passage for passing the bird's nest strip.
[0014] Further, the carding assembly further comprises a fixed sleeve arranged on the collecting cylinder, a sliding dispersion mechanism is slidingly arranged on the fixed sleeve, the sliding dispersion mechanism is capable of sliding in the through hole of the collecting cylinder, a gear ring is rotatably connected to the fixed sleeve, the gear ring is in transmission connection with the rack frame, a limiting structure is arranged in the gear ring, at least part of the sliding dispersion mechanism is in abutment with the limiting structure, and when the gear ring rotates, the sliding dispersion mechanism is capable of reciprocating along the radial direction of the collecting cylinder.
[0015] Further, the sliding dispersion mechanism comprises a plurality of sliding tubes in sliding connection with the fixed sleeve, and a piston rod in movable connection with the sliding tubes, the limiting structure has oppositely arranged first and second limiting surfaces, the first and second limiting surfaces are sequentially arranged along a first direction, the first direction is a radial direction from the outside of the fixed sleeve to the center of the fixed sleeve, and the piston rod is in abutment with the first limiting surface. Wherein, a second elastic element is arranged between the piston rod and the sliding tube, and the second elastic element is connected with or in contact with the sliding tube and can drive the sliding tube to move along the radial direction of the collecting cylinder; or the first limiting surface has a magnetic structure, and the piston rod is made of a magnetic material.
[0016] Further, the sliding tube has a cavity and a tube hole in communication with the cavity.
[0017] The beneficial effects of the present application are: The raw material mixing device for bird's nest processing provided by the present application can not only collect bird's nest solids in the carded bird's nest solid-liquid mixture, but also can disperse the formed bird's nest, so that the bird's nest can pass through the carding assembly in the form of a strip. Moreover, the bird's nest solid-liquid mixture can be further carded by the dispersion assembly to reduce the amount of formed bird's nest in the bird's nest solid-liquid mixture. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The present application provides a three-dimensional schematic view of an embodiment; Figure 2 The present application provides a partial sectional view of an embodiment; Figure 3 The present application provides an exploded schematic view of an embodiment; Figure 4 The present application provides a three-dimensional schematic view of an adjustment mechanism in an embodiment; Figure 5 The present application provides a front view of a motor in an embodiment; Figure 6 The present application provides a three-dimensional schematic view of an adjustment mechanism in an embodiment; Figure 5 The present application provides a three-dimensional schematic view of an adjustment mechanism in an embodiment; Figure 7 The present application provides a partial exploded schematic view of an adjustment mechanism in an embodiment; Figure 8A schematic view of the dispersion assembly in an embodiment of the present application; Figure 9 A Figure 8 A cross-sectional view along B-B in an embodiment of the present application; Figure 10 An exploded schematic view of the dispersion assembly in an embodiment of the present application; Figure 11 An exploded schematic view of the rotating ring in an embodiment of the present application.
[0019] Wherein: 100, mixing housing; 101, first annular frame; 102, second annular frame; 103, groove; 200, cover plate; 300, motor; 3000, adjusting plate; 301, straight slot; 302, inclined slot; 400, stirring blade; 5000, rotating mechanism; 500, rotating frame; 501, connecting rod; 600, adjusting assembly; 610, movable frame; 611, protrusion; 612, first sliding groove; 613, second sliding groove; 614, third sliding 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; 700, dispersion assembly; 710, collecting cylinder; 711, through hole; 712, connecting shaft; 720, carding assembly; 721, rotating ring; 722, mounting block; 723, hinged plate; 724, gear ring; 7241, first limiting surface; 7242, second limiting surface; 725, fixed sleeve; 726, sliding dispersion mechanism; 7261, sliding tube; 7262, piston rod. DETAILED DESCRIPTION
[0020] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application is further described in detail below with reference to the embodiments and in conjunction with the drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and should not be used to limit the present application.
[0021] The serial numbers of components in this document, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any sequence or technical meaning. The "connection" and "coupling" in the present application include direct and indirect connection (coupling) unless otherwise specified. In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0022] In the present application, unless otherwise explicitly specified and limited, the "on" or "under" of the first feature to the second feature can be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the "over", "above" and "on" of the first feature to the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The "under", "below" and "under" of the first feature to the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0023] Embodiment: As Figures 1-7As shown, the application provides a raw material mixing device for bird's nest processing, which comprises a premixing cavity for containing bird's nest solid-liquid mixture, a stirring mechanism and an adjusting mechanism. The premixing cavity is provided with a second annular frame 102, and the second annular frame 102 is provided with a plurality of grooves 103. The stirring mechanism and the adjusting mechanism are arranged in the premixing cavity. The stirring mechanism can stir the bird's nest solid-liquid mixture in the premixing cavity under the drive of the driving mechanism. The adjusting mechanism comprises an adjusting plate 3000, a rotating mechanism 5000, an adjusting assembly 600 and a dispersing assembly 700. The adjusting plate 3000 is in transmission connection with the driving mechanism. The adjusting plate 3000 is provided with an adjusting structure. The rotating mechanism 5000 is in transmission connection with the driving mechanism. The rotating mechanism 5000 is further elastically connected with the adjusting assembly 600. The adjusting assembly 600 can abut against the second annular frame 102 under the elastic action. The adjusting assembly 600 at least comprises a protrusion 611. The protrusion 611 is movably arranged in the adjusting structure. The dispersing assembly 700 has a collecting cylinder 710 for containing bird's nest strips and a carding assembly 720 arranged on the collecting cylinder 710. The carding assembly 720 is used for dispersing bird's nest. The adjusting assembly 600 is in transmission connection with the dispersing assembly 700 and can drive the dispersing assembly 700 to move between a first station and a second station. When the adjusting assembly 600 abuts against the second annular frame 102, the dispersing assembly 700 is in the first station. When the adjusting assembly 600 abuts against the groove 103 under the elastic action, the dispersing assembly 700 is in the second station. When the dispersing assembly 700 moves between the first station and the second station, the collecting cylinder 710 can be deflected relative to the adjusting plate 3000. Specifically, the adjusting assembly can be understood as being subjected to the elastic action of a spring. The elastic action can drive the adjusting assembly 600 to abut against the groove 103. The following will not be described in detail.
[0024] Specifically, as shown in the drawings, Figure 4 Specifically, as shown in the drawings, the driving mechanism can be a motor 300. When the motor 300 is started, the transmission shaft of the motor 300 rotates. The adjusting plate 3000 is connected with the transmission shaft of the motor 300, so that the adjusting plate 3000 can rotate with the start of the motor 300. The stirring mechanism is in transmission connection with the motor 300, so as to realize the stirring of the bird's nest solid-liquid mixture. The stirring mechanism comprises at least one set of stirring blades 400. One set of stirring blades 400 comprises a plurality of blades arranged in a spiral shape. Each blade has at least one edge extending in the radial direction. This design enables the stirring blades 400 to generate strong stirring force in the premixing cavity, effectively dispersing and mixing the bird's nest solid-liquid mixture, and improving the processing efficiency and product quality.
[0025] More specifically, please refer to Figure 2 When the driving mechanism is started, the adjusting plate 3000 rotates with the rotation of the transmission shaft of the driving mechanism, and the adjusting assembly 600 is connected with the adjusting structure on the adjusting plate 3000 through the protrusion 611 arranged thereon.
[0026] When the adjusting plate 3000 rotates, the adjusting assembly 600 abuts against the second annular frame 102 under the elastic action and always rotates at the same speed as the adjusting plate 3000, at this time, the dispersion assembly 700 is in the first station, and the collection cylinder 710 in the dispersion assembly 700 can collect the bird's nest solids in the bird's nest solid-liquid mixture in the process of rotation. When the adjusting assembly 600 rotates to the groove 103, the protrusion 611 of the adjusting assembly 600 slides along the adjusting structure, so that the adjusting assembly 600 moves outward under the elastic action and enters the groove 103, at this time, the dispersion assembly 700 in transmission connection with the adjusting assembly 600 moves to the second station.
[0027] Further, please refer to Figures 5-6 The adjusting structure of the adjusting plate 3000 has a straight groove 301 and an inclined groove 302 which are communicated with each other and arranged at an angle, the protrusion 611 is movably arranged 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 dispersion assembly 700 is in the first station, and when the protrusion 611 slides into the inclined groove 302, the dispersion assembly 700 is in the second station, the adjusting structure is used for adjusting the deflection angle or deflection displacement of the collection cylinder 710, which can be adjusted according to actual working requirements.
[0028] When the motor 300 drives the adjusting assembly 600, taking the counterclockwise rotation of the adjusting assembly 600 as an example, when the motor 300 is started, the adjusting assembly 600 rotates counterclockwise, at this time, the dispersion assembly 700 abuts against the second annular frame 102, and the dispersion assembly 700 is in the first station, the dispersion assembly 700 collects the bird's nest solid-liquid mixture, the bird's nest which has been formed into strips can pass through the carding assembly 720, and the bird's nest which has been formed into a group is blocked in the carding assembly 720 and the collection cylinder 710, with the continuous rotation of the dispersion assembly 700, the bird's nest which has been formed into a group can be carded and scattered by the carding assembly 720.
[0029] With the adjustment assembly 600 continuing to rotate counterclockwise, the adjustment assembly 600 enters the groove 103 under the elastic action, and it is easy to understand that due to the temporary restriction of the adjustment assembly 600 in the groove 103, the dispersion assembly 700 drivingly connected with the adjustment assembly 600 is deflected, specifically, the collecting cylinder 710 is deflected clockwise relative to the adjustment plate 3000, and the deflection of the collecting cylinder 710 forms flow interference, breaks the original flow characteristics of the bird's nest solid-liquid mixture along a specific path in the premixing cavity, and collects the bird's nest solids on the non-specific path through the carding assembly 720 and the collecting cylinder 710. At this time, the dispersion assembly 700 is in the second station.
[0030] With the adjustment assembly 600 continuing to rotate counterclockwise, the adjustment assembly 600 is separated from the groove 103 and reenters the state of abutting against the second annular frame 102, and the dispersion assembly 700 is also reset and returns to the first station again.
[0031] In the embodiment, the raw material mixing device for bird's nest processing can not only collect bird's nest solids in the carded bird's nest solid-liquid mixture, but also can disperse the bunched bird's nest to form a strip-shaped bird's nest that can pass through the carding assembly 720. Moreover, the dispersion assembly 700 can intermittently move between the first station and the second station and be deflected, so as to avoid the bird's nest solid-liquid mixture from forming inherent flow lines, improve the working efficiency of the dispersion assembly 700, and reduce the amount of bunched bird's nest in the bird's nest solid-liquid mixture.
[0032] Further, the raw material mixing device for bird's nest processing realizes uniform stirring and effective dispersion of the bird's nest solid-liquid mixture through precise transmission connection relationship and coordinated working principle. Meanwhile, the raw material mixing device for bird's nest processing also has the characteristics of simple structure, easy operation and maintenance, and improves the production efficiency and product quality. Through the precise control between the adjustment assembly 600 and the dispersion assembly 700, the raw material mixing device for bird's nest processing can flexibly switch between different stations to meet different processing requirements. In addition, the raw material mixing device for bird's nest processing improves the motion stability of the adjustment assembly 600 and reduces the equipment failure rate.
[0033] Further, refer to Figures 3-4The rotating mechanism 5000 comprises a rotating frame 500 connected with the motor 300 and a plurality of connecting rods 501 arranged on the rotating frame 500. The rotating frame 500 is used to be fixed with the transmission shaft of the motor 300, and the rotating frame 500 further supports the connecting rods 501. Each connecting rod 501 is elastically connected with an adjusting assembly 600, so as to realize the driving and movement of the adjusting assembly 600. It is easy to understand that the connecting rod 501 and the adjusting assembly 600 can be connected through an elastic element, and the elastic element can be a spring which can be arranged in a conventional manner in the mechanical field. This design makes the adjusting assembly 600 flexible to adjust according to the needs, so as to adapt to different processing requirements of the bird's nest solid-liquid mixture.
[0034] Further, refer to Figure 4 The adjusting assembly 600 comprises a movable frame 610 and a rack frame. The protrusion 611 is arranged on the movable frame 610, and the movable frame 610 is constrained to abut against the inner side wall surface of the premixing cavity. The rack frame is movably connected with the movable frame 610, and a first elastic element 622 is arranged between the rack frame and the movable frame 610. The first elastic element 622 is connected with the rack frame and can drive the rack frame to move in a specified direction. Meanwhile, the rack frame is in transmission connection with the carding assembly 720, and when the rack frame moves, the carding assembly 720 can rotate along its own circumference. The first elastic element 622 can be a spring which can be arranged between the rack frame and the movable frame 610 in a conventional manner in the mechanical field. The foregoing adjusting structure is used to adjust and constrain the movement area of the movable frame 610.
[0035] Of course, the rack frame in the adjusting assembly 600 can also be in transmission connection with the carding assembly 720. Specifically, the rack frame can comprise a first rack frame 640 which can be in transmission connection with the carding assembly 720. The first rack frame 640 is slidably arranged in the movable frame 610. When the dispersing assembly 700 moves from the first station to the second station, since the movable frame 610 always abuts against the inner side wall surface of the premixing cavity, the movable frame 610 enters the groove 103, and at this time, the movable frame 610 moves relative to the first rack frame 640. The movable frame 610 can be connected with the collecting cylinder 710 through a connecting shaft 712, so that the collecting cylinder 710 and the movable frame 610 remain relatively static. Then, the first rack frame 640 will move relative to the collecting cylinder 710, and the carding assembly 720 in transmission connection with the first rack frame 640 rotates.
[0036] Specifically, the carding assembly 720 is actually used to break the agglomerated bird's nest. When it rotates, on the one hand, it can collect the agglomerated bird's nest together with the collecting cylinder 710, and on the other hand, it can collide and rub with the agglomerated bird's nest when it rotates by itself and in the premixing cavity, so that the agglomerated bird's nest can be gradually broken, forming a dynamic carding and breaking mechanism, so that the work of breaking the bird's nest is more flexible.
[0037] Further, as shown in Figure 4 , the carding assembly 720 is movably arranged at one end of the collecting cylinder 710. Of course, the carding assembly 720 can also be movably arranged at the middle of the collecting cylinder 710, which is not shown in the figure.
[0038] Specifically, referring to Figures 10-11 , the carding assembly 720 comprises a rotating ring 721 movably connected with the collecting cylinder 710. The rotating ring 721 is in transmission connection with the first rack in the rack frame. The rotating ring 721 is also spacedly provided with mounting blocks 722. A passage is formed between any two mounting blocks 722, through which the bird's nest strip can pass. That is, in the working process of the raw material mixing device for processing bird's nest, the agglomerated bird's nest is collected into the collecting cylinder 710 and impacts the mounting blocks 722 of the rotating ring 721. The mounting blocks 722 can break the agglomerated bird's nest into bird's nest strips. The bird's nest strips can pass through the passage between the mounting blocks 722, which is defined as a passing passage. Through such reciprocating work, the agglomerated bird's nest in the bird's nest solid-liquid mixture is gradually reduced.
[0039] In order to further improve the breaking effect of the bird's nest agglomerate, the carding assembly 720 further comprises a hinged plate 723 hingedly connected with the mounting block 722, and the length direction of the hinged plate 723 is parallel to the length direction of the passage through which the bird's nest strip can pass.
[0040] As described in the foregoing embodiment, in the rotating process of the dispersing assembly 700, the bird's nest solid-liquid mixture can be received in the space formed by the carding assembly 720 and the collecting cylinder 710. The bird's nest solid-liquid mixture in the premixing cavity flows along a specific path and impacts the hinged plate 723, so that the hinged plate 723 presents an open state with the passing passage. When the dispersing assembly 700 moves from the first station to the second station, the collecting cylinder 710 is temporarily deflected. The hinged plate 723 and the rotating ring 721 in the carding assembly 720 interfere with the flow of the bird's nest solid-liquid mixture in the premixing cavity. At the same time, the hinged plate 723 rotates towards the side where the passing passage is located when it is deflected, presenting a state of closing the passing passage. At this time, the hinged 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 part of the agglomerated bird's nest, and more easily make the bird's nest gather in the collecting cylinder 710.
[0041] In a preferred embodiment of the present application, referring to Figures 8-11 , the carding assembly 720 further comprises a fixed sleeve 725 arranged on the collecting cylinder 710, a sliding dispersion mechanism 726 is slidingly arranged on the fixed sleeve 725, the sliding dispersion mechanism 726 is capable of sliding in the through hole 711 of the collecting cylinder 710, and a gear ring 724 is rotatably connected to the fixed sleeve 725. As Figure 4 shown, the rack further comprises a second rack 650, the gear ring 724 is in transmission connection with the second rack 650, a limiting structure is arranged in the gear ring 724, at least part of the sliding dispersion mechanism 726 abuts against the limiting structure, and when the gear ring 724 rotates, the sliding dispersion mechanism 726 is capable of reciprocating along the radial direction of the collecting cylinder 710.
[0042] As can be easily understood, referring to Figures 1-7 , the movable frame 610 is provided with a sliding groove for the rack to movably connect, specifically, in the present embodiment, it comprises a first rack 640 and a second rack 650, the movable frame 610 is provided with a first sliding groove 612, a second sliding groove 613 and a third sliding groove 614, wherein the first sliding groove 612 is for sliding connection of the second rack 650, and the third sliding groove 614 is for sliding connection of the first rack 640. More specifically, the raw material mixing device for bird's nest processing can further comprise a mixing shell 100 and a first annular frame 101, the mixing shell 100 has the premixing cavity, the second annular frame 102 is arranged in the premixing cavity, the first annular frame 101 is connected with the mixing shell 100, at least part of the rack abuts against the first annular frame 101, and when the movable frame 610 moves, the rack is constrained to move along the annular track of the first annular frame 101. More specifically, the raw material mixing device for bird's nest processing can further comprise a cover plate 200 to close the premixing cavity to avoid splashing of solid-liquid body when the carding and dispersion bird's nest.
[0043] Specifically, as Figure 7 shown, the adjusting assembly 600 further comprises a sliding frame 620, the sliding frame 620 is provided with a telescopic pipe 623, the telescopic pipe 623 is connected with the first rack 640 and the second rack 650 through a rotating shaft 630, the sliding frame 620 is slidingly arranged in the second sliding groove 613, and the first elastic element 622 is arranged between the sliding frame 620 and the second sliding groove 613. As Figure 7 shown, the first elastic element 622 can be a spring. The sliding frame 620 is further provided with a second top block 621, as Figure 2 shown.The 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, thereby ensuring the limiting of the first rack frame 640 and the second rack frame 650. Of course, the movable frame 610 can be provided with not only the protrusion 611 for being movably connected with the adjusting structure, but also a first top block 615, which can be kept in abutment 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 abutment state of the components, and can concentrate the force to avoid damage to other components.
[0044] Further, a plurality of carding assemblies 720 can be arranged in the dispersion assembly 700 to improve the working efficiency of carding the bird's nest, and therefore a plurality of rack frames can also be correspondingly arranged. In this embodiment, only the working principle is described, and the number of components, specifications and structural improvements made on the basis of the present application are within the protection scope of the present application.
[0045] Further, in order to facilitate the carding and dispersion of the bird's nest, in another preferred embodiment, the sliding dispersion mechanism 726 of the raw material mixing device for processing bird's nest includes a sliding pipe 7261 slidably connected with the fixed sleeve 725, and a piston rod 7262 movably connected with the sliding pipe 7261. The limiting structure has oppositely arranged first and second limiting surfaces 7241 and 7242, which are sequentially arranged along a first direction. The first direction is from the outside of the fixed sleeve 725 to the center of the fixed sleeve 725 in the radial direction. The piston rod 7262 abuts against the first limiting surface 7241.
[0046] As can be easily understood, referring to Figure 9 The piston rod 7262 can abut against the limiting structure in the gear ring 724, and the gear ring 724 can rotate on the fixed sleeve 725 under the transmission action of the rack frame on the gear ring 724. The second elastic element is arranged between the piston rod 7262 and the sliding pipe 7261, and is connected with the sliding pipe 7261 and can drive the sliding pipe 7261 to move in the radial direction of the collecting cylinder 710.
[0047] That is, the piston rod 7262 always abuts against the first limiting surface 7241 when the gear ring 724 rotates. The first limiting surface 7241 has a structure recessed in the first direction, and the second limiting surface 7242 has a structure protruding in the first direction. When the gear ring 724 rotates in the first direction, the piston rod 7262 abuts against the first limiting surface 7241, and when the gear ring 724 rotates in the second direction, the piston rod 7262 abuts against the second limiting surface 7242. Figure 9When the gear ring 724 rotates counterclockwise, the piston rod 7262 and the sliding tube 7261 will move towards the first direction, thereby inserting into the agglomerated bird's nest existing in the collection cylinder 710, and helping to break up the agglomerated bird's nest. The dispersion assembly 700 can include a plurality of sliding tubes 7261 and piston rods 7262 matched with the sliding tubes 7261. The sliding tubes 7261 can be uniformly arranged along the circumferential direction of the fixed sleeve 725, and a plurality of groups of sliding tubes 7261 can also be arranged along the axis of the fixed sleeve 725 to improve the efficiency of inserting and separating the agglomerated bird's nest.
[0048] In a preferred embodiment of the present application, the first limiting surface 7241 and the second limiting surface 7242 have a magnetic structure, and the through hole 711 and the piston rod 7262 are made of magnetic material. It is easy to understand that the piston rod 7262 made of magnetic material can be attracted by the first limiting surface 7241 with a magnetic structure, so as to ensure that the piston rod 7262 always abuts against the first limiting surface 7241. The side of the through hole 711 close to the second limiting surface 7242 can be made of magnetic material, and the second limiting surface 7242 can also have a magnetic structure, so as to ensure that the through hole 711 and the second limiting surface 7242 are relatively attracted. The gear ring 724 is in transmission connection with the second rack 650. When the raw material mixing device for processing bird's nest is working, the gear ring 724 actually rotates back and forth in a stroke, therefore, the attraction between the through hole 711 and the second limiting surface 7242 can ensure that the gear ring 724 is quickly reset.
[0049] Further, the sliding tube 7261 has a cavity and a tube hole communicating with the cavity. During the reciprocating rotation of the gear ring 724, the sliding tube 7261 actually performs the process of inserting into the center of the collection cylinder 710 and resetting, and the sliding tube 7261 will insert into the agglomerated bird's nest. During the insertion process, liquid can enter the cavity through the tube hole of the sliding tube 7261, and part of the liquid remains in the agglomerated bird's nest. The sliding tube 7261 can quickly drain the liquid therein, avoid the problem of bird's nest damage caused by mechanical separation, improve the dispersion effect of the bird's nest, and also improve the quality of the dispersed bird's nest.
[0050] Specifically, in a preferred embodiment of the present application, when the raw material mixing device for processing bird's nest is used, the bird's nest solid-liquid mixture can be put into the premixing cavity of the mixing shell 100. When the motor 300 drives the adjusting assembly 600, the adjusting assembly 600 can rotate counterclockwise as an example.
[0051] When the motor 300 starts, the adjusting assembly 600 rotates counterclockwise, and the dispersion assembly 700 abuts against the second annular frame 102, at this time, the dispersion assembly 700 is in the first working position. The dispersion assembly 700 collects the bird's nest solid-liquid mixture, the bird's nest that has been formed into strips can pass through the carding assembly 720, and the bird's nest that has been formed into clusters is blocked in the carding assembly 720 and the collecting cylinder 710, and with the continuous rotation of the dispersion assembly 700, the bird's nest that has been formed into clusters can be carded and scattered by the carding assembly 720.
[0052] With the continuous counterclockwise rotation of the adjusting assembly 600, the adjusting assembly 600 enters the groove 103 under the elastic action, at this time, the dispersion assembly 700 is in the second working position. The dispersion assembly 700 that is in transmission connection with the adjusting assembly 600 is deflected. At the same time, the first rack frame 640 and the second rack frame 650 are in relative motion with the movable frame 610.
[0053] The carding assembly 720 that is in transmission connection with the first rack frame 640 rotates, and the bird's nest that has been formed into clusters is carded and scattered.
[0054] The gear ring 724 that is in transmission connection with the second rack frame 650 rotates, and the sliding dispersion mechanism 726 in it can reciprocate along the radial direction of the collecting cylinder 710.
[0055] Specifically, the piston rod 7262 in the sliding dispersion mechanism 726 abuts against the first limiting surface 7241, and when the sliding dispersion mechanism 726 reciprocates radially, the sliding tube in the sliding dispersion mechanism 726 inserts the bird's nest that has been formed into clusters in the collecting cylinder. In the process of insertion, the liquid can enter the cavity through the pipe hole of the sliding tube 7261, and part of the liquid remains in the bird's nest that has been formed into clusters, and the sliding tube 7261 can quickly drain the liquid in it.
[0056] With the continuous counterclockwise rotation of the adjusting assembly 600, the adjusting assembly 600 is separated from the groove 103 and reenters the state of abutting against the second annular frame 102, and the dispersion assembly 700 is reset and returns to the first working position again, and sequentially reciprocates to work.
[0057] The technical features of the above embodiments can be combined arbitrarily, in order to make the description simple, not all possible combinations of the technical features in the above embodiments are described, however, as long as the combinations of the technical features do not exist contradictory, it should be considered that it is within the scope of the present application.
[0058] The above embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, several modifications and improvements can be made, which are within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A raw material mixing device for bird's nest processing, characterized in that, The application relates to a raw material mixing device for processing bird's nest, which comprises a premixing cavity for containing a bird's nest solid-liquid mixture, a second ring-shaped frame (102) provided with a plurality of grooves (103) in the premixing cavity, a stirring mechanism and an adjusting mechanism provided in the premixing cavity. The stirring mechanism can stir the bird's nest solid-liquid mixture in the premixing cavity under the drive of a driving mechanism. The adjusting mechanism comprises an adjusting plate (3000), a rotating mechanism (5000), an adjusting assembly (600) and a dispersing assembly (700), the adjusting plate (3000) is in transmission connection with the driving mechanism, the adjusting plate (3000) is provided with adjusting structures, the rotating mechanism (5000) is in transmission connection with the driving mechanism, the rotating mechanism (5000) is further elastically connected with the adjusting assembly (600), the adjusting assembly (600) can abut against the second ring-shaped frame (102) under the elastic action, the adjusting assembly (600) at least comprises a protruding block (611), the protruding block (611) is movably arranged in the adjusting structures, the dispersing assembly (700) has a collecting cylinder (710) for containing a bird's nest strip and a carding assembly (720) arranged on the collecting cylinder (710) for dispersing the bird's nest, the adjusting assembly (600) is in transmission connection with the dispersing assembly (700) and can drive the dispersing assembly (700) to move between a first station and a second station. When the adjusting assembly (600) abuts against the second ring-shaped frame (102), the dispersing assembly (700) is in the first station, when the adjusting assembly (600) abuts against the grooves (103) under the elastic action, the dispersing assembly (700) is in the second station, when the dispersing assembly (700) moves between the first station and the second station, the collecting cylinder (710) can deflect relative to the adjusting plate (3000).
2. The raw material mixing device for processing bird's nest according to claim 1, wherein the rotating mechanism (5000) comprises a rotating frame (500) in transmission connection with the driving mechanism and a plurality of connecting rods (501) arranged on the rotating frame (500), each connecting rod (501) is elastically connected with an adjusting assembly (600).
3. The raw material mixing device for processing bird's nest according to claim 1, wherein the adjusting assembly (600) comprises a movable frame (610) and a rack frame, the protruding block (611) is arranged on the movable frame (610), the rack frame is constrained to abut against the premixing cavity, the rack frame is in movable connection with the movable frame (610), a first elastic element is arranged between the rack frame and the movable frame (610), the first elastic element is connected with or in contact with the rack frame and can drive the rack frame to move in a specified direction, the carding assembly (720) is in transmission connection with the rack frame, when the rack frame moves, the carding assembly (720) can rotate along the circumference thereof. Further comprising: 4. The mixed raw material processing device for bird's nest according to claim 3, characterized in that, The mixing shell (100) has the premixing cavity, and the first annular frame (101) is connected with the mixing shell (100), and at least part of the rack frame abuts against the first annular frame (101), and when the movable frame (610) moves, the rack frame is constrained to move along the annular track of the first annular frame (101).
5. The raw material mixing device for bird's nest processing according to claim 4, characterized in that: The adjusting structure has a straight groove (301) and an inclined groove (302) which are communicated with each other and arranged at an angle; And / or, the stirring mechanism comprises at least one set of stirring blades (400), and one set of the stirring blades (400) comprises a plurality of blades arranged in a spiral shape, and the plurality of blades have at least one radially extending edge; And / or, the combing assembly (720) is movably arranged at one end of the collecting cylinder (710) or in the middle of the collecting cylinder (710).
6. The raw material mixing device for bird's nest processing according to claim 4, characterized in that: The combing assembly (720) comprises a rotating ring (721) movably connected with the collecting cylinder (710), the rotating ring (721) is in transmission connection with the rack frame, and the rotating ring (721) is further provided with mounting blocks (722) arranged at intervals thereon, and a passage for passing the bird's nest strips is formed between any two mounting blocks (722).
7. The raw material mixing device for bird's nest processing according to claim 6, characterized in that: The combing assembly (720) further comprises a hinged plate (723) hinged to the mounting blocks (722) and arranged in parallel with the length direction of the passage for passing the bird's nest strips.
8. The raw material mixing device for bird's nest processing according to claim 4, characterized in that: The combing assembly (720) further comprises a fixed sleeve (725) arranged on the collecting cylinder (710), a sliding dispersion mechanism (726) is slidably arranged on the fixed sleeve (725), the sliding dispersion mechanism (726) can slide in the through hole (711) of the collecting cylinder (710), a gear ring (724) is rotatably connected to the fixed sleeve (725), the gear ring (724) is in transmission connection with the rack frame, a limiting structure is arranged in the gear ring (724), at least part of the sliding dispersion mechanism (726) abuts against the limiting structure, and when the gear ring (724) rotates, the sliding dispersion mechanism (726) can reciprocate along the radial direction of the collecting cylinder (710).
9. The raw material mixing device for bird's nest processing according to claim 8, characterized in that: The sliding dispersion mechanism (726) comprises a plurality of sliding tubes (7261) in sliding connection with the fixed sleeve (725), and a piston rod (7262) in movable connection with the sliding tubes (7261), the limiting structure has oppositely arranged first and second limiting surfaces (7241, 7242), the first and second limiting surfaces (7241, 7242) are sequentially arranged along a first direction, the first direction is from the outside of the fixed sleeve (725) to the center of the fixed sleeve (725) in the radial direction, and the piston rod (7262) is in abutment with the first limiting surface (7241); Wherein, a second elastic element is arranged between the piston rod (7262) and the sliding tube (7261), and the second elastic element is connected with or in contact with the sliding tube (7261) and can drive the sliding tube (7261) to move in the radial direction of the collecting cylinder (710); Alternatively, the first limiting surface (7241) has a magnetic structure, and the piston rod (7262) is made of a magnetic material.
10. The raw material mixing device for bird's nest processing according to claim 9, characterized in that: The sliding tube (7261) has a cavity and a tube hole in communication with the cavity.
Citation Information
Patent Citations
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