A transportation device for a sausage processing production line
By designing a meat sausage processing production line transportation device that includes components such as feeding spiral blades, guide protection wheels, transition support blocks, etc., the impact deformation problem caused by drop during the meat sausage transportation is solved, and the smooth transportation of meat sausage and the guarantee of product quality is achieved.
Patent Information
- Application Number
- CN202411746399.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2044-12-02
AI Technical Summary
When the existing meat sausage conveying device transfers the meat sausage from one conveyor belt to the next, the drop causes the meat sausage to be impacted, causing local deformation and affecting the processing quality.
A meat sausage processing production line transportation device is designed, including a conveying support frame, a conveying support roller, a feeding support frame, a conveying drive motor, a feeding hopper, a guide swing arm, a transition support block and a feeding protection mechanism. Through the gradient design of the spiral blades and the elastic buffer layer, the impact force of the sausage when it falls is alleviated; the guide protective wheel and the balanced connection spring realize the flexible guidance of the sausage; the transition support block and the transition connection block evenly distribute the load to avoid local stress concentration.
Effectively protect the damage of the meat sausage during the transportation process, eliminate the impact deformation of the transport, achieve smooth transitional transportation, maintain stable cross-sectional shape, improve the stability of the transportation process, and ensure product quality.
Smart Images

Figure CN119284494B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sausage processing, and particularly relates to a transportation device for a sausage processing production line. Background Art
[0002] As a key device in the meat product processing production line, the performance of the sausage conveying device directly affects the product quality. In the prior art, the sausage conveying mainly adopts methods such as belt conveyors and roller conveyors. When conveying sausages, generally, workers directly place the sausages on the conveyor, and the conveyor transports the sausages to different workers for further processing.
[0003] The existing patent with publication number CN109329359B discloses a sausage processing line, which includes a meat cutting device, a stirring device, an enema device, and a steaming device arranged in sequence. The meat cutting device includes a meat cutting machine frame, a conveyor belt, a rotary cutting knife for slicing arranged on the meat cutting machine frame, and a dicing knife for cutting the sliced meat pieces into meat cubes; the conveyor belt includes an upper conveyor belt and a lower conveyor belt located below the upper conveyor belt. The rotary cutting knife is located at the end of the upper conveyor belt, and the head of the lower conveyor belt is located below the rotary cutting knife; the rotary cutting knife includes a rotating shaft, an eccentric wheel arranged on the rotating shaft, and a slicing knife head arranged on the eccentric wheel; the dicing knife includes a tool base, a knife head hinge seat arranged on the tool base, a knife shaft hinged on the knife head hinge seat, a plurality of knife heads fixed on the knife shaft, a driving mechanism for driving all the knife heads to act, and a knife handle. The ends of all the knife heads are fixedly connected to the knife handle. In the present invention, the meat cutting device, the stirring device, the enema device, and the steaming device are integrated into a production line, and the working efficiency is high.
[0004] However, in the existing belt conveying device, when the sausage is transferred from one conveyor belt to the next conveyor belt, due to the height difference, the sausage will be subjected to an impact force, resulting in local deformation and affecting the processing quality of the sausage. Summary of the Invention
[0005] In view of this, the present invention provides a transportation device for a sausage processing production line, which realizes the protection of the sausage during transportation, avoids damage to the sausage during transportation, eliminates the impact deformation during transfer, realizes smooth transition transportation, maintains the stability of the cross-sectional shape, eliminates the influence of fluctuating loads, maintains the continuity of the supporting force, ensures the stability of the movement trajectory, the transportation process is smooth and continuous, each mechanism works in coordination, and the system runs stably and reliably. This solution systematically solves the core problems such as deformation, fluctuation, and instability in the sausage conveying process, solves the problem of sausage conveying deformation, improves the stability of the conveying process, and ensures the product quality.
[0006] The present invention provides the purpose and efficacy of a transportation device for a sausage processing production line, including a conveying support frame, conveying support rollers, a feeding support frame, a conveying drive motor, a feeding hopper, a feeding drive motor, a feeding speed reducer, a guiding swing arm, a transition support block, a feeding protection mechanism, and a transition material guiding mechanism;
[0007] A plurality of groups of the conveying support rollers are provided, and the plurality of groups of conveying support rollers are all rotatably connected to the inner side of the conveying support frame, and the plurality of groups of conveying support rollers are all connected by chain drive;
[0008] The feeding support frame is welded to the upper rear end of the conveying support frame;
[0009] The conveying drive motor is fixedly connected to the lower left end of the conveying support frame, the rotating shaft of the conveying drive motor is connected with a planetary differential structure through a coupling, and the planetary differential of the conveying drive motor is connected with the conveying support rollers by chain drive;
[0010] The feeding hopper is fixedly connected to the upper end of the feeding support frame, and the lower end of the feeding hopper is connected with a cylindrical structure;
[0011] The feeding drive motor is fixedly connected to the right side of the feeding support frame;
[0012] The feeding speed reducer is fixedly connected to the right side of the feeding support frame, and the feeding speed reducer is in transmission connection with the feeding drive motor;
[0013] A plurality of groups of the guiding swing arms are provided, and the plurality of groups of guiding swing arms are respectively rotatably connected to the turning positions above the conveying support frame, and the plurality of groups of guiding swing arms are all in an "I" - shaped structure;
[0014] The transition support block is arranged at the front end of the conveying support frame, the transition support block is a wedge - shaped structure with an arc - shaped upper end, and a convex block structure is arranged at the front end of the transition support block;
[0015] The feeding protection mechanism is arranged above the conveying support frame;
[0016] The transition material guiding mechanism is arranged below the transition support block.
[0017] Further, the feeding protection mechanism includes: a feeding spiral blade;
[0018] The feeding spiral blade is rotatably connected inside the cylindrical structure of the feeding hopper, the lower end of the feeding spiral blade is in transmission connection with the output shaft of the feeding speed reducer through a chain, the feeding spiral blade is in a gradually changing structure from the feeding end to the discharging end, the outer diameter of the feeding spiral blade becomes smaller from large, the pitch becomes smaller from large, and an elastic buffer layer covers the surface of the feeding spiral blade.
[0019] Further, the feeding protection mechanism further includes: a feeding buffer groove;
[0020] There are multiple groups of the feeding buffer grooves, and all the multiple groups of feeding buffer grooves are circular groove structures. The multiple groups of feeding buffer grooves are respectively opened on the outer side of the elastic buffer layer of the feeding spiral blade.
[0021] Furthermore, the feeding protection mechanism further includes: a feeding guide plate and a feeding protection plate;
[0022] The feeding guide plate is fixedly connected to the lower end of the cylindrical structure of the feeding hopper, and the feeding guide plate is communicated with the inside of the cylindrical structure of the feeding hopper;
[0023] There are two groups of the feeding protection plates, and the two groups of feeding protection plates are respectively fixedly connected to the left and right sides of the feeding guide plate.
[0024] Furthermore, the feeding protection mechanism further includes: a conveying positioning groove;
[0025] There are multiple groups of the conveying positioning grooves, and all the multiple groups of conveying positioning grooves are V-shaped groove structures. The multiple groups of conveying positioning grooves are respectively opened on the outer circumference of the conveying support rollers.
[0026] Furthermore, the feeding protection mechanism further includes: a guiding protection wheel and a balance connecting spring;
[0027] There are multiple groups of the guiding protection wheels, and the multiple groups of guiding protection wheels are respectively rotatably connected to the inner sides of the guiding swing arms. The outer circumferential surfaces of the multiple groups of guiding protection wheels are all convex arcs;
[0028] There are multiple groups of the balance connecting springs, and all the multiple groups of balance connecting springs are torsion spring structures. The multiple groups of balance connecting springs are respectively fixedly connected above the conveying support frame, and the multiple groups of balance connecting springs are all arranged on the outer circumference of the rotating shaft of the guiding swing arm.
[0029] Furthermore, the transition feeding mechanism includes: a transition support sliding seat and a transition connecting slider;
[0030] The transition support sliding seat is fixedly connected to the front lower end of the conveying support frame, and a guide rail structure is arranged at the upper end of the transition support sliding seat;
[0031] The transition connecting slider is slidably connected to the upper end of the transition support sliding seat.
[0032] Furthermore, the transition feeding mechanism further includes: a transition connecting block;
[0033] There are multiple sets of the said transition connection blocks, and all the multiple sets of transition connection blocks are wedge structures. The front ends of the multiple sets of transition connection blocks are all provided with tongue structures, and the rear ends of the multiple sets of transition connection blocks are all provided with groove structures. The tongues of the multiple sets of transition connection blocks are respectively arranged inside the grooves of the front set of transition connection blocks. The multiple sets of transition connection blocks are hinged by a shaft pin. Among them, the lowermost set of transition connection blocks is fixedly connected above the transition connection slider, and the uppermost set of transition connection blocks is hinged to the transition support block by a shaft pin.
[0034] Beneficial effects:
[0035] Through the setting of the feeding protection mechanism of the present invention, when the sausage is conveyed, the sausage is put into the inner part of the feeding hopper at this time. Under the action of its own weight, the sausage moves downward along the feeding spiral blade. Through the design that the outer diameter of the feeding spiral blade becomes smaller from large and the pitch becomes smaller from large, the sausage can move downward slowly, avoiding damage caused by the rapid fall of the sausage during feeding. At the same time, the elastic buffer layer covered on the surface of the feeding spiral blade realizes the buffering of the sausage. At the same time, the feeding buffer groove provides elastic buffering to form an "elastic support structure". This design cooperates with the "outer diameter becoming smaller from large" and "pitch becoming smaller from large" of the feeding spiral blade to relieve the impact force brought by free fall and enable the sausage to obtain progressive buffer support.
[0036] Through the setting of the feeding protection mechanism of the present invention, when the sausage reaches the position of the guiding swing arm, at this time the sausage contacts the guiding protection wheel. Under the combined action of the guiding protection wheel and the balance connecting spring, the dynamic guiding during the turning conveyance is realized, the flexible guiding of the sausage is realized, and the protection of the sausage during conveyance is realized.
[0037] Through the setting of the transition feeding mechanism of the present invention, the arc structure of the transition support block can better adapt to the shape of the sausage, enabling the sausage to smoothly reach the inclined surface of the transition support block. The sausage reaches the inclined surface of the transition connection block along the inclined surface of the transition support block, realizing the uniform distribution of the load, solving the problem of local stress concentration, and ensuring the stability of the conveying process. Description of the drawings
[0038] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.
[0039] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0040] In the drawings:
[0041] Figure 1 is the overall structure schematic diagram of the embodiment of the present invention.
[0042] Figure 2 is the structure schematic diagram of the conveying drive motor of the embodiment of the present invention.
[0043] Figure 3 It is a schematic structural diagram of the conveying positioning groove of an embodiment of the present invention.
[0044] Figure 4 It is a schematic structural diagram of the feeding protection plate of an embodiment of the present invention.
[0045] Figure 5 It is a schematic structural diagram of the feeding protection mechanism of an embodiment of the present invention.
[0046] Figure 6 It is a schematic structural diagram of the transition connection block of an embodiment of the present invention.
[0047] Figure 7 It is a schematic structural diagram of the guiding protection wheel of an embodiment of the present invention.
[0048] Figure 8 It is a schematic structural diagram of the transition feeding mechanism of an embodiment of the present invention.
[0049] List of reference numerals
[0050] 1. Conveying support frame; 101. Feeding spiral blade; 102. Feeding buffer groove; 103. Feeding guide plate; 104. Feeding protection plate; 105. Conveying positioning groove; 106. Guiding protection wheel; 107. Balanced connecting spring; 2. Conveying support roller; 3. Feeding support frame; 4. Conveying drive motor; 5. Feed hopper; 6. Feed drive motor; 7. Feed reducer; 8. Guiding swing arm; 9. Transition support block; 901. Transition support slide; 902. Transition connecting slider; 903. Transition connection block. Detailed implementation manners
[0051] Embodiment 1: Please refer to Figures 1 to 7 as shown:
[0052] The present invention provides a transportation device for a sausage processing production line, including a conveying support frame 1, a conveying support roller 2, a feeding support frame 3, a conveying drive motor 4, a feed hopper 5, a feed drive motor 6, a feed reducer 7, a guiding swing arm 8, a transition support block 9 and a feeding protection mechanism;
[0053] A plurality of groups of conveying support rollers 2 are provided, and the plurality of groups of conveying support rollers 2 are all rotatably connected to the inner side of the conveying support frame 1, and the plurality of groups of conveying support rollers 2 are all connected by chain drive;
[0054] The feeding support frame 3 is welded above the rear end of the conveying support frame 1;
[0055] The conveying drive motor 4 is fixedly connected to the lower left end of the conveying support frame 1. The rotating shaft of the conveying drive motor 4 is connected with a planetary differential structure through a coupling. The planetary differential of the conveying drive motor 4 is connected to the conveying support roller 2 through a chain drive;
[0056] The feeding hopper 5 is fixedly connected to the upper end of the feeding support frame 3. The lower end of the feeding hopper 5 is connected with a cylindrical structure;
[0057] The feeding drive motor 6 is fixedly connected to the right side of the feeding support frame 3;
[0058] The feeding speed reducer 7 is fixedly connected to the right side of the feeding support frame 3. The feeding speed reducer 7 is in transmission connection with the feeding drive motor 6;
[0059] A plurality of guiding swing arms 8 are provided. The plurality of guiding swing arms 8 are respectively rotatably connected at the turning position above the conveying support frame 1. The plurality of guiding swing arms 8 are all in an "I"-shaped structure;
[0060] The transition support block 9 is arranged at the front end of the conveying support frame 1. The transition support block 9 is a wedge-shaped structure with an arc-shaped upper end. A convex block structure is arranged at the front end of the transition support block 9;
[0061] The feeding protection mechanism is arranged above the conveying support frame 1.
[0062] Among them, the feeding protection mechanism includes: a feeding spiral blade 101, a feeding buffer groove 102, a feeding guide plate 103, a feeding protection plate 104, a conveying positioning groove 105, a guiding protection wheel 106 and a balance connecting spring 107;
[0063] The feeding spiral blade 101 is rotatably connected inside the cylindrical structure of the feeding hopper 5. The lower end of the feeding spiral blade 101 is in transmission connection with the output shaft of the feeding speed reducer 7 through a chain. The feeding spiral blade 101 is in a gradually changing structure from the feeding end to the discharging end. The outer diameter of the feeding spiral blade 101 becomes smaller from large, and the pitch becomes smaller from large. The surface of the feeding spiral blade 101 is covered with an elastic buffer layer;
[0064] A plurality of feeding buffer grooves 102 are provided. The plurality of feeding buffer grooves 102 are all in an annular groove structure. The plurality of feeding buffer grooves 102 are respectively opened on the outer side of the elastic buffer layer of the feeding spiral blade 101;
[0065] The feeding guide plate 103 is fixedly connected to the lower end of the cylindrical structure of the feeding hopper 5. The feeding guide plate 103 is communicated with the inside of the cylindrical structure of the feeding hopper 5;
[0066] Two groups of feeding protection plates 104 are provided. The two groups of feeding protection plates 104 are respectively fixedly connected to the left and right sides of the feeding guide plate 103;
[0067] There are multiple sets of conveying positioning grooves 105, and all the multiple sets of conveying positioning grooves 105 are V-shaped groove structures. The multiple sets of conveying positioning grooves 105 are respectively opened on the outer circumference of the conveying support roller 2;
[0068] There are multiple sets of guiding and protecting wheels 106. The multiple sets of guiding and protecting wheels 106 are respectively rotatably connected to the inner side of the guiding swing arm 8, and the outer circumferential surfaces of the multiple sets of guiding and protecting wheels 106 are all convex arc-shaped;
[0069] There are multiple sets of balance connection springs 107. All the multiple sets of balance connection springs 107 are torsion spring structures. The multiple sets of balance connection springs 107 are respectively fixedly connected above the conveying support frame 1, and the multiple sets of balance connection springs 107 are all arranged on the outer circumference of the rotating shaft of the guiding swing arm 8.
[0070] During use, when conveying the sausage, the sausage is placed into the inner part of the feeding hopper 5 at this time. Under the action of its own weight, the sausage moves downward along the feeding spiral blade 101. Through the design that the outer diameter of the feeding spiral blade 101 becomes smaller from large and the pitch becomes smaller from large, the sausage can move downward slowly, avoiding damage caused by the rapid fall of the sausage during feeding. At the same time, the elastic buffer layer covered on the surface of the feeding spiral blade 101 realizes the buffering of the sausage. At the same time, the feeding buffer groove 102 provides elastic buffering to form an "elastic support structure". The purpose of this design in cooperation with the "outer diameter of the feeding spiral blade 101 becoming smaller from large and the pitch becoming smaller from large" is to relieve the impact force brought by the free fall, enabling the sausage to obtain a progressive buffer support. Turn on the feeding drive motor 6. The rotation of the rotating shaft of the feeding drive motor 6 drives the rotation of the output shaft of the feeding speed reducer 7. The rotation of the output shaft of the feeding speed reducer 7 drives the rotation of the feeding spiral blade 101. The rotation of the feeding spiral blade 101 conveys the sausage above the feeding guide plate 103. The feeding guide plate 103 guides the sausage above the conveying support roller 2. Turn on the conveying drive motor 4. The conveying drive motor 4 drives the conveying support roller 2 to rotate. The rotation of the conveying support roller 2 realizes the conveying of the sausage. The planetary differential structure of the conveying drive motor 4 in cooperation with the support and guidance of the conveying positioning groove 105 realizes the tension compensation during the material conveying process. When the sausage reaches the position of the guiding swing arm 8, at this time the sausage contacts the guiding and protecting wheel 106. Under the combined action of the guiding and protecting wheel 106 and the balance connection spring 107, the dynamic guiding during the turning conveying is realized, the flexible guiding of the sausage is realized, and the protection of the sausage during conveying is realized.
[0071] Embodiment 2:
[0072] The present invention provides a transportation device for a sausage processing production line. On the basis of Embodiment 1, as Figures 1 to 8 shown, it further includes a transition guiding mechanism. The transition guiding mechanism is arranged below the transition support block 9,
[0073] Among them, the transition feeding mechanism includes: a transition support slide 901, a transition connection slider 902, and a transition connection block 903;
[0074] The transition support slide 901 is fixedly connected to the front lower end of the conveying support frame 1, and a guide rail structure is provided at the upper end of the transition support slide 901;
[0075] The transition connection slider 902 is slidably connected to the upper end of the transition support slide 901;
[0076] There are multiple groups of transition connection blocks 903. All the multiple groups of transition connection blocks 903 are wedge-shaped structures. Tongue structures are provided at the front ends of all the multiple groups of transition connection blocks 903, and groove structures are provided at the rear ends of all the multiple groups of transition connection blocks 903. The tongues of the multiple groups of transition connection blocks 903 are respectively arranged inside the grooves of the front group of transition connection blocks 903. The multiple groups of transition connection blocks 903 are hinged by a pin. Among them, the lowermost group of transition connection blocks 903 is fixedly connected above the transition connection slider 902, and the uppermost group of transition connection blocks 903 is hinged to the transition support block 9 by a pin.
[0077] During use, when the sausage reaches the position of the transition support block 9, at this time, the arc structure of the transition support block 9 can better adapt to the shape of the sausage, enabling the sausage to smoothly reach the inclined surface of the transition support block 9. The sausage reaches the inclined surface of the transition connection block 903 along the inclined surface of the transition support block 9, achieving uniform distribution of the load, solving the problem of local stress concentration, and ensuring the stability of the conveying process.
[0078] In this article, the following points need to be noted:
[0079] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.
[0080] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0081] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A sausage processing production line transport device, comprising a conveying support frame (1), a conveying support roller (2), a feeding support frame (3), a conveying drive motor (4), a feeding hopper (5), a feeding drive motor (6), a feeding reducer (7), a guide swing arm (8), a transition support block (9), a transition support slide (901), a transition connection slide block (902), a feeding protection mechanism and a transition guide mechanism; characterized in that: The conveying support rollers (2) are provided with a plurality of groups, and the plurality of groups of conveying support rollers (2) are all rotatably connected to the inner side of the conveying support frame (1), and the plurality of groups of conveying support rollers (2) are all connected via chain transmission; the loading support frame (3) is welded to the upper rear end of the conveying support frame (1); the conveying drive motor (4) is fixedly connected to the lower left end of the conveying support frame (1), the rotating shaft of the conveying drive motor (4) is connected to a planetary differential structure via a coupling, and the planetary differential of the conveying drive motor (4) is connected to the conveying support rollers (2) via chain transmission; The feed hopper (5) is fixedly connected to the upper end of the feeding support frame (3), and the lower end of the feed hopper (5) is connected to a cylindrical structure; the feed drive motor (6) is fixedly connected to the right side of the feeding support frame (3); the feed reducer (7) is fixedly connected to the right side of the feeding support frame (3), and the feed reducer (7) is transmission-connected to the feed drive motor (6); a plurality of guide swing arms (8) are provided, and the plurality of guide swing arms (8) are respectively rotationally connected to the upper turning points of the conveying support frame (1), and the plurality of guide swing arms (8) are all "I"-shaped structures; The feeding protection mechanism further comprises: a guide protection wheel (106) and a balance connection spring (107); the guide protection wheel (106) is provided in a plurality of groups, the plurality of guide protection wheels (106) are respectively rotatably connected to the inner side of the guide swing arm (8), and the outer circumferential surfaces of the plurality of guide protection wheels (106) are all convex arc-shaped; the balance connection spring (107) is provided in a plurality of groups, the plurality of balance connection springs (107) are all torsion spring structures, the plurality of balance connection springs (107) are respectively fixedly connected to the top of the conveying support frame (1), and the plurality of balance connection springs (107) are all arranged on the outer periphery of the rotating shaft of the guide swing arm (8); The feeding protection mechanism comprises a feeding spiral blade (101); the feeding spiral blade (101) is rotatably connected to the inside of the cylindrical structure of the feeding hopper (5); the feeding spiral blade (101) presents a gradual structure from the feeding end to the discharging end; the outer diameter of the feeding spiral blade (101) changes from large to small, and the pitch changes from large to small; The transition support block (9) is arranged at the front end of the conveying support frame (1), the transition support block (9) is a wedge block structure with an arc shape at the upper end, and a convex block structure is arranged at the front end of the transition support block (9); the transition support slide (901) is fixedly connected to the front lower end of the conveying support frame (1), and a guide rail structure is arranged at the upper end of the transition support slide (901); the transition connection slide block (902) is slidably connected to the upper end of the transition support slide block (901); the feeding protection mechanism is arranged above the conveying support frame (1); The transition material guide mechanism is arranged below the transition support block (9); the transition material guide mechanism also includes: a transition connection block (903); the transition connection blocks (903) are arranged in multiple groups, the multiple groups of transition connection blocks (903) are all wedge block structures, the front ends of the multiple groups of transition connection blocks (903) are all provided with tongue structures, the rear ends of the multiple groups of transition connection blocks (903) are all provided with groove structures, the tongues of the multiple groups of transition connection blocks (903) are respectively arranged inside the grooves of the front group of transition connection blocks (903), and the multiple groups of transition connection blocks (903) are hinged by axle pins, wherein the bottom group of transition connection blocks (903) is fixedly connected to the top of the transition connection slider (902), and the top group of transition connection blocks (903) is hinged to the transition support block (9) by axle pins.
2. A sausage processing production line transport device as claimed in claim 1, characterized in that: The lower end of the feeding spiral blade (101) is drivingly connected to the output shaft of the feeding reducer (7) via a chain, and the surface of the feeding spiral blade (101) is covered with an elastic buffer layer.
3. A sausage processing production line transport device as claimed in claim 2, characterized in that: The feeding protection mechanism further comprises: a feeding buffer groove (102); a plurality of feeding buffer grooves (102) are provided, the plurality of feeding buffer grooves (102) are all annular groove structures, and the plurality of feeding buffer grooves (102) are respectively opened on the outside of the elastic buffer layer of the feeding spiral blade (101).
4. A sausage processing production line transport device as claimed in claim 3, characterized in that: The feeding protection mechanism further comprises: a feeding guide plate (103) and a feeding protection plate (104); the feeding guide plate (103) is fixedly connected to the lower end of the cylindrical structure of the feeding hopper (5), and the feeding guide plate (103) is communicated with the inside of the cylindrical structure of the feeding hopper (5); two groups of the feeding protection plates (104) are provided, and the two groups of feeding protection plates (104) are respectively fixedly connected to the left and right sides of the feeding guide plate (103).
5. A sausage processing production line transport device as claimed in claim 4, characterized in that: The feeding protection mechanism further comprises: a conveying positioning groove (105); a plurality of conveying positioning grooves (105) are provided, the plurality of conveying positioning grooves (105) are all V-shaped groove structures, and the plurality of conveying positioning grooves (105) are respectively arranged on the outer circumference of the conveying support roller (2).
Citation Information
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