A broiler processing internal organ cutting device
By designing an automatic diversion and cleaning viscera cutting device, the problems of low efficiency and difficult cleaning of existing devices are solved, achieving efficient and thorough chicken heart cutting.
Patent Information
- Application Number
- CN202310063757.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-06
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2043-02-06
AI Technical Summary
Existing broiler offal cutting devices are inefficient, require manual guidance for cutting chicken hearts, and the conveyor belt is contaminated with grease, which reduces friction and affects the cutting effect and efficiency.
An internal organ cutting device was designed, which includes a feeding mechanism, a conveying and cleaning mechanism, and a cutting mechanism. The device achieves automatic diversion and conveying of chicken hearts through a shaking mechanism, removes grease with a cleaning brush, fixes the chicken hearts with a squeezing conveyor belt, and cuts them with a cutting blade.
It improves the efficiency and integrity of chicken heart cutting, reduces labor consumption, ensures thorough cutting and cleanliness of the conveyor belt, and avoids problems such as chicken heart slippage and incomplete cutting.
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Figure CN118435986B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of broiler processing, in particular to a viscera cutting device for broiler processing. BACKGROUND
[0002] Broilers are the most common domestic poultry raised by humans. Domestic chickens are derived from wild jungle fowls. As our demand for chicken meat increases, we need to increase the number of broilers to meet the demand. After breeding, broilers need to be subjected to steps such as water flow depilation, evisceration, and gutting to complete the slaughtering and cleaning work. The subsequent broilers can be directly packaged and refrigerated before being sold. During the processing of broilers, manual assistance is required. After the broiler viscera is removed, the viscera needs to be cleaned and separated by hand, including fat, chicken intestines, chicken liver, chicken heart, and chicken gizzard. In order to ensure the subsequent processing of different viscera, it is necessary to separate them. When processing chicken heart or chicken gizzard, it needs to be cut open to facilitate subsequent marinating or flavoring.
[0003] The existing broiler viscera cutting device only simply satisfies the effect of cutting viscera. The chicken heart and other viscera need to be manually guided during cutting to ensure accurate transmission on the conveyor belt and complete cutting. However, this method is inefficient and labor-intensive. In addition, the existing device has many problems during use, such as the need for subsequent cleaning of the oil stains on the conveyor belt, which can reduce the friction on the conveyor belt over a long period of time, causing the chicken heart to slide on the conveyor belt during cutting, resulting in accumulation of chicken heart or incomplete cutting.
[0004] Therefore, we have developed a new viscera cutting device for broiler processing. SUMMARY
[0005] (I) Technical problems solved
[0006] In view of the deficiencies of the prior art, the present application provides a viscera cutting device for broiler processing, which solves the problem of the existing broiler viscera cutting device that the chicken heart and other viscera need to be manually guided during cutting, which is inefficient and labor-intensive. In addition, the oil stains on the conveyor belt need to be cleaned subsequently, which can reduce the friction on the conveyor belt over a long period of time, causing the chicken heart to slide on the conveyor belt during cutting, resulting in accumulation of chicken heart or incomplete cutting.
[0007] (II) Technical solutions
[0008]
[0009] Two said fixed plates are provided with a transmission cleaning mechanism, and two said fixed plates are fixedly connected with a fixed frame between the top of the fixed frame.
[0010] The fixed base is placed on one side of the transmission cleaning mechanism, and a support plate is fixedly connected between the two fixed plates.
[0011] Preferably, the feeding mechanism comprises a fixed bottom plate fixedly connected to the top of the fixed base, and a fixed sleeve is fixedly connected to each corner of the top of the fixed bottom plate.
[0012] Through the above technical scheme, when in use, the chicken hearts are poured on the storage bottom plate and the storage shell, and the first motor is started to rotate at the same time.
[0013] Preferably, the top of the bearing plate and the bottom of the storage bottom plate are rotatably connected.
[0014] Through the technical scheme, the bearing plate is ensured to rotate at the bottom of the storage bottom plate and complete the shaking of the storage bottom plate.
[0015] Preferably, the output end of the first motor is fixedly connected to the bottom bearing of the bearing plate, and the output end and the bottom bearing of the bearing plate are not concentric.
[0016] Through the technical scheme, because the output end and the bottom bearing of the bearing plate are not concentric, when the first motor output end drives the eccentric block to rotate, the inner wall of the bottom bearing is driven to rotate, and then the outer wall of the bottom bearing generates an upward and downward moving force on the entire bearing plate.
[0017] Preferably, the transmission and cleaning mechanism comprises a driving transmission shaft and a driven transmission roller rotatably connected between two fixed plates, the front ends of the driving transmission shaft and the driven transmission roller are fixedly connected with first gears, a first chain is installed between the two first gears, the front ends of the two fixed plates are fixedly connected with a protective shell, one side of the front face of the protective shell is fixedly connected with a second motor, a plurality of material transmission belts are installed between the driving transmission shaft and the driven transmission roller, the rear end of the driving transmission shaft is fixedly connected with a second gear, the bottoms of the two fixed plates are fixedly connected with fixed sleeves, a cleaning brush rod is rotatably connected between the two fixed sleeves, the rear end of the cleaning brush rod is fixedly connected with a third gear, and a second chain is installed between the second gear and the third gear.
[0018] Through the technical scheme, the second motor drives the driving transmission shaft to rotate through the corresponding first gear, and then drives the driven transmission roller and the corresponding first gear to rotate through the first chain, so that the plurality of material transmission belts are transmitted between the driving transmission shaft and the driven transmission roller. When the chicken hearts fall on the plurality of material transmission belts, they will be taken away by the material transmission belts. Since the chicken hearts will slightly rebound during the falling process, a plurality of channels are formed by the plurality of second limiting flow blocks, and one end of the channel is in the shape of an opening. The chicken hearts are transmitted into the channel and then back between the two material transmission belts, thereby ensuring the accuracy of the transmission position of the chicken hearts. At the same time, the second gear at the rear end of the driving transmission shaft is driven to rotate, the cleaning brush rod is driven to rotate between the two fixed sleeves through the second chain, and the bottom of the plurality of material transmission belts is continuously cleaned by the rotation of the brushes on the cleaning brush rod. The oil on the surface of the material transmission belts can be removed by spraying an oil-removing solution during use to assist in cleaning. The overall chicken hearts are ensured to rub on the material transmission belts, which provides convenience for subsequent cutting. The waste liquid generated during cleaning is collected by the waste collection box.
[0019] Preferably, a plurality of grooves corresponding to the material transmission belts are formed on the driving transmission shaft and the driven transmission roller.
[0020] The groove can be clamped with multiple material conveying belts, thereby achieving the limiting of the multiple material conveying belts, and the groove can form a gap between the multiple material conveying belts, thereby facilitating subsequent cutting operations.
[0021] Preferably, the multiple material conveying belts and the multiple second limiting flow dividing blocks are in one-to-one correspondence.
[0022] Through the above technical solution, the blocking and guiding of the multiple second limiting flow dividing blocks are guaranteed, and the chicken hearts conveyed on the multiple material conveying belts will move into the gap between the two material conveying belts under the limiting of the second limiting flow dividing blocks, thereby guaranteeing the cutting position of the chicken hearts and avoiding the situation that the sizes of the two halves of the chicken hearts differ too much.
[0023] Preferably, the cutting mechanism comprises a support frame fixedly connected to the two fixed plates, an inner wall of the support frame is rotatably connected with a driven extrusion roller and a driving extrusion roller, multiple extrusion conveying belts are installed between the driven extrusion roller and the driving extrusion roller, the driving extrusion roller and the front face center of the support frame are fixedly connected with a third motor and a fourth motor respectively, an output end of the fourth motor is fixedly connected with a rotating rod, and multiple cutting knives are fixedly connected to an outer wall of the rotating rod.
[0024] Through the above technical solution, the chicken hearts are conveyed on the multiple material conveying belts, the driving extrusion roller is rotated by the third motor, and the driven extrusion roller is rotated by the multiple extrusion conveying belts, the extrusion conveying belts and the material conveying belts produce a certain extrusion on the chicken hearts after contacting the chicken hearts, thereby avoiding the situation that the chicken hearts slide on the material conveying belts after contacting the cutting knives, which is not conducive to cutting, the support plate at the bottom of the material conveying belt can provide support to avoid the material conveying belt from sinking, the chicken hearts contact the cutting knives under the extrusion of the extrusion conveying belts and the material conveying belts, the multiple cutting knives are rotated by the fourth motor and cut the chicken hearts, the multiple cutting knives are rotated in front of the gaps between the multiple extrusion conveying belts and the multiple material conveying belts to achieve cutting, and the cut chicken hearts will fall into the internal organ collecting box under the conveying of the material conveying belts to complete collection.
[0025] Preferably, the top of the support plate is in close contact with the bottoms of the multiple material conveying belts, and multiple through holes corresponding to the cutting knives are formed in the support plate.
[0026] Through the above technical solution, it is guaranteed that the cutting knives can cut the chicken hearts by penetrating through the material conveying belts and the support plate, thereby making the cutting of the chicken hearts more complete and avoiding the situation that the chicken hearts are not cut open.
[0027] Preferably, the multiple material conveying belts and the multiple extrusion conveying belts are in one-to-one correspondence, and the linear velocities of the material conveying belts and the extrusion conveying belts are the same.
[0028] Through the technical scheme, the transmission of the chicken heart can be completed through two adjacent material conveying belts, and the fixed extrusion of the chicken heart can be completed through two adjacent extrusion conveying belts, so that the subsequent cutting of the chicken heart is facilitated, the sliding of the chicken heart is avoided, and the cutting effect is improved.
[0029] (III) Beneficial Effects
[0030] The application provides a viscera cutting device for broiler processing.
[0031] 1. The viscera cutting device for broiler processing, by designing the shaking mechanism, the first motor drives the bearing plate to move, eccentric motion is generated around the first motor output end, and the shaking of the storage bottom plate is realized through the bearing plate. The chicken heart will slowly descend along the inclined storage bottom plate under the shaking, and the chicken heart is divided through the plurality of first limiting flow dividing blocks, so that the chicken heart piling phenomenon is avoided, the artificial guidance of the chicken heart is avoided through the shaking mechanism, the manpower is saved, and the chicken heart can fall individually through the plurality of first limiting flow dividing blocks, and the subsequent cutting efficiency is improved.
[0032] 2. The viscera cutting device for broiler processing, by designing the transmission and cleaning mechanism, the transmission of the chicken heart is completed, the grease on the material conveying belt is cleaned through the driven cleaning brush rod, the friction of the material conveying belt is reduced, the extrusion conveying of the chicken heart is realized through the extrusion conveying belt and the material conveying belt, and the cutting tool is contacted, the fixation of the chicken heart is completed, the sliding of the chicken heart is avoided, the cutting efficiency is ensured, the knife can pass through the material conveying belt and the supporting plate to cut the chicken heart, the cutting of the chicken heart is more complete, and the uncut situation is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 It is a three-dimensional structure schematic diagram of the application;
[0034] Figure 2 It is a sectional structure schematic diagram of the application;
[0035] Figure 3 It is a top view structure schematic diagram of the application;
[0036] Figure 4 It is a three-dimensional structure schematic diagram of the loading mechanism of the application;
[0037] Figure 5 It is an explosion structure schematic diagram of the loading mechanism of the application;
[0038] Figure 6 It is a three-dimensional structure schematic diagram of the transmission and cleaning mechanism of the application;
[0039] Figure 7It is the side three-dimensional structure schematic view of the transmission cleaning mechanism of the application;
[0040] Figure 8 It is the structure schematic view of the fixed frame and the second limiting split flow block of the application;
[0041] Figure 9 It is the structure schematic view of the support plate of the application;
[0042] Figure 10 It is the structure schematic view of the cutting mechanism of the application.
[0043] Among them, 1, fixed base; 2, feeding mechanism; 201, fixed bottom plate; 202, fixed sleeve; 203, sliding rod; 204, first motor; 205, bearing plate; 206, storage bottom plate; 207, storage shell; 208, first limiting split flow block; 3, fixed plate; 4, transmission cleaning mechanism; 401, driving transmission shaft; 402, driven transmission roller; 403, first gear; 404, first chain; 405, second motor; 406, protective shell; 407, material transmission belt; 408, second gear; 409, fixed rotating sleeve; 410, cleaning brush rod; 411, third gear; 412, second chain; 5, fixed frame; 6, second limiting split flow block; 7, waste collection box; 8, support plate; 9, cutting mechanism; 901, support frame; 902, driven extrusion roller; 903, driving extrusion roller; 904, extrusion transmission belt; 905, third motor; 906, fourth motor; 907, rotating rod; 908, cutting tool; 10, internal organ collection box. DETAILED DESCRIPTION
[0044] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, not all the embodiments. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0045] As Figures 1-5As shown, the chicken processing visceral cutting device provided by the embodiment of the application comprises a fixed base 1, a feeding mechanism 2 fixedly connected to one side of the top of the fixed base 1, the feeding mechanism 2 comprising a fixed bottom plate 201 fixedly connected to one side of the top of the fixed base 1, a fixed sleeve 202 fixedly connected to each corner of the top of the fixed bottom plate 201, a sliding rod 203 slidably connected to each of the fixed sleeves 202, a first motor 204 fixedly connected to the top of the fixed bottom plate 201, a bearing plate 205 fixedly connected to the output end of the first motor 204, a storage bottom plate 206 fixedly connected to the top of the fixed bottom plate 201, a storage shell 207 fixedly connected to one side of the top of the storage bottom plate 206, and a plurality of first limiting flow dividing blocks 208 fixedly connected to one side of the top of the storage bottom plate 206.
[0046] As Figures 1-7As shown, the two fixed plates 3 are provided with a transmission cleaning mechanism 4, the transmission cleaning mechanism 4 includes driving transmission shaft 401 and driven transmission roller 402 rotatingly connected between the two fixed plates 3 respectively, the front ends of the driving transmission shaft 401 and the driven transmission roller 402 are fixedly connected with first gear 403, the two first gears 403 are installed with first chain 404, the front ends of the two fixed plates 3 are fixedly connected with protective shell 406, one side of the front of the protective shell 406 is fixedly connected with second motor 405, the driving transmission shaft 401 and the driven transmission roller 402 are installed with a plurality of material conveying belts 407, the rear end of the driving transmission shaft 401 is fixedly connected with second gear 408, the bottoms of the two fixed plates 3 are fixedly connected with fixed sleeves 409, the two fixed sleeves 409 are rotatingly connected with cleaning brush rod 410, the rear end of the cleaning brush rod 410 is fixedly connected with third gear 411, the second gear 408 and the third gear 411 are installed with second chain 412, the second motor 405 drives the driving transmission shaft 401 to rotate through the corresponding first gear 403, and then drives the driven transmission roller 402 and the corresponding first gear 403 to rotate through the first chain 404, realizes the transmission of the plurality of material conveying belts 407 between the driving transmission shaft 401 and the driven transmission roller 402, when the chicken hearts fall on the plurality of material conveying belts 407, they will be taken away by the material conveying belts 407, because the chicken hearts will rebound slightly during the falling process, a plurality of second limiting flow dividing blocks 6 form a plurality of channels, and one end of the channel is in the shape of an opening, the chicken hearts are conveyed into the channel and then return between the two material conveying belts 407, thereby ensuring the accuracy of the chicken heart conveying position, at the same time, the second gear 408 at the rear end of the driving transmission shaft 401 will rotate when the driving transmission shaft 401 rotates, the cleaning brush rod 410 will rotate between the two fixed sleeves 409 through the second chain 412, the bottom of the plurality of material conveying belts 407 is continuously swept by the rotation of the brushes on the cleaning brush rod 410, removing the grease on the surface (in the use process, it can be assisted by spraying oil-removing solution, etc.), ensuring the overall chicken heart on the material conveying belt 407, providing convenience for subsequent cutting, the waste liquid of cleaning will be collected by the waste collection box 7, a plurality of grooves corresponding to the material conveying belt 407 are formed on the driving transmission shaft 401 and the driven transmission roller 402, the grooves can clamp the plurality of material conveying belts 407, thereby realizing the limiting of the plurality of material conveying belts 407, and the grooves realize the formation of gaps between the plurality of material conveying belts 407, facilitating subsequent cutting operations, the plurality of material conveying belts 407 and the plurality of second limiting flow dividing blocks 6 are one-to-one corresponding, ensuring that the chicken hearts conveyed on the plurality of material conveying belts 407 are guided by the plurality of second limiting flow dividing blocks 6, and then moved into the gap between the two material conveying belts 407 under the limiting of the second limiting flow dividing blocks 6, thereby ensuring the cutting position of the chicken heart, avoiding the situation that the sizes of the two halves of the chicken heart are too different,A fixing frame 5 is fixedly connected between the tops of the two fixing plates 3, and multiple second limiting and diverting blocks 6 are fixedly connected to the bottom of the fixing frame 5;
[0047] like Figures 1-10 As shown, a waste collection box 7 corresponding to the conveying and cleaning mechanism 4 is placed on one side of the fixed base 1. A support plate 8 is fixedly connected to one side between the two fixed plates 3. A cutting mechanism 9 is installed on one side of the two fixed plates 3. The cutting mechanism 9 includes a support frame 901 fixedly connected to the two fixed plates 3. A driven extrusion roller 902 and a driven extrusion roller 903 are rotatably connected to the inner wall of the support frame 901. Multiple extrusion conveyor belts 904 are installed between the driven extrusion roller 902 and the driven extrusion roller 903. A third motor 905 and a fourth motor 906 are fixedly connected to the front end of the driven extrusion roller 903 and the front center of the support frame 901, respectively. A rotating rod 907 is fixedly connected to the output end of 906. Multiple cutting blades 908 are fixedly connected to the outer wall of the rotating rod 907. The chicken heart is conveyed on multiple material conveyor belts 407. At the same time, the third motor 905 drives the active extrusion roller 903 to rotate, which in turn drives the driven extrusion roller 902 to rotate through multiple extrusion conveyor belts 904. After contacting the chicken heart, the extrusion conveyor belts 904 and the material conveyor belts 407 exert a certain amount of extrusion on the chicken heart to prevent it from sliding on the material conveyor belts 407 after contacting the cutting blades 908, which would be detrimental to cutting. In addition, the support plate 8 at the bottom of the material conveyor belts 407 can provide support to prevent the material conveyor belts 407 from slipping. Under the compression and transmission of the extrusion conveyor belt 904 and the material conveyor belt 407, the chicken heart comes into contact with the cutting blade 908. At the same time, the fourth motor 906 drives multiple cutting blades 908 to rotate and cut off the chicken heart. The multiple cutting blades 908 rotate in front of the gaps between the multiple extrusion conveyor belts 904 and the multiple material conveyor belts 407 to achieve cutting. The cut chicken heart will fall into the internal organ collection box 10 for collection under the transmission of the material conveyor belt 407. The top of the support plate 8 and the bottom of the multiple material conveyor belts 407 are in close contact, and the support plate 8 has multiple through holes corresponding to the cutting blades 908 to ensure that the cutting blades 908 can pass through. The chicken heart is cut through the material conveyor belt 407 and the support plate 8, so that the cutting of the chicken heart is more thorough and avoids the occurrence of uncut chicken heart. Multiple material conveyor belts 407 and multiple extrusion conveyor belts 904 correspond one-to-one, and the linear speed of the material conveyor belts 407 and extrusion conveyor belts 904 is the same, so that the chicken heart can be transferred through two adjacent material conveyor belts 407. With the help of two adjacent extrusion conveyor belts 904, the chicken heart can be fixed and extruded, which facilitates the subsequent cutting of the chicken heart better, avoids slippage, and improves the cutting effect. The cutting mechanism 9 has an internal organ collection box 10 placed on the side away from the feeding mechanism 2.
[0048] Work principle: the chicken heart is poured on the storage bottom plate 206 and the storage shell 207, and the first motor 204 is started to rotate. The eccentric block fixedly connected to the output end of the first motor 204 is installed on the inner wall of the bottom bearing of the bearing plate 205. When the first motor 204 drives the eccentric block to rotate, it drives the inner wall of the bottom bearing to rotate, and then drives the bearing plate 205 to move up and down through the outer wall of the bottom bearing. When the bearing plate 205 moves, it rotates at the bottom of the storage bottom plate 206 and produces an up-and-down shaking effect on the storage bottom plate 206. At the same time, the plurality of sliding rods 203 slide in the plurality of fixed sleeves 202, and the plurality of sliding rods 203 at the bottom of the plurality of sliding rods 203 and the top inner surface of the plurality of fixed sleeves 202 are compressed to compress the corresponding springs. The plurality of sliding rods 203 sliding in the plurality of fixed sleeves 202 can limit the overall storage bottom plate 206, and the plurality of springs can make the rising storage bottom plate 206 quickly descend under the pull of the plurality of springs to achieve shaking. The chicken heart will slowly descend along the inclined storage bottom plate 206 under the shaking, pass through the plurality of first limiting distribution blocks 208 to distribute the chicken heart, and the channel formed between the plurality of first limiting distribution blocks 208 can only pass through one chicken heart. As the chicken heart shakes, it will continue to descend until it falls on the plurality of material conveying belts 407. The second motor 405 drives the driving transmission shaft 401 to rotate through the corresponding first gear 403, and then drives the driven transmission roller 402 and the corresponding first gear 403 to rotate through the first chain 404, so as to realize the transmission of the plurality of material conveying belts 407 between the driving transmission shaft 401 and the driven transmission roller 402. When the chicken heart falls on the plurality of material conveying belts 407, it will be taken away by the material conveying belt 407. A plurality of channels are formed by the plurality of second limiting distribution blocks 6, and one end of the channel is in the shape of an opening. The chicken heart is conveyed into the channel and returns to between the two material conveying belts 407, thereby ensuring the accuracy of the chicken heart conveying position. At the same time, the second gear 408 at the rear end of the driving transmission shaft 401 rotates when the driving transmission shaft 401 rotates, and the cleaning brush rod 410 rotates between the two fixed sleeves 409 through the second chain 412. The oil on the bottom of the plurality of material conveying belts 407 is continuously removed by the rotation of the brush on the cleaning brush rod 410, thereby ensuring the friction of the overall chicken heart on the material conveying belt 407 and providing convenience for subsequent cutting. The cleaning waste liquid is collected by the waste collection box 7. The chicken heart is conveyed on the plurality of material conveying belts 407, and the third motor 905 drives the driving extrusion roller 903 to rotate, thereby driving the driven extrusion roller 902 to rotate through the plurality of extrusion conveying belts 904. After contacting the chicken heart, the extrusion conveying belt 904 and the material conveying belt 407 produce a certain extrusion on the chicken heart, thereby avoiding the chicken heart sliding on the material conveying belt 407 after contacting the cutting tool 908, thereby being not conducive to cutting. The support plate 8 at the bottom of the material conveying belt 407 can provide support to avoid the material conveying belt 407 sinking.The gizzards are in contact with the cutting knives 908 under the extrusion transmission of the extrusion transmission belts 904 and the material transmission belts 407, while the fourth motor 906 drives the plurality of cutting knives 908 to rotate, and the gizzards are cut off. The plurality of cutting knives 908 rotate before the gaps of the plurality of extrusion transmission belts 904 and the plurality of material transmission belts 407 respectively, cutting is realized, and the cut gizzards fall into the inside of the viscera collecting box 10 under the transmission of the material transmission belts 407 to complete collection.
[0049] While embodiments of the present application have been shown and described with reference to particular embodiments thereof, it will be understood by those of ordinary skill in the art that various changes in form and details can be made therein without departing from the spirit and scope of the present application as defined by the following claims and their equivalents.
Claims
1. A viscera cutting device for broiler processing comprising a stationary base (1) characterized in that: The top side of the fixed base (1) is fixedly connected with a feeding mechanism (2), the feeding mechanism (2) comprises a fixed bottom plate (201) fixedly connected to the top side of the fixed base (1), each corner of the top of the fixed bottom plate (201) is fixedly connected with a fixed sleeve (202), a plurality of the fixed sleeves (202) are slidably connected with a sliding rod (203), the top of the fixed bottom plate (201) is fixedly connected with a first motor (204), the output end of the first motor (204) is fixedly connected with a bearing plate (205), the top of the fixed bottom plate (201) is fixedly connected with a storage bottom plate (206), the top of the storage bottom plate (206) is fixedly connected with a storage shell (207), the top side of the storage bottom plate (206) is fixedly connected with a plurality of first limiting flow blocks (208), and the front and rear ends of one side of the fixed base (1) are provided with fixed plates (3); Two the fixed plates (3) are provided with a transmission and cleaning mechanism (4), the transmission and cleaning mechanism (4) comprises a driving transmission shaft (401) and a driven transmission roller (402) rotatably connected between the two fixed plates (3), respectively, the front ends of the driving transmission shaft (401) and the driven transmission roller (402) are fixedly connected with first gears (403), two the first gears (403) are provided with a first chain (404), the front ends of the two fixed plates (3) are fixedly connected with a protective shell (406), one side of the front of the protective shell (406) is fixedly connected with a second motor (405), a plurality of material transmission belts (407) are installed between the driving transmission shaft (401) and the driven transmission roller (402), the rear end of the driving transmission shaft (401) is fixedly connected with a second gear (408), the bottoms of the two fixed plates (3) are fixedly connected with fixed rotating sleeves (409), a cleaning brush rod (410) is rotatably connected between the two fixed rotating sleeves (409), the rear end of the cleaning brush rod (410) is fixedly connected with a third gear (411), the second gear (408) and the third gear (411) are provided with a second chain (412), a plurality of the material transmission belts (407) and a plurality of second limiting flow blocks (6) are in one-to-one correspondence, the top of the two fixed plates (3) is fixedly connected with a fixed frame (5), the bottom of the fixed frame (5) is fixedly connected with a plurality of second limiting flow blocks (6); One side of the fixed base (1) is provided with a waste collection box (7) corresponding to the transmission cleaning mechanism (4), one side between the two fixed plates (3) is fixedly connected with a supporting plate (8), one side of the two fixed plates (3) is provided with a cutting mechanism (9), the cutting mechanism (9) comprises a supporting frame (901) fixedly connected on the two fixed plates (3), the inner walls of the supporting frame (901) are rotatably connected with a driven extrusion roller (902) and a driving extrusion roller (903) respectively, a plurality of extrusion transmission belts (904) are installed between the driven extrusion roller (902) and the driving extrusion roller (903), the driving extrusion roller (903) and the front end and the front center of the supporting frame (901) are fixedly connected with a third motor (905) and a fourth motor (906) respectively, the output end of the fourth motor (906) is fixedly connected with a rotating rod (907), a plurality of cutting tools (908) are fixedly connected on the outer wall of the rotating rod (907), the top of the supporting plate (8) and the bottom of the plurality of material transmission belts (407) are close, and a plurality of through holes corresponding to the cutting tools (908) are formed in the supporting plate (8), the plurality of material transmission belts (407) and the plurality of extrusion transmission belts (904) are one-to-one corresponding, and the linear velocities of the material transmission belts (407) and the extrusion transmission belts (904) are the same, the cutting mechanism (9) is provided with an internal organ collection box (10) away from the feeding mechanism (2), the plurality of material transmission belts (407) and the plurality of second limiting shunt blocks (6) are one-to-one corresponding, which ensures that the chicken hearts on the plurality of material transmission belts (407) are guided by the blocking of the plurality of second limiting shunt blocks (6) and move into the gap between the two material transmission belts (407), so as to ensure the cutting position of the chicken heart and avoid the case that the sizes of the two halves of the chicken heart are too different.
2. A giblet cutting apparatus for broiler processing according to claim 1, characterized in that: The top of the bearing plate (205) and the bottom of the storage bottom plate (206) are rotatably connected.
3. The gizzard cutting apparatus for broiler processing according to claim 1, wherein: The output end of the first motor (204) is fixedly connected to the bottom bearing of the bearing plate (205), and the output end and the bottom bearing of the bearing plate (205) are different in center.
4. The gizzard cutting apparatus for broiler processing according to claim 1, wherein: A plurality of grooves corresponding to the material transmission belt (407) are formed in the driving transmission shaft (401) and the driven transmission roller (402).
Citation Information
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