Conveying equipment and transfer method for cooked beef processing
By introducing sprocket assembly, press assembly and cleaning assembly into the conveying equipment, and using the powertrain to drive the bar cam and crank shaft to rotate, the problem of incomplete penetration of sauce and difficulty in cleaning is solved, achieving a more efficient pickling and cleaning effect.
Patent Information
- Application Number
- CN202510856186.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the marinating process of existing beef products, it is difficult for the sauce to penetrate into the tight meat pieces, and the cleaning of the conveyor is difficult.
A conveying device is designed, including a sprocket assembly, a pressing assembly and a cleaning assembly, which drives the bar cam and crank shaft to rotate through the powertrain to achieve up and down pressing of beef and permeation of the sauce, and clean after the delivery is completed.
Improves the marinating effect and cleaning efficiency of beef, ensures that the sauce is fully penetrated and simplifies the cleaning process of the conveyor.
Smart Images

Figure CN120397641A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of conveying equipment, and in particular to a conveying equipment and a transfer method for cooked beef processing. Background Art
[0002] Industrial food processing refers to the large-scale production process of converting agricultural products or raw materials into food through mechanized, automated equipment and standardized technological processes. Food intelligent manufacturing realizes the intelligence, flexibility and traceability of the entire production process through technologies such as the Internet of Things (IoT), artificial intelligence (AI), big data, and robots. The core of the combination of the two is to improve the flexibility and intelligence level on the basis of large scale, which is the main trend of the development of the food industry in recent years. Among them, in the beef product processing industry, beef transmission and transfer equipment is essential. How to empower its technology and promote the high efficiency and sustainability of beef product production will become an important topic.
[0003] There are still certain deficiencies in the production of existing beef products: for example, before cutting beef, it is often necessary to marinate the beef. At this time, the beef is intermittently conveyed to the injection station mainly through a roller conveyor. The syringe at the injection station inserts into the beef from top to bottom and injects sauce, making the beef more flavorful. However, for more compact meat pieces, the sauce is difficult to penetrate inward from the beef and often seeps back to the surface of the beef, resulting in limited marinating effect. Secondly, the conveyor belt on the roller conveyor is composed of multiple thin wheels, and it is very easy for residual sauce to accumulate at the gaps between the thin wheels, making the cleaning work difficult. Summary of the Invention
[0004] In view of the deficiencies of the prior art, the present invention provides a conveying equipment and a transfer method for cooked beef processing, which have the advantages of improving the beef marinating effect and being convenient for cleaning, and solve the problems of poor marinating effect when the conveyor applies sauce to the beef and the difficulty of cleaning the conveyor itself for the sauce.
[0005] To solve the above technical problems, the present invention provides the following technical solution: A conveying equipment, including a conveyor housing, an injection mechanism arranged on the conveyor housing, an upper protective housing is further arranged on the top of the conveyor housing, a cleaning component and a pressing component are installed in the upper protective housing, a sprocket component is arranged inside the conveyor housing, and a power assembly is arranged outside the conveyor housing;
[0006] The sprocket component includes a plurality of evenly distributed base shafts and strip cams rotatably connected to the base shafts, and the power assembly is used to drive the sprocket component to operate and then convey beef;
[0007] The pressing assembly includes a crankshaft installed in the upper protective shell. The power assembly is used to drive the crankshaft to rotate and press the top of the beef. The power assembly is also used to drive a bar-shaped cam at the bottom of the upper protective shell to rotate and press the bottom of the beef;
[0008] The cleaning assembly includes a spray pipe installed in the upper protective shell. The cleaning assembly is used to clean the pressing assembly and the sprocket assembly;
[0009] The power assembly drives the sprocket assembly to operate, forcing the beef to pass through the injection mechanism and inside the upper protective shell in sequence. When the beef passes inside the upper protective shell, the power assembly forces the crankshaft and the bar-shaped cam to rotate and press both sides of the beef. After the conveying work is completed, the cleaning assembly operates to clean the rotating crankshaft and bar-shaped cam.
[0010] Preferably, the sprocket assembly includes a main shaft and a sub-shaft. Two main sprockets are fixed on the main shaft, and two sub-sprockets are fixed on the sub-shaft. The main sprockets and the sub-sprockets are all connected by chains. Both ends of the base shaft are fixedly connected to the two chains respectively. The power assembly includes a motor fixed on the side of the conveyor housing, and the output shaft of the motor is fixedly connected to the end of the main shaft.
[0011] Preferably, transmission gears are fixedly connected to both ends of the bar-shaped cam. The power assembly further includes two transmission racks fixed inside the conveyor housing. The transmission racks correspond to the position of the upper protective shell, and the two transmission racks respectively correspond to the transmission gears at both ends of the bar-shaped cam.
[0012] Preferably, a plurality of uniformly distributed vertical sliding grooves are formed on both sides of the upper protective shell. A collar is rotatably connected to the crank of the crankshaft. Sliders are rotatably connected to both ends of the crankshaft. The two sliders are respectively slidably connected to the vertical sliding grooves on both sides of the upper protective shell. The power assembly further includes a driving wheel, a driven wheel, a guiding wheel and a tensioning wheel. The driving wheel, the driven wheel, the guiding wheel and the tensioning wheel are connected by a belt. The driving wheel is fixed on the output shaft of the motor, the driven wheel is fixed on the end of the crankshaft, the guiding wheel is rotatably connected to the conveyor housing through a first rotating shaft, and the tensioning wheel is installed on the conveyor housing through a regulator.
[0013] Preferably, the crankshaft and the sliders are provided in multiple groups and correspond to the vertical sliding grooves one by one. Regulators for adjusting the height of the crankshaft are installed on both sides of the upper protective shell. The regulator includes a vertical cylinder fixed on the side wall of the upper protective shell. A cross bar is fixed to the output end of the vertical cylinder. The cross bar is fixed to the sliders at the ends of each crankshaft. Driving gears are also fixed to both ends of the crankshaft. A driven gear is provided on the surface of the cross bar. The driven gear is rotatably connected to the cross bar through a second rotating shaft. The driven gear meshes with the two adjacent driving gears simultaneously.
[0014] Preferably, the regulator includes a transverse cylinder fixed to the side wall of the conveyor housing. The output end of the transverse cylinder is fixed with a movable block, which is slidably connected to the conveyor housing. A third rotating shaft is fixed on the movable block, and the third rotating shaft is rotatably connected to the tension pulley.
[0015] Preferably, the cleaning assembly includes a water pump fixed to the conveyor housing. The drainage end of the water pump is fixed with a water pipe. One end of the spray pipe is fixedly connected to the water pipe, and nozzles are installed at the bottom of the spray pipe.
[0016] Preferably, a first magnetic block is fixed to one side of the bottom of the strip cam close to the discharging direction of the conveyor. A plurality of uniformly distributed mounting rods are fixed inside the conveyor housing. The mounting rods correspond to the injection mechanism in position, and a second magnetic block is fixed on the surface of the mounting rods.
[0017] Preferably, a water collecting tank is fixedly connected below the conveyor housing, and the water collecting tank is used for collecting sauce and cleaning liquid.
[0018] Preferably, the transfer method for processing cooked beef uses a conveying device as described in any one of the claims-.
[0019] Compared with the prior art, the present invention provides a conveying device and a transfer method for processing cooked beef, having the following beneficial effects:
[0020] 1. For the conveying device and the transfer method for processing cooked beef, by providing a plurality of rotatable strip cams on the sprocket assembly of the conveyor, and arranging a pressing assembly above the conveyor, the power assembly can drive the strip cams and the crankshaft on the pressing assembly to rotate, so as to press the upper and lower surfaces of the beef when the beef moves, which can promote the beef to absorb the sauce, thereby promoting the pickling effect. And after the conveying is completed, the cleaning assembly can clean the crankshaft and the strip cams. Since the crankshaft and the strip cams can rotate, the surface can be washed more thoroughly, and the cleaning efficiency is higher and the effect is better.
[0021] 2. For the conveying device and the transfer method for processing cooked beef, by setting a regulator, starting the vertical cylinder can drive all the crankshafts to move vertically, which is beneficial to making the crankshaft adapt to beef with different thicknesses. By the telescopic movement of the transverse cylinder to drive the movable block to slide, when the movable block slides, it drives the third rotating shaft and the tension pulley to move, thereby adjusting the tension of the belt, and further ensuring that the crankshaft can still drive normally after adjustment.
[0022] 3. The conveying device and the transfer method for cooked beef processing can rotate the strip cam to move under the injection mechanism by setting the first magnetic block and the second magnetic block and using the repulsive force, avoiding the too-fast loss of sauce, ensuring that the beef is in more sufficient contact with the sauce at this time, and further improving the absorption effect of the sauce. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 Schematic three-dimensional structure of a conveying device of the present invention Figure 1 ;
[0024] Figure 2 Schematic three-dimensional structure of a conveying device of the present invention Figure 2 ;
[0025] Figure 3 Cross-sectional view of the conveyor housing of the present invention;
[0026] Figure 4 Schematic structural diagram of the sprocket assembly of the present invention;
[0027] Figure 5 Schematic structural diagram of the power assembly of the present invention;
[0028] Figure 6 For the present invention Figure 5 Enlarged view of part A;
[0029] Figure 7 Exploded view of the structure of the upper protective shell of the present invention;
[0030] Figure 8 Schematic structural diagram of the mounting rod of the present invention.
[0031] In the figure: 1, conveyor housing; 2, injection mechanism; 3, upper protective shell; 31, vertical chute; 4, cleaning component; 41, spray pipe; 42, water pipe; 43, water pump; 5, pressing component; 51, crankshaft; 52, collar; 53, slider; 54, driving gear; 6, sprocket assembly; 61, base shaft; 62, strip cam; 63, main shaft; 64, auxiliary shaft; 65, main sprocket; 66, auxiliary sprocket; 67, chain; 68, transmission gear; 7, power assembly; 71, motor; 72, transmission rack; 73, driving wheel; 74, driven wheel; 75, guide wheel; 76, tensioning wheel; 77, belt; 78, first rotating shaft; 8, controller; 81, horizontal cylinder; 82, movable block; 83, third rotating shaft; 9, regulator; 91, vertical cylinder; 92, cross bar; 93, driven gear; 94, second rotating shaft; 10, first magnetic block; 11, mounting rod; 12, second magnetic block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0033] As introduced in the background art, there are deficiencies in the prior art. To solve the above technical problems, the present application proposes a conveying device and a transfer method for cooked beef processing.
[0034] Embodiment 1: Please refer to Figures 1-4 , a conveying device, including a conveyor housing 1, an injection mechanism 2 provided on the conveyor housing 1, an upper protective housing 3 is further provided on the top of the conveyor housing 1, a cleaning component 4 and a pressing component 5 are installed in the upper protective housing 3, a sprocket component 6 is provided inside the conveyor housing 1, and a power assembly 7 is provided outside the conveyor housing 1;
[0035] The sprocket component 6 includes a plurality of evenly distributed base shafts 61 and a strip-shaped cam 62 rotatably connected to the base shafts 61. The power assembly 7 is used to drive the sprocket component 6 to operate and then convey beef;
[0036] The pressing component 5 includes a crankshaft 51 installed in the upper protective housing 3. The power assembly 7 is used to drive the crankshaft 51 to rotate to press the top of the beef, and the power assembly 7 is also used to drive the strip-shaped cam 62 at the bottom of the upper protective housing 3 to rotate to press the bottom of the beef;
[0037] The cleaning component 4 includes a spray pipe 41 installed in the upper protective housing 3. The cleaning component 4 is used to clean the pressing component 5 and the sprocket component 6;
[0038] The power assembly 7 drives the sprocket component 6 to operate, forcing the beef to pass through the injection mechanism 2 and inside the upper protective housing 3 in sequence. When the beef passes through the upper protective housing 3, the power assembly 7 forces the crankshaft 51 and the strip-shaped cam 62 to rotate to press both sides of the beef. When the conveying work is completed, the cleaning component 4 operates to clean the rotating crankshaft 51 and the strip-shaped cam 62.
[0039] Among them, the injection mechanism 2 is used to inject sauce into the beef, and its structure is the same as that of the prior art. The upper protective housing 3 provides a shield around the cleaning component 4 to avoid water splashing during the cleaning process. In practical applications, openings are provided at both the feeding end and the discharging end of the upper protective housing 3, and vertical strip-shaped plastic films are installed at the openings for waterproofing. When the equipment is operating, the processed beef blocks are densely laid on the strip-shaped cam 62, and the strip-shaped cam 62 outside the injection mechanism 2 and below the upper protective housing 3 is in a natural drooping state;
[0040] During use, the powertrain 7 is started. The powertrain 7 drives the movement of a number of basic shafts 61 and crankshafts 51 on the sprocket assembly 6, thereby driving the movement of the beef. When the beef moves to the bottom of the injection mechanism 2, the injection mechanism 2 injects sauce into the beef. When the beef injected with sauce moves into the upper protective shell 3, the powertrain 7 drives the crankshaft 51 to rotate, intermittently pressing the top of the beef. At the same time, the strip cam 62 at the bottom of the beef rotates, intermittently squeezing the bottom of the beef. The top and bottom of the beef are pressed simultaneously, which can promote the absorption and penetration of the sauce on the surface and inside of the beef, achieving the effect of promoting pickling. After the conveying work is completed, the cleaning assembly 4 operates, spraying cleaning liquid onto the crankshaft 51 and the strip cam 62 through the spray pipe 41 to achieve cleaning. Since the crankshaft 51 and the strip cam 62 can both rotate under the action of the powertrain 7 at this time, the surfaces of the crankshaft 51 and the strip cam 62 can be fully cleaned, thereby improving the cleaning efficiency;
[0041] By arranging a plurality of rotatable strip cams 62 on the sprocket assembly 6 of the conveyor and arranging a pressing assembly 5 above the conveyor, and using the powertrain 7 to drive the rotation of the strip cam 62 and the crankshaft 51 on the pressing assembly 5, the upper and lower surfaces of the beef can be pressed when the beef moves, which can promote the absorption of sauce by the beef, thereby promoting the pickling effect. And after the conveying is completed, the cleaning assembly 4 can clean the crankshaft 51 and the strip cam 62. Since the crankshaft 51 and the strip cam 62 can rotate, the surfaces can be more fully rinsed, and the cleaning efficiency is higher and the effect is better.
[0042] Embodiment 2: Refer to Figure 4 , different from the above embodiment, the sprocket assembly 6 includes a main shaft 63 and a sub-shaft 64. Two main sprockets 65 are fixed on the main shaft 63, and two sub-sprockets 66 are fixed on the sub-shaft 64. The main sprockets 65 and the sub-sprockets 66 are connected by chains 67 respectively. Both ends of the basic shaft 61 are fixedly connected to two chains 67 respectively. The powertrain 7 includes a motor 71 fixed on the side of the conveyor housing 1, and the output shaft of the motor 71 is fixedly connected to the end of the main shaft 63.
[0043] Among them, the main sprockets 65 and the sub-sprockets 66 have the same specifications. The basic shaft 61 is located between the two chains 67 and both ends are fixedly connected to the sides of the chains 67. There is a gap between adjacent strip cams 62. During use, the motor 71 is started. After the motor 71 operates, it drives the main shaft 63 to rotate. When the main shaft 63 rotates, it drives the two main sprockets 65 to rotate simultaneously, thereby driving the two chains 67 and the sub-sprockets 66 to move synchronously. When the chains 67 move, they drive the basic shaft 61 and the strip cams 62 on the basic shaft 61 to move, realizing the conveying work of the beef;
[0044] By setting the motor 71, the motor 71 can be used to drive a plurality of strip cams 62 to move along with the chain 67, which is beneficial to support and convey the beef.
[0045] Embodiment 3, refer to Figure 3 and Figure 4 , different from the above embodiments, both ends of the strip cam 62 are fixedly connected with transmission gears 68, and the power assembly 7 further includes two transmission racks 72 fixed inside the conveyor housing 1. The transmission racks 72 correspond to the position of the upper protective shell 3, and the two transmission racks 72 respectively correspond to the transmission gears 68 at both ends of the strip cam 62.
[0046] Among them, the direction of the transmission rack 72 is consistent with the moving track of the strip cam 62. When in use, when the strip cam 62 moves into the upper protective shell 3, the transmission gear 68 contacts the transmission rack 72 and rolls along the transmission rack 72, driving the strip cam 62 to rotate around the base shaft 61. When the strip cam 62 rotates, it jacks up the local position at the bottom of the beef to achieve an extrusion effect, which is beneficial to promoting the absorption of the sauce by the beef.
[0047] Embodiment 4, refer to Figures 5-7 , different from the above embodiments, a plurality of uniformly distributed vertical chutes 31 are provided on both sides of the upper protective shell 3. A collar 52 is rotatably connected to the crank of the crankshaft 51. Sliders 53 are rotatably connected to both ends of the crankshaft 51. The two sliders 53 are respectively slidably connected to the vertical chutes 31 on both sides of the upper protective shell 3. The power assembly 7 further includes a driving wheel 73, a driven wheel 74, a guide wheel 75 and a tensioning wheel 76. The driving wheel 73, the driven wheel 74, the guide wheel 75 and the tensioning wheel 76 are connected by a belt 77. The driving wheel 73 is fixed on the output shaft of the motor 71. The driven wheel 74 is fixed at the end of the crankshaft 51. The guide wheel 75 is rotatably connected to the conveyor housing 1 through a first rotating shaft 78. The tensioning wheel 76 is installed on the conveyor housing 1 through a regulator 8. The crankshaft 51 and the sliders 53 are provided in multiple groups and correspond to the vertical chutes 31 one by one. Regulators 9 for adjusting the height of the crankshaft 51 are installed on both sides of the upper protective shell 3. The regulator 9 includes a vertical cylinder 91 fixed on the side wall of the upper protective shell 3. A cross bar 92 is fixed at the output end of the vertical cylinder 91. The cross bar 92 is fixed to the sliders 53 at the ends of each crankshaft 51. Driving gears 54 are also fixed at both ends of the crankshaft 51. A driven gear 93 is provided on the surface of the cross bar 92. The driven gear 93 is rotatably connected to the cross bar 92 through a second rotating shaft 94. The driven gear 93 meshes with two adjacent driving gears 54 at the same time;
[0048] Among them, the driven wheel 74 is fixed to one of several crankshafts 51. The driving wheel 73, the driven wheel 74, and the guide wheel 75 are all arranged inside the belt 77, and the tensioning wheel 76 is arranged outside the belt 77. When in use, when the motor 71 operates, it drives the driving wheel 73 to rotate. The driving wheel 73 drives the belt 77 to move, and then drives the guide wheel 75, the tensioning wheel 76, and the driven wheel 74 to rotate simultaneously. When the driven wheel 74 rotates, it drives the crankshaft 51 to rotate. When the crankshaft 51 rotates, it also drives the driving gear 54 to rotate. When the driving gear 54 rotates, it drives the adjacent driven gear 93 to rotate. When the driven gear 93 rotates, it drives another driving gear 54 to rotate. Therefore, when one crankshaft 51 rotates, it can drive all the crankshafts 51 to rotate. At this time, all the crankshafts 51 rotate, so that the collar 52 intermittently contacts and presses the beef at the bottom. In addition, if the thickness of the beef changes, in order to ensure that the beef is reasonably pressed when the crankshaft 51 rotates, the height of the crankshaft 51 can be controlled by the regulator 9. At this time, the vertical cylinder 91 is started. When the vertical cylinder 91 operates, it drives the cross bar 92 to move downward. When the cross bar 92 moves downward, it drives several sliders 53 to move downward, and then drives the crankshaft 51 to move downward;
[0049] When the motor 71 operates, it can also drive multiple crankshafts 51 to rotate through the driving wheel 73, the driven wheel 74, the guide wheel 75, the tensioning wheel 76, the belt 77, the driving gear 54, and the driven gear 93, so that the collar 52 on the crankshaft 51 intermittently presses the surface of the beef, thereby improving the absorption effect of the beef on the sauce. By setting the regulator 9, starting the vertical cylinder 91 can drive all the crankshafts 51 to move vertically, which is beneficial to making the crankshaft 51 adapt to beef with different thicknesses.
[0050] Embodiment Five. Refer to Figure 6 In this embodiment, different from the above embodiments, the regulator 8 includes a horizontal cylinder 81 fixed to the side wall of the conveyor housing 1. The output end of the horizontal cylinder 81 is fixed with a movable block 82. The movable block 82 is slidably connected to the conveyor housing 1. A third rotating shaft 83 is fixed on the movable block 82, and the third rotating shaft 83 is rotatably connected to the tensioning wheel 76.
[0051] Among them, when the height of the crankshaft 51 is adjusted, the position of the driven wheel 74 at the end of the crankshaft 51 changes accordingly. To ensure the transmission effect of the power assembly 7, the position of the tensioning wheel 76 needs to be adjusted. At this time, the horizontal cylinder 81 is started. The horizontal cylinder 81 expands and contracts to drive the movable block 82 to slide. When the movable block 82 slides, it drives the third rotating shaft 83 and the tensioning wheel 76 to move, thereby adjusting the tension of the belt 77, and further ensuring that the crankshaft 51 can still be normally transmitted after adjustment.
[0052] Embodiment Six. Refer to Figures 3-5, different from the above embodiments, the cleaning assembly 4 includes a water pump 43 fixed to the conveyor housing 1. A water pipe 42 is fixed to the drainage end of the water pump 43. One end of the spray pipe 41 is fixedly connected to the water pipe 42, and nozzles are installed at the bottom of the spray pipe 41.
[0053] Among them, the water inlet end of the water pump 43 is externally connected to a water source. When the water pump 43 is started, the cleaning liquid is conveyed into the water pipe 42, then enters the spray pipe 41, and finally sprays out through the nozzles to clean the crankshaft 51 and the strip cam 62 at the bottom, which can significantly improve the cleaning efficiency.
[0054] Embodiment Seven, refer to Figure 4 and Figure 8 , different from the above embodiments, a first magnet 10 is fixed to one side of the bottom of the strip cam 62 close to the conveyor discharge direction. A plurality of uniformly distributed mounting rods 11 are fixed to the inner side of the conveyor housing 1. The mounting rods 11 correspond to the injection mechanism 2 in position, and a second magnet 12 is fixed to the surface of the mounting rods 11.
[0055] Among them, the first magnet 10 and the second magnet 12 have the same poles facing each other. When in use, when the strip cam 62 moves below the injection mechanism 2, the second magnet 12 generates a repulsive force on the first magnet 10, causing the strip cam 62 to rotate. When the strip cam 62 rotates from the vertical state to the horizontal state, the gap between adjacent strip cams 62 is greatly reduced. Therefore, below the injection mechanism 2, the sauce will not quickly pass through the strip cam 62, and the retention of the sauce enables the beef to come into contact with the sauce more at this time;
[0056] By setting the first magnet 10 and the second magnet 12, the repulsive force can be used to make the strip cam 62 rotate when it moves below the injection mechanism 2, avoid the sauce from flowing away too quickly, ensure that the beef comes into contact with the sauce more fully at this time, and further improve the absorption effect of the sauce.
[0057] Embodiment Eight, a transfer method for cooked beef processing. This transfer method for cooked beef processing uses a conveying device in the above embodiments.
[0058] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A conveying device, comprising a conveyor housing and an injection mechanism provided on the conveyor housing, characterized in that: A top protection shell is also provided on the top of the conveyor housing. A cleaning assembly and a pressing assembly are installed in the top protection shell. A sprocket assembly is arranged in the conveyor housing, and a power assembly is arranged outside the conveyor housing. The sprocket assembly includes a plurality of uniformly distributed base shafts and strip cams rotatably connected to the base shafts. The power assembly is used to drive the sprocket assembly to operate and then convey beef. The pressing assembly includes a crankshaft installed in the top protection shell. The power assembly is used to drive the crankshaft to rotate and press the top of the beef. The power assembly is also used to drive the strip cam at the bottom of the top protection shell to rotate and press the bottom of the beef. The cleaning assembly includes a spray pipe installed in the top protection shell. The cleaning assembly is used to clean the pressing assembly and the sprocket assembly. The power assembly drives the sprocket assembly to operate, forcing the beef to pass through the injection mechanism and inside the top protection shell in sequence. When the beef passes through the inside of the top protection shell, the power assembly forces the crankshaft and the strip cam to rotate and press both sides of the beef. After the conveying work is completed, the cleaning assembly operates to clean the rotating crankshaft and strip cam.
2. The conveying device according to claim 1, characterized in that: The sprocket assembly includes a main shaft and a sub-shaft. Two main sprockets are fixed on the main shaft, and two sub-sprockets are fixed on the sub-shaft. The main sprockets and the sub-sprockets are connected by chains. Both ends of the base shaft are fixedly connected to the two chains respectively. The power assembly includes a motor fixed on the side of the conveyor housing, and the output shaft of the motor is fixedly connected to the end of the main shaft.
3. A conveying device according to claim 2, wherein: Both ends of the strip cam are fixedly connected with transmission gears. The power assembly also includes two transmission racks fixed on the inner side of the conveyor housing. The transmission racks correspond to the position of the top protection shell, and the two transmission racks respectively correspond to the transmission gears at both ends of the strip cam.
4. The conveying device according to claim 3, characterized in that: A plurality of uniformly distributed vertical chutes are provided on both sides of the top protection shell. A collar is rotatably connected to the crank of the crankshaft. Sliders are rotatably connected to both ends of the crankshaft. The two sliders are respectively slidably connected to the vertical chutes on both sides of the top protection shell. The power assembly also includes a driving wheel, a driven wheel, a guide wheel and a tensioning wheel. The driving wheel, the driven wheel, the guide wheel and the tensioning wheel are connected by a belt. The driving wheel is fixed on the output shaft of the motor, the driven wheel is fixed on the end of the crankshaft, the guide wheel is rotatably connected to the conveyor housing through a first rotating shaft, and the tensioning wheel is installed on the conveyor housing through a regulator.
5. A conveying device according to claim 4, characterized in that: The crankshaft and the sliders are provided in multiple groups and correspond to the vertical chutes one by one. Regulators for adjusting the height of the crankshaft are installed on both sides of the top protection shell. The regulator includes a vertical cylinder fixed on the side wall of the top protection shell. The output end of the vertical cylinder is fixed with a cross bar. The cross bar is fixed to the sliders at the ends of each crankshaft. Active gears are also fixed at both ends of the crankshaft. A driven gear is provided on the surface of the cross bar. The driven gear is rotatably connected to the cross bar through a second rotating shaft. The driven gear meshes with the two adjacent active gears simultaneously.
6. The conveying device according to claim 5, wherein: The regulator includes a transverse cylinder fixed to the side wall of the conveyor housing. The output end of the transverse cylinder is fixed with a movable block, which is slidably connected to the conveyor housing. A third rotating shaft is fixed to the movable block, and the third rotating shaft is rotatably connected to the tensioning wheel.
7. A conveying device according to claim 6, characterized in that: The cleaning assembly includes a water pump fixed to the conveyor housing. A water pipe is fixed to the drainage end of the water pump. One end of the spray pipe is fixedly connected to the water pipe, and nozzles are installed at the bottom of the spray pipe.
8. The conveying device according to claim 7, wherein: A first magnetic block is fixed to one side of the bottom of the strip cam close to the conveyor discharge direction. A plurality of uniformly distributed mounting rods are fixed to the inner side of the conveyor housing. The mounting rods correspond to the injection mechanism in position, and a second magnetic block is fixed to the surface of the mounting rods.
9. The conveying device according to claim 1, characterized in that: A water collecting tank is fixedly connected below the conveyor housing, and the water collecting tank is used for collecting sauce and cleaning liquid.
10. A transfer method for cooked beef processing, characterized in that: This method for transporting cooked beef processing uses a conveying device as described in any one of claims 1-9.