Conveying device for beef processing

CN122809114APending Publication Date: 2026-09-25LINQU GUANGHUA MEAT FOOD CO LTD
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Patent Information

Application Number
CN202611035767.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-13
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0004]本发明的目的在于提供牛肉加工用输送装置,用于解决牛肉输送中承托不稳、血水易滞留滴落,以及回程部件清理和排污的问题

Benefits of technology

1.通过在链板上设置承托机构,并使承板经连接架、插筒、伸缩杆和弹簧支撑于固定盒上,牛肉放置于承板后,承板能够随牛肉重量和局部受力状态产生上下浮动,从而对不规则牛肉块形成弹性承托;同时,承板上的通槽将牛肉渗出的血水导入固定盒内,柔性接液盒对相邻承托机构之间的血水进行承接,减少血水在承托面滞留或滴落至传动部件上的情况。

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Abstract

The application discloses a conveying device for beef processing and relates to the technical field of food processing equipment. The device comprises a fixing frame, a supporting frame, a driving mechanism, a plurality of supporting mechanisms, a plurality of flexible liquid receiving boxes and a material receiving and cleaning mechanism. The supporting mechanisms move circularly along the chain plates and comprise fixed boxes, elastic supporting parts, connecting frames and supporting plates. The supporting plates are provided with through grooves and can elastically support the beef and guide the blood water into the fixed boxes. The flexible liquid receiving boxes are connected between adjacent fixed boxes and are used for receiving the blood water between adjacent supporting mechanisms. The material receiving and cleaning mechanism comprises a water tank, a spray head, a fixing cylinder and a transmission assembly, can receive the blood water on the return side, and can flush and blow off the water from the supporting plates, the fixed boxes and the flexible liquid receiving boxes. The application can improve the stability of the beef conveying and supporting, reduce the blood water retention and dripping, and facilitate the sewage discharge and cleaning of the return components.
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Description

Technical Field

[0001] This invention relates to the field of food processing equipment technology, and more particularly to a conveying device for beef processing. Background Technology

[0002] In the processing of beef, including cutting, trimming, cleaning, and subsequent packaging, conveying devices are crucial equipment connecting each step. They are typically used to continuously transfer beef chunks of different sizes and shapes between processing lines. Existing meat processing conveying equipment mostly employs belt-type, chain-type, or roller-type conveyor structures, using motors, sprockets, chains, or conveyor belts to achieve cyclical movement of the conveying surface to meet the demands of continuous production. Because beef typically has high water content, surface blood, irregular shapes, and a soft texture during processing, conveying equipment must not only possess stable conveying capacity but also ensure support stability, handle exudate, facilitate equipment cleaning and maintenance, and maintain hygiene in the processing area.

[0003] Existing beef processing conveying devices still have certain shortcomings in use: On the one hand, conventional conveying surfaces are mostly relatively fixed planes or rigid support structures, which have limited adaptability to beef blocks of different weights and bottom shapes. During the conveying process, the beef is prone to shaking, shifting, or local impact due to uneven local force. On the other hand, blood seeping from the beef is prone to lingering on the support surface, between adjacent conveying components, or dripping into the equipment, which not only increases the subsequent cleaning burden but may also affect the cleanliness of the area around the transmission components. For conveying equipment with structures such as support boxes, chain plates, and connectors, if the blood that has been collected cannot be discharged in time during the return section, or if the support surface, gaps, and internal space cannot be effectively cleaned, residual blood and meat scraps are prone to accumulate. Summary of the Invention

[0004] The purpose of this invention is to provide a conveying device for beef processing, which solves the problems of unstable support, easy retention and dripping of blood during beef conveying, as well as the cleaning and sewage discharge of return components.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A conveying device for beef processing includes a fixed frame with a support frame mounted on top. A chain plate capable of cyclic movement is mounted on the support frame. The device further includes: multiple supporting mechanisms connected to the chain plates, each supporting mechanism comprising a fixed box, two connecting frames, and a support plate. The fixed box is fixedly connected to the chain plate, the connecting frames are mounted on the fixed box via elastic supports, and the support plate is hinged to the two connecting frames. Multiple through slots are formed on the support plate. Multiple flexible liquid receiving boxes are connected between adjacent fixed boxes. A receiving and cleaning mechanism is located within the support frame and on the return side of the supporting mechanisms. The receiving and cleaning mechanism includes a water trough located below the supporting mechanisms on the return side. A hollow cylinder is installed inside the water trough, and multiple nozzles are mounted on the top surface of the hollow cylinder, facing the supporting mechanisms on the return side. The support plate provides floating support for the beef via elastic supports. The fixed box and flexible liquid receiving boxes cooperate to collect blood and water during the conveying process, draining the liquid into the water trough and receiving rinsing from the nozzles on the return side.

[0006] Preferably, the conveying device for beef processing further includes: a first shaft, rotatably connected to the support frame, on which two first sprockets are fixedly mounted; a second shaft, rotatably connected to the support frame, on which two second sprockets are fixedly mounted; and two first chains for connecting the first sprockets and the second sprockets.

[0007] Preferably, the conveying device for beef processing further includes a drive mechanism, which includes: a mounting box mounted on the support frame; a motor mounted inside the mounting box; a commutator connected to the power output shaft of the motor; a third sprocket fixedly mounted on the output shaft of the commutator; a fourth sprocket fixedly mounted on the first shaft; and a second chain for connecting the third sprocket and the fourth sprocket.

[0008] Preferably, the conveying device for beef processing further includes: two guard plates, both mounted on the support frame, and multiple chain plates located between the two guard plates.

[0009] Preferably, the elastic support includes: a fixed frame installed inside the fixed box, the fixed frame having two slots; two telescopic rods installed in the two slots respectively; two inserts connected to the upper ends of the two telescopic rods respectively, the inserts being slidably connected to the slots, the connecting frame being fixedly connected to the top of the two inserts; and two springs, one end of the springs being connected to the inner top surface of the inserts, and the other end of the springs being connected to the bottom of the slots.

[0010] Preferably, the supporting mechanism further includes two stops, which are respectively installed on the two connecting frames, and the stops are used to limit the rotation angle of the support plate relative to the connecting frame.

[0011] Preferably, the receiving and cleaning mechanism further includes: a baffle plate connected to the two guard plates; and a drain pipe installed on one side of the water tank for discharging wastewater from the water tank.

[0012] Preferably, the material receiving and cleaning mechanism further includes: two hollow slide cylinders, respectively installed at both ends of the hollow cylinder and both communicating with the interior of the hollow cylinder; the hollow slide cylinder passes through one side of the water tank and is slidably connected to the water tank, the top surface of the hollow cylinder is an arc surface, and multiple nozzles are installed on the top surface of the hollow cylinder; a water pipe connector is installed on one end of one of the hollow slide cylinders.

[0013] Preferably, the material receiving and cleaning mechanism further includes: a fixed cylinder, fixedly connected to the inner wall of the water tank; an air outlet slot, formed on the fixed cylinder; and an air pipe connector, installed on one end of the fixed cylinder, the air pipe connector extending outside the water tank.

[0014] Preferably, the material receiving and cleaning mechanism further includes a transmission assembly, which includes: a reciprocating screw rotatably connected to the outer surface of the water tank, with a screw nut fitted on the reciprocating screw; a connecting plate fixedly fitted on the screw nut, with the other end of the connecting plate fixedly connected to a hollow slide cylinder; a rotating shaft fixedly connected to the end of the reciprocating screw away from the water tank, with pulleys fixedly fitted on both the rotating shaft and the first shaft; and a transmission belt fitted on the two pulleys.

[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: 1. By setting a support mechanism on the chain plate and supporting the plate on the fixed box via a connecting frame, insert, telescopic rod and spring, the plate can float up and down according to the weight of the beef and the local stress state after the beef is placed on it, thus providing elastic support for irregular beef pieces; at the same time, the through groove on the plate guides the blood seeping out of the beef into the fixed box, and the flexible liquid receiving box receives the blood between adjacent support mechanisms, reducing the situation where blood remains on the support surface or drips onto the transmission components.

[0016] 2. The first shaft is driven to rotate by the motor, commutator, third sprocket, second chain and fourth sprocket in the drive mechanism. Then the first sprocket, first chain and second sprocket and connecting parts drive the chain plate to move in a cycle, so that multiple support mechanisms can continuously pass through the working section and return section. At the same time, the transmission component drives the rotating shaft and reciprocating screw through the transmission belt of the first shaft, so that the nozzle moves back and forth with the conveying process, expanding the rinsing range of the support plate, fixed box and flexible liquid receiving box.

[0017] 3. By setting up a receiving and cleaning mechanism inside the support frame, when the supporting mechanism runs to the return section and the fixed box opening faces downward, the blood in the fixed box and flexible liquid receiving box can fall into the water tank under the action of gravity; the support plate rotates relative to the connecting frame under gravity, so that the support plate, through groove and the inside of the fixed box are exposed to the rinsing area of ​​the nozzle; after rinsing, the fixed cylinder blows out airflow through the air outlet groove to remove water, and the baffle plate and sewage pipe are used to block the splash water flow and discharge sewage, respectively, thereby realizing the continuous coordination of return liquid discharge, online rinsing and drying. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 The three-dimensional conveying device for beef processing in this invention Figure 1 ; Figure 2 The three-dimensional conveying device for beef processing in this invention Figure 2 ; Figure 3 This is a schematic diagram of the assembly structure of the fixing frame, support frame, supporting mechanism and flexible liquid receiving box in this invention; Figure 4 This is a schematic diagram of the assembly structure of the support frame, first shaft, second shaft, first sprocket, second sprocket, first chain, connector, chain plate and drive mechanism in this invention; Figure 5 This is a schematic diagram of the assembly structure of the support mechanism in this invention; Figure 6 In this invention Figure 5 Exploded view; Figure 7 The three-dimensional structure of the material receiving and cleaning mechanism in this invention Figure 1 ; Figure 8 The three-dimensional structure of the material receiving and cleaning mechanism in this invention Figure 2 ; Reference numerals: 100, Fixing frame; 101, Support frame; 102, First shaft; 103, Second shaft; 104, First sprocket; 105, Second sprocket; 106, First chain; 107, Connector; 108, Chain plate; 109, Guard plate; 110, Drive mechanism; 111, Mounting box; 112, Motor; 113, Commutator; 114, Third sprocket; 115, Fourth sprocket; 116, Second chain; 200, Supporting mechanism; 201, Fixing box; 202, Fixing frame; 203, Slot; 204, Telescopic rod; 2 05. Insert sleeve; 206. Spring; 207. Connecting frame; 208. Stop block; 209. Support plate; 2091. Through groove; 300. Flexible liquid receiving box; 400. Material receiving and cleaning mechanism; 401. Water tank; 402. Water baffle; 403. Sewage pipe; 411. Hollow cylinder; 412. Hollow slide cylinder; 413. Nozzle; 414. Water pipe connector; 421. Fixed cylinder; 422. Air outlet duct; 423. Air pipe connector; 430. Transmission assembly; 431. Reciprocating screw; 432. Connecting plate; 433. Rotating shaft; 434. Transmission belt. Detailed Implementation

[0020] To make the above-mentioned objects, features, and advantages of the present invention more readily understood, specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.

[0021] This invention is described in detail with reference to the accompanying drawings. When detailing the embodiments of this invention, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not to scale. Furthermore, the accompanying drawings are merely examples and should not be construed as limiting the scope of protection of this invention. In actual fabrication, the three-dimensional spatial dimensions of length, width, and depth should be included.

[0022] Furthermore, it should be noted in the description of this invention that the terms "first," "second," or "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0023] Example: Figures 1 to 8As shown, a conveying device for beef processing includes a fixed frame 100, a support frame 101, a drive mechanism 110, multiple sets of supporting mechanisms 200, multiple flexible liquid receiving boxes 300, and a receiving and cleaning mechanism 400. The support frame 101 is mounted on top of the fixed frame 100, and the drive mechanism 110 is mounted on the fixed frame 100. Multiple supporting mechanisms 200 are all positioned above the fixed frame 100 and can circulate under the drive of the drive mechanism 110. The supporting mechanisms 200 are used to support the beef to be conveyed and to guide and collect the blood and sap generated during the conveying process. Flexible liquid receiving boxes 300 are positioned between adjacent supporting mechanisms 200, and the receiving and cleaning mechanism 400 is positioned inside the support frame 101. The flexible liquid receiving boxes 300 can be made of food-grade silicone, food-grade TPU, or other elastic materials that meet food contact requirements. The receiving and cleaning mechanism 400 is used to receive the blood and water discharged from the support mechanism 200 and the flexible liquid receiving box 300, and to rinse and blow away water from the support mechanism 200 and the flexible liquid receiving box 300 in the return state.

[0024] like Figures 1 to 4 As shown, a first shaft 102 and a second shaft 103 are rotatably mounted on the support frame 101. Two first sprockets 104 are fixedly mounted on the first shaft 102, and two second sprockets 105 are fixedly mounted on the second shaft 103. The two first sprockets 104 and the two second sprockets 105 are connected by two first chains 106. Multiple chain plates 108 are provided above the support frame 101, and the chain plates 108 are connected to the first chains 106 through connectors 107. Two guard plates 109 are installed on the support frame 101, and the multiple chain plates 108 are all located between the two guard plates 109.

[0025] Specifically, when the first chain 106 moves, it can drive the chain plate 108 to move synchronously through the connector 107. The guard plate 109 can provide lateral protection for the chain plate 108 and the support mechanism 200 above the chain plate 108, and play a certain limiting role in the conveying process of beef.

[0026] like Figure 4 As shown, the drive mechanism 110 includes a mounting box 111, a motor 112, a commutator 113, a third sprocket 114, a fourth sprocket 115, and a second chain 116. The mounting box 111 is mounted on the support frame 101. The motor 112 is mounted inside the mounting box 111. The power output shaft of the motor 112 is connected to the commutator 113. The third sprocket 114 is fixedly sleeved on the output shaft of the commutator 113. The fourth sprocket 115 is fixedly sleeved on the first shaft 102. The third sprocket 114 and the fourth sprocket 115 are connected by the second chain 116.

[0027] Specifically, when the motor 112 is running, the power output shaft of the motor 112 drives the input shaft of the commutator 113 to rotate, which in turn drives the output shaft of the commutator 113 to rotate, which in turn drives the third sprocket 114 to rotate. The third sprocket 114 drives the fourth sprocket 115 to rotate via the second chain 116. The fourth sprocket 115 drives the first shaft 102 to rotate. The first shaft 102 then drives the second shaft 103 to rotate via the first sprocket 104, the first chain 106, and the second sprocket 105, thereby causing the first chain 106 to form a cyclic motion and driving multiple chain plates 108 to move cyclically along the support frame 101.

[0028] like Figure 3 , Figure 5 and Figure 6 As shown, a support mechanism 200 is fixedly connected to each chain plate 108. The support mechanism 200 includes a fixed box 201, a fixed frame 202, a slot 203, a telescopic rod 204, a plug 205, a spring 206, a connecting frame 207, a stop block 208, and a support plate 209. The fixed box 201 is fixedly connected to the chain plate 108, allowing the fixed box 201 to move synchronously with the chain plate 108. Two fixed frames 202 are installed inside the fixed box 201, and two slots 203 are opened on each fixed frame 202. A telescopic rod 204 is installed in each slot 203. The upper end of the telescopic rod 204 is connected to the plug 205, and the plug 205 is slidably connected to the slot 203. A spring 206 is connected to the inner top surface of the plug 205, and the other end of the spring 206 is fixedly connected to the bottom of the slot 203. Each support mechanism 200 forms four sets of elastic support sections consisting of slots 203, telescopic rods 204, inserts 205, and springs 206.

[0029] A connecting frame 207 is mounted on the top surface of two inserts 205 located on the same side, and a support plate 209 is hinged between the two connecting frames 207. The support plate 209 is used to directly support the beef to be conveyed. Multiple through slots 2091 are opened through the support plate 209, which allow blood seeping from the beef to flow downwards from the upper surface of the support plate 209 into the fixing box 201. A stop block 208 is installed on the connecting frame 207. The stop block 208 is used to limit the rotation angle of the support plate 209 relative to the connecting frame 207, so that the support plate 209 can rotate relative to the connecting frame 207, while preventing the support plate 209 from overturning excessively relative to the connecting frame 207.

[0030] Specifically, the support plate 209 is supported on the fixed box 201 via the connecting frame 207, the insert 205, the telescopic rod 204, and the spring 206. When beef is placed on the support plate 209, the weight of the beef is transferred through the support plate 209 to the connecting frame 207, and then from the connecting frame 207 to the insert 205, the telescopic rod 204, and the spring 206. The spring 206 compresses under pressure, allowing the support plate 209 to float vertically relative to the fixed box 201. Since beef pieces are typically irregular in shape, soft in texture, and subject to uneven local stress, the elastic floating of the support plate 209 provides cushioning and support for the beef, reducing the rigid impact on the beef during transport and allowing the support plate 209 to adapt to local pressure changes when the beef is placed. The through groove 2091 cooperates with the fixed box 201, allowing blood on the upper surface of the support plate 209 to flow into the fixed box 201 in a timely manner, reducing the retention of blood on the upper surface of the support plate 209.

[0031] like Figure 3 As shown, the conveying device for beef processing also includes multiple flexible liquid receiving boxes 300, which are fixedly connected to adjacent fixed boxes 201. The fixed boxes 201 are located below the support plate 209 and are used to collect blood flowing down through the through groove 2091; the flexible liquid receiving boxes 300 are located between adjacent fixed boxes 201 and are used to collect blood generated or dripping from positions between adjacent support mechanisms 200.

[0032] Specifically, the fixed box 201 and the flexible liquid receiving box 300 together form a blood and water receiving structure that moves synchronously with the chain plate 108, so that the exudate during the beef transportation process is not easily dripped directly onto the fixed frame 100, the support frame 101 or other transmission components.

[0033] like Figure 2 , Figure 7 and Figure 8 As shown, the receiving and cleaning mechanism 400 includes a water tank 401, a baffle plate 402, a drain pipe 403, a hollow cylinder 411, a hollow slide cylinder 412, a nozzle 413, a water pipe connector 414, a fixed cylinder 421, an air outlet duct 422, an air pipe connector 423, and a transmission assembly 430. The water tank 401 is housed within the support frame 101. The receiving and cleaning mechanism 400 receives blood and wastewater discharged from the fixed box 201 and the flexible liquid receiving box 300, as well as wastewater generated after cleaning. A drain pipe 403 is installed on one side of the water tank 401 to discharge wastewater from the water tank 401. A baffle plate 402 is installed on the top of the water tank 401, connected to two protective plates 109. The baffle plate 402 blocks and guides the splashing water during the rinsing process of the nozzle 413, allowing rinsing water, blood, and washed-off impurities to fall into the water tank 401.

[0034] like Figure 7As shown, a hollow cylinder 411 is disposed inside a water tank 401. The top surface of the hollow cylinder 411 is curved, and multiple nozzles 413 are installed on the top surface of the hollow cylinder 411. Hollow sliding cylinders 412 are installed at both ends of the hollow cylinder 411, and both hollow sliding cylinders 412 are connected to the interior of the hollow cylinder 411. The hollow sliding cylinders 412 penetrate one side of the water tank 401 and are slidably connected to the water tank 401. A water pipe connector 414 is installed at one end of one of the hollow sliding cylinders 412, and the water pipe connector 414 is used to connect to the water delivery hose of an external water pump.

[0035] Specifically, the water pump delivers external cleaning water to the hollow slide 412 through the water pipe connector 414. The cleaning water then enters the hollow cylinder 411 and is sprayed upwards by multiple nozzles 413 to rinse the support plate 209, the fixed box 201 and the flexible liquid receiving box 300 in the return state.

[0036] like Figure 8 As shown, the fixed cylinder 421 is fixedly connected to the inner wall of the water tank 401. The fixed cylinder 421 has an air outlet slot 422. An air pipe connector 423 is installed at one end of the fixed cylinder 421, and the air pipe connector 423 extends to the outside of the water tank 401. The air pipe connector 423 is used to connect to the air outlet pipe of an external fan.

[0037] Specifically, after the external fan supplies air to the fixed cylinder 421, the air is blown out through the air outlet 422. The blown airflow acts on the fixed box 201, the support plate 209 and the flexible liquid receiving box 300 after being washed by the nozzle 413, so as to accelerate the removal of residual moisture on their surfaces.

[0038] like Figure 7 and Figure 8 As shown, the transmission assembly 430 includes a reciprocating screw 431, a connecting plate 432, a rotating shaft 433, and a transmission belt 434. The reciprocating screw 431 is rotatably connected to the outer surface of the water tank 401. A screw nut is fitted onto the reciprocating screw 431, and the connecting plate 432 is fixedly fitted onto the screw nut. The other end of the connecting plate 432 is fixedly connected to the hollow slide cylinder 412. The rotating shaft 433 is fixedly connected to the end of the reciprocating screw 431 away from the water tank 401. Pulleys are fixedly fitted onto both the rotating shaft 433 and the first shaft 102, and the transmission belt 434 is fitted onto the two pulleys. When the first shaft 102 rotates, the first shaft 102 drives the rotating shaft 433 to rotate through the pulley and the transmission belt 434. The rotating shaft 433 drives the reciprocating screw 431 to rotate. The reciprocating screw 431 drives the connecting plate 432 to move back and forth through the screw nut. The connecting plate 432 drives the hollow slide cylinder 412 to slide back and forth relative to the water tank 401, thereby driving the hollow cylinder 411 and multiple nozzles 413 to move back and forth.

[0039] Specifically, by mounting the nozzle 413 on the reciprocating hollow cylinder 411, the nozzle 413 not only sprays cleaning water at a fixed position during rinsing, but can also reciprocate along the sliding direction of the hollow cylinder 412, thereby expanding the rinsing coverage of the nozzle 413 on the support plate 209, the through groove 2091, the interior of the fixed box 201, and the flexible liquid receiving box 300. By connecting the transmission assembly 430 to the first shaft 102, the reciprocating movement of the nozzle 413 can be synchronized with the cyclic movement of the chain plate 108, eliminating the need for a separate independent drive source for the nozzle 413.

[0040] Working process and principle: Before use, connect the water pipe connector 414 to the water supply hose of the external water pump, and connect the air pipe connector 423 to the air outlet pipe of the external fan. During use, start the motor 112. The motor 112 drives the third sprocket 114 to rotate via the commutator 113. The third sprocket 114 drives the fourth sprocket 115 to rotate via the second chain 116. The fourth sprocket 115 drives the first shaft 102 to rotate. The first shaft 102 drives the first sprocket 104 to rotate. The first sprocket 104 drives the second sprocket 105 and the second shaft 103 to rotate via the first chain 106. Simultaneously, the first chain 106 drives multiple chain plates 108 to move via the connector 107. As the multiple chain plates 108 move, multiple support mechanisms 200, each fixed to one of the chain plates 108, move cyclically along the support frame 101 with the chain plates 108. The multiple support mechanisms 200 sequentially pass through the working section and the return section.

[0041] When the supporting mechanism 200 is in the working section, the opening of the fixed box 201 faces upward, and the support plate 209 is located above the fixed box 201 and is in a supporting cooperation state with the connecting frame 207. After the beef to be conveyed is placed on the support plate 209, the support plate 209 bears the weight of the beef, and the spring 206 is compressed, forming an elastic support for the support plate 209. Since the support plate 209 can float up and down relative to the fixed box 201 through the insert 205, the telescopic rod 204 and the spring 206, the support plate 209 can elastically support beef of different weights and different bottom shapes, thereby reducing the shaking and local impact of the beef during the conveying process.

[0042] During the conveying of beef by the supporting mechanism 200, the blood seeping from the beef flows along the upper surface of the support plate 209 and enters the fixed box 201 through multiple channels 2091. Blood generated between adjacent supporting mechanisms 200 is collected by the flexible liquid receiving box 300. The fixed box 201 and the flexible liquid receiving box 300 move synchronously with the chain plate 108, so that the blood generated in the working section is carried away from the working section and discharged in a concentrated manner in the return section. Through this process of guiding and collecting the seepage, the continuous retention of blood on the upper surface of the support plate 209 can be reduced, the contamination of the subsequent conveying area by blood can be reduced, and the possibility of blood entering the support frame 101 and the transmission structure can be reduced.

[0043] When the supporting mechanism 200 moves with the chain plate 108 to the return section and the opening of the fixed box 201 faces downward, the blood in the fixed box 201 flows downward under gravity and falls into the water tank 401; the blood in the flexible liquid receiving box 300 also falls into the water tank 401 under gravity. At the same time, the support plate 209 rotates relative to the connecting frame 207 due to its own gravity. Because the connecting frame 207 is provided with a stop 208, the rotation angle of the support plate 209 is limited, and an angle of less than 90 degrees is formed between the support plate 209 and the connecting frame 207. In this state, the support plate 209 is open relative to the fixed box 201, so that the lower surface of the support plate 209, the surrounding area of ​​the through groove 2091, and the interior of the fixed box 201 are exposed to the rinsing area of ​​the receiving and cleaning mechanism 400.

[0044] After the external water pump is started, the cleaning water enters the hollow slide cylinder 412 and hollow cylinder 411 through the water pipe connector 414 and is sprayed out by multiple nozzles 413. The cleaning water sprayed from the nozzles 413 washes the support plate 209, fixed box 201 and flexible liquid receiving box 300 in the return open state, and can flush the blood and meat scraps remaining on the surface of the support plate 209, the through groove 2091, the inside of the fixed box 201 and the flexible liquid receiving box 300 into the water tank 401. During the rinsing process, the first shaft 102 drives the rotating shaft 433 to rotate through the transmission belt 434. The rotating shaft 433 drives the reciprocating screw 431 to rotate. The reciprocating screw 431 drives the hollow slide cylinder 412 to move back and forth through the screw nut and the connecting plate 432. The hollow slide cylinder 412 drives the hollow cylinder 411 and the nozzles 413 to move back and forth. Therefore, the nozzle 413 moves back and forth while spraying water, so that the cleaning water can be applied to a larger cleaning area.

[0045] After the external fan is started, air enters the fixed cylinder 421 through the air pipe connector 423 and is blown out through the air outlet 422 on the fixed cylinder 421. The airflow blown out of the air outlet 422 acts on the support plate 209, fixed box 201 and flexible liquid receiving box 300 after being rinsed by the nozzle 413, blowing away residual moisture on their surfaces or accelerating evaporation. The rinsing water, blood water and impurities washed off fall into the water tank 401 and are discharged through the drain pipe 403. The baffle plate 402 blocks the splashing water flow during this process, making it difficult for water and impurities to splash outside the water tank 401.

[0046] As the motor 112 continues to operate, multiple chain plates 108 continue to drive multiple support mechanisms 200 and flexible liquid receiving boxes 300 to move in a cycle. After being rinsed by the nozzle 413 and blown away by the air outlet duct 422, the support mechanisms 200 and flexible liquid receiving boxes 300 are moved out of the clean area where the baffle plate 402 is located. When the fixed box 201 moves back to the working state with the opening facing upward, the support plate 209 rotates relative to the connecting frame 207 under its own gravity and re-forms a support engagement state with the two connecting frames 207, so that the support plate 209 returns to the state of supporting beef and continues to participate in the next cycle of conveying.

[0047] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A conveying device for beef processing, comprising a fixed frame (100), a support frame (101) mounted on top of the fixed frame (100), and a chain plate (108) capable of cyclic movement provided on the support frame (101), characterized in that, Also includes: Multiple support mechanisms (200) are respectively connected to multiple chain plates (108). Each support mechanism (200) includes a fixed box (201), two connecting frames (207) and a support plate (209). The fixed box (201) is fixedly connected to the chain plate (108). The connecting frames (207) are mounted on the fixed box (201) through elastic support parts. The support plate (209) is hinged to the two connecting frames (207). Multiple through slots (2091) are provided on the support plate (209). Multiple flexible liquid receiving boxes (300) are respectively connected between two adjacent fixed boxes (201); A receiving and cleaning mechanism (400) is disposed within the support frame (101) and located on the return side of the support mechanism (200). The receiving and cleaning mechanism (400) includes a water tank (401) located below the support mechanism (200) on the return side. A hollow cylinder (411) is installed inside the water tank (401), and a plurality of nozzles (413) are installed on the top surface of the hollow cylinder (411). The plurality of nozzles (413) face the support mechanism (200) on the return side. The support plate (209) provides floating support for the beef through the elastic support part. The fixed box (201) and the flexible liquid receiving box (300) work together to receive the blood water during the transportation process, and drain the liquid into the water tank (401) on the return side and receive the spray nozzle (413) for rinsing.

2. The conveying device for beef processing according to claim 1, characterized in that, Also includes: The first shaft (102) is rotatably connected to the support frame (101), and two first sprockets (104) are fixedly installed on it. The second shaft (103) is rotatably connected to the support frame (101), and two second sprockets (105) are fixedly installed on it. Two first chains (106) are used to connect the first sprocket (104) and the second sprocket (105).

3. The conveying device for beef processing according to claim 2, characterized in that, It also includes a drive mechanism (110), which includes: Mounting box (111) is mounted on the support frame (101); The motor (112) is installed inside the mounting box (111); A commutator (113) is connected to the power output shaft of the motor (112); The third sprocket (114) is fixedly mounted on the output shaft of the commutator (113); The fourth sprocket (115) is fixedly sleeved on the first shaft (102); The second chain (116) is used to connect the third sprocket (114) and the fourth sprocket (115).

4. The conveying device for beef processing according to claim 2, characterized in that, Also includes: Two guard plates (109) are installed on the support frame (101), and multiple chain plates (108) are located between the two guard plates (109).

5. The conveying device for beef processing according to claim 1, characterized in that, The elastic support portion includes: A fixing frame (202) is installed inside the fixing box (201), and two slots (203) are provided on the fixing frame (202). Two telescopic rods (204) are respectively installed in the two slots (203); Two inserts (205) are respectively connected to the upper ends of the two telescopic rods (204), the inserts (205) are slidably connected to the slots (203), and the connecting frame (207) is fixedly connected to the top of the two inserts (205); Two springs (206) are provided, one end of which is connected to the inner top surface of the insert (205), and the other end of which is connected to the bottom of the slot (203).

6. The conveying device for beef processing according to claim 5, characterized in that, The support mechanism (200) also includes: Two stops (208) are respectively installed on the two connecting frames (207), and the stops (208) are used to limit the rotation angle of the bearing plate (209) relative to the connecting frame (207).

7. The conveying device for beef processing according to claim 4, characterized in that, The receiving and cleaning mechanism (400) further includes: A water baffle (402) is connected to the two guard plates (109); A drain pipe (403) is installed on one side of the water tank (401) to discharge sewage from the water tank (401).

8. The conveying device for beef processing according to claim 2, characterized in that, The receiving and cleaning mechanism (400) further includes: Two hollow sliding cylinders (412) are respectively installed at both ends of the hollow cylinder (411) and are connected to the interior of the hollow cylinder (411); the hollow sliding cylinder (412) penetrates one side of the water tank (401) and is slidably connected to the water tank (401); the top surface of the hollow cylinder (411) is an arc surface, and multiple nozzles (413) are installed on the top surface of the hollow cylinder (411); A water pipe connector (414) is installed on one end of one of the hollow slides (412).

9. The conveying device for beef processing according to claim 8, characterized in that, The receiving and cleaning mechanism (400) further includes: A fixed cylinder (421) is fixedly connected to the inner wall of the water tank (401); An air outlet slit (422) is formed on the fixed cylinder (421); An air pipe connector (423) is installed on one end of the fixed cylinder (421) and extends outside the water tank (401).

10. The conveying device for beef processing according to claim 9, characterized in that, The receiving and cleaning mechanism (400) further includes a transmission assembly (430), which includes: A reciprocating lead screw (431) is rotatably connected to the outer surface of the water tank (401), and a lead screw nut is sleeved on the reciprocating lead screw (431); A connecting plate (432) is fixedly sleeved on the lead screw nut, and the other end of the connecting plate (432) is fixedly connected to the hollow slide cylinder (412); A rotating shaft (433) is fixedly connected to the end of the reciprocating screw (431) away from the water tank (401), and pulleys are fixedly sleeved on both the rotating shaft (433) and the first shaft (102); The drive belt (434) is fitted onto two pulleys.