Egg processing and conveying device
By introducing components such as absorbent brushes and anti-absorption cotton into the egg conveying device, the problem of residual moisture on the egg surface is solved, achieving efficient moisture absorption and rolling safety, and improving the storage and transportation quality of eggs.
Patent Information
- Application Number
- CN202511944176.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-22
- Publication Date
- 2026-01-20
AI Technical Summary
Existing egg conveying devices cannot effectively handle residual moisture on the egg surface, leading to damage to the eggshell protective film and bacterial growth, which accelerates the probability of egg spoilage.
An egg processing and conveying device was designed, including a washing box, an inclined tube, and a water-absorbing brush. The water-absorbing brush makes full contact with the egg surface inside the inclined tube. The reciprocating motion and various movement modes of the water-absorbing brush absorb the moisture on the egg surface. The anti-absorption cotton and sponge block slow down the rolling speed of the egg, thereby improving safety.
It effectively reduces residual moisture on the surface of eggs, lowers the risk of spoilage during storage and transportation, and improves the processing and delivery quality and safety of eggs.
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Figure CN121361667A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of egg conveying, in particular to an egg processing and conveying device. BACKGROUND
[0002] When transporting eggs, the surface of the eggs will adhere to feces, dust and other impurities. However, the existing conveying device does not have a cleaning component, so the feces, dust and other impurities on the surface of the eggs cannot be cleaned, resulting in the cleanliness and smoothness of the surface of the eggs not meeting the standard, i.e., the quality of the egg processing and conveying is reduced.
[0003] To solve the above problems, a chicken egg conveyor is disclosed in Chinese Patent No. CN220906295U, which includes a conveyor frame, a conveyor belt arranged inside the conveyor frame, a placing groove formed on the outer surface of the conveyor belt, a cleaning device arranged on the outer surface of the conveyor frame, a first motor fixedly connected to one side of the outer surface of the conveyor frame, a rotating roller fixedly connected to the output end of the first motor, a conveyor belt arranged on the outer surface of the rotating roller, a cleaning device arranged on one side of the outer surface of the conveyor frame, the cleaning device including a rectangular rod fixedly arranged on the top of the outer surface of the conveyor frame, a fixed ring fixedly connected to one side of the outer surface of the rectangular rod, a water spraying pipe inserted into the inside of the fixed ring, a spray head fixedly connected to the outer surface of the water spraying pipe, and a threaded rod inserted into the outer surface of the fixed ring. The device solves the problem of inconvenient cleaning of impurities on the surface of the eggs through the flushing of the spray head.
[0004] The above device has the following problems in actual use: After the surface of the egg is washed with water, water will still remain on the surface of the egg. If the water on the surface of the egg is not treated, the water on the surface of the egg will damage the natural protective film outside the eggshell in a humid environment, thus promoting the exposure of the pores of the eggshell and causing the bacteria to grow faster, i.e., increasing the probability of deterioration of the subsequent egg storage and transportation. SUMMARY
[0005] The present application provides an egg processing and conveying device to solve the problem that the existing egg conveying device cannot treat the water remaining on the surface of the egg.
[0006] In order to achieve the above object, the present application adopts the following technical scheme: A kind of egg processing conveying device, including the cleaning tank with import and export, the blanking tank with opening on both sides and the conveying tank, also including the top opening inclined pipe, blanking mechanism arranged in blanking tank;Inclined pipe is communicated with the outlet of cleaning tank, and the free end of inclined pipe passes through blanking tank and is communicated with conveying tank;Blanking mechanism includes bottom block, sliding block, fixed block, side rod, several water absorbing brushes, bottom opening box, sliding hole opened on bottom block, driving assembly for driving sliding block to reciprocate along the length direction of sliding hole;Box is fixedly connected with blanking tank;Bottom block is fixedly connected with box;Sliding block is slidably connected with sliding hole;Fixed block is fixedly connected with sliding block;Side rod is connected with fixed block;Several water absorbing brushes are fixedly connected with side rod, and the free end of water absorbing brush extends into inclined pipe.
[0007] The principle and advantages of the present application are as follows: The washed eggs in the cleaning tank are guided into the conveying tank along the inclined pipe. During the rolling of the eggs in the inclined pipe, the surface of the eggs is in full and complete contact with the water absorbing brushes, thereby reducing the residual water on the surface of the eggs. Through the above process, the risk of deterioration of the eggs during subsequent storage and transportation of the eggs is reduced, i.e. the quality of the egg processing and conveying is improved.
[0008] During the absorption of the water on the surface of the rolling eggs by the water absorbing brushes, the absorption brushes can also reciprocate along the length direction of the sliding hole, thereby improving the water absorption force of the water absorbing brushes and enabling the water absorbing brushes to more efficiently and comprehensively absorb the water on the surface of the eggs. At the same time, during the reciprocation of the water absorbing brushes, the water absorbing brushes can slow down the rolling speed of the eggs, thereby reducing the probability of breakage of the eggs due to excessive rolling speed.
[0009] Further, it further includes an auxiliary assembly;Auxiliary assembly includes auxiliary rod, first spring, auxiliary slot opened in fixed block;Auxiliary rod is slidably connected with auxiliary slot, and auxiliary rod is fixedly connected with side rod, and the free end of auxiliary rod faces the inner wall of bottom hole;The two ends of first spring are connected with auxiliary rod and auxiliary slot respectively.
[0010] The auxiliary rod and the first spring are provided to enable the water absorbing brushes to reciprocate relative to the length direction of the fixed block, thereby enabling the movement of the water absorbing brushes to be more diverse. Therefore, under the diversified movement of the water absorbing brushes, on the one hand, the water on the surface of the eggs can be further absorbed, and on the other hand, the rolling speed of the eggs can be further slowed down, i.e. the processing effect of the water absorbing brushes on the eggs is enriched.
[0011] Further, the linkage assembly is symmetrically arranged on both sides of the bottom block; the linkage assembly comprises a wall block, a linkage cylinder, a linkage rod, a side hole opened on the bottom block, a power unit for driving the linkage cylinder to reciprocate along the length direction of the wall block; the wall block is fixedly connected with the side hole; the linkage cylinder is slidably connected with the wall block; the linkage rod is connected with the linkage cylinder; the water absorption brush is located on the movement track of the linkage rod.
[0012] During the reciprocating movement of the water absorption brush, the water absorption brush on both sides is further caused to contract towards the position where the sliding hole is located or to expand away from the position where the sliding hole is located by the assistance of the linkage rod. Therefore, during the contraction of the water absorption brush, the water absorption brush can gradually change from linear contact with the surface of the egg to point contact close to the surface of the egg, so as to enable the water absorption brush to concentrate on the local position of the surface of the egg for fine water absorption treatment; during the expansion of the water absorption brush, the water absorption brush is reset from point contact to linear contact, so as to enable the water absorption brush to perform comprehensive water absorption treatment on more area of the surface of the egg. Through the above process, the water absorption treatment effect on the local position of the egg is further enhanced, that is, the water absorption quality of the water absorption brush is improved.
[0013] Further, the linkage assembly further comprises a linkage unit; the linkage unit comprises an inner rod and a movement unit for driving the inner rod to vertically reciprocate; the inner rod is slidably connected with the linkage cylinder, and the inner rod is fixedly connected with the linkage rod.
[0014] Since the linkage rod can also vertically reciprocate during the reciprocating movement of the linkage rod along the length direction of the bottom block, the acting range of the linkage rod on the water absorption brush is expanded, so that the linear contact of the water absorption brush with the surface of the egg gradually changes to point contact, which is more abundant, so as to enable the water absorption brush on both sides to more easily concentrate on a position on the surface of the egg when it contracts inward, that is, the effect of fine treatment of the water absorption brush on the surface of the egg is further enhanced.
[0015] Further, the linkage assembly further comprises a linkage unit; the linkage unit comprises an inner rod and a movement unit for driving the inner rod to vertically reciprocate; the inner rod is slidably connected with the linkage cylinder, and the inner rod is fixedly connected with the linkage rod.
[0016] During the slowing down of the rolling speed of the egg by the water absorption brush, the reciprocating movement of the water absorption cotton further causes the two sides of the egg to slow down under the action of the water absorption cotton, which on the one hand ensures that the egg will not be broken due to too fast rolling speed, and on the other hand reduces the probability of collision between adjacent two eggs due to too fast rolling speed, that is, the safety of the egg rolling in the inclined pipe is comprehensively improved.
[0017] Meanwhile, the stop cotton can also absorb the water on the surface of the eggs during the process of slowing down the rolling speed of the eggs, thereby increasing the treatment mode of the water on the surface of the eggs, and ensuring that the eggs can be more efficiently reduced in the water on the surface thereof under the cooperation of the water absorption brush and the stop cotton.
[0018] Further, two speed-stopping parts are arranged along the length direction of the inclined pipe; the speed-stopping part comprises a guide rod, a connecting rod, a sponge block, a speed-stopping hole opened on the bottom of the inclined pipe, and a power unit for driving the connecting rod to make vertical reciprocating motion; the guide rod is fixedly connected with the outer wall of the inclined pipe; the connecting rod is slidingly connected with the guide rod; the sponge block is fixedly connected with the connecting rod, and the sponge block can slide in and out of the speed-stopping hole; the water absorption brush is located between the two sponge blocks; the movement directions of the two connecting rods are opposite.
[0019] The two sponge blocks are arranged to promote a certain spacing between the adjacent two eggs through the cross motion of the two sponge blocks, thereby reducing the probability of collision between the adjacent two eggs, and improving the safety during the rolling transmission of the eggs. Meanwhile, the processing time of the water on the surface of the eggs by the water absorption brush and the stop cotton can be prolonged during the cross motion of the two sponge blocks, that is, the effect of the water absorption brush and the stop cotton on the water on the surface of the eggs is further enhanced.
[0020] Further, during the cross motion of the two sponge blocks, the sponge block can absorb the water on the surface of the eggs from different directions, thereby fully absorbing the water on the surface of the eggs at any position in all directions under the cooperation of the water absorption brush, the stop cotton and the sponge block, that is, the processing efficiency and quality of the water on the surface of the eggs are further improved.
[0021] Further, the driving assembly comprises a driving shaft, an elliptical disc, a second spring, and a moving piece for driving the driving shaft to rotate; the driving shaft is rotatably connected with the bottom block; the elliptical disc is fixedly connected with the driving shaft, and the elliptical disc abuts against the sliding block; the two ends of the second spring are connected with the sliding block and the sliding hole, respectively.
[0022] During the rotation of the driving shaft, the elliptical disc rotates synchronously. During the rotation of the elliptical disc, when the long axis end of the elliptical disc abuts against the sliding block, the sliding block moves away from the position where the driving shaft is located, and the second spring is stretched; when the short axis end of the elliptical disc abuts against the sliding block, the sliding block is reset under the action of the second spring, and the sliding block moves towards the position where the driving shaft is located. Therefore, the sliding block can make reciprocating motion along the length direction of the sliding hole.
[0023] Further, the power part comprises a power shaft, a first gear, a first rack, and a power piece for driving the power shaft to rotate; the power shaft is rotatably connected with the box body; the first gear is fixedly connected with the power shaft; the first rack is fixedly connected with the linkage cylinder, and the first rack is engaged with the first gear.
[0024] During the rotation of the power shaft, the first gear synchronously rotates.
[0025] Further, the driving unit comprises a recessed block, a pressing plate, a driving piece for vertically reciprocating the pressing plate; the recessed block is fixedly connected with the bottom block; the pressing plate is slidingly connected with the recessed block; the movement unit comprises a side rod, a third spring and a side hole opened on the linkage cylinder; the side rod is fixedly connected with the linkage rod, the free end of the side rod passes through the side hole and is located below the pressing plate; the two ends of the third spring are connected with the linkage cylinder and the linkage rod respectively; the pressing plate abuts against the side rod.
[0026] During the vertical reciprocation of the pressing plate, the pressing plate drives the side rod to vertically reciprocate through cooperation with the third spring.
[0027] Further, the power piece comprises a power block, a fourth spring and a second rack; the power block is slidingly connected with the side hole; the two ends of the fourth spring are connected with the power block and the side hole respectively; the second rack is fixedly connected with the power block, abuts against the oval disc and is engaged with the first gear.
[0028] During the rotation of the oval disc, when the long axis end of the oval disc abuts against the second rack, the second rack moves away from the position where the driving shaft is located and the fourth spring is compressed; when the short axis end of the oval disc abuts against the second rack, the second rack is reset under the action of the fourth spring and moves towards the position where the driving shaft is located. Therefore, the second rack can drive the power block to reciprocate along the length direction of the side hole.
[0029] During the movement of the second rack, the first gear can rotate through the engagement with the first gear. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a structural schematic view of an embodiment of the egg processing and conveying device.
[0031] Figure 2 It is a structural schematic view of the middle and lower discharge box. Figure 1 It is a structural schematic view of the middle and lower discharge box.
[0032] Figure 3 It is a structural schematic view of the middle and lower discharge box. Figure 2 It is a structural schematic view of the middle and lower discharge box.
[0033] Figure 4 It is a structural schematic view of the middle and lower discharge box. Figure 3 It is an enlarged view of A.
[0034] Figure 5 It is an enlarged view of B. Figure 3 It is an enlarged view of B.
[0035] Figure 6 It is an enlarged view of B.Figure 3 Partial structure diagram of the inside of the middle sole block.
[0036] Figure 7 For Figure 6 Enlarged view at C. DETAILED DESCRIPTION
[0037] Further described in detail below through specific embodiments: The reference signs in the drawings of the specification include: a cleaning box 1, a discharging box 2, a conveying box 3, an inclined pipe 4, a bottom block 5, a sliding block 6, a fixed block 7, a side rod 8, a water absorbing brush 9, a box body 10, an auxiliary rod 11, a second spring 12, a wall block 13, a linkage cylinder 14, a linkage rod 15, a guide block 16, a suction stopping block 17, a suction stopping cotton 18, a guide rod 19, a connecting rod 20, a sponge block 21, a driving shaft 22, an oval disc 23, a power shaft 24, a first gear 25, a first rack 26, a concave block 27, a pressing plate 28, a side rod 29, a power block 30, a second rack 31, a moving block 32, a screw rod 33, a nut seat 34, a second gear 35, a third rack 36, a motor 37, a moving shaft 38, a worm wheel 39, a cam 40, a pressing rod 41.
[0038] The embodiments are basically as shown in the accompanying drawings of Figure 1 , 2 , 3, 4, 5, 6, 7: The embodiments of the present application provide a chicken egg processing conveying device, which comprises a cleaning box 1 with an inlet and an outlet, a discharging box 2 with openings on both sides and a conveying box 3, and a conveying belt is arranged in the conveying box 3; the device further comprises an inclined pipe 4 with an opening at the top, a discharging mechanism arranged in the discharging box 2; the inclined pipe 4 is communicated with the outlet of the cleaning box 1, and the free end of the inclined pipe 4 penetrates through the discharging box 2 and is communicated with the conveying box 3; the discharging mechanism comprises a bottom block 5, a sliding block 6, a fixed block 7, a side rod 8, a plurality of water absorbing brushes 9, a box body 10 with an opening at the bottom, a sliding hole opened on the bottom block 5 and a driving assembly for driving the sliding block 6 to make reciprocating motion along the length direction of the sliding hole; the box body 10 is fixedly connected with the discharging box 2; the bottom block 5 is fixedly connected with the bottom of the box body 10; the sliding block 6 is slidably connected with the sliding hole; the fixed block 7 is fixedly connected with the sliding block 6; the side rod 8 is connected with the fixed block 7; the plurality of water absorbing brushes 9 are fixedly connected with the side rod 8, and the free ends of the water absorbing brushes 9 extend into the inclined pipe 4.
[0039] The device further comprises an auxiliary assembly; the auxiliary assembly comprises an auxiliary rod 11, a first spring and an auxiliary groove opened on the bottom of the fixed block 7; the auxiliary rod 11 is slidably connected with the auxiliary groove, the auxiliary rod 11 is fixedly connected with the side rod 8, and the free end of the auxiliary rod 11 faces the inner wall of the bottom hole; the first spring is arranged in the auxiliary groove, and the two ends of the first spring are connected with the auxiliary rod 11 and the auxiliary groove respectively.
[0040] The linkage assembly is symmetrically arranged on both sides of the bottom block 5, and comprises a wall block 13, a linkage cylinder 14, a linkage rod 15, an edge hole in the bottom block 5, and a power part for driving the linkage cylinder 14 to reciprocate along the length direction of the wall block 13; the wall block 13 is fixedly connected with the edge hole; the linkage cylinder 14 is slidably connected with the wall block 13; the linkage rod 15 is connected with the linkage cylinder 14; and the water absorption brush 9 is located on the movement track of the linkage rod 15.
[0041] The linkage assembly further comprises a linkage part, which comprises an inner rod and a movement unit for driving the inner rod to vertically reciprocate; the inner rod is slidably connected with the inner wall of the linkage cylinder 14, and the inner rod is fixedly connected with the linkage rod 15.
[0042] The stop suction assembly is arranged on both sides of the inclined pipe 4, and comprises a guide block 16, a stop suction block 17, a stop suction cotton 18, a stop suction hole in the inclined pipe 4, and a movement part for driving the stop suction block 17 to reciprocate along the length direction of the guide block 16; the guide block 16 is fixedly connected with the outer wall of the inclined pipe 4; the stop suction block 17 is slidably connected with the guide block 16; the stop suction cotton 18 is fixedly connected with the stop suction block 17, and the stop suction cotton 18 can slide in and out of the stop suction hole.
[0043] The stop speed part is arranged along the length direction of the inclined pipe 4, and comprises a guide rod 19, a connecting rod 20, a sponge block 21, a stop speed hole in the bottom of the inclined pipe 4, and a power unit for driving the connecting rod 20 to vertically reciprocate; the guide rod 19 is fixedly connected with the outer wall of the inclined pipe 4; the connecting rod 20 is slidably connected with the guide rod 19; the sponge block 21 is fixedly connected with the connecting rod 20, and the sponge block 21 can slide in and out of the stop speed hole; the water absorption brush 9 is located between the two sponge blocks 21; and the movement directions of the two connecting rods 20 are opposite.
[0044] The driving assembly comprises a driving shaft 22, an oval disc 23, a second spring 12, and a movement piece for driving the driving shaft 22 to rotate; the driving shaft 22 is rotatably connected with the bottom block 5; the oval disc 23 is fixedly connected with the driving shaft 22 and abuts against the sliding block 6; and the second spring 12 is located in the sliding hole and has two ends respectively connected with the sliding block 6 and the sliding hole.
[0045] The power part comprises a power shaft 24, a first gear 25, a first rack 26, and a power piece for driving the power shaft 24 to rotate; the power shaft 24 is rotatably connected with the box body 10; the first gear 25 is fixedly connected with the power shaft 24; the first rack 26 is fixedly connected with the linkage cylinder 14 and is engaged with the first gear 25.
[0046] The driving unit comprises a recessed block 27, a pressing plate 28, a driving member for vertical reciprocating movement of the pressing plate 28; the recessed block 27 is fixedly connected with the bottom block 5; the pressing plate 28 is slidingly connected with the recessed block 27; the movement unit comprises a side rod 29, a third spring, and a side hole opened on the linkage cylinder 14; the side rod 29 is fixedly connected with the linkage rod 15, the free end of the side rod 29 passes through the side hole and is located below the pressing plate 28; the third spring is located in the linkage cylinder 14, and the two ends of the third spring are respectively connected with the linkage cylinder 14 and the linkage rod 15; the pressing plate 28 abuts against the side rod 29.
[0047] The driving member comprises a driving block 30, a fourth spring, and a second rack 31; the driving block 30 is slidingly connected with the side hole, a driving hole is opened on the driving block 30, and the first rack 26 passes through the driving hole; the two ends of the fourth spring are respectively connected with the driving block 30 and the side hole; the second rack 31 is fixedly connected with the driving block 30, the second rack 31 abuts against the oval disc 23, and the second rack 31 is engaged with the first gear 25.
[0048] The movement part is a movement block 32; the movement block 32 is fixedly connected with the suction block 17; the movement block 32 is fixedly connected with the driving block 30.
[0049] The driving unit comprises a screw rod 33, a nut seat 34, a second gear 35, and a third rack 36; the screw rod 33 is fixedly connected with the outer wall of the inclined pipe 4; the nut seat 34 is threadedly connected with the screw rod 33, and the nut seat 34 is slidingly connected with the guide rod 19; the second gear 35 is fixedly connected with the screw rod 33; the third rack 36 is fixedly connected with the speed-limiting block; and the third rack 36 is engaged with the second gear 35.
[0050] The movement member is a motor 37; the output shaft of the motor 37 is fixedly connected with the box body 10, and the output shaft of the box body 10 is fixedly connected with the driving shaft 22.
[0051] The driving member comprises a movement shaft 38, a worm gear 39, a cam 40, a fifth spring, and a pressing rod 41; the movement shaft 38 is rotationally connected with the bottom block 5; the worm gear 39 and the cam 40 are fixedly connected with the movement shaft 38; the driving shaft 22 is a worm, the worm gear 39 is engaged with the worm, the pressing rod 41 is fixedly connected with the pressing plate 28, the pressing rod 41 abuts against the cam 40, and the fifth spring is located in the recessed block 27, and the two ends of the fifth spring are respectively connected with the recessed block 27 and the pressing plate 28.
[0052] The specific implementation process is as follows: The washed eggs in the cleaning box 1 are guided into the conveying belt in the conveying box 3 along the inclined pipe 4. During the rolling of the eggs in the inclined pipe 4, the surface of the eggs is fully and completely contacted with the water absorbing brush 9, thereby reducing the residual water on the surface of the eggs. Through the above process, the risk of deterioration of the eggs caused by water in the subsequent storage and transportation of the eggs is reduced, that is, the quality of the egg processing and conveying is improved.
[0053] During the rolling of the eggs in the inclined tube 4, the motor 37 is started, and the output shaft of the motor 37 drives the worm to rotate. During the rotation of the worm, the oval disc 23 rotates synchronously. During the rotation of the oval disc 23, when the long axis end of the oval disc 23 abuts against the sliding block 6, the sliding block 6 moves away from the position where the driving shaft 22 is located, and the second spring 12 is stretched; when the short axis end of the oval disc 23 abuts against the sliding block 6, the sliding block 6 is reset under the action of the second spring 12, and the sliding block 6 moves towards the position where the driving shaft 22 is located. Therefore, the sliding block 6 can reciprocate along the length direction of the sliding hole.
[0054] Therefore, during the absorption of the water on the surface of the rolling eggs by the water absorption brush 9, the water absorption brush 9 can reciprocate along the length direction of the sliding hole under the driving of the sliding block 6, thereby improving the water absorption force of the water absorption brush 9 and enabling the water absorption brush 9 to more efficiently and comprehensively absorb the water on the surface of the eggs. Meanwhile, during the reciprocation of the water absorption brush 9, the water absorption brush 9 can slow down the rolling speed of the eggs, thereby reducing the probability of the breakage of the eggs due to the too fast rolling speed.
[0055] The auxiliary rod 11 and the first spring are arranged to enable the water absorption brush 9 to reciprocate along the length direction of the fixed block 7, thereby making the movement of the water absorption brush 9 more diversified. Therefore, under the diversified movement of the water absorption brush 9, on the one hand, the water on the surface of the eggs can be further absorbed, and on the other hand, the rolling speed of the eggs can be further slowed down, that is, the processing effect of the water absorption brush 9 on the eggs is enriched.
[0056] During the rotation of the oval disc 23, when the long axis end of the oval disc 23 abuts against the second rack 31, the second rack 31 moves away from the position where the driving shaft 22 is located, and the fourth spring is compressed; when the short axis end of the oval disc 23 abuts against the second rack 31, the second rack 31 is reset under the action of the fourth spring, and the second rack 31 moves towards the position where the driving shaft 22 is located. Therefore, the second rack 31 can drive the power block 30 to reciprocate along the length direction of the side hole.
[0057] During the movement of the second rack 31, the first gear 25 can rotate through the meshing of the first gear 25 and the second rack 31. During the rotation of the first gear 25, the first rack 26 drives the linkage cylinder 14 to reciprocate along the length direction of the wall block 13 through the meshing of the first gear 25 and the first rack 26. During the movement of the linkage cylinder 14, the linkage rod 15 moves synchronously.
[0058] During the reciprocating movement of the water absorption brush 9, the water absorption brush 9 on both sides is further contracted to the position where the sliding hole is located or expanded away from the position where the sliding hole is located with the aid of the linkage rod 15. Therefore, during the contraction of the water absorption brush 9, the water absorption brush 9 can gradually change from linear contact with the surface of the egg to point contact close to the surface of the egg, so that the water absorption brush 9 can concentrate on the local position of the surface of the egg for fine water absorption treatment; during the expansion of the water absorption brush 9, the water absorption brush 9 changes from point contact close to the surface of the egg to linear contact, so that the water absorption brush 9 can comprehensively treat more areas on the surface of the egg. Through the above process, the water absorption treatment effect of the local position of the egg is further enhanced under the change of the water absorption brush 9, that is, the water absorption quality of the water absorption brush 9 is improved.
[0059] During the rotation of the worm, the worm gear 39 is engaged with the worm, and the worm gear 39 drives the movement shaft 38 to rotate. During the rotation of the movement shaft 38, the cam 40 rotates synchronously. During the rotation of the cam 40, when the protruding part of the cam 40 abuts against the pressing rod 41, the pressing rod 41 drives the pressing plate 28 to move vertically downward, and the fifth spring is compressed; when the protruding part of the cam 40 no longer abuts against the pressing rod 41, the fifth spring drives the pressing rod 41 and the pressing plate 28 to reset, and the pressing rod 41 and the pressing plate 28 move vertically upward. Therefore, the pressing plate 28 can move vertically and reciprocally.
[0060] During the vertical reciprocating movement of the pressing plate 28, the pressing plate 28 drives the side rod 29 to move vertically and reciprocally through cooperation with the third spring. Since the linkage rod 15 can also move vertically and reciprocally during the reciprocating movement of the linkage rod 15 along the length direction of the bottom block 5, the acting range of the linkage rod 15 on the water absorption brush 9 is expanded, the linear contact of the water absorption brush 9 with the surface of the egg gradually changes to point contact, and the contraction of the water absorption brush 9 on both sides to the inside is more concentrated on a position on the surface of the egg, thereby further enhancing the fine treatment effect of the water absorption brush 9 on the surface of the egg.
[0061] During the movement of the power block 30, the movement block 32 moves synchronously, and the two stop cottons 18 can slide in and out of the stop holes. Therefore, during the slowing down of the rolling speed of the egg by the water absorption brush 9, the rolling speed of the egg is further slowed down under the action of the stop cotton 18 through the reciprocating movement of the stop cotton 18, which on the one hand ensures that the egg will not be broken due to too fast rolling speed, and on the other hand reduces the probability of collision between adjacent two eggs due to too fast rolling speed, thereby comprehensively improving the safety of the egg rolling in the inclined pipe 4.
[0062] Meanwhile, the suction cotton 18 can also absorb the water on the surface of the eggs while slowing down the rolling speed of the eggs, thereby increasing the treatment of the water on the surface of the eggs and ensuring that the eggs can be more efficiently reduced in water on the surface under the cooperation of the water absorption brush 9 and the suction cotton 18.
[0063] During the movement of the movement block 32 to drive the suction block 17, the third rack 36 moves synchronously. During the movement of the third rack 36, the second gear 35 is driven to rotate forward and reverse through the engagement of the third rack 36 and the second gear 35. During the rotation of the screw rod 33, the nut seat 34 drives the sponge block 21 to reciprocate along the length direction of the guide rod 19 through the connecting rod 20.
[0064] The two sponge blocks 21 are arranged to cross each other to reduce the probability of collision between the adjacent two eggs and improve the safety during the rolling transmission of the eggs. Meanwhile, the treatment time of the water on the surface of the eggs by the water absorption brush 9 and the suction cotton 18 is prolonged during the cross movement of the two sponge blocks 21, i.e., the effect of the water absorption brush 9 and the suction cotton 18 on the water on the surface of the eggs is further enhanced.
[0065] Moreover, the sponge block 21 can absorb the water on the surface of the eggs from different directions during the cross movement of the two sponge blocks 21, and the water on the surface of the eggs is fully treated in any position in all directions under the cooperation of the water absorption brush 9, the suction cotton 18 and the sponge block 21, i.e., the treatment efficiency and quality of the water on the surface of the eggs are further improved.
[0066] In summary, the omnidirectional treatment of the water on the surface of the eggs provides a strong guarantee for the subsequent storage and transmission of the eggs, i.e., the storage quality of the eggs is improved.
[0067] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content to obtain equivalent embodiments with equivalent changes, but as long as it does not deviate from the technical solution of the present application, any modification, change and modification of the above embodiments according to the technical essence of the present application are still within the scope of the present application.
Claims
1. An egg processing conveying device comprising a washing tank having an inlet and an outlet, a discharging tank having an opening on both sides, and a conveying tank, characterized in that: The utility model also includes a top opening inclined pipe, a discharging mechanism arranged in the discharging box; the inclined pipe is communicated with the outlet of the cleaning box, the free end of the inclined pipe penetrates through the discharging box and is communicated with the conveying box; the discharging mechanism includes a bottom block, a sliding block, a fixed block, a side rod, a plurality of water absorbing brushes, a bottom opening box, a sliding hole opened on the bottom block, a driving assembly for driving the sliding block to make reciprocating motion along the length direction of the sliding hole; the box is fixedly connected with the discharging box; the bottom block is fixedly connected with the box; the sliding block is slidingly connected with the sliding hole; the fixed block is fixedly connected with the sliding block; the side rod is connected with the fixed block; the plurality of water absorbing brushes are fixedly connected with the side rod, and the free end of the water absorbing brush extends into the inclined pipe.
2. An egg processing conveyor as claimed in claim 1, wherein: The utility model also includes an auxiliary assembly; the auxiliary assembly includes an auxiliary rod, a first spring, an auxiliary slot opened on the fixed block; the auxiliary rod is slidingly connected with the auxiliary slot, the auxiliary rod is fixedly connected with the side rod, and the free end of the auxiliary rod faces the inner wall of the bottom hole; the two ends of the first spring are respectively connected with the auxiliary rod and the auxiliary slot.
3. An egg processing conveyor as claimed in claim 2, wherein: The utility model also includes a linkage assembly symmetrically arranged on both sides of the bottom block; the linkage assembly includes a wall block, a linkage cylinder, a linkage rod, a side hole opened on the bottom block, and a power part for driving the linkage cylinder to make reciprocating motion along the length direction of the wall block; the wall block is fixedly connected with the side hole; the linkage cylinder is slidingly connected with the wall block; the linkage rod is connected with the linkage cylinder; the water absorbing brush is located on the motion track of the linkage rod.
4. An egg processing conveyor as claimed in claim 3, wherein: The linkage assembly also includes a linkage part; the linkage part includes an inner rod and a motion unit for driving the inner rod to make vertical reciprocating motion; the inner rod is slidingly connected with the linkage cylinder, and the inner rod is fixedly connected with the linkage rod.
5. An egg processing conveyor as claimed in claim 4, wherein: The utility model also includes a suction stopping assembly arranged on both sides of the inclined pipe; the suction stopping assembly includes a guide block, a suction stopping block, a suction stopping cotton, a suction stopping hole opened on the inclined pipe, and a motion part for driving the suction stopping block to make reciprocating motion along the length direction of the guide block; the guide block is fixedly connected with the outer wall of the inclined pipe; the suction stopping block is slidingly connected with the guide block; the suction stopping cotton is fixedly connected with the suction stopping block and can slide in and out of the suction stopping hole.
6. An egg processing conveyor as claimed in claim 5 wherein: The utility model also includes two speed stopping parts arranged along the length direction of the inclined pipe; the speed stopping part includes a guide rod, a connecting rod, a sponge block, a speed stopping hole opened on the bottom of the inclined pipe, and a power unit for driving the connecting rod to make vertical reciprocating motion; the guide rod is fixedly connected with the outer wall of the inclined pipe; the connecting rod is slidingly connected with the guide rod; the sponge block is fixedly connected with the connecting rod and can slide in and out of the speed stopping hole; the water absorbing brush is located between the two sponge blocks; the motion directions of the two connecting rods are opposite.
7. An egg processing conveyor as claimed in claim 6, wherein: The driving assembly includes a driving shaft, an oval disc, a second spring, and a motion piece for driving the driving shaft to rotate; the driving shaft is rotationally connected with the bottom block; the oval disc is fixedly connected with the driving shaft and abuts against the sliding block; the two ends of the second spring are respectively connected with the sliding block and the sliding hole.
8. An egg processing conveyor as claimed in claim 7, wherein: The power part includes a power shaft, a first gear, a first rack, and a power piece for driving the power shaft to rotate; the power shaft is rotationally connected with the box; the first gear is fixedly connected with the power shaft; the first rack is fixedly connected with the linkage cylinder and is engaged with the first gear.
9. An egg processing conveyor as claimed in claim 8, wherein: The driving unit comprises a concave block, a pressing plate, and a driving part for vertical reciprocating movement of the pressing plate; the concave block is fixedly connected with the bottom block; the pressing plate is slidingly connected with the concave block; the movement unit comprises a side rod, a third spring, and a side hole opened on the linkage cylinder; the side rod is fixedly connected with the linkage rod, the free end of the side rod passes through the side hole and is located below the pressing plate; the two ends of the third spring are respectively connected with the linkage cylinder and the linkage rod; the pressing plate is in abutment with the side rod.
10. An egg processing conveyor as claimed in claim 9, wherein: The driving part comprises a driving block, a fourth spring, and a second rack; the driving block is slidingly connected with the side hole; the two ends of the fourth spring are respectively connected with the driving block and the side hole; the second rack is fixedly connected with the driving block, the second rack is in abutment with the oval disc, and the second rack is in mesh with the first gear.
Citation Information
Patent Citations
Egg conveyor
CN220906295U