CN213833529U - Duck egg counting assembly of yolk processing line - Google Patents
Duck egg counting assembly of yolk processing line Download PDFInfo
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- CN213833529U CN213833529U CN202022202248.XU CN202022202248U CN213833529U CN 213833529 U CN213833529 U CN 213833529U CN 202022202248 U CN202022202248 U CN 202022202248U CN 213833529 U CN213833529 U CN 213833529U
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Abstract
The utility model discloses a duck egg counting device of an egg yolk processing line, which comprises a first material roller type conveying line provided with a plurality of rows of first material rollers, wherein a first conveying belt and a second material roller type conveying line are sequentially arranged along the conveying direction of the first material roller type conveying line; the second material roller type conveying line is provided with a second material roller; the first conveying belt is arranged on the first base; the first base is connected with a guide structure of a row of second material rollers, and the guide structure can converge a plurality of rows of duck eggs conveyed to the input end of the first conveying belt into a row and output the row of duck eggs to the second material roller type conveying line; and a counter is arranged above the row of second material rollers. The utility model provides a duck egg counting assembly of yolk processing line can accurately acquire the quantity that the duck egg got into next process, does benefit to personnel's statistics and control cost, reduces extravagantly.
Description
Technical Field
The utility model relates to a yolk processing field especially relates to a duck egg counting assembly of yolk processing line.
Background
In the production process of the yolk product, the duck eggs need to be cleaned, dried, sterilized and the like, and then the yolk part in the duck eggs is picked out for further processing. To accurately control product cost and revenue, the number of duck eggs used per product process needs to be tracked and calculated. In the traditional production process, the used duck eggs are generally weighed in batches and then converted into the number of the duck eggs through a formula. However, since the weight of each duck egg is not completely consistent, the deviation exists between the numerical value obtained by batch weighing conversion and the actual quantity, so that errors often occur during report statistics, the accurate quantity of the duck eggs cannot be obtained, the cost cannot be accurately controlled, and the waste of part of the procedures is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a duck egg counting assembly of yolk processing line can accurately acquire the quantity that the duck egg got into next process, does benefit to personnel's statistics and control cost, reduces extravagantly.
In order to achieve the purpose, the utility model provides a duck egg counting device of an egg yolk processing line, which comprises a first material roller type conveying line provided with a plurality of rows of first material rollers, and a first conveying belt and a second material roller type conveying line are sequentially arranged along the conveying direction of the first material roller type conveying line; the second material roller type conveying line is provided with a second material roller; the first conveying belt is arranged on the first base; the first base is connected with a guide structure of a row of second material rollers, and the guide structure can converge a plurality of rows of duck eggs conveyed to the input end of the first conveying belt into a row and output the row of duck eggs to the second material roller type conveying line; and a counter is arranged above the row of second material rollers.
As a further improvement of the present invention, the guiding structure comprises a first connecting frame, a first guiding plate and a second guiding plate which are oppositely arranged; the second guide plate gradually approaches the first guide plate along the conveying direction of the duck eggs; the first guide plate and the second guide plate are both located above the first conveying belt and are connected with the first base through the first connecting frame.
As a further improvement of the present invention, the second material roller type conveying line is provided with two first guide rods respectively located at the left side and the right side of the row of second material rollers; the tail ends of the second material rollers in the row are provided with guide inclined plates; the upper portion of direction swash plate with two first guide bars are connected, and the lower limb of direction swash plate is equipped with the second conveyer belt along duck egg direction of delivery one side.
As a further improvement of the present invention, the second conveyor belt is disposed on the second base; the second base is connected with a cross arm through a second connecting frame; the counter is mounted on the cross arm.
As a further improvement of the utility model, a material distributing mechanism is arranged above the second conveying belt; the tail end of the second conveying belt is provided with a first discharging channel and a second discharging channel.
As a further improvement of the utility model, the material distributing mechanism comprises a middle clapboard, a swinging plate and a linear driving mechanism; the front end of the swinging plate is a free end, and the middle part of the swinging plate is connected with the output end of the linear driving mechanism in a sliding way through a strip-shaped sliding chute; the linear driving mechanism is arranged on the second connecting frame; the rear end of the swing plate is hinged with the front end of the middle partition plate; the tail end of the middle partition plate faces to the space between the inner edges of the first discharging channel and the second discharging channel; the middle partition board is fixedly connected with the second base through a third connecting frame.
As a further improvement of the utility model, the material distributing mechanism further comprises a second guide rod connected with the third connecting frame; the front end of the second guide rod is close to the front end of the second conveying belt and is positioned on one side of the lower edge of the guide inclined plate, the rear end of the second guide rod and the middle partition plate form a first material distribution channel, and the first material distribution channel is communicated with the first material discharge channel; the swinging plate is positioned between the side wall of the second base and the second guide rod; the side wall of the second base and the middle partition plate form a second material distribution channel, and the second material distribution channel is communicated with the second material discharge channel.
Advantageous effects
Compared with the prior art, the utility model discloses a duck egg counting assembly of yolk processing line's advantage does:
1. guide structure can assemble into a row with the multiseriate duck egg that carries to first conveyer belt input and export to the second material roller of a row of roller conveyor line on to separate a row of duck egg through a row of second material roller, then count through the counter, just can accurately acquire the duck egg quantity that gets into next batch process. The method is beneficial to personnel statistics, and then the optimal number of the duck eggs required by each batch is obtained through experience gradual adjustment, so that the cost is controlled, and the waste is reduced.
2. The second guide plate of the guide structure is gradually close to the first guide plate along the conveying direction of the duck eggs, and the structure is simple and the work is stable.
3. Be equipped with on the roller formula transfer chain of second material and be located respectively two first guide bars of a row of second material roller left and right both sides can prevent to miss the problem of examining because of duck's egg this row of second material roller of skew in the removal process.
4. A material distributing mechanism is arranged above the second conveying belt. The end of the second conveying belt is provided with a first discharging channel and a second discharging channel, the counted duck eggs are sorted to different discharging channels according to requirements through the distributing mechanism to go to different stations for further processing, manual operation is not needed, and labor cost is reduced.
The invention will become more apparent from the following description when taken in conjunction with the accompanying drawings which illustrate embodiments of the invention.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a top view of a duck egg output from a second discharge channel of a duck egg counting device of a yolk processing line;
FIG. 2 is a top view of a duck egg output from a first discharge channel of a duck egg counting device of a yolk processing line;
FIG. 3 is a front view of a second row of material rollers and counter.
Detailed Description
Embodiments of the present invention will now be described with reference to the accompanying drawings.
Examples
The utility model discloses a concrete embodiment is as shown in fig. 1 to fig. 3, a duck egg counting assembly of egg yolk processing line, including the first material roller conveyor line 1 that is equipped with the first material roller 11 of multiseriate, be equipped with first conveyer belt 2 and second material roller conveyor line 4 along the direction of delivery of first material roller conveyor line 1 in proper order. The second material roller type conveying line 4 is provided with a second material roller 41. The first conveyor belt 2 is disposed on the first base 21. The first base 21 is connected with a guide structure 3 which can converge a plurality of rows of duck eggs 10 conveyed to the input end of the first conveying belt 2 into a row and output the row of duck eggs to a row of second material rollers 41 of the second material roller type conveying line 4. A counter 5 is arranged above the row of second material rollers 41.
The guide structure 3 includes a first connecting frame 33, a first guide plate 31 and a second guide plate 32 which are oppositely arranged. The second guide plate 32 gradually approaches the first guide plate 31 in the conveying direction of the duck eggs 10. The first guide plate 31 and the second guide plate 32 are both located above the first conveyor belt 2 and are connected to the first base 21 by a first connecting frame 33. In this embodiment, the first guide plate 31 and the second guide plate 32 are two and are bilaterally symmetrical in the conveying direction of the duck egg 10, so as to form two guide structures 3. Two rows of second material rollers 41 are arranged on the second material roller type conveying line 4. Two rows of second material rollers 41 correspond one-to-one with the two guide structures 3.
Two first guide rods 42 respectively positioned at the left side and the right side of the row of second material rollers 41 are arranged on the second material roller type conveying line 4. The end of the row of second material rollers 41 is provided with a guide inclined plate 43. The upper portion of direction swash plate 43 is connected with two first guide bars 42, and the lower limb of direction swash plate 43 is equipped with second conveyer belt 6 along duck egg 10 direction of delivery one side.
The second conveyor belt 6 is disposed on the second base 61. The second base 61 is connected to a crossbar 63 via a second connecting frame 62. Counter 5 is mounted on cross arm 63. In this embodiment, two counters 5 are provided, and correspond to two rows of the second material rollers 41 respectively.
A material distributing mechanism 7 is arranged above the second conveying belt 6. The end of the second conveyor belt 6 is provided with a first discharge channel 8 and a second discharge channel 9. In this embodiment, the material distribution mechanism 7, the first discharging channel 8 and the second discharging channel 9 are two groups which are bilaterally symmetrical and respectively correspond to two rows of the second material rollers 41.
The feed mechanism 7 includes a middle partition plate 71, a swing plate 72, and a linear drive mechanism 73. The linear driving mechanism 73 is an air cylinder. The front end of the swing plate 72 is a free end, and the middle part thereof is connected with the output end of the linear driving mechanism 73 in a sliding way through a strip-shaped sliding chute. The linear driving mechanism 73 is mounted on the second link frame 62. The rear end of the swing plate 72 is hinged to the front end of the intermediate partition 71. The intermediate partition 71 ends between the inner edges of the first flow channel 8 and the second flow channel 9. The intermediate partition 71 is fixedly connected to the second base 61 by the third connecting frame 64.
The feed mechanism 7 further includes a second guide bar 74 connected to the third connecting frame 64. The front end of the second guide rod 74 is close to the front end of the second conveyor belt 6 and is located on one side of the lower edge of the inclined guide plate 43, the rear end of the second guide rod 74 and the middle partition plate 71 form a first material distribution channel, and the first material distribution channel is communicated with the first material outlet channel 8. The swing plate 72 is located between the side wall of the second base 61 and the second guide lever 74. The side wall of the second base 61 and the intermediate partition 71 form a second distribution channel, and the second distribution channel is communicated with the second discharge channel 9.
The oscillating plate 72 is driven to oscillate by the linear driving mechanism 73 in the distributing mechanism 7, so that the counted duck eggs can be moved out from the first discharging channel 8 or the second discharging channel 9 and enter the next procedure.
The present invention has been described above with reference to the preferred embodiments, but the present invention is not limited to the above-disclosed embodiments, and various modifications, equivalent combinations, which are made according to the essence of the present invention, should be covered.
Claims (7)
1. A duck egg counting device of an egg yolk processing line comprises a first material roller type conveying line (1) provided with a plurality of rows of first material rollers (11), and is characterized in that a first conveying belt (2) and a second material roller type conveying line (4) are sequentially arranged along the conveying direction of the first material roller type conveying line (1); a second material roller (41) is arranged on the second material roller type conveying line (4); the first conveyor belt (2) is arranged on a first base (21); the first base (21) is connected with a guide structure (3) of a row of second material rollers (41) which can converge a plurality of rows of duck eggs conveyed to the input end of the first conveying belt (2) into a row and output the row of duck eggs to the second material roller type conveying line (4); a counter (5) is arranged above the row of second material rollers (41).
2. A yolk processing line duck egg counting device according to claim 1, wherein the guide structure (3) comprises a first connecting frame (33), a first guide plate (31) and a second guide plate (32) arranged oppositely; the second guide plate (32) gradually approaches the first guide plate (31) along the conveying direction of the duck eggs; the first guide plate (31) and the second guide plate (32) are both located above the first conveyor belt (2) and are connected with the first base (21) through a first connecting frame (33).
3. A duck egg counting device of an egg processing line according to claim 1 or 2, wherein the second material roller conveyor line (4) is provided with two first guide rods (42) respectively positioned at the left and right sides of the row of second material rollers (41); the tail end of the row of second material rollers (41) is provided with a guide inclined plate (43); the upper portion of direction swash plate (43) with two first guide bar (42) are connected, and the lower limb of direction swash plate (43) is equipped with second conveyer belt (6) along duck egg direction of delivery one side.
4. A yolk processing line duck egg counting device according to claim 3, wherein the second conveyor belt (6) is provided on a second base (61); the second base (61) is connected with a cross arm (63) through a second connecting frame (62); the counter (5) is mounted on the cross arm (63).
5. A yolk processing line duck egg counting device according to claim 4, wherein a material separating mechanism (7) is arranged above the second conveyor belt (6); the tail end of the second conveying belt (6) is provided with a first discharging channel (8) and a second discharging channel (9).
6. A yolk processing line duck egg counting device according to claim 5, wherein the dividing mechanism (7) comprises a middle partition (71), a swing plate (72) and a linear driving mechanism (73); the front end of the swinging plate (72) is a free end, and the middle part of the swinging plate is connected with the output end of the linear driving mechanism (73) in a sliding way through a strip-shaped sliding chute; the linear driving mechanism (73) is arranged on the second connecting frame (62); the rear end of the swinging plate (72) is hinged with the front end of the middle clapboard (71); the end of the middle partition (71) faces to the space between the inner edges of the first discharging channel (8) and the second discharging channel (9); the middle partition plate (71) is fixedly connected with the second base (61) through a third connecting frame (64).
7. A yolk processing line duck egg counting apparatus according to claim 6, wherein the dividing mechanism (7) further comprises a second guide bar (74) connected to a third connecting frame (64); the front end of the second guide rod (74) is close to the front end of the second conveying belt (6) and is positioned on one side of the lower edge of the inclined guide plate (43), the rear end of the second guide rod (74) and the middle partition plate (71) form a first distributing channel, and the first distributing channel is communicated with the first discharging channel (8); the swing plate (72) is positioned between the side wall of the second base (61) and the second guide rod (74); the side wall of the second base (61) and the middle partition plate (71) form a second material distribution channel, and the second material distribution channel is communicated with the second material outlet channel (9).
Priority Applications (1)
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CN202022202248.XU CN213833529U (en) | 2020-09-30 | 2020-09-30 | Duck egg counting assembly of yolk processing line |
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CN202022202248.XU CN213833529U (en) | 2020-09-30 | 2020-09-30 | Duck egg counting assembly of yolk processing line |
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CN213833529U true CN213833529U (en) | 2021-07-30 |
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CN202022202248.XU Active CN213833529U (en) | 2020-09-30 | 2020-09-30 | Duck egg counting assembly of yolk processing line |
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