Adsorption equipment for cleaning egg shells

By designing an adsorption device with negative pressure and gas pretreatment mechanism, the problem of easy adsorption of lint or impurities in existing equipment has been solved, realizing the cleaning and normal transfer of egg surfaces and reducing the probability of air compressor damage.

CN223530990UActive Publication Date: 2025-11-11HUAINAN TIANGONG ANIMAL HUSBANDRY CO LTD
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Patent Information

Application Number
CN202422060081.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-24
Publication Date
2025-11-11
Estimated Expiration
2034-08-24

AI Technical Summary

Technical Problem

Existing egg washing and transfer equipment lacks an egg surface pretreatment mechanism, which makes it easy for fuzz or other impurities to be sucked up by the air compressor, increasing the probability of equipment damage and affecting normal transfer.

Method used

An adsorption device comprising a rotary motor, an adsorption plate, and a suction cup was designed. The device cleans the surface of the egg by using negative pressure and a gas pretreatment mechanism, adsorbs the egg by using the suction cup, and removes fuzz or impurities by blowing away the gas, thereby reducing the probability of damage to the air compressor.

Benefits of technology

It effectively removes fuzz or impurities from the surface of eggs, reduces the risk of damage to the air compressor, and ensures proper transfer and cleaning of eggs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223530990U_ABST
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Abstract

The utility model provides adsorption equipment for cleaning egg shells. The adsorption equipment for cleaning the egg shells comprises a base, a bracket and a cross rod, a rotating motor is mounted in the base; the output end of the rotating motor is connected with a rotating disc; the support is fixedly connected to the rotating disc, a first motor is installed on the support, a first adjusting groove is formed in the side wall of the support, a first lead screw is rotationally connected into the first adjusting groove, and the first lead screw is connected with the output end of the first motor; the transverse rod is arranged on one side of the support, a connecting piece is fixedly connected to the transverse rod, the connecting piece is arranged in the first adjusting groove and connected to the first lead screw in a threaded mode, and an adsorption mechanism is installed on the transverse rod. Fluff or impurities on the surfaces of the eggs are not prone to being sucked by the air compressor, the damage probability of the air compressor is reduced, and meanwhile it can be guaranteed that the eggs can be normally transferred and cleaned.
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Description

Technical Field

[0001] This utility model relates to the field of adsorption equipment technology, and in particular to an adsorption device for cleaning eggshells. Background Technology

[0002] Eggs are rich in protein, fat, vitamins, and minerals such as iron, calcium, and potassium, which are essential for the human body. Therefore, eggs are often used as a main raw material in food processing. An egg mainly consists of three parts: the shell, the egg white, and the yolk. The shell, being relatively hard, is the egg's primary protective layer.

[0003] Before processing, eggs need to have their shells cleaned to remove bacteria and impurities. Current egg cleaning and transfer methods primarily utilize adsorption equipment. For example, Chinese utility model patent CN210854327U discloses a rapid egg-grabbing device, which includes an air compressor and an egg-collecting plate. The egg-collecting plate has an internal cavity, and the air compressor's suction port is connected to the interior of the plate. Multiple suction cups are evenly distributed on one side of the plate, and these cups are connected to the air compressor via the plate. This device enables rapid egg transfer and can meet user needs to a certain extent.

[0004] However, the device lacks an egg surface pretreatment mechanism, which makes it easy for the air compressor to suck up the fuzz or other impurities on the surface of the eggs that have not yet been cleaned. This increases the probability of air compressor damage and also affects the normal transfer of eggs.

[0005] Therefore, there is an urgent need to redesign a new adsorption device for cleaning eggshells to solve the above problems. Utility Model Content

[0006] This invention provides an adsorption device for cleaning eggshells, thereby solving the technical problems mentioned in the background section.

[0007] This utility model provides an adsorption device for cleaning eggshells, which includes a base, a support, and a crossbar.

[0008] A rotary motor is installed inside the base, and a rotating disk is connected to the output end of the rotary motor;

[0009] The bracket is fixedly connected to the rotating disk. A first motor is installed on the bracket. A first adjustment groove is provided on the side wall of the bracket. A first lead screw is rotatably connected in the first adjustment groove. The first lead screw is connected to the output end of the first motor.

[0010] A crossbar is located on one side of the support, and a connector is fixedly connected to the crossbar. The connector is located in the first adjustment groove and is threaded to the first lead screw. An adsorption mechanism is installed on the crossbar.

[0011] Optionally, a second motor is installed on the crossbar, and a second adjustment groove is provided at the bottom of the crossbar. A second lead screw is rotatably connected in the second adjustment groove. The second lead screw is connected to the output end of the second motor. When the second motor is running, the second motor can drive the second lead screw to rotate.

[0012] Optionally, a connecting post is provided in the second adjusting groove. The connecting post is threadedly connected to the second lead screw. When the second lead screw rotates, the connecting post will move in the second adjusting groove due to the thread action, so as to adjust the position of the connecting post.

[0013] Optionally, the adsorption mechanism includes an adsorption plate, which is fixedly connected to the connecting column, and the adsorption plate is hollow inside.

[0014] Optionally, the connecting column has a cavity that is connected to the interior of the adsorption plate.

[0015] Optionally, the bottom of the adsorption plate is connected to several evenly distributed suction cups, which are connected to the inside of the adsorption plate. When the suction cups come into contact with the egg, the air compressor is run. The air compressor creates a negative pressure in the cavity and inside the adsorption plate through the adsorption tube, which in turn creates a negative pressure inside the suction cups, so that the suction cups can adsorb the egg.

[0016] Optionally, an air compressor is installed on the crossbar, and an adsorption tube is connected between the air compressor and the connecting column. One end of the adsorption tube is located inside the cavity. When the air compressor is running, the air compressor can create a negative pressure inside the cavity and the adsorption plate through the adsorption tube, which in turn can create a negative pressure inside several suction cups for adsorbing eggs.

[0017] Optionally, a third motor is installed on the side wall of the adsorption plate, and a third lead screw is connected to the output end of the third motor. When the third motor is running, the third motor can drive the third lead screw to rotate.

[0018] The third lead screw is threaded with a connecting sleeve, and a straight tube is connected to the connecting sleeve. When the third lead screw rotates, the connecting sleeve can move within the adsorption plate due to the thread action, thereby adjusting the position of the straight tube.

[0019] The straight pipe has several evenly distributed air outlets, through which the gas inside the straight pipe is discharged.

[0020] Optionally, an air pump is installed on the side wall of the adsorption plate, and a telescopic hose is connected to the air pump. One end of the telescopic hose is located inside the adsorption plate. When the air pump is running, it draws in outside air and delivers the air through the telescopic hose into the straight pipe. The air in the straight pipe is discharged through several air outlets and discharged outward through the suction cups to blow onto the egg surface for pretreatment. This makes it less likely that the fuzz or impurities on the egg surface will be sucked up by the air compressor during subsequent adsorption, reducing the probability of air compressor damage. At the same time, it can also ensure that the eggs can be properly transported and cleaned.

[0021] Optionally, each pair of inner walls of the adsorption plate is provided with a limiting groove, and a slider is installed on the straight tube. The slider is located in the limiting groove, and the straight tube can be moved within the adsorption plate by the slider moving within the limiting groove.

[0022] A filter screen is installed on the lower side of the straight pipe to filter the gas entering the adsorption plate from the suction cup, so that impurities in the gas are less likely to affect the air compressor.

[0023] The beneficial effects of this utility model are as follows:

[0024] This type of adsorption device for cleaning eggshells can pre-treat the surface of the egg through the setting of a corresponding mechanism, making it difficult for the air compressor to suck up the fuzz or impurities on the egg surface, reducing the probability of air compressor damage, and at the same time ensuring that the eggs can be properly transported and cleaned. Attached Figure Description

[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0026] Figure 1 This is a first-view perspective perspective view of an adsorption device for cleaning eggshells provided by this utility model;

[0027] Figure 2 yes Figure 1 A magnified view of a portion of region A in the middle;

[0028] Figure 3 This is a second-view perspective perspective view of an adsorption device for cleaning eggshells provided by this utility model;

[0029] Figure 4 yes Figure 3 A magnified view of a portion of region B in the middle;

[0030] Figure 5This is a cross-sectional view of an adsorption device for cleaning eggshells provided by this utility model;

[0031] Figure 6 yes Figure 5 A magnified view of a portion of region C. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. It should be understood that the specific embodiments described herein are only for explaining the present utility model and not for limiting it. Furthermore, it should be noted that, for ease of description, only the parts related to the present utility model are shown in the drawings, not all of the structures. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0033] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0034] Please see Figures 1 to 6 The present invention provides an adsorption device for cleaning eggshells, comprising a base 1, a support 2, and a crossbar 3.

[0035] The base 1 is equipped with a rotary motor, and the output end of the rotary motor is connected to a rotating disk 101. The rotary motor is used to drive the rotating disk 101 to rotate, thereby adjusting the rotation angle of the crossbar 3, the suction plate 306 and the suction cup 307, so as to transfer and clean the eggs adsorbed by the suction cup 307.

[0036] Please see Figures 1 to 6 The bracket 2 is fixedly connected to the rotating disk 101, and the bracket 2 is used to install the crossbar 3.

[0037] The bracket 2 is equipped with a first motor 201, and the side wall of the bracket 2 is provided with a first adjustment groove 202. A first lead screw 203 is rotatably connected in the first adjustment groove 202, and the first lead screw 203 is connected to the output end of the first motor 201. When the first motor 201 is running, it can drive the first lead screw 203 to rotate.

[0038] Please see Figures 1 to 6 The crossbar 3 is located on one side of the bracket 2 and is used to install the air compressor 308 and the adsorption plate 306.

[0039] A connector 301 is fixedly connected to the crossbar 3. The connector 301 is located in the first adjustment groove 202 and threadedly connected to the first lead screw 203. When the first lead screw 203 rotates, the connector 301 can move within the first adjustment groove 202 due to the thread action, thereby adjusting the vertical height of the crossbar 3 to adjust the height of the egg adsorbed by the suction cup 307.

[0040] In addition, a second motor 302 is installed on the crossbar 3, and a second adjusting groove 303 is provided at the bottom of the crossbar 3. A second lead screw 304 is rotatably connected in the second adjusting groove 303, and the second lead screw 304 is connected to the output end of the second motor 302. When the second motor 302 is running, the second motor 302 can drive the second lead screw 304 to rotate.

[0041] Specifically, a connecting post 305 is provided in the second adjusting groove 303, and the connecting post 305 is threadedly connected to the second lead screw 304. When the second lead screw 304 rotates, the connecting post 305 will move within the second adjusting groove 303 due to the thread action, thereby adjusting the horizontal position of the connecting post 305.

[0042] In addition, the connecting column 305 has a cavity, which is connected to the interior of the adsorption plate 306.

[0043] Please see Figures 1 to 6 An adsorption mechanism is installed on the crossbar 3. The adsorption mechanism is used to adsorb the eggs, thereby enabling the transfer of the eggs for subsequent cleaning.

[0044] The adsorption mechanism includes an adsorption plate 306, which is fixedly connected to a connecting column 305. The adsorption plate 306 is hollow inside. When a negative pressure is formed inside the adsorption plate 306, the adsorption plate 306 will also cause a negative pressure to be formed inside several suction cups 307, so that the suction cups 307 can be used to adsorb eggs.

[0045] In addition, several evenly distributed suction cups 307 are connected to the bottom of the adsorption plate 306, and the suction cups 307 are connected to the interior of the adsorption plate 306. When the suction cups 307 come into contact with the egg, the air compressor 308 is activated. The air compressor 308 creates a negative pressure in the cavity and inside the adsorption plate 306 through the adsorption tube 309, which in turn creates a negative pressure inside the suction cups 307, allowing the suction cups 307 to adsorb the egg.

[0046] Specifically, an air compressor 308 is installed on the crossbar 3, and an adsorption tube 309 is connected between the air compressor 308 and the connecting column 305. One end of the adsorption tube 309 is located inside the cavity. When the air compressor 308 is running, it can create a negative pressure inside the cavity and the adsorption plate 306 through the adsorption tube 309, which in turn can create a negative pressure inside the suction cups 307 for adsorbing eggs.

[0047] Please see Figures 1 to 6 A third motor 310 is installed on the side wall of the adsorption plate 306. The output end of the third motor 310 is connected to a third lead screw 311. When the third motor 310 is running, it can drive the third lead screw 311 to rotate.

[0048] The third lead screw 311 is threadedly connected to a connecting sleeve 312, and a straight tube 313 is connected to the connecting sleeve 312. When the third lead screw 311 rotates, the connecting sleeve 312 is moved within the adsorption plate 306 by the thread action, thereby adjusting the position of the straight tube 313.

[0049] In addition, the straight pipe 313 is provided with several evenly distributed air outlets, through which the gas inside the straight pipe 313 is discharged.

[0050] Specifically, an air pump 314 is installed on the side wall of the adsorption plate 306, and a telescopic hose is connected to the air pump 314, with one end of the telescopic hose located inside the adsorption plate 306. When the air pump 314 is running, it draws in outside air and delivers the air through the telescopic hose to the straight pipe 313. The air in the straight pipe 313 is discharged through several air outlets. The discharged air is discharged outward through the suction cup 307 and blown onto the egg surface to remove fuzz or impurities adhering to the egg surface, thus achieving pretreatment of the egg surface. This makes it less likely that fuzz or impurities on the egg surface will be sucked up by the air compressor 308 when the egg is subsequently adsorbed by the suction cup 307, thereby reducing the probability of damage to the air compressor 308 and ensuring that the eggs can be properly transferred and cleaned.

[0051] Preferably, a control valve is installed on the telescopic hose. The control valve will only open when the air pump 314 is running, otherwise it will be closed.

[0052] In addition, each of the inner walls of the adsorption plate 306 is provided with a limiting groove 315, and a slider is installed on the straight tube 313. The slider is located in the limiting groove 315. By moving the slider in the limiting groove 315, the straight tube 313 can be moved within the adsorption plate 306.

[0053] Preferably, the first motor 201, the second motor 302 and the third motor 310 are all reciprocating motors capable of rotating in both directions.

[0054] Furthermore, a control box is installed on bracket 2, and the rotary motor, the first motor 201, the second motor 302, the air compressor 308, the third motor 310, and the control valve are electrically connected to the control box.

[0055] Please see Figures 1 to 6A filter screen 316 is provided on the lower side of the straight pipe 313 to filter the gas entering the adsorption plate 306 from the suction cup 307, so that impurities in the gas are less likely to affect the air compressor 308. When the gas is discharged from the outlet, the gas will also blow towards the filter screen 316 to clean the surface of the filter screen 316, so that lint or impurities are less likely to clog the filter screen 316.

[0056] In practical use, controlling the first motor 201 to run can adjust the vertical height of the crossbar 3, and controlling the second motor 302 to run can adjust the horizontal position of the suction cup 307 so that the suction cup 307 can be aligned with the egg. At this time, the suction cup 307 does not contact the egg.

[0057] The air pump 314 and the third motor 310 are operated. When the air pump 314 is running, it draws in outside air and delivers it through a telescopic hose to the straight pipe 313. The air in the straight pipe 313 is discharged through several air outlets into the adsorption plate 306. When the third motor 310 is running, it drives the third lead screw 311 to rotate. The connecting sleeve 312 is moved within the adsorption plate 306 by the thread action, thereby adjusting the position of the straight pipe 313 and allowing it to move back and forth within the adsorption plate 306.

[0058] The gas discharged through the vent is discharged outward through the suction cup 307. Since the suction cup 307 is close to the egg, the gas discharged through the suction cup 307 will blow onto the egg surface to remove the fuzz or impurities adhering to the egg surface, thereby achieving the pretreatment of the egg surface.

[0059] Turn off the third motor 310 and air pump 314 so that the suction cup 307 contacts the egg. Then run the air compressor 308. The air compressor 308 can create a negative pressure inside the cavity and the suction plate 306 through the suction tube 309, which in turn can create a negative pressure inside the suction cups 307. The suction cups 307 can then be used to pick up the egg and transfer and clean it.

[0060] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. An adsorption device for cleaning eggshells, characterized in that, include A base, in which a rotary motor is installed, and the output end of the rotary motor is connected to a rotating disk; A bracket is fixedly connected to the rotating disk. A first motor is mounted on the bracket. A first adjustment groove is provided on the side wall of the bracket. A first lead screw is rotatably connected in the first adjustment groove. The first lead screw is connected to the output end of the first motor. A crossbar is located on one side of the bracket. A connector is fixedly connected to the crossbar. The connector is located in the first adjustment groove and threadedly connected to the first lead screw. An adsorption mechanism is installed on the crossbar. A second motor is installed on the crossbar. A second adjustment groove is provided at the bottom of the crossbar. A second lead screw is rotatably connected in the second adjustment groove. The second lead screw is connected to the output end of the second motor. A connecting post is provided in the second adjustment groove. The connecting post is threadedly connected to the second lead screw. The adsorption mechanism includes an adsorption plate. The adsorption plate is fixedly connected to the connecting post. The adsorption plate is hollow inside. An air pump is installed on the side wall of the adsorption plate. A telescopic hose is connected to the air pump. One end of the telescopic hose is located inside the adsorption plate.

2. The adsorption device for cleaning eggshells according to claim 1, characterized in that, The connecting column has a cavity, which is connected to the interior of the adsorption plate.

3. The adsorption device for cleaning eggshells according to claim 1, characterized in that, The bottom of the adsorption plate is connected to several evenly distributed suction cups, which are in communication with the interior of the adsorption plate.

4. An adsorption device for cleaning eggshells according to claim 2, characterized in that, An air compressor is installed on the crossbar, and an adsorption tube is connected between the air compressor and the connecting column. One end of the adsorption tube is located inside the cavity.

5. An adsorption device for cleaning eggshells according to claim 1, characterized in that, A third motor is installed on the side wall of the adsorption plate. The output end of the third motor is connected to a third lead screw. A connecting sleeve is threaded onto the third lead screw. A straight pipe is connected to the connecting sleeve. The straight pipe has several evenly distributed air outlet holes.

6. An adsorption device for cleaning eggshells according to claim 5, characterized in that, The adsorption plate has a pair of limiting grooves on its inner walls, a slider is installed on the straight tube and the slider is located in the limiting groove, and a filter screen is provided on the lower side of the straight tube.

Citation Information

Patent Citations

  • Rapid egg grabbing device

    CN210854327U