Automatic haff value measuring system for small poultry eggs

By designing a small-scale automatic Hough value determination system for poultry eggs, the problems of high time and cost of manual measurement and increased cost of multiple specification devices have been solved. The system realizes automated and portable Hough value determination, which can meet the testing needs of poultry eggs of large, medium and small sizes.

CN223976692UActive Publication Date: 2026-03-06NANJING YINGHAI BIOTECHNOLOGY CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing Hough value measurement systems require manual measurement, which is time-consuming. Furthermore, a single device can only measure eggs of a single size, and preparing devices of multiple sizes increases equipment and carrying costs, making it difficult to meet the needs of large-scale farming.

Method used

An automatic Hough value determination system for small poultry eggs was designed, comprising a load-bearing base plate, a sample slide, a motor track screw module, a sample chamber cover, and a circuit sensor control system. It can automatically determine the egg weight, yolk color, and albumen height of poultry eggs, and calculate the Hough value through a Hough value calculation chip, making it suitable for large, medium, and small poultry eggs.

Benefits of technology

It achieves automated testing, reduces labor costs, improves testing efficiency, adapts to different egg sizes, simplifies operation, reduces equipment and carrying difficulty, and meets the needs of large-scale farms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic haff value measuring system for small poultry eggs, which comprises a bearing bottom plate, a sample sliding disc, a motor track lead screw module, a sample bin upper cover and a circuit sensor control system, and is characterized in that the motor track lead screw module is arranged above the bearing bottom plate; the sample sliding disc is arranged on the upper portion of the motor crawler belt lead screw module, the sample bin upper cover is arranged above the sample sliding disc, and the circuit sensor control system is arranged above the sample bin upper cover. The system can automatically measure the egg weight, the yolk color, the egg white height, the freshness half value and the grade of the poultry egg. The system can be adapted to determination of egg weight, yolk color, egg white height, freshness Haff value and grade of large, medium and small poultry eggs. The device can be flexibly moved, is simple and portable to operate, does not need to carry eggs for a long distance during measurement, can remarkably reduce the labor cost, improves the measurement efficiency, and can meet the requirements of a farm on measurement equipment.
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Description

Technical Field

[0001] This utility model belongs to the field of aquaculture, specifically an automatic Haugh value determination system for small poultry eggs. Background Technology

[0002] In poultry farms, Haugh value measurement systems can be used to check egg weight, yolk color, albumen height, freshness Haugh value, grade, etc., aiding in the diagnosis of diseases such as bloody eggs and ovarian infections. By measuring the Haugh value, the health status of poultry can be more accurately assessed, allowing for timely treatment.

[0003] The Haugh value determination system plays a crucial role in poultry egg product testing, as it can accurately and effectively complete the task of collecting and calculating Haugh value data.

[0004] In existing technologies, Haugh value determination requires manual measurement of egg weight, yolk color, and albumen height, followed by manual calculation of the Haugh value. For large-scale farming, this is time-consuming and lacks intelligent automated measurement. Furthermore, a single device can only measure eggs of a single size. If measuring eggs of three sizes (small, medium, and large), three different measuring devices are needed to determine the Haugh value parameters for each size. These three different measuring devices require different calibration modes and operating ranges, making preparation cumbersome. In addition, preparing multiple Haugh value measuring devices for different egg sizes increases equipment costs and the cost and difficulty of carrying them around. Utility Model Content

[0005] This invention addresses the problems in the background art by proposing an automatic Hough value determination system for small poultry eggs. This system can automatically determine the egg weight, yolk color, albumen height, freshness Hough value, and grade of poultry eggs. The system can be equipped with three sample modules (large, medium, and small) to accommodate the determination of egg weight, yolk color, albumen height, freshness Hough value, and grade of poultry eggs of all sizes.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An automatic Hough value determination system for small poultry eggs includes a load-bearing base plate, a sample slide, a motor track screw module, a sample chamber cover, and a circuit sensor control system. The motor track screw module is located above the load-bearing base plate; the sample slide is located above the motor track screw module; the sample chamber cover is located above the sample slide; and the circuit sensor control system is located above the sample chamber cover.

[0008] Preferably, a circuit sensor system is installed above the sample chamber cover. The circuit sensor system includes a displacement sensor, a weighing sensor, a color sensor, a protein height sensor, and a Hough value calculation chip. It is used to control the entry and exit of the sample slide and to complete the tasks of weighing, color measurement, protein height measurement, and automatically calculating the Hough value using the chip.

[0009] Preferably, the Hough value calculation chip is model MSP430F.

[0010] Preferably, the sample slide contains three sample trays of different sizes to correspond to the three types of poultry egg samples.

[0011] Preferably, the motor track screw module includes a motor, track wheels, a transmission screw, a loading platform, a front fixed shaft module, a rear fixed shaft module, and a bridging fixing plate. The transmission screw is positioned between the front and rear fixed shaft modules, and the loading platform is mounted on the transmission screw. The motor is located at one end of the motor track screw module, and two track wheels are also located at the same end. One track wheel is connected to the motor's shaft and rotates with the motor shaft; the other track wheel is connected to the transmission screw and rotates with the transmission screw. The two track wheels are linked by a track. The loading platform supports the sample slide.

[0012] Beneficial effects of this utility model

[0013] Currently, Haugh value determination requires manual measurement of egg weight, yolk color, and albumen height, followed by manual calculation of the Haugh value. For large-scale farming, this is time-consuming and lacks automated measurement capabilities. Furthermore, a single device can only measure eggs of a single size. If measuring eggs of three sizes (small, medium, and large), three different measuring devices are needed, each requiring different calibration modes and operating ranges, making preparation cumbersome. Additionally, preparing multiple Haugh value measuring devices for different egg sizes increases equipment costs and the burden of carrying them around.

[0014] This invention addresses the problems in the background art by proposing an automatic Hough value determination system for small-sized poultry eggs. This system can automatically determine the egg weight, yolk color, albumen height, freshness Hough value, and grade of poultry eggs. The system is adaptable to determining the egg weight, yolk color, albumen height, freshness Hough value, and grade of large, medium, and small poultry eggs. The device is flexible, portable, and easy to operate, eliminating the need for long-distance transport of eggs during testing, significantly reducing labor costs, improving testing efficiency, and meeting the needs of poultry farms for testing equipment. Attached Figure Description

[0015] Figure 1 This is an exploded view of the overall structure of this utility model.

[0016] Figure 2 This is a schematic diagram of the overall structure of this utility model.

[0017] Figure 3 This is a schematic diagram of the tray of this utility model.

[0018] Figure 4 This is a schematic diagram of the data display interface of this utility model.

[0019] Figure 5 This is a structural diagram of the motor track screw module of this utility model. Detailed Implementation

[0020] The present invention will be further described below with reference to embodiments, but the scope of protection of the present invention is not limited thereto:

[0021] Combination Figures 1 to 3 This utility model discloses an automatic Hough value determination system for small poultry eggs, which includes a load-bearing base plate 100, a sample slide plate 200, a motor track screw module 300, a sample chamber cover 400, and a circuit sensor control system 500. The motor track screw module 300 is located above the load-bearing base plate 100; the sample slide plate 200 is located above the motor track screw module 300; the sample chamber cover 400 is located above the sample slide plate 200; and the circuit sensor control system 500 is located above the sample chamber cover 400.

[0022] In this embodiment, a circuit sensor system 500 is provided above the sample chamber cover 400, including a displacement sensor, a weighing sensor, a color sensor, a protein height sensor, and a Hough value calculation chip (preferably MSP430F), which is used to control the entry and exit of the sample slide 200 and to complete the tasks of weighing, color measurement, protein height measurement, and automatically calculating the Hough value using the chip.

[0023] In this embodiment, the sample slide 200 can hold three types of sample trays, namely large, medium and small, to correspond to three types of poultry egg samples, such as goose eggs, chicken eggs and pigeon eggs.

[0024] In this embodiment, the motor track screw module 300 is a uniquely designed, one-piece power transmission device that can push and pull the sample tray into and out of the measuring device as a whole, featuring low power consumption, high torque, and strong overall integrity. Figure 5As shown, the motor track screw module 300 includes a motor 1, track wheels 2, a transmission screw 3, a loading platform 4, a front fixed shaft module 5, a rear fixed shaft module 6, and a bridging fixing plate 7. The transmission screw 3 is located between the front fixed shaft module 5 and the rear fixed shaft module 6, and the loading platform 4 is located on the transmission screw 3. The motor 1 is located at one end of the motor track screw module 300, and two track wheels are also located at the same end. One track wheel is connected to the shaft of the motor 1 and rotates with the motor shaft; the other track wheel is connected to the transmission screw 3 and rotates together with the transmission screw 3. The two track wheels are linked by a track. The loading platform 4 is used to support the sample slide 200.

[0025] The specific process of collecting data such as the Hough value of poultry egg freshness using this utility model is as follows:

[0026] (1) Connect the power supply to the circuit sensor system 500 and check that each component is properly installed.

[0027] (2) Place the egg to be tested on the weighing sensor and weigh it to obtain the weight data.

[0028] (3) Control circuit sensor system 500 button, so that motor track screw module 300 rotates outward and pushes out sample slide 200.

[0029] (4) After removing the shells from the eggs to be tested, spread them out on the sample tray.

[0030] (5) Control circuit sensor system 500 button, so that motor track screw module 300 rotates inward and pulls in sample slide 200.

[0031] (6) The circuit sensor system 500 automatically senses that the sample has entered, the sensor starts working, automatically measures the protein height and yolk color, and measures the Hough value and grade.

[0032] (7) The circuit sensor system 500 automatically displays the relevant data after measurement, such as Figure 4 As shown, the motor track screw module 300 is automatically controlled to rotate outward, pushing out the sample slide 200, changing to the next sample or ending the operation.

[0033] The entire operation requires only one person and takes only 15 seconds, making it simple and fast. This invention provides an efficient and accurate automatic Haugh value measurement system for large, medium, and small poultry eggs, including goose eggs, chicken eggs, and pigeon eggs, meeting the measurement needs of large-scale farms.

[0034] It should be noted that during the experiment, the shelled egg liquid should be spread out evenly and air bubbles removed to prevent air bubbles from affecting the measurement of the protein height value, which could lead to a deviation between the measured and calculated values.

[0035] The specific embodiments described herein are merely illustrative examples of the present invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the technology of this invention or exceeding the scope defined by the appended claims.

Claims

1. A system for automatic determination of Haugh units of small poultry eggs, characterized in that It includes a load floor (100), a sample slide tray (200), a motor track screw module (300), a sample bin upper cover (400), a circuit sensor control system (500), wherein the motor track screw module (300) is arranged above the load floor (100); the sample slide tray (200) is arranged on the upper part of the motor track screw module (300), the sample bin upper cover (400) is arranged above the sample slide tray (200), and the circuit sensor control system (500) is arranged above the sample bin upper cover (400).

2. The system of claim 1, wherein The circuit sensor control system (500) is arranged above the sample bin upper cover (400), and the circuit sensor control system (500) includes a displacement sensor, a weighing sensor, a color sensor, a protein height sensor and a Haugh value calculation chip.

3. The system of claim 2, wherein The model of the Haugh value calculation chip is MSP430F.

4. The system of claim 1, wherein The sample slide tray (200) is used to place large, medium and small sample trays to correspond to large, medium and small poultry egg samples.

5. The system of claim 1, wherein The motor track screw module (300) includes a motor (1), a track wheel (2), a transmission screw (3), a load platform (4), a front end fixed shaft module (5), a rear end fixed shaft module (6) and a bridging fixed plate (7), wherein the transmission screw (3) is arranged between the front end fixed shaft module (5) and the rear end fixed shaft module (6), and the load platform (4) is arranged on the transmission screw (3); the motor (1) is arranged at one end of the motor track screw module (300), and two track wheels are also arranged at the same end, one track wheel is connected with the rotating shaft of the motor (1) and rotates with the rotating shaft of the motor (1); the other track wheel is connected with the transmission screw (3) and rotates with the transmission screw (3); the two track wheels are connected through a track linkage; and the load platform (4) is used to support the sample slide tray (200).