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基于放电现象的裂纹蛋检测装置的研制

Development of Cracked Egg Detection Device Using Electric Discharge Phenomenon.

作者信息

Joe Sung Yong, So Jun Hwi, Oh Seung Eel, Jun Soojin, Lee Seung Hyun

机构信息

Department of Biosystems Machinery Engineering, Chungnam National University, Daejeon 34134, Republic of Korea.

Department of Smart Agriculture Systems, Chungnam National University, Daejeon 34134, Republic of Korea.

出版信息

Foods. 2024 Sep 20;13(18):2989. doi: 10.3390/foods13182989.

Abstract

Eggs are a highly nutritious food; however, those are also fragile and susceptible to cracks, which can lead to bacterial contamination and economic losses. Traditional methods for detecting cracks, particularly in processed eggs, often fall short due to changes in the eggs' physical properties during processing. This study was aimed at developing a novel device for detecting egg cracks using electric discharge phenomena. The system was designed to apply a high-voltage electric field to the eggs, where sparks were generated at crack locations due to the differences in electrical conductivity between the insulative eggshell and the more conductive inner membrane exposed by the cracks. The detection apparatus consisted of a custom-built high-voltage power supply, flexible electrode pins, and a rotation mechanism to ensure a complete 360-degree inspection of each egg. Numerical simulations were performed to analyze the distribution of the electric field and charge density, confirming the method's validity. The results demonstrated that this system could efficiently detect cracks in both raw and processed eggs, overcoming the limitations of existing detection technologies. The proposed method offers high precision, reliability, and the potential for broader application in the inspection of various poultry products, representing a significant advancement in food safety and quality control.

摘要

鸡蛋是一种营养丰富的食物;然而,它们也很脆弱,容易出现裂缝,这可能导致细菌污染和经济损失。传统的检测裂缝的方法,尤其是对于加工过的鸡蛋,由于加工过程中鸡蛋物理性质的变化,往往效果不佳。本研究旨在开发一种利用放电现象检测鸡蛋裂缝的新型装置。该系统设计为向鸡蛋施加高压电场,由于绝缘蛋壳与裂缝暴露的导电性更强的内膜之间的电导率差异,在裂缝位置会产生火花。检测装置由定制的高压电源、柔性电极针和旋转机构组成,以确保对每个鸡蛋进行360度的完整检查。进行了数值模拟以分析电场和电荷密度的分布,证实了该方法的有效性。结果表明,该系统能够有效检测生鸡蛋和加工过的鸡蛋中的裂缝,克服了现有检测技术的局限性。所提出的方法具有高精度、可靠性,并且在各种家禽产品检测中具有更广泛应用的潜力,代表了食品安全和质量控制方面的重大进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1592/11431009/d447b13805a3/foods-13-02989-g001.jpg

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