Volume 52, Issue S2 p. 1078-1080
Poster Session: P-16: Touch and Interactive Display

P-16.6: Investigation on the corrosion of Metal Mesh Node

Li Le

Li Le

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Zhang Chuan-wen

Zhang Chuan-wen

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Li Bao-Ran

Li Bao-Ran

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Deng Da-Cheng

Deng Da-Cheng

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Fan Wen-jin

Fan Wen-jin

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Xu Jia-Wei

Xu Jia-Wei

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Li Bi-Sheng

Li Bi-Sheng

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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Wu Qi-Di

Wu Qi-Di

Hefei Xin Sheng Opto-electronic Technology Co. Ltd., Hefei, 230011 China

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First published: 26 August 2021

Abstract

This paper is the first study of Metal Mesh Node corrosion. The corrosion of Metal Mesh Node were occurred during the experiment, which was used to value the stock time of OGM. Based on our research,sensor protective film cause the node corrosion can be literal. With a replace of a neutral antistatic agent, issue such as node corrosion can be addressed. The results showed that the higher PH would increase the risk of product failure. We also investigated the mechanism of node corrosion and a reaction of the metal and OH− or H+ mechanism is proposed. The OH− or H+ was separating from Sensor protective film. This research can be used for guiding the production of sensor protective film. This research also pointed that the PH of sensor protective film should be 7