A Self-Repairing Natural Rubber as a Novel Material Pad to Develop an Electro-Surgical Training Prototype

Suchada Saengwiman, Sittidet Chooduang, Korn Taksapattanakul
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Abstract

This work aims to develop a self-repairing natural rubber sheet and use it in a new design electro-surgical training prototype. The self-repairing material is prepared via controlled crosslinking with varying curing time and temperature and applied as a material pad. The electrical circuit board in the prototype is created to measure the depth of the surgical blade through a material pad. The completely modified control crosslinking of the rubber sheet is confirmed by the changing chemical structure of rubber latex via FT-IR spectra resulting in the hardening of swelling affected by high crosslinking density. The self-repairing of natural rubber sheets occurred at the cut part and the tensile strength at break increases with the increase in self-repairing time. The prototype testing shows that when the scalpel blade is cut into the rubber sheet at the setting dept, the electrical circuit is activated, making it suitable for medical practice.
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以自修复天然橡胶为新型材料垫,开发电外科训练原型机
这项研究旨在开发一种自修复天然橡胶板,并将其用于新设计的电外科训练原型中。自修复材料是通过不同的固化时间和温度控制交联制备的,并作为材料垫使用。原型中的电路板用于测量手术刀穿过材料垫的深度。通过傅立叶变换红外光谱观察橡胶胶乳化学结构的变化,证实了对橡胶板的完全改性控制交联,其结果是受高交联密度影响的膨胀变硬。天然橡胶板的自修复发生在切割部位,断裂拉伸强度随自修复时间的延长而增加。原型测试表明,当手术刀刀片切入橡胶板的定型部时,电路被激活,使其适用于医疗实践。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
12
审稿时长
18 weeks
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