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Investigation of Insertion Phenomena with Needles Treated by Plasma Etching

机译:等离子体蚀刻治疗带针插入现象的研究

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Pain during injection of a medical needle is greatly influenced by the surface roughness and geometry of its cutting edges. An ion- plasma sputtering treatment is a promising candidate as a clean and precise polishing method for the painless needles. In this paper, the mechanism of the reduction of inserting force of the plasma-treated needles is investigated by microscopically observing artificial skins and needles during insertion. It was found that the time distribution of insertion force was influenced by the roughness at the cutting edges. Plasma-treated needles resulted in force reduction by approximate half in comparison of untreated ones. Furthermore, the microscopic observation found that the sharp dropping of force was occurring at the corners between cutting faces. Using the plasma-treated needle, the sharp dropping was significantly decreased. The plasma-etching treatment will lead to a clean finishing process for painless medical needles.
机译:注射医用针头时的疼痛在很大程度上受其切削刃的表面粗糙度和几何形状影响。作为无痛针的清洁和精确抛光方法,离子等离子体溅射处理是有前途的候选方法。在本文中,通过显微镜观察插入过程中的人造皮肤和针头,研究了降低等离子处理过的针头插入力的机制。发现插入力的时间分布受切削刃处的粗糙度影响。与未处理的针头相比,经过等离子体处理的针头力降低了大约一半。此外,通过显微镜观察发现力急剧下降发生在切削面之间的拐角处。使用经等离子体处理的针头,锐滴明显减少。等离子蚀刻处理将导致无痛医用针头的清洁加工过程。

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