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首页> 外文期刊>Biomedical Microdevices >Evaluating the process of polishing borosilicate glass capillaries used for fabrication of in-vitro fertilization (iVF) micro-pipettes
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Evaluating the process of polishing borosilicate glass capillaries used for fabrication of in-vitro fertilization (iVF) micro-pipettes

机译:评估用于制造体外受精(iVF)微量移液器的硼硅酸盐玻璃毛细管的抛光过程

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摘要

In this paper we investigate a number of gas flames for fire polishing borosilicate glass capillaries used in the manufacturing of IVF micro-pipettes. Hydrofluoric acid (HF) was also used as an alternative to finish the pipette end. Glass micro tools in the IVF industry are drawn from hollow glass capillaries of diameter 1 mm. These capillaries are cut manually to a length of 100 mm from hollow glass rods resulting in sharp and chipped edges. These capillaries are held in a customised holder having padding of soft silicone or rubber. Sharp and uneven edges of these capillaries pick up particles of rubber or soft silicone shavings, rendering them ineffective for IVF treatments. The working range of borosilicate glass is 800-1,200℃. The experiments involved analysis of fire polishing process for borosilicate glass capillaries using candle, butane, propane, 2350 butane propane, oxyacety-lene gas flames, finding the optimum distance of the capillary relative to the flame, optimum time for which the capillary should be held in the flame and optimum region of the flame which gives the required temperature range. The results show that 2350 butane propane gas mix is optimum for fire polishing of borosilicate glass capillaries. The paper is concluded by comparing the results of fire polishing with the results of acid polishing, in which HF of 1.6% concentration is used to etch the ends of the borosilicate glass pipettes.
机译:在本文中,我们研究了许多用于IVF微量移液器制造的火焰抛光硼硅玻璃毛细管的气体火焰。氢氟酸(HF)也可以用来替代移液器末端。 IVF行业中的玻璃微型工具是从直径为1 mm的中空玻璃毛细管中提取的。将这些毛细管从空心玻璃棒上手动切成100毫米长,导致边缘锐利和碎裂。这些毛细管被固定在定制的支架中,该支架具有柔软的硅胶或橡胶垫。这些毛细管的锋利而凹凸不平的边缘会吸收橡胶或柔软的硅屑屑,使它们对IVF治疗无效。硼硅玻璃的工作范围是800-1,200℃。实验涉及使用蜡烛,丁烷,丙烷,2350丁烷丙烷,氧代乙稀气体火焰对硼硅酸盐玻璃毛细管的火抛光过程进行分析,找到毛细管相对于火焰的最佳距离,保持毛细管的最佳时间在火焰和火焰的最佳区域中,该区域可提供所需的温度范围。结果表明,2350丁烷丙烷混合气最适合用于硼硅酸盐玻璃毛细管的火抛光。通过比较火抛光和酸抛光的结果得出结论,在酸抛光中,浓度为1.6%的HF用于蚀刻硼硅酸盐玻璃移液器的端部。

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