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Electrolytic Etching of Fine Stainless-Steel Pipes Patterned by Laser-Scan Lithography

机译:通过激光扫描光刻图案化的精细不锈钢管的电解蚀刻

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Recently, it is required to develop a method for fabricating cylindrical micro-components in the field of measurement and medical engineering. Here, electrolytic etching of fine stainless-steel pipes patterned by laser-scan lithography was researched. The pipe diameter was 100 urn. At first, a pipe coated with 3-7 urn thick positive resist (tok, PMER P LA-900) was exposed to a violet laser beam with a wavelength of 408 run (Neoark,TC20-4030-45). The laser beam was reshaped in a circle by placing a pinhole, and irradiated on the pipe by reducing the size in 1/20 using a reduction projection optics. Linearly arrayed 22 slit patterns with a width of 25 μm and a length of 175 μm were delineated in every 90-degree circumferential direction. That is, 88 slits in total were delineated at an exposure speed of 110 μm/s. In the axial direction, patterns were delineated at intervals of 90 μm. Following the pattern delineation, the pipe masked by the resist patterns was electrolytically etched. The pipe was used as an anode and an aluminum cylinder was set as a cathode around the pipe. As the electrolyte, aqueous solution of NaCl and NH_4Cl was used. After etching the pipe, the resist was removed by ultrasonic cleaning in acetone. Although feasibility for fabricating multi-slit pipes was demonstrated, sizes of the etched slits were enlarged being caused by the undercut, and the shapes were partially deformed, and all the pipes were snapped at the chuck side.
机译:最近,需要开发一种制造测量和医学工程领域的圆柱微量分量的方法。这里,研究了激光扫描光刻图案化的精细不锈钢管的电解蚀刻。管道直径为100瓮。首先,将涂有3-7瓮厚的正抗蚀剂(TOK,PMER P LA-900)的管道暴露于波长408次(NeoAkn,TC20-4030-45)的紫色激光束。通过使用减析光学器件在1/20中减少1/20中的尺寸,通过放置针孔以圆形重塑激光束。在每90度的圆周方向上,宽度为25μm的线性阵列22的狭缝图案宽度为175μm。也就是说,总共88个狭缝以110μm/ s的曝光速度划定。在轴向方向上,图案以90μm的间隔描绘。在图案描绘之后,通过抗蚀剂图案掩蔽的管道电解蚀刻。用作阳极的管子用作阳极,将铝圆筒设定为管道周围的阴极。作为电解质,使用NaCl和NH_4Cl的水溶液。在蚀刻管道之后,通过丙酮中的超声波清洗除去抗蚀剂。尽管证明了制造多狭缝管的可行性,但是由底切引起蚀刻狭缝的尺寸,并且形状部分变形,并且将所有管子捕获在夹头侧。

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