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Coating Cutting Blades with Thin-Film Metallic Glass to Enhance Sharpness

机译:具有薄膜金属玻璃的涂层切割刀片,以提高清晰度

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In this study, we sought to enhance the cutting properties of the various blades by coating them with Zr- and Fe-based thin film metallic glasses (TFMGs) to a thickness of 234-255?nm via sputter deposition. In oil-repellency/sliding tests on kitchen blades, the sliding angle and friction forces were as follows: bare blades (31.6°) and (35 μN), Ti-coated blades (20.3°) and (23.7 μN), and Z-TFMG coated blades (16.2°) and (19.2 μN). Comparisons were conducted with bare blades and those with a Teflon coating (a low-friction material commonly used for the coating of microtome blades). We also found that the Teflon coating reduced the cutting forces of an uncoated microtome blade by ~80%, whereas the proposed Z-TFMG achieved a ~51% reduction. The Z-TFMG presented no indications of delamination after being used 30 times for cutting; however, the Teflon coating proved highly susceptible to peeling and the bare blade was affected by surface staining. These results demonstrate the efficacy of the TFMG coating in terms of low friction, non-stick performance, and substrate adhesion. The performance of Z-TFMG and F-TFMG was also evaluated in split-thickness skin graft surgery using dermatome blades aimed at elucidating the influence of TFMG coatings on the healing of surgical incisions. When tested repeatedly on hairless skin, the surface roughness of uncoated blades increased by approximately 70%, whereas the surface roughness of TFMG-coated blades increases by only 8.6%. In the presence of hair, the surface roughness of uncoated blades increased by approximately ~108%, whereas the surface roughness of TFMG-coated blades increases by only ~23%. By Day 7, the wounds produced using TFMG-coated blades were noticeably smaller than those produced using uncoated blades, and these effects were particularly evident in hairy samples. This is a clear demonstration of the efficacy of TFMG surface coatings in preserving the cutting quality of surgical instruments.
机译:在这项研究中,我们寻求通过溅射沉积通过溅射沉积涂覆Zr-和Fe基薄膜金属玻璃(TFMG)来增强各种叶片的切割性能。厚度为234-255ΩNM。在厨房叶片上的防油/滑动测试中,滑动角度和摩擦力如下:裸刀片(31.6°)和(35μN),Ti涂层叶片(20.3°)和(23.7μN)和Z- TFMG涂层刀片(16.2°)和(19.2μN)。用裸刀片和具有Teflon涂层的刀片进行比较(通常用于涂覆小运动叶片的低摩擦材料)。我们还发现,Teflon涂层将未涂层的切片叶片的切割力降低〜80%,而所提出的Z-TFMG达到〜51%的减少。 Z-TFMG在使用30次切割后没有呈分层的指示;然而,经过高易受剥离的铁氟龙涂层和裸刀片受表面染色的影响。这些结果证明了TFMG涂层在低摩擦,不粘性能和底物粘附方面的功效。 Z-TFMG和F-TFMG的性能也在使用皮肤叶片中评估了旨在阐明TFMG涂层对手术切口愈合的影响的分裂厚度皮肤移植手术。当反复测试无毛皮肤时,未涂层叶片的表面粗糙度增加约70%,而TFMG涂层叶片的表面粗糙度仅增加了8.6%。在头发存在下,未涂层叶片的表面粗糙度增加约约108%,而TFMG涂层叶片的表面粗糙度仅增加〜23%。在第7天,使用TFMG涂覆的叶片产生的伤口明显小于使用未涂覆叶片制备的伤口,并且这些效果在毛状样本中特别明显。这是一种清楚地证明TFMG表面涂层在保持外科仪器的切割质量方面的疗效。

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