首页> 外文会议>International Congress on Applications of Lasers and Electro-Optics >CO_2 WHOLE AREA IRRADIATIVE PROCESSING AND PATTERNING OF NYLON 6,6 AND THE EFFECTS THEREOF ON OSTEOBLAST CELL RESPONSE IN RELATION TO WETTABILITY
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CO_2 WHOLE AREA IRRADIATIVE PROCESSING AND PATTERNING OF NYLON 6,6 AND THE EFFECTS THEREOF ON OSTEOBLAST CELL RESPONSE IN RELATION TO WETTABILITY

机译:CO_2整个区域辐照加工和尼龙6,6的图案化及其效果与润湿性相关的成骨细胞响应

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CO_2 laser processing of nylon 6,6 can modify its wettability and biomimetic characteristics. This paper discusses comparatively the use of a CO_2 laser for surface patterning and whole area processing, detailing the effects on the wettability and osteoblast cell response. White light interferometry found that the largest increase in surface roughness, with an Sa of 4 μm was obtained with the whole area processed sample using an irradiance of 510 Wcm~(-2). The surface oxygen content was increased by up to 5% at for all laser irradiated samples. A sessile drop device determined that the laser patterned samples gave rise to an increase in contact angle, whereas a decrease in contact angle was observed for the large area patterned samples in comparison to the as-received nylon 6,6. The increase in contact angle is explained by the likely existence of a mixed-state wetting regime. The bioactive nature of the samples were analysed by seeding osteoblast cells onto the nylon 6,6 samples for 4 days. It was found that most laser surface treated samples gave rise to a more biomimetic surface. Some samples gave a less enhanced biomimetic which can be attributed to an increase in surface toxicity. Also, generic wettability characteristics have been forged which can predict the biomimetic nature of laser surface treated nylon 6,6.
机译:CO_2尼龙6,6激光加工可以改变其润湿性和仿生特性。本文讨论了使用CO_2激光器进行表面图案化和整个区域加工,详细说明对润湿性和成骨细胞反应的影响。白光干涉测量结果发现,表面粗糙度的最大增加,通过使用510wcm〜(-2)的辐照度,通过整个区域加工样品获得4μm的SA。对于所有激光照射样品,表面氧含量增加高达5%。确定激光图案化样品的术术滴剂导致接触角的增加,而与接收的尼龙6,6相比,对于大面积图案化样品观察到接触角的降低。接触角的增加是通过混合状态润湿制度的可能存在来解释的。通过将成骨细胞播种到尼龙6,6样品中来分析样品的生物活性性质4天。发现大多数激光表面处理样品产生了更高的仿生表面。一些样品产生了较少的增强的仿生学,其可归因于表面毒性的增加。而且,已经伪造了通用润湿性特性,其可以预测激光表面处理的尼龙6,6的仿生性质。

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