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Crack Initiation of Printed Lines Predicted with Digital Image Correlation

机译:用数字图像相关性预测印刷线的裂纹萌生

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摘要

Printing of metallic films has been preferred over vacuum technologies for roll-to-roll processes because of faster processing times and lower processing costs. Films can be produced by depositing inks containing suspended metallic particles within a solvent and then heating the films to both remove the solvent and sinter the particles. The resulting printed structure and electrical and mechanical behavior of the printed films has been studied to better understand their electro-mechanical response to loading and eventual brittle fracture. This study evaluated the electro-mechanical behavior of 1.25-μm printed Ag films using in situ resistance and in situ imaging methods. Digital image correlation was utilized with confocal laser scanning microscope images to better visualize crack initiation during tensile straining. This technique showed that cracks initiated earlier in the thicker areas of the film (crests) than in lower areas (troughs) because of a higher density of printing defects and the increased thickness.
机译:对于卷对卷工艺而言,金属膜的印刷优于真空技术,因为其处理时间更快且处理成本更低。可以通过在溶剂中沉积包含悬浮金属颗粒的油墨,然后加热薄膜以去除溶剂并烧结颗粒来生产薄膜。为了更好地了解其对负载和最终脆性断裂的机电响应,已对所得的印刷结构以及印刷薄膜的电气和机械性能进行了研究。这项研究使用原位电阻和原位成像方法评估了1.25μm印刷Ag膜的机电性能。数字图像关联与共聚焦激光扫描显微镜图像一起使用,以更好地可视化拉伸应变期间的裂纹萌生。该技术表明,由于较高的印刷缺陷密度和增加的厚度,在膜的较厚区域(波峰)比在较低区域(波谷)更容易产生裂纹。

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