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A photocuring PUA material with adjustable flexibility used in the fast photochromic coating on ophthalmic lenses

机译:具有可调节的PUA材料,可调节可调节的可调性,用于眼科镜片上的快速光致变色涂层

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摘要

To resolve the problem of inhomogeneous color depth during photochromism, the photochromic coating on the surface of a pre-molded lens as well as the photocuring process are proposed. The host polyurethane acryl (PUA) material with adjustable flexibility was constructed from isophorone diisocyanate trimer (t-IPDI). The polycarbonatediol (PCDL) was used for chain extension and the hydroxyethyl methylacrylate (HEMA) was introduced to the lateral chain for the subsequent photo-crosslinking. Multiple experimental conditions were optimized, which included selection of the photoinitiator (PI), operating spectral window for photocuring and the equivalent ratio of HEMA to NCO group. The spectrokinetics behavior of photochromic coating was investigated by monitoring relative grayscales (Gy*) with irradiation and fading time. The glass-transition temperature (T-g) was measured by the differential scanning calorimetry (DSC) as well. An attempt of application of this photochromic coating on the surface of a commercial lens blank was made tentatively.
机译:为了解决光学变频期间非均匀颜色深度的问题,提出了预成型透镜表面以及光固化过程的光致变色涂层。具有可调节柔韧性的宿主聚氨酯丙烯酸(PUA)材料由异佛酮二异氰酸酯三聚体(T-IPDI)构成。聚碳酸二醇(PCD1)用于链延伸,将甲基丙烯酸甲酯(HEMA)引入后续光交联的侧链。优化了多种实验条件,包括选择光引发剂(PI),用于光固化的操作光谱窗口和HEMA至NCO组的等同比。通过监测相对灰度(GY *)来研究光致变色涂层的分频器行为,辐照和褪色时间。通过差示扫描量热法(DSC)测量玻璃化转变温度(T-G)。暂时进行在商业透镜坯料表面上施加这种光致变色涂层的尝试。

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