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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Down-conversion particles as internal UV-source assist in UV-curing systems: Physical and mechanical properties of UV-curable micro-composites
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Down-conversion particles as internal UV-source assist in UV-curing systems: Physical and mechanical properties of UV-curable micro-composites

机译:下转化颗粒作为UV固化系统内部紫外源辅助:UV固化微复合材料的物理和力学性能

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摘要

UV-curable composites always suffer from low conversion due to the low penetration depth of photons as a result of absorption of light by fillers. Herein, down-conversion particles were introduced as mineral materials within the composites to observe the alteration in final conversion along with some physical and mechanical properties. FT-IR, DMTA, micro-indentation, pendulum hardness, scratch resistance, and surface roughness analysis exhibited no reduction in the photopolymerization process in all the composites, and enhanced scratch resistance up to 5% filling. Storage modulus and cross-linked density were increased up to 5% loading, and enhanced micro-hardness up to 5% loading and decreased in 10% loaded composites. However, the surface hardness decreased because of increased surface roughness due to the addition of micron-sized fillers.
机译:由于通过填充物吸收光,UV可固化复合材料总是由于光子的低渗透深度而导致的低转换。 在此,将下转化颗粒作为复合材料内的矿物质引入,以观察最终转化率的改变以及一些物理和机械性能。 FT-IR,DMTA,微压痕,摆硬度,耐刮擦性和表面粗糙度分析在所有复合材料中没有降低光聚合过程,并且增强耐刮擦抗性高达5%的填充物。 储存模量和交联密度增加高达5%的载荷,并且增强的微硬度高达5%的载荷和10%加载的复合材料中减少。 然而,由于添加了微米尺寸的填料,表面硬度降低。

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