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首页> 外文期刊>Materials >The Effects of UV Light on the Chemical and Mechanical Properties of a Transparent Epoxy-Diamine System in the Presence of an Organic UV Absorber
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The Effects of UV Light on the Chemical and Mechanical Properties of a Transparent Epoxy-Diamine System in the Presence of an Organic UV Absorber

机译:在有机紫外线吸收剂存在下,紫外线对透明环氧二胺体系化学和机械性能的影响

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Despite several excellent properties including low shrinkage, good chemical resistance, curable at low temperatures and the absence of byproducts or volatiles, epoxy resins are susceptible to ultra violet (UV) damage and their durability is reduced substantially when exposed to outdoor environments. To overcome this drawback, UV absorbers have been usually used to decrease the rate of UV degradation. In this present study, the effects of UV light on the chemical, mechanical and physical properties of cured epoxy structure, as well as the effect of an organic UV absorber, Tinuvin 1130, on the epoxy properties were investigated. Chemical changes in a cured epoxy system as a result of the presence and absence of Tinuvin 1130 were determined using Fourier transform infrared spectroscopy (FT-IR) analyses. The effect of Tinuvin 1130 on the surface morphology of the epoxy systems was also investigated by scanning electron microscopy (SEM) imaging. Additionally, the glass transition temperatures ( T g ) before and during UV radiation were measured. After an 800 h UV radiation, mechanical test results revealed that the lack of the UV absorber can lead to a ~30% reduction in tensile strength. However, in the presence of Tinuvin 1130, the tensile strength was reduced only by ~11%. It was hypothesized that the use of Tinuvin 1130, as an organic UV absorber in the epoxy-amine system, could decrease the undesirable effects, arising from exposure to UV light.
机译:尽管环氧树脂具有多种优异的性能,包括低收缩性,良好的耐化学性,可在低温下固化以及不存在副产物或挥发物,但环氧树脂容易受到紫外线(UV)的破坏,并且暴露于室外环境时其耐久性会大大降低。为了克服该缺点,通常使用紫外线吸收剂来降低紫外线的降解速率。在本研究中,研究了紫外线对固化环氧结构的化学,机械和物理性能的影响,以及有机紫外线吸收剂Tinuvin 1130对环氧性能的影响。使用傅立叶变换红外光谱(FT-IR)分析确定了由于存在和不存在Tinuvin 1130而导致的固化环氧树脂体系中的化学变化。还通过扫描电子显微镜(SEM)成像研究了Tinuvin 1130对环氧体系表面形态的影响。另外,测量了UV辐射之前和期间的玻璃化转变温度(T g)。经过800小时的紫外线照射后,机械测试结果表明,缺少紫外线吸收剂会导致拉伸强度降低约30%。但是,在Tinuvin 1130的存在下,拉伸强度仅降低了约11%。假设使用Tinuvin 1130作为环氧胺体系中的有机UV吸收剂,可以减少由于暴露于UV光而产生的不良影响。

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