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Accelerated Ageing Procedures to Assess the Stability of an Unconventional Acrylic-Wax Polymeric Emulsion for Contemporary Art

机译:加速老化程序以评估当代艺术的非常规丙烯酸蜡聚合物乳液的稳定性

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摘要

This research evaluates the stability of an aqueous emulsion of acrylic copolymers and waxes. Edelwachs, generally applied on wood, has been recently used as an unconventional medium in contemporary painting. Through Pyrolysis–Gas Chromatography–Mass Spectrometry (Py-GC-MS) and Fourier Transformed Infrared Attenuated Total Reflectance (FT-IR-ATR) analyses, the composition of Edelwachs was defined as a mixture of acrylic polymers (MA, MMA, nBA, nBMA), Carnauba and microcrystalline waxes and additives. Mock-ups-obtained mixing Edelwachs with titanium white, zinc white and ultramarine blue were subjected to UV, high temperatures, and high relative humidity accelerated ageing. The effect of the ageing procedures was evaluated through optical microscopy, colourimetric measurements, FT-IR-ATR, Thermogravimetry and Differential Scanning Calorimetry (TG-DSC) and wettability measures. FT-IR-ATR spectra do not show significant variations in terms of chemical stability, indicating a fair stability of Edelwachs as a painting binder. UV and high temperature treatments show the most relevant effects in terms of colorimetric changes (increasing of b*) and thermal stability. The TG-DSC highlights the influence of the pigments (specifically zinc white) mainly on the thermal behaviour of the acrylates. The unexpected decrease of wettability of the paint films, registered after ageing, may indicate a possible phase separation among acrylates and waxes.
机译:该研究评估了丙烯酸共聚物和蜡的水性乳液的稳定性。通常在木材上施加的Edelwachs,最近被用作当代绘画中的非传统媒介。通过热解 - 气相色谱 - 质谱(Py-GC-MS)和傅里叶变换的红外衰减总反射率(FT-IR-ATR)分析,EDELWACH的组成定义为丙烯酸类聚合物的混合物(MA,MMA,NBA, NBMA),Carnauba和微晶蜡和添加剂。对钛白色,锌白色和紫外线蓝色的模拟eDelwach进行了UV,高温和高相对湿度加速老化。通过光学显微镜,Colouremetric测量,FT-IR-ATR,热重度和差示扫描量热法(TG-DSC)和润湿性测量来评估衰老程序的效果。 FT-IR-ATR Spectra在化学稳定性方面没有显示出显着的变化,表明Edelwachs作为涂料粘合剂的公平稳定性。 UV和高温处理在比色变化(增加B *)和热稳定性方面具有最相关的效果。 TG-DSC主要突出颜料(特别是锌白色)的影响主要是丙烯酸酯的热行为。在老化后注册的涂料薄膜的润湿性的意外降低可表示丙烯酸酯和蜡之间的可能相分离。

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