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首页> 外文期刊>International Journal of Adhesion & Adhesives >Poly 2-ethyl-2-oxazoline/microcrystalline cellulose composites for cultural heritage conservation: Mechanical characterization in dry and wet state and application as lining adhesives of canvas
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Poly 2-ethyl-2-oxazoline/microcrystalline cellulose composites for cultural heritage conservation: Mechanical characterization in dry and wet state and application as lining adhesives of canvas

机译:聚2-乙基-2-恶唑啉/微晶纤维素复合材料,用于文化遗产保护:干湿状态下的机械特性及其在帆布衬里中的应用

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The aim of this work is the investigation of the stabilizing effect of microcrystalline cellulose powder (MCC) on the mechanical performance of two commercial thermoplastic resins (Aquazol (R) 200 and Aquazol (R) 500) used as adhesives in the conservation of artworks. The two polymers, having different molecular weights, were melt-compounded and compression molded with various amounts of MCC (5-30 wt%). The mechanical response of the microcomposites under dry and wet (equilibrium at 23 degrees C and a R.H. 55%) conditions, was investigated. DMTA analysis showed an increase of the dynamic moduli and the glass transition temperature with the microfiller content more pronounced for conditioned samples over the dried ones, and a concurrent decrease of the thermal expansion coefficient. Creep tests showed that MCC caused an improvement of the creep stability (i.e. a reduction of the creep compliance) for both dried and conditioned samples. For wet samples, the simultaneous enhancement of the elastic modulus and the stress at break limited the embrittling effect detected for dried composites. These materials were applied as lining adhesive for oil paintings between two kinds of canvas an English linen and a woven polyester under environmental conditions at temperature of 23 degrees C and a relative humidity of 55%. Single-lap shear tests both in quasi-static and creep conditions confirmed the improvement of the dimensional stability provided by MCC with a reduction of the joint displacement and an increase of the adhesive strength as the filler content increases. Additionally, post-fracture optical microscope observations of the cross-sections of the adhesive area proved how MCC introduction did not change the fracture behavior of the neat adhesives. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究微晶纤维素粉末(MCC)对两种用于保存艺术品的粘合剂的商业热塑性树脂(Aquazol®200和Aquazol®500)的机械性能的稳定作用。将具有不同分子量的两种聚合物熔融复合并用各种量的MCC(5-30重量%)压模。研究了在干燥和湿润(23摄氏度平衡和相对湿度55%)条件下微复合材料的机械响应。 DMTA分析显示,与干燥样品相比,调节样品的动态模量和玻璃化转变温度均有所提高,其中微量填充剂含量更为明显,同时热膨胀系数降低。蠕变测试表明,MCC导致干燥和调节后的样品均具有蠕变稳定性的提高(即蠕变柔度的降低)。对于湿样品,弹性模量和断裂应力的同时提高限制了干燥复合材料的脆化效果。这些材料在温度为23摄氏度,相对湿度为55%的环境条件下,用作两种帆布(英式亚麻和聚酯纤维)之间的油画衬里粘合剂。在准静态和蠕变条件下的单圈剪切试验均证实,随着填料含量的增加,MCC所提供的尺寸稳定性得以改善,同时接头位移减小,粘合强度提高。此外,断裂后的光学显微镜对胶粘剂区域的横截面的观察证明了引入MCC不会改变纯胶粘剂的断裂行为。 (C)2015 Elsevier Ltd.保留所有权利。

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