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首页> 外文期刊>Journal of Materials Science >Mechanical properties of self-setting composites: influence of the carboxymethylcellulose content and hydration state
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Mechanical properties of self-setting composites: influence of the carboxymethylcellulose content and hydration state

机译:自固化复合材料的机械性能:羧甲基纤维素含量和水合状态的影响

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摘要

The impact of the carboxymethylcellulose (CMC) content on the mechanical properties of calcium phosphate-calcium carbonate-CMC composite cements for bone substitution was investigated. The relevance of the compressive test conditions (wet or dried composite cements) is discussed and models are proposed to better understand the mechanisms involved in the mechanical properties of the composite materials. Based on a modellisation using the Voigt model for dried composite cements, we show that a minimum of CMC content of around 10-20 % is needed to enhance the mechanical properties of the dried composite materials (up to 86 MPa for the composite including 50 wt% CMC) through the formation of a mineral-organic entangled network. The compressive strength of the wet samples is low (< 3 MPa) but the gain observed in the dried composites is encouraging and might be extrapolated to wet conditions if we were to use a less hydrophilic polysaccharide.
机译:研究了羧甲基纤维素(CMC)含量对磷酸钙-碳酸钙-CMC复合水泥骨替代材料力学性能的影响。讨论了压缩试验条件(湿的或干燥的复合水泥)的相关性,并提出了模型以更好地理解复合材料的机械性能所涉及的机理。基于使用Voigt模型对干燥复合水泥进行的建模,我们表明,至少需要10-20%的CMC含量才能增强干燥复合材料的机械性能(对于复合材料,包括50 wt%的复合材料,其最高压力为86 MPa %CMC)通过形成矿物-有机物缠结网络。湿样品的抗压强度较低(<3 MPa),但在干燥的复合材料中观察到的增益是令人鼓舞的,如果我们要使用亲水性较低的多糖,则可以推断为湿条件。

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