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Optimization of the mechanical properties of calcium phosphate/multi-walled carbon nanotubes/bovine serum albumin composites using response surface methodology

机译:响应面法优化磷酸钙/多壁碳纳米管/牛血清白蛋白复合材料的力学性能

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摘要

Response surface methodology (RSM) coupled with the central composite design (CCD) was used to optimize the mechanical properties of calcium phosphate cement/multi-walled carbon nanotubes/bovine serum albumin (CPC/MWCNTs/BSA) composites. In this study, CPC composites were reinforced by multi-walled carbon nanotubes (MWCNTs) and bovine serum albumin (BSA) in order to induce high mechanical properties in the CPC/MWCNTs/BSA system. The effect of various process parameters on the compressive strength of CPC/MWCNTs/BSA composites was studied using design of experiments (DOE). The process parameters studied were: wt.% of MWCNTs (0.2-0.5 wt.%), wt.% of BSA (5-15 wt.%) and type of MWCNTs (e.g. as-pristine MWCNT (MWCNT-AP), hydroxyl group functionalized MWCNT (MWCNT-OH) and carboxyl group functionalized MWCNT (MWCNT-COOH)). Based on the CCD, a quadratic model was obtained to correlate the process parameters to the compressive strength of CPC/ MWCNTs/BSA composites. From the analysis of variance (ANOVA), the most significant factor affected on the experimental design response was identified. The predicted compressive strength after process optimization was found to agree well with the experimental value. The results revealed that at 0.5 wt.% of MWCNT-OH and 15 wt.% of BSA, the highest compressive strength of 14 MPa was obtained.
机译:响应表面方法(RSM)与中央复合材料设计(CCD)一起用于优化磷酸钙水泥/多壁碳纳米管/牛血清白蛋白(CPC / MWCNTs / BSA)复合材料的机械性能。在这项研究中,CPC复合材料由多壁碳纳米管(MWCNT)和牛血清白蛋白(BSA)增强,以便在CPC / MWCNTs / BSA系统中诱导高机械性能。使用实验设计(DOE)研究了各种工艺参数对CPC / MWCNTs / BSA复合材料抗压强度的影响。研究的工艺参数为:MWCNT的重量百分比(0.2-0.5 wt。%),BSA的重量百分比(5-15 wt。%)和MWCNT的类型(例如,原始的MWCNT(MWCNT-AP),羟基基团官能化的MWCNT(MWCNT-OH)和羧基官能化的MWCNT(MWCNT-COOH))。基于CCD,获得了二次模型,以将工艺参数与CPC / MWCNTs / BSA复合材料的抗压强度相关。通过方差分析(ANOVA),可以确定影响实验设计响应的最重要因素。发现工艺优化后的预测抗压强度与实验值非常吻合。结果表明,在0.5wt。%的MWCNT-OH和15wt。%的BSA下,获得了14MPa的最高抗压强度。

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  • 来源
    《Materials & design》 |2011年第6期|p.3312-3319|共8页
  • 作者单位

    School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Seri Ampangan 74300 Nibong Tebal, Seberang Perai Selatan, Pulau Pinang, Malaysia;

    School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Seri Ampangan 74300 Nibong Tebal, Seberang Perai Selatan, Pulau Pinang, Malaysia;

    School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Seri Ampangan 74300 Nibong Tebal, Seberang Perai Selatan, Pulau Pinang, Malaysia;

    Department of Materials, Imperial College London, Prince Consort Road, London SW7 2BP, UK;

    Department of Materials, Imperial College London, Prince Consort Road, London SW7 2BP, UK,Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, 91958 Erlangen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    a. composites; e. mechanical; g. scanning electron microscopy;

    机译:一个。复合材料;e。机械的;g。扫描电子显微镜;

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