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In-depth analysis of the influence of bio-silica filler(Didymosphenia geminata frustules)on the properties of Mg matrix composites
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作者 Izabela B.Zgłobicka Anna Dobkowska +12 位作者 Aleksandra Zielińska Ewa Borucinska Mirosław J.Kruszewski RafałZybała Tomasz Płociński Joanna Idaszek Jakub Jaroszewicz Krystian Paradowski Bogusława Adamczyk-Cieślak Kostiantyn Nikiforow Bartosz Bucholc WojciechŚwięszkowski Krzysztof J.Kurzydłowski 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第8期2853-2871,共19页
A novel metal matrix composites(MMC)with Mg matrix reinforced with natural filler in the form of Didymosphenia geminata frustules(algae with distinctive siliceous shells)are presented in this work.Pulse plasma sinteri... A novel metal matrix composites(MMC)with Mg matrix reinforced with natural filler in the form of Didymosphenia geminata frustules(algae with distinctive siliceous shells)are presented in this work.Pulse plasma sintering(PPS)was used to manufacture Mg-based composites with 1,5 and 10 vol.%ceramic filler.As a reference,pure Mg was sintered.The results show that the addition of 1 vol.%Didymosphenia geminata frustules to the Mg matrix increases its corrosion resistance by supporting passivation reactions,and do not affect the morphology of L929 fibroblasts.Addition of 5 vol.%the filler does not cause cytotoxic effects,but it supports microgalvanic reactions leading to the greater corrosion rate.Higher content than 5 vol.%the filler causes significant microgalvanic corrosion,as well as increases cytotoxicity due to the greater micro-galvanic effect of the composites containing 10 and 15 vol.%diatoms.The results of contact angle measurements show the hydrophilic character of the investigated materials,with slightly increase in numerical values with addition of amount of ceramic reinforcement.The addition of Didymosphenia geminata frustules causes changes in a thermo-elastic properties such as mean apparent value of coefficient of thermal expansion(CTE)and thermal conductivity(λ).The addition of siliceous reinforcement resulted in a linear decrease of CTE and reduction in thermal conductivity over the entire temperature range.With the increasing addition of Didymosphenia geminata frustules,an increase in strength with a decrease in compressive strain is observed.In all composites an increase in microhardness was attained.The results clearly indicate that filler in the form of Didymosphenia geminata frustules may significantly change the most important properties of pure Mg,indicating its wide potential in the application of Mg-based composites with a special focus on biomedical use. 展开更多
关键词 Metal-matrix composites(MMCs) Pulse plasma sintering(ppS) Ceramic filler Microstructure Properties
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Biological oyster shell waste enhances polyphenylene sulfide composites and endows them with antibacterial properties
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作者 Chi-Hui Tsou Rui Zeng +9 位作者 Neng Wan Manuel Reyes De Guzman Xue-Fei Hu Tao Yang Chen Gao Xiaomei Wei Jia Yi Li Lan Rui-Tao Yang Ya-Li Sun 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第5期118-131,共14页
To date,there is no research that deals with biological waste as fillers in polyphenylene sulfide(PPS).In this study,oyster shells were recycled and treated to prepare thermally-treated oyster shells(TOS),which were u... To date,there is no research that deals with biological waste as fillers in polyphenylene sulfide(PPS).In this study,oyster shells were recycled and treated to prepare thermally-treated oyster shells(TOS),which were used as PPS fillers to make new bio-based antibacterial composite materials.The effect of varying the content of TOS was studied by means of structure and performance characterization.PPS/TOS composites were demonstrated to have an antibacterial effect on the growth of E coli and S.aureus.Qualitative analysis showed that when the TOS content was≥30%and 40%,the composite materials had an apparent inhibition zone.Quantitative analysis showed that the antibacterial activity increased with the TOS content.Fourier transform infrared spectroscopy indicated the formation of hydrogen bonds between the molecular chains of TOS and PPS and the occurrence of a coordination reaction.At 10%TOS,the composite tensile strength reached a maximum value of 72.5 MPa,which is 9.65%higher than that of pure PPS.The trend of bending properties is the same as that of tensile properties,showing that the maximum property was reached for the composite with 10%TOS.At the same time,the crystallinity and contact angle were the highest,and the permeability coefficient was the lowest.The fatigue test results indicated that for the composite with 10%TOS,the tensile strength was 23%lower than static tensile strength,and the yield strength was 10%lower than the static yield strength.The results of the study showed that TOS not only could reduce the cost of PPS,but also could impart antibacterial properties and enhance the mechanical and,barrier properties,the thermostability,as well as the crystallinity. 展开更多
关键词 Oyster shell powder Polyphenylene sulfide(ppS) Antibacterial properties filler composite material Fatigue
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矿物填料形状对PP复合材料力学性能的影响 被引量:5
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作者 陈晓龙 张陶忠 +3 位作者 于福家 楚文城 胡杰 丛国龙 《非金属矿》 CAS CSCD 北大核心 2020年第1期40-43,共4页
矿物填料的形状是决定复合材料力学性能的关键因素之一。本研究以纤维状CaSiO3和颗粒状CaCO3两种不同形状的矿物粉体为填料,以JN-114为改性剂、PP为基体树脂,通过熔融共混法制备复合材料,研究不同形状的矿物填料对PP复合材料力学性能的... 矿物填料的形状是决定复合材料力学性能的关键因素之一。本研究以纤维状CaSiO3和颗粒状CaCO3两种不同形状的矿物粉体为填料,以JN-114为改性剂、PP为基体树脂,通过熔融共混法制备复合材料,研究不同形状的矿物填料对PP复合材料力学性能的影响。力学性能检测结果表明,CaSiO3与CaCO3的加入均降低了基体的拉伸和弯曲强度,提高了基体的模量;相比之下,CaSiO3能较好地保持PP基体的拉伸强度与弯曲强度,且明显增强基体的模量,主要归因于CaSiO3有较大的长径比;V形缺口冲击强度则相反,CaCO3对基体增韧效果更为明显。SEM分析结果显示,改性后的CaSiO3与CaCO3在基体中均匀分散,但与PP基体的相容性依然较差。 展开更多
关键词 聚丙烯 矿物填料形状 力学性质 复合材料 断裂表面
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稀土偶联剂REC对复合材料老化性能的影响 被引量:2
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作者 冯嘉春 陈鸣才 +2 位作者 张秀菊 郭元强 胡红旗 《化工新型材料》 CAS CSCD 2001年第4期44-47,共4页
研究了用稀土偶联剂 (REC)处理的CaCO3、Mg (OH) 2 、BaSO4 与PP或ABS所形成复合体系的老化性能、力学性能及流动性。发现此偶联剂对这几种填料均有良好的改性作用 :力学性能显著提高 ,流动性明显改善。CaCO3、Mg (OH) 2 的加入对PP的... 研究了用稀土偶联剂 (REC)处理的CaCO3、Mg (OH) 2 、BaSO4 与PP或ABS所形成复合体系的老化性能、力学性能及流动性。发现此偶联剂对这几种填料均有良好的改性作用 :力学性能显著提高 ,流动性明显改善。CaCO3、Mg (OH) 2 的加入对PP的光氧老化过程有加速作用 ,对热氧老化过程有不明显的阻滞作用 ;而BaSO4 则对ABS体系的光氧、热氧老化过程均有阻滞作用。新型偶联剂对各体系光氧老化过程有轻微的促进作用 ,而对热氧老化过程无明显影响 。 展开更多
关键词 复合材料 稀土偶联剂 填料 复合物 老化性能
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聚丙烯/碳基填料复合材料的流变行为研究 被引量:2
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作者 朱玉明 李振中 +1 位作者 李迎春 费昀卿 《塑料工业》 CAS CSCD 北大核心 2012年第1期72-77,共6页
系统研究了炭黑(CB)、石墨(GP)和碳纤维(CF)填充聚丙烯(PP)三种复合材料的稳态、动态流变行为及微观形态;重点讨论了粒子外观形貌、粒径和用量对体系流变行为的影响。研究发现,CB具有强的Payne效应且形成逾渗网络的能力要强于其他两种填... 系统研究了炭黑(CB)、石墨(GP)和碳纤维(CF)填充聚丙烯(PP)三种复合材料的稳态、动态流变行为及微观形态;重点讨论了粒子外观形貌、粒径和用量对体系流变行为的影响。研究发现,CB具有强的Payne效应且形成逾渗网络的能力要强于其他两种填料,粒径小的增强效率高、逾渗值低,填料用量增加熔体非牛顿性和弹性增加。使用SEM考察三种填料的微观形态,发现同等含量下,石墨分散性最好,同一填料时,粒径越小分散性越好。 展开更多
关键词 聚丙烯/碳基填料复合材料 形态 流变行为
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矿物填充聚丙烯复合材料收缩率影响因素的研究 被引量:6
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作者 马旭辉 邱能兴 韩静 《塑料工业》 CAS CSCD 北大核心 2013年第12期69-71,共3页
考察了聚丙烯(PP)树脂、乙烯-辛烯共聚物(POE)、矿物填料等组份对PP复合材料收缩率的影响。结果表明,PP树脂本身的收缩率越小,以其为基材的复合材料的收缩率也越小;POE的加入降低了复合材料的收缩率,且POE的用量越高,收缩率越小,当POE... 考察了聚丙烯(PP)树脂、乙烯-辛烯共聚物(POE)、矿物填料等组份对PP复合材料收缩率的影响。结果表明,PP树脂本身的收缩率越小,以其为基材的复合材料的收缩率也越小;POE的加入降低了复合材料的收缩率,且POE的用量越高,收缩率越小,当POE的质量分数为10%时,收缩率为1.027%,低于未添加POE的1.225%;片状滑石粉和针状硅灰石对复合材料的收缩限制作用较粒状碳酸钙更明显,矿物的粒径越小,复合材料的收缩率越小;复合材料的收缩率随着矿物含量的增加而降低,当滑石粉的质量分数为30%时,收缩率为0.768%,低于未添加矿粉时的1.532%。 展开更多
关键词 矿物 聚丙烯 复合材料 收缩率
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炭黑碳纳米管导热聚丙烯复合材料性能研究 被引量:3
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作者 林晓桂 徐睿杰 +1 位作者 田子钦 雷彩红 《广东化工》 CAS 2018年第10期61-62,74,共3页
本文通过探究导热填料的比例和种类、多壁碳纳米管(MWNT)的表面改性条件以及偶联剂的用量对聚丙烯(PP)热导率的影响,用扫描电镜(SEM)、冲击试验机、拉力试验机、热变形-维卡软化点测试仪表征了复合材料的力学性能和热稳定性能。优良配... 本文通过探究导热填料的比例和种类、多壁碳纳米管(MWNT)的表面改性条件以及偶联剂的用量对聚丙烯(PP)热导率的影响,用扫描电镜(SEM)、冲击试验机、拉力试验机、热变形-维卡软化点测试仪表征了复合材料的力学性能和热稳定性能。优良配方复合材料的热导率比纯PP提高303%,维卡软化点提高9%,拉伸强度降低18%,冲击强度降低1%。 展开更多
关键词 碳纳米管 炭黑 表面改性 偶联剂 导热填料 导热pp复合材料
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