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首页> 外文期刊>Fibers and Polymers >The effect of carbonization temperature on the structure and properties of carbon fibers prepared from poly(m-phenylene isophthalamide) precursor
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The effect of carbonization temperature on the structure and properties of carbon fibers prepared from poly(m-phenylene isophthalamide) precursor

机译:碳化温度对由聚间亚苯基间苯二甲酰胺前驱体制备的碳纤维的结构和性能的影响

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Carbon fibers with diameters ranging from 8.1 and 12.7 A mu m were produced using a commercially available meta-aramid precursor after oxidation and carbonization steps. The carbonization process was performed using a single-step procedure between 500 and 1100 A degrees C. The effect of temperature on the structure and properties of carbon fibers was investigated in detail. The process of carbonization was examined using several characterization techniques including fiber diameter, mass yield, density, elemental analysis, mechanical property testing and electrical property measurements. Structural transformations were followed and monitored using X-ray diffraction, IR and Raman spectroscopy techniques. The results suggested that the mass yield reached a value of 40.4 % at a heating temperature of 1100 A degrees C. Density, carbon content, mechanical properties and electrical conductivity values increased and hydrogen and nitrogen contents decreased with an increase in temperature. Analysis of the X-ray diffraction traces of carbon fibers suggested broadening of the (002) and (100) diffraction planes which was attributed to the formation of an amorphous carbon structure. The IR spectra showed, at temperatures of 500 A degrees C and above, initial weakening and eventual disappearance of the major amide bands (amide I, II, III and IV) due to the loss of hydrogen bonds between the polymer chains indicating the partial removal of nitrogen, hydrogen and oxygen atoms during the carbonization reactions. The analysis of Raman spectra demonstrated that the positions and the peak widths of the G- and D-bands showed great dependence on treatment temperature. The mechanical properties of the carbon fibers showed strong dependence on heat-treatment temperature, porosity and gage length. Temperature and gage length showed a significant effect on the tensile strength values obtained after each treatment temperature. A marked increase was observed in tensile strength values after extrapolation to 1 mm, which increased from 186 to 589 MPa with carbonization up to 1100 A degrees C. Tensile modulus values were affected by both temperature and porosity and reached a value of 81 GPa at 1100 A degrees C. Porosity correction caused an enhancement in tensile modulus values between 21 and 33.5 %. SEM images of carbon fibers demonstrated the presence of structural imperfections confirming the results obtained from the porosity measurements.
机译:在氧化和碳化步骤之后,使用市售的间位芳族聚酰胺前体生产直径范围为8.1至12.7μm的碳纤维。碳化过程使用500至1100 A摄氏度之间的单步过程进行。详细研究了温度对碳纤维结构和性能的影响。使用几种表征技术检查了碳化过程,包括纤维直径,质量产率,密度,元素分析,机械性能测试和电性能测量。跟踪结构转变并使用X射线衍射,IR和拉曼光谱技术进行监测。结果表明,在加热温度为1100 A的情况下,批量产率达到40.4%。随着温度的升高,密度,碳含量,机械性能和电导率值增加,氢和氮含量降低。碳纤维的X射线衍射迹线的分析表明(002)和(100)衍射平面变宽,这归因于非晶碳结构的形成。红外光谱表明,在500 A或更高的温度下,由于聚合物链之间氢键的丢失表明部分除去,主要酰胺带(酰胺I,II,III和IV)的初始减弱和最终消失。碳化反应中的氮,氢和氧原子的分布拉曼光谱分析表明,G和D波段的位置和峰宽对处理温度有很大的依赖性。碳纤维的机械性能强烈依赖于热处理温度,孔隙率和标距长度。温度和标距对每个处理温度后获得的抗拉强度值均显示显着影响。外推至1 mm后观察到拉伸强度值显着增加,在碳化至1100 A的温度下,拉伸强度值从186 MPa增加到589 MPa。拉伸模量值受温度和孔隙率的影响,在1100时达到81 GPa的值摄氏度的孔隙率校正导致拉伸模量值提高了21%至33.5%。碳纤维的SEM图像表明存在结构缺陷,这证实了从孔隙率测量获得的结果。

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