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首页> 外文期刊>炭素 >Influences of Stabilization Extent on the Properties of General Purpose Carbon Fiber and Activated Carbon Fiber from Isotropic Air-blown Coal Tar Pitch
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Influences of Stabilization Extent on the Properties of General Purpose Carbon Fiber and Activated Carbon Fiber from Isotropic Air-blown Coal Tar Pitch

机译:稳定程度对各向同性空气吹煤焦油间距的通用碳纤维和活性炭纤维性能的影响

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摘要

The influences of stabilization extent were examined on the yield, strength and surface area of general purpose carbon and activated carbon fibers, respectively, prepared from isotropic air-blown coal tar pitch. The stabilization extent was described by the content of oxygen uptake after the stabilization. The amounts of oxygen uptake optimum for the high tensile strength, elongation, and surface area were found 10, 9 and 13 wt percent, respectively for the carbon and activated carbon fibers. Larger extent of stabilization reduced the yield of both fibers. The stabilization introduced oxygen into the pitch in forms of carbonyl, ketone, and phenol types of functional groups and accelerated the dehydrogenative condensation and aromatization as well. The volatilization also took place during the stabilization, becoming very marked above 350 deg C by evolving cracked gas. The cross-linkage can stabilize the pitch not to deform the fiber shape and maintain the axis-alignment of component aromatic planes induced at the spinning to give the strength of carbon fiber. An optimum oxygen uptake for the highest elongation may moderate cross-linkage to form linear chains of aromatic sheets leaving some flexibility among the chains.In contrast, optimum oxygen uptake for the largest surface area by activation was higher than that for the highest strength. Sufficient three-dimensional cross-linkage may induce the voids among the aromatic planes during the carbonization and gas evolution which contribute to form large surface area by limited burn off.Excess stabilization increases the number of oxygen functional groups, all of which leave as cracked gas at the carbonization, reducing the yield.Thus the optimum stabilization extents must be carefully achieved for the best performances of resultant pitch based fiber materials.
机译:检查稳定程度的影响,分别对通用碳和活性炭纤维的产率,强度和表面积,从各向同性空气吹煤焦油沥青沥青中制备。稳定在稳定后的氧吸收含量描述了稳定范围。对于碳和活性炭纤维,分别发现了对高拉伸强度,伸长率和表面积的高抗拉强度,伸长率和表面积的氧气吸收量。稳定程度较大降低了两根纤维的产率。稳定化将氧气引入羰基,酮和酚类官能团形式的沥青中,也加速了脱氢缩合和芳族化。在稳定期间也发生了挥发,通过演化裂纹气体变得非常高于350℃以上。交叉连接可以稳定间距不使纤维形状变形并保持纺丝在旋转时诱导的组分芳族平面的轴对准,以产生碳纤维的强度。最高伸长率的最佳氧吸收可适度的交联,形成芳族片的线性链留下链条之间的一些柔韧性。对比度,通过活化的最大表面积的最佳氧摄取量高于最高强度的最佳氧吸收。在碳化和气体进化期间可以在碳化和气体进化过程中诱导芳香平面中的空隙,这有助于通过有限的烧伤形成大的表面积。稳定增加增加氧官能团的数量,所有这些都是破裂的气体在碳化,降低产量。必须仔细地实现最佳稳定范围,以便最佳基于沥青的纤维材料的性能。

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