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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Sintering of powders of polyaromatic mesophase to high-strength isotropic carbon-IV powders based on boron-substituted mesophase
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Sintering of powders of polyaromatic mesophase to high-strength isotropic carbon-IV powders based on boron-substituted mesophase

机译:将多芳族中间相粉末烧结成基于硼取代中间相的高强度各向同性碳四相粉末

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摘要

Boron-substituted polyaromatic mesophases were synthesized by co-pyrolysis of a coal tar pitch with pyridine-borane using boron contents of 0.5 and 1%. After removal of residual isotropic material by extration with tetrahydrofuran, the mesophases were milled to a particle size of d<=10#mu#m and compacted to bodies. These bodies were sintered at 1300 deg C and subsequently high-tempertaure treated at 1600,1800, and 2000 deg C. The treated bodies were investigated to determine boron content,bulk density, crystallite parameters, and mechanical properties. Boron catalyzes graphitization already above 1300 deg C; an influence of boron concentration was detected only above 1800 deg C.Carbons produced with a low boron content exhibit a flexural strength of 135 MPa, a Young's modulus of 14 GPa and a strain-to-failure of 1% without optimization of the process steps. These properties exist over the total temperature range investigated, i.e. they are not lowered by progressive graphitization. Carbons with a high boron content show decreasing strength and modulus,but a constant strain-to-failure of about 0.95%.
机译:硼取代的多芳族中间相是通过将煤焦油沥青与吡啶-硼烷共热解合成的,硼含量为0.5%和1%。通过用四氢呋喃萃取除去残留的各向同性材料后,将中间相研磨至d <= 10#μm的粒径,并压制成片。这些坯体在1300℃下烧结,然后在1600、1800和2000℃下进行高温处理。研究处理过的坯体以确定硼含量,疏松密度,微晶参数和机械性能。硼已经在1300摄氏度以上催化了石墨化;仅在1800摄氏度以上才检测到硼浓度的影响。低硼含量生产的碳的弯曲强度为135 MPa,杨氏模量为14 GPa,应变失效率为1%,而没有优化工艺步骤。这些性能在所研究的总温度范围内存在,即它们不会因进行逐步石墨化而降低。高硼含量的碳显示出降低的强度和模量,但是恒定的应变失效率约为0.95%。

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