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Simultaneous Synthesis and Densification of Carbon Nano-Materials Dispersed Boron Carbide Composites Using Pulsed Electric-Current Pressure Sintering (PECPS)

机译:利用脉冲电流压力烧结(PECPS)同时合成和致密碳纳米材料分散碳化硼复合材料

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Dense [boron carbide (B_4C)]/[carbon nano-materials] composites were synthesized and sintered simultaneously using pulsed electric-current pressure sintering (PECPS) at 2173 K for 6.0×10~2 s (10 min) under 50 MPa in a vacuum. The starting powders were amorphous B and C nano-powders and nano-carbons. The latter were acid-treated carbon nano fiber CNF and carbon nanotube CNT. The sintered composites were evaluated from the viewpoints of mechanical properties at high temperatures up to ~ 2023 K in inert atmosphere. Thus fabricated composites with 10vol%CNF maintained high bending strength Ob around 750 MPa even at 1973 K; this temperature is 100 K higher than that of conventional B_4C/CNF composites, and furthermore 600 MPa at 2023 K. These high Ob at elevated temperatures might be explained by both the low content of catalytic Fe particles and the rough surface of CNF after the acid-treatment. On the other hand, B4C/CNT composites displayed 770 MPa at 1723 K. The stress-strain curves demonstrate that B4C/CNF composite deformed elastically until 1273 K and plastically up to 1973 K, however, the B4C/CNT composites displayed elastic deformation up to around 1873 K.
机译:采用脉冲电流压力烧结(PECPS)技术,在真空50mpa条件下,在2173k下烧结6.0×10~2s(10min),制备了致密的[碳化硼(B_4C)]/[碳纳米材料]复合材料。起始粉体为非晶态B、C纳米粉体和纳米碳。后者是酸处理的碳纳米纤维CNF和碳纳米管CNT。从惰性气氛中高达2023K的高温力学性能的角度对烧结复合材料进行了评估。因此,即使在1973 K下,含10vol%CNF的复合材料仍能保持约750 MPa的高弯曲强度Ob;该温度比传统的B_4C/CNF复合材料高100 K,在2023 K时更高600 MPa。高温下这些高Ob可能是由于催化铁颗粒含量低和酸处理后CNF表面粗糙所致。另一方面,B4C/CNT复合材料在1723 K时显示770 MPa。应力-应变曲线表明,B4C/CNF复合材料在1273 K之前弹性变形,在1973 K之前塑性变形,然而,B4C/CNT复合材料在1873 K左右显示弹性变形。

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