Influences of Carbon Black Particle Size on the Compounded Carbon Content in WC Powders
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摘要: 采用超細顆粒(0.35μm)鎢粉與不同粒徑(0.1,0.3,0.8,4.5μm)的碳黑粉,按W+C=WC的反應式配碳,在氫氣保護下,于830~1300℃保溫40min,研究碳黑粒徑、碳化溫度對WC粉的化合碳含量及物相組成的影響.XRD分析物相組成,用化學分析測定碳含量(質量分數)結果表明:當使用0.1μm的超細碳黑,溫度大于930℃時,WC粉的含碳量可達理論含量.但是在此溫度下,隨著使用的碳黑粒徑增大,WC粉中的化合碳含量急速下降,例如在950℃下,使用0.3μm的碳黑只能使WC粉化合碳達到5.2%,使用0.8 μm碳黑時,WC的化合碳為3.18%.Abstract: With the ultrafine W powder (0.35 μm) and carbon black powders of various shes(0.1, 0.3, 0.8, 4.5 μm), the influences of carbon black pride size and carburization temperatures(830-1300℃ for 40 min) on the compounded carbon content and phase compositions in WC powders were investigated at the atmosphere of H2. The adding amount of carbon was determined under the reaction equation of W+C=WC. The phase compositions of the reacted products were analyzed by XRD. The experimental results demonstrated that when ultrafine carbon of 0. 1 μm was used, the compounded carbon content in the WC powders was up to 5.8%(mass fraction), corresponding to 95% of the theoretical content, at very low temperature of 850℃; when the temperature was higher than 930℃, the carbon content of WC powders approached the theoretical one. It is concluded that carburization can be completed at very low temperature when the ultrafine carbon black powders are used, in which the ultrafine W particles are carbonized before the they begin to grow and form W aggregation.
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Key words:
- ultrafine powders /
- WC powders /
- carburization
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