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碳刷研磨成形去除模型构建与验证 被引量:2
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作者 毛君 田博 +1 位作者 谢苗 李玉岐 《工程设计学报》 CSCD 北大核心 2021年第6期701-708,共8页
为研究碳刷研磨装置的研磨精度,以自主研制的碳刷研磨装置为平台,基于Archard模型构建了碳刷研磨成形去除模型,并得到了碳刷研磨成形去除率预测公式,从而获得了横、纵向所需去除长度不同的碳刷的研磨次数。然后,基于所研制的碳刷研磨装... 为研究碳刷研磨装置的研磨精度,以自主研制的碳刷研磨装置为平台,基于Archard模型构建了碳刷研磨成形去除模型,并得到了碳刷研磨成形去除率预测公式,从而获得了横、纵向所需去除长度不同的碳刷的研磨次数。然后,基于所研制的碳刷研磨装置,开展了碳刷研磨成形正交实验以及碳刷研磨成形去除模型验证实验。结果表明,对碳刷研磨成形效果产生影响的因素按影响程度从大到小排序,依次为压下弹簧弹性系数、砂纸目数、砂轮步进电机脉冲频率;基于建立的去除率预测公式所获得的碳刷研磨次数较为准确,可保证碳刷的研磨效率。研究结果为不同型号碳刷研磨装置的进一步研发提供了理论指导和实验依据。 展开更多
关键词 碳刷研磨 去除率 Archard模型 研磨实验
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A new diamond bit for extra-hard, compact and nonabrasive rock formation 被引量:4
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作者 王佳亮 张绍和 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1456-1462,共7页
A new impregnated diamond bit was designed to solve the slipping problem when impregnated diamond bit was used for extra-hard, compact, and nonabrasive rock formation. Adding Si C grits into matrix, Si C grits can eas... A new impregnated diamond bit was designed to solve the slipping problem when impregnated diamond bit was used for extra-hard, compact, and nonabrasive rock formation. Adding Si C grits into matrix, Si C grits can easily be exfoliated from the surface of the matrix due to weak holding-force with matrix, which made the surface non-smooth. Three Ф36/24 mm laboratorial bits were manufactured to conduct a laboratory drilling test on zirconiacorundum refractory brick. The laboratory drilling test indicates that the abrasive resistance of the bit work layer is proportional to the Si C concentation. The higher the concentration, the weaker the abrasive resistance of matrix. The new impregnated diamond bit was applied to a mining area drilling construction in Jiangxi province, China. Field drilling application indicates that the ROP(rate of penetration) of the new bit is approximately two to three times that of the common bits. Compared with the common bits, the surface of the new bit has typical abrasive wear characteristics,and the metabolic rate of the diamond can be well matched to the wear rate of the matrix. 展开更多
关键词 SiC grits impregnated diamond bit non-smooth surface diamond rock fragmentation mechanism
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