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塑料塔填料表面改性技术 被引量:4
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作者 张近 《化工进展》 EI CAS CSCD 1999年第1期20-22,54,共4页
塑料塔填料表面能低,润湿性差,不利于传质.增大表面粗糙度以提高表面能与改变表面分子结构而增加表面极性是改善塑料塔填料分离性能的两个主要途径.本文着重介绍了表面糙化、表面极化、表面接枝及等离子体表面处理等表面改性技术.
关键词 塑料塔填料 表面改性 分离性能 表面糙化 表面 表面接枝 等离子体表面处理
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酸碱液相处理对聚氧亚甲基(POM)纤维性能的影响 被引量:1
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作者 刘露 王罗新 +1 位作者 吴静 王桦 《化工新型材料》 CAS CSCD 北大核心 2013年第11期145-148,共4页
采用硝酸和氢氧化钠溶液对聚氧亚甲基(POM)纤维进行液相氧化与刻蚀处理,研究不同处理浓度和处理时间对POM纤维力学性能和表面形貌的影响。通过instron强力测试表明,POM纤维耐碱不耐酸,在稀酸与强碱下控制处理时间能达到表面糙化的效果... 采用硝酸和氢氧化钠溶液对聚氧亚甲基(POM)纤维进行液相氧化与刻蚀处理,研究不同处理浓度和处理时间对POM纤维力学性能和表面形貌的影响。通过instron强力测试表明,POM纤维耐碱不耐酸,在稀酸与强碱下控制处理时间能达到表面糙化的效果。IR测试表明酸碱处理未能使POM纤维表面活化,通过SEM观察到不同浓度和处理时间下POM纤维表面的氧化和刻蚀情况。研究表明20%浓度的稀硝酸在30min左右能够在不大损害纤维强力的情况下对POM纤维表面糙化,30%浓度以上的强碱会对纤维强力产生影响,而在30%浓度以下的碱性溶液中能够长期保持稳定的力学性能且能使表面糙化。 展开更多
关键词 聚氧亚甲基纤维 液相氧 碱处理 表面糙化
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Effect of surface roughness on femtosecond laser ablation of 4H-SiC substrates 被引量:4
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作者 CHEN Jian-qiang XIE Xiao-zhu +4 位作者 PENG Qing-fa HE Zi-yu HU Wei REN Qing-lei LONG Jiang-you 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3294-3303,共10页
Ablation threshold is an important concept in the study of femtosecond laser micro-and nano-machining.In this paper,the ablation experiments of three kinds of surface roughness 4H-Si C substrates irradiated by femtose... Ablation threshold is an important concept in the study of femtosecond laser micro-and nano-machining.In this paper,the ablation experiments of three kinds of surface roughness 4H-Si C substrates irradiated by femtosecond laser were carried out.The feature thresholds were systematically measured for three surface roughness Si C substrates and found in the modification and annealing regions ranging from coincidence(R_(a)=0.5 nm)to a clear demarcation(R_(a)=5.5 nm),eventually being difficult to identify the presence of the former(R_(a)=89 nm).Under multi-pulse laser irradiation,oriented ripple structures were generated in the annealing region,where deep subwavelength ripples(about 110 nm,Λ≈0.2λ)can be generated above substrates with surface roughness higher than 5.5 nm.We investigated the effect of surface roughness on the ablation morphology,ablation threshold,and periodic structures of femtosecond laser ablation of 4H-Si C substrates,while the ablation threshold was tended to decrease and stabilize with the increase of pulse number N≥500. 展开更多
关键词 4H-SIC surface roughness ablation threshold periodic structure femtosecond laser
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Surface property variations in flotation performance of calcite particles under different grinding patterns 被引量:6
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作者 XU Peng-yunq LI Jing +4 位作者 HU Cong CHEN Zhou YE Hong-qi YUAN Zhong-quan CAI Wen-ju 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1306-1316,共11页
Based on the working principles of particle bed comminution, particles produced by high-pressure grinding rolls (HPGR) have surface properties different from particles produced by other grinding patterns, which exer... Based on the working principles of particle bed comminution, particles produced by high-pressure grinding rolls (HPGR) have surface properties different from particles produced by other grinding patterns, which exert great influence on mineral flotation. Flotation performances of calcite particles under different grinding patterns involving the use of HPGR, a jaw crusher, a dry ball mill, a wet ball mill, and a wet rod mill were studied using single mineral flotation tests. The surface properties of the particles under different grinding patterns were characterized to determine the flotation performance variation in terms of specific surface area, particle size distribution, AFM, XPS, and zeta potential. The results show that particles ground by HPGR exhibited improved flotation performance within the lower range of grinding fineness in both NaOL and dodecyl amine flotation systems compared to the particles prepared using other grinding patterns. Specific surface area, particle size distribution, surface roughness, Fe(III) contamination, binding energy, and zeta potential are greatly influenced by grinding patterns, which is the main cause of the flotation performance variation. 展开更多
关键词 CALCITE surface property grinding patterns high-pressure grinding rolls flotation performance
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