飞秒激光与电沉积复合工艺制备不锈钢超疏水表面及减阻性能  被引量:1

Combined Femtosecond Laser and Electrodeposition Process to Prepare Stainless-steel Superhydrophobic Surfaces with Reduced Drag

在线阅读下载全文

作  者:刘浩 赵运才[1] 底月兰 王海斗 黄艳斐 LIU Hao;ZHAO Yuncai;DI Yuelan;WANG Haidou;HUANG Yanfei(School of Mechatronics Engineering,Jiangxi University of Science and Technology,Ganzhou 341000,China;National Key Laboratory for Remanufacturing,Army Academy of Armored Forces,Beijing 100072,China;National Engineering Research Center for Remanufacturing,Army Academy of Armored Forces,Beijing 100072,China)

机构地区:[1]江西理工大学机电工程学院,赣州341000 [2]陆军装甲兵学院装备再制造技术国防科技重点实验室,北京100072 [3]陆军装甲兵学院机械产品再制造国家工程研究中心,北京100072

出  处:《中国表面工程》2023年第4期65-76,共12页China Surface Engineering

基  金:国家自然科学基金(52175207);国防科技领域基金(2020-JCJQ-JJ-378)资助项目。

摘  要:在远程管道运输过程中,固液间摩擦阻力是一个不容忽视的问题,类鲨鱼结构减阻效率低且制备困难。基于荷叶表面仿生思想,构筑微结构制备超疏水表面,减小摩擦阻力。采用飞秒激光刻蚀与电沉积复合工艺,在不锈钢表面构筑框-锥多级结构,经自组装氟硅烷制备超疏水表面,讨论复合工艺参数对微结构形貌及润湿性能的影响,探究框-锥多级结构超疏水表面减阻。结果表明,利用飞秒激光可获得周期性分布的框结构,随着激光功率的增加,微米框结构内部形成不规则沟壑金属堆积物,且关光延时的增长会产生单侧分布微孔结构,损伤基体整体强度;通过电沉积工艺制备亚微米尖锥结构镍镀层,随着电流密度的增加,镀层微结构形态发生变化,形成亚微米尖锥石结构,表面由疏水转变为超疏水。与激光刻蚀10次自组装氟硅烷涂层试样相比,激光刻蚀与电沉积复合工艺自组装氟硅烷涂层的试样表面接触角由138.6°提高到156.7°,对水和30wt.%甘油的减阻率分别由8.17%、14.38%提高到27.74%、23.69%。将激光刻蚀与电沉积相结合,构筑微纳结构经自组装制备超疏水表面,可为降低管道输运中固液间摩擦阻力提供新的技术途径。In long-distance pipeline transportation,the relative motion of the solid and liquid phases generates a large frictional drag between them,which is a problem that cannot be ignored.The shark-like ribbed groove microstructure,commonly used to reduce resistance,has poor drag-reduction stability,low efficiency,and is difficult to prepare.Therefore,based on the bionic concept,microstructures were constructed and modified through self-assembly to produce superhydrophobic surfaces that reduce the frictional drag between the solid and liquid phases.A superhydrophobic surface was constructed on the surface of 3Cr13 stainless steel using a composite process of femtosecond laser etching and electrodeposition,and the surface was modified using a self-assembled fluorosilane coating.The effects of the laser etching and electrodeposition parameters on the morphology and surface wettability of the frame-cone multilevel microstructures were analyzed.Additionally,the drag reduction performance of the superhydrophobic surface of the frame-cone multilevel structure was investigated underwater.The results showed that periodically distributed micron frame structures can be obtained using a femtosecond laser,with an irregularly grooved metal build-up forming inside the micron frame structure as the laser power increases.An increase in the off-light delay produces a unilateral regular distribution of microporous structures,which damages the overall strength of the substrate.At 35%laser power and 180μs off delay,the micron frame structure was constructed with an intact surface.Moreover,the depth of the micron frame structure increased linearly with the number of femtosecond laser etchings.When the laser etching was conducted 10 times,the frame structure depth and the static contact angle of the surface were 4.23μm and 138.6°,respectively.The nano/submicron cone structure of the nickel coating was prepared using electrodeposition,and both the current density and deposition time affected the microstructure morphology of the nickel coat

关 键 词:管道运输 复合工艺 超疏水 框-锥多级结构 减阻 

分 类 号:TG174[金属学及工艺—金属表面处理]

 

参考文献:

正在载入数据...

 

二级参考文献:

正在载入数据...

 

耦合文献:

正在载入数据...

 

引证文献:

正在载入数据...

 

二级引证文献:

正在载入数据...

 

同被引文献:

正在载入数据...

 

相关期刊文献:

正在载入数据...

相关的主题
相关的作者对象
相关的机构对象