为了研究激光功率P、送粉速率f和扫描速度vf对熔覆层宏观质量的影响,采用正交试验进行激光熔化沉积的单层单道成形试验研究.以熔覆层的形状系数ξ为评价指标,通过极差分析获得P,f和vf对几何形貌影响的主次顺序.结果表明:在一定工艺参数范围内,f对熔覆层ξ的影响最大;最佳工艺参数组合是P,f和vf分别为1 k W,0.7 g/min和600 mm/min.利用X射线衍射法对增/减材复合制造316L不锈钢薄壁圆环表面残余应力的分布进行了试验研究.结果表明:试样表面的顶部和底部是拉应力,中间部分是压应力;铣削加工可以消除一部分残余应力.
为考察单向碳纤维增强陶瓷基复合材料(C f/SiC)的磨削表面质量,使用树脂结合剂金刚石砂轮完成正交试验研究.通过极差分析获得砂轮线速度 v s、磨削深度 a p和进给速度 v w对表面质量影响的主次顺序.正交试验结果表明:磨削深度对磨削表...
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为考察单向碳纤维增强陶瓷基复合材料(C f/SiC)的磨削表面质量,使用树脂结合剂金刚石砂轮完成正交试验研究.通过极差分析获得砂轮线速度 v s、磨削深度 a p和进给速度 v w对表面质量影响的主次顺序.正交试验结果表明:磨削深度对磨削表面粗糙度影响最大;随着磨削深度 a p的增大,表面粗糙度显著增大;随着砂轮线速度 v s的增大,表面粗糙度不断减小;随着进给速度 v w的增大,表面粗糙度增大.最终根据试验结果及表面微观形貌对单向碳纤维增强陶瓷基复合材料的磨削机理进行深入的分析,对单向C f/SiC磨削加工理论的机理揭示具有指导意义.
Secondary electron emission(SEE)has emerged as a critical issue in next-generation *** SEE on metal surfaces is crucial for enhancing the stability and emittance of particle accelerators while extending their *** pape...
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Secondary electron emission(SEE)has emerged as a critical issue in next-generation *** SEE on metal surfaces is crucial for enhancing the stability and emittance of particle accelerators while extending their *** paper explores the application of laser-assisted water jet technology in constructing high-quality micro-trap structures on 316L stainless steel,a key material in accelerator *** study systematically analyzes the impact of various parameters such as laser repetition frequency,pulse duration,average power,water jet pressure,repeat times,nozzle offset,focal position,offset distance between grooves,and processing speed on the surface morphology of stainless *** findings reveal that micro-groove depth increases with higher laser power but decreases with increasing water jet pressure and processing ***,repeat times have minimal effect on *** the other hand,micro-groove width increases with higher laser power and repeat times but decreases with processing *** optimizing these parameters,the researchers achieved high-quality pound sign-shaped trap structure with consistent *** tested the secondary electron emission coefficient of the"well"*** coefficient is reduced by 0.5 at most compared to before processing,effectively suppressing secondary electron *** results offer indispensable insights for the fabrication of micro-trap structures on material ***-assisted water jet technology demonstrates considerable potential in mitigating SEE on metal surfaces.
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