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| 1 | Laser-welded Dissimilar Steel-aluminum Seams for Automotive Lightweight Construction显示文摘 | M. Schimek A. Springer S. Kaierle D. Kracht V. Wesling | 2012 | Physics Procedia2012,,: | 2 |
| 2 | 光电偶效应和光束整形对激光稳定气体保护焊接的增益(英文)显示文摘为了开发和改进激光诱导稳定焊接加工技术,需要通过激光辐射使电弧的导电率达到最大值。光电偶效应是控制该过程的主导因素,该过程的优化将会保证电弧的稳定性。光电偶效应提高了等离子体粒子电离的概率,从而提高了电弧的导电率。激光光子和氩原子之间的电子-原子碰撞相互作用产生了带电粒子。电离率越高,电弧的导电率就越高。为了充分利用光电偶效应,我们还应考虑工件上的光束焦点位置、光束形状和激光波长因素。 | HERMSDORF Jrg KAIERLE Stefan | 2014 | 中国光学2014,7,1: | 1 |
| 3 | Extended range of applications for laser beam welding by laser-MIG hybrid technique显示文摘 | Petring D Kaierle S Kasimir M | | 0,,01: | 1 |
| 4 | Coaxial process con- trol during laser beam welding of tailored blanks显示文摘 | Kratzsch C Abels P Kaierle S | 2000 | Prcee- dings AHPLA99 High-power Laser in Manufacturing Proc SPIE 38882000,2000,: | 1 |
| 5 | Find and Irradiate — Lasers Used for Weed Control显示文摘 | Stefan Kaierle Christian Marx Thomas Rath Michael Hustedt | 2013 | LTJ2013,,: | 1 |
| 6 | Extended range of appli- cations for laser beam welding by laser-MIG hybrid technique显示文摘 | Petring D Kaierle S Kasimir M | 2001 | Laser Opto2001,33,1: | 1 |
| 7 | Laser- welded dissimilar steel-aluminum seams for automotive lightweight construction 显示文摘 | SCHIMEK M SPRINGER A KAIERLE S | 2012 | Physics Procedia2012,,39: | 1 |
| 8 | 利用Nd:YAG激光诱导击穿光谱法检测橡胶共混物中锌的均匀性分布显示文摘激光诱导击穿光谱是一种基于激光的定性、定量分析化学元素的方法,可用于分析混合室中的橡胶共混物。本文采用波长为1 064 nm、脉冲能量为100 m J的Nd∶YAG激光诱导击穿光谱法检测橡胶共混物中锌的分散情况。实验表明,正确混料决定了橡胶产品的质量,较短的混合时间将会导致混料的不均匀分散;焦距等参数设置对光谱线强度影响较大。激发标定样品可产生标定曲线。通过行扫描可分析锌在橡胶共混物中的分散情况。通过估算沿着行扫描方向的强度分布,可检测由于混合时间较短和旋转速度不同而引起的锌均匀性变化。 | EMDE Benjamin HERMSDORF Jorg KAIERLE Stefan OVERMEYER Ludger | 2015 | 中国光学2015,8,4: | 1 |
| 9 | Extended range of applications for laser beam welding by laser-M1G hybrid technique显示文摘 | Petring D Kaierle S Kasimir M | 2001 | Laser Opto2001,33,1: | 1 |
| 10 | Laser-welded dissimilar steel-aluminum seams for automotive lightweight construction显示文摘 | Schimek M Springer A Kaierle S | 2012 | Physics Procedia2012,39,: | 1 |
| 11 | Innovative hybrid welding process in an industrial application显示文摘 | Kaierle S Bongard K Dahmen M | 2000 | Proceedings of 19th International Congress on ICALEO 2000 Section C - ICALEO2000,9198,: | 1 |
| 12 | Review on Laser Deposition Welding: From Micro to Macro显示文摘 | Stefan Kaierle Alexander Barroi Christian Noelke Joerg Hermsdorf Ludger Overmeyer Heinz Haferkamp | 2012 | Physics Procedia2012,,: | 1 |
| 13 | Extended range of applications for laser beam welding by laser-MIG hybrid technique显示文摘 | Petring D Kaierle S Kasimir M | 2001 | Laser Opto2001,33,1: | 1 |
| 14 | Extended range of applications for laser beam welding by laser-MIG hybrid technique 显示文摘 | Petring D Kaierle S Kasimir M | 2001 | Laser Opto2001,33,1: | 1 |
| 15 | Elapsed time of light: science & applications显示文摘I n 2015,Light:Science&Applications(LSA)has reached a new milestone:receiving the second impact factor of 14.603.LSA is now listed as the second journal among all journals in the field of optics according to the 2014 Journal Citation Reports fromThomson Reuters.Entering into the fifth-year online,LSA has meanwhile received over 500 submitted papers from 40 countries in 2015,with an increasing tendency.LSA has become a truly international journal with over 50 editors from10 countries,and the paper submissions received originate from almost 50 different countries for the last 4 years. | Jianlin Cao Tianhong Cui Stefan Kaierle | 2016 | Light(Science & Applications)2016,5,1: | 0 |
| 16 | Overseas offices: a new attempt to disseminate Light显示文摘Light:Science&Applications(LSA)has established itself as a leading resource for the optics and photonics community within only four and a half years.In 2016,LSA received its third impact factor of 13.6,being listed as second among 90 journals in optics,according to the 2015 Journal Citation Reports from Thomson Reuters.In 2015,LSA published 70 papers,increased by 30%compared with 2014,and the total citations rose by 65%.In 2016,LSA received more than 700 papers from 35 countries and regions and published 84 papers,with a steady increase in submissions and publications over the years.The long-term goal of LSA is to become an outstanding international journal in optics and photonics.We are approaching this step by step.However,we know that there is a long way ahead of us,and the efforts of several generations may be needed to achieve it.We are willing to exert our greatest efforts in this direction.We have been implementing various measures to enhance the quality and improve the impact of LSA.Today,a new attempt to set up LSA overseas offices is starting.Overseas offices will be based in local regions,covering neighboring areas,to perform activities relevant to LSA.The main responsibilities of overseas offices will include undertaking some of the manuscript processing workload to expedite the procedure,attending academic conferences relevant to optics,visiting outstanding scientists and leading research groups,hosting Light overseas forums,inviting high-quality papers,promoting LSA,etc. | Jianlin Cao Stefan Kaierle Tianhong Cui | 2017 | Light(Science & Applications)2017,6,1: | 0 |