About 29 item dissertation in line with Subsurface Damage query results,the following is 1 to 50(Search took 0.053 seconds)
- Fundamental Research on Silicon Wafer Thinning by Ultra-precision Grinding,GaoShang/Dalian University of Technology,0/79
- Research on Plasma Repair Theory and Experiments of Damaged Subsurface of Optical Element,JiShuHua/Changchun University of Science and Technology,0/5
- Structuring of Coarse-grained Diamond Wheelsurface via Laser Machining Methods,ZhangWei/Harbin Institute of Technology,0/45
- Ultra-precision ELID Grinding of Super-hard Microstructured Optical Functional Surfaces,ZhangHaiNan/Harbin Institute of Technology,0/64
- Research on Subsurface Damage Analysis and Detection Technology of Optical Element after Grinding and Polishing,WuYanPeng/Xiamen University,0/2
- Nano-machining Mechanism and Characterization of Machined Crystalline Materials by Raman Spectroscopy,XuFeiFei/Tianjin University,0/0
- Research on Simulation and Experiment of Grinding Optical Glass with Single Diamond Girt,LiZhiPeng/Harbin Institute of Technology,0/73
- The Experimental Research on Dressing of Monolayer Brazed Diamond Grinding Wheel with Plate Wheel,XuWang/Nanjing University of Aeronautics and Astronautics,0/37
- Experimental Research on HVOF Tungsten Carbide Coating by Grinding,YiJun/Hunan University,0/116
- Study on Subsurface Damage of Optical Glass after Lapping,GaoPing/Nanjing University of Aeronautics and Astronautics,0/228
- Study on the Monocrystal Silicon Nanometric Grinding by Molecular Dynamics Simulations,GuoXiaoGuang/Dalian University of Technology,2/674
- In Vitro Intraoral Resurfacing of Dental Ceramic Prostheses Using High-Speed Clinical Handpieces,SongXiaoFei/Tianjin University,3/140
- Study on Techniques in Computer-controlled Grinding and Polishing for Large and Medium Aspheric Surfaces,ZhouXuSheng/National University of Defense Science and Technology,20/574
- Study on the High Efficiency and Low Damage Processing Technology of CdZnTe Wafer,LiYan/Dalian University of Technology,1/168
- Study on the Detection and Control Techniques of Subsurface Damage in Optical Fabrication,WangZhuo/National University of Defense Science and Technology,7/434
- Study on Surface/subsurface Damage Mechanism of Nano-ZrO2 Ceramics in the Multi-frequency Ultrasonic Vibration Assisted Grinding,ZhaoMingLi/Henan Polytechnic University,0/83
- Study on Single Crystal MgO Substrates Lapping and Its Damage,ZhouBo/Dalian University of Technology,0/134
- Theoretical and Experimental Research on the Measurement of Grinding Subsurface Damages for Optical Materials,LiGaiLing/National University of Defense Science and Technology,9/446
- The Research on Grinding Damage in Nanostructured Ceramic Coating,JinQunYing/Hunan University,4/181
- Study on Surface/subsurface Damage Detection of Ultraprecision Ground Silicon Wafer,ZhangShengLi/Dalian University of Technology,2/397
- Sub- surface defects induced damage mechanisms and experimental research,WangYi/Chinese Academy of Engineering Physics,11/356
- HF acid etching of fused silica materials research,ZhengZhi/University of Electronic Science and Technology,2/103
- The Research on Surface Quality of KDP Crystal Machined by Single Point Diamond Turning,LiZhenXing/Harbin Institute of Technology,0/58
- Research on the Ultra-Precision Grinding of Optical Glass Based on Hybrid-Bonded Diamond Wheel,QinJiaYong/Harbin Institute of Technology,0/136
- Study on Surface/subsurface Damage Mechanism in the Ultrasonic Vibration Assisted Grinding of Nanocomposite Ceramics,KongLingZhi/Henan Polytechnic University,0/158
- Simulation and Experimental Studies of Precision Ground V-Shaped Micro-Structure on Superhard Materials,SunGuoYan/Harbin Institute of Technology,0/83
- Ultra-precision machining glass subsurface damage prediction methods and experimental research,SongZuo/Harbin Institute of Technology,0/132
- Research on Surface Integrity Study of Glass-Ceramic for Laser Gyro Mirror Substrate,WangXun/Harbin Institute of Technology,2/61
- Research on Removing Damage of Optical Components Based on Magnetorheological Finishing Techniques,LvHanFeng/National University of Defense Science and Technology,0/107
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