摘要。本研究旨在确定木材用彩色防火涂料的可燃性组别。通过防火试验发现,在(Na,K)2O-Al2O3-nSiO2-mH2O体系中,基于碱性铝硅酸盐粘合剂开发的防火矿物涂料组合物难燃且易燃,在可燃性组中处于G1和G2之间的中间位置。通过防火试验,烟气温度不超过临界值 - 高于260 [°C],样品的重量损失在5.56至10.17 [%]之间,燃烧速率不超过0.0026 [kg /(m2⋅s)]。鉴于烟气温度的裕度相当高,计划根据瑞典RICE的EN 13823进行进一步的防火试验。
为了测试建议的方法的性能,使用Heureka Planwise软件在100年内针对两个瑞典县(北方地区)和克罗伯格(BoreonMoral Zone)开发了不同的未来林业场景。模拟和分析了五种不同的测试方案; 1,当前林业(“ Cur”); 2,增长和收获的增加(“递增”); 3,保护区和额外的生物多样性促进措施(“ double+”); 4,终止林业(“停止”)和5,标准林业(“站立”)。场景“停止”模拟了所有森林管理实践均在2010年终止。但是,森林仍将受到当年之前进行的森林管理活动的影响。场景“立场”的目的是反映整个瑞典的总体平均林业,以最大程度地减少诸如架子年龄分布和变化的增长条件等因素的影响。
环氧涂层由于多种原因被广泛使用:对化学物质的高电阻,对各种底物的出色粘附,韧性,高电阻,高温和低温下的耐用性,可治愈时低收缩,柔韧性,柔韧性以及可以倒入或不形成赛季的易变的便利性[1 -5]。These properties make them eligible for use in various applications such as protective coatings (for appliance, automotive primers, pipes) [6], encapsulation of electrical and electronic devices, adhesives, bonding materials for dental uses, replacement of welding and riveting in aircraft and automobiles, composites materials in space industry, printed circuitry, pressure vessels and pipes, and construction uses such as flooring,铺路和机场跑道维修[1,7]。
• Complementary metal-oxide-semiconductor (CMOS) image sensors and charge coupled devices (CCD) • Image sensor design and customization • Sensor characterization and calibration • Radiation damage effects in space • Interaction of radiation with matter, shielding • Semiconductor physics and device simulations • Cryogenics and vacuum • Electronics
08:30注册和入住09:00欢迎和小组介绍博士博士。 W. Schabel / Dr.-ing。 P. Scharfer (KIT-TFT) 10:00 Rheology of coating fluids Prof. Dr. Norbert Willenbacher (KIT-MVM) 11:00 Coffee break 11:25 About coating, printing & fluids characterization Prof. Gilbert Gugler (iPrint, CH) 12:45 Lunch break 13:45 Coating & ink preparation for hydrogen applications Dr.-Ing. Benjamin Schmidt-Hansberg (BASF SE) 14:35 Premetered coating methods with highlights of slot and curtain coating - Part I Dr. Peter Schweizer (Schweizer Coating Consulting, CH) 15:20 Coffee break 15:45 Premetered coating methods with highlights of slot and curtain coating - Part II Dr. Peter Schweizer (Schweizer Coating Consulting, CH) 16:30 Fluid flow in H.博士博士涂层工具。 c。多。 franz durst(fau erlangen,em。)08:30注册和入住09:00欢迎和小组介绍博士博士。W. Schabel / Dr.-ing。P. Scharfer (KIT-TFT) 10:00 Rheology of coating fluids Prof. Dr. Norbert Willenbacher (KIT-MVM) 11:00 Coffee break 11:25 About coating, printing & fluids characterization Prof. Gilbert Gugler (iPrint, CH) 12:45 Lunch break 13:45 Coating & ink preparation for hydrogen applications Dr.-Ing.Benjamin Schmidt-Hansberg (BASF SE) 14:35 Premetered coating methods with highlights of slot and curtain coating - Part I Dr. Peter Schweizer (Schweizer Coating Consulting, CH) 15:20 Coffee break 15:45 Premetered coating methods with highlights of slot and curtain coating - Part II Dr. Peter Schweizer (Schweizer Coating Consulting, CH) 16:30 Fluid flow in H.博士博士涂层工具。 c。多。franz durst(fau erlangen,em。)
• R&D collaborations for start-ups and spin-offs • Participation to European Commission-funded projects • Knowledge Transfer Seminars • Open source software and hardware licences (as for the World Wide Web) • Training in business and entrepreneurship for CERN personnel • Dedicated funding to bridge the research/industry ga
I.简介热喷雾技术是缓解腐蚀的有效且低成本的解决方案。用涂层保护底物可以通过应用将基板与环境区分开的有效涂层延长材料的寿命,从而避免了频繁修复的必要性。热喷涂技术的缺点是涂料的孔隙率,这会损害其对腐蚀和磨损的抵抗力。然而,文献报告了通过腐蚀评估测试证明其效率的密封剂的使用[1]。由于高沉积速率,维修能力和可用于涂料中可用的材料范围广泛,因此在纺织品,能量,石油,航空航天,汽车工业等中使用热喷雾技术等[2]。热喷涂的涂层的层状结构是一个重要特征