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Progress on Channel Spark Development and Application of Pulsed Electron Beam Deposition (PED) in the Field of Medical Coating Work

机译:医用涂层工作领域脉冲电磁束沉积(PED)频道火花开发与应用

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A promising source for Pulsed Electron Beam Deposition (PED) is the channel spark. Recent improvements helped to reduce beam instabilities which up to now have limited the life time of the system. The beam power could be increased and because of better beam quality the transport length of the beam is increased from 1 to several centimeters (up to 10 cm). Together with other improvements on the triggering system and beam transport in dielectric tubes, the channel spark approaches industrial standards. An overview of actual applications in research and industry will be presented. An attractive feature of the pulse electron beam thin film deposition is the conservation of stoichiometry even during deposition of multi-component earth-alkali and alkali glasses. Specially developed glasses like BIOGLAS~i have the ability to anchor soft living tissue at the surface. In form of a bulk material bio active glasses are brittle limiting its applications. Contrary to brittle bulk material a thin layers on medical implants exhibits reliable bio-functionality. Coating of implants with this category of materials is subject of the European INCOMED project (Innovative Coating of Medical Implants with Soft Tissue Anchoring Ability) which just has started.
机译:用于脉冲电子束沉积(PED)的有希望的源是通道火花。最近的改进有助于减少光束不稳定性,这使得其达到目前已经限制了系统的寿命。可以增加光束功率并且由于更好的光束质量,光束的传输长度从1增加到几厘米(最多10cm)。与触发系统和介质管中的横梁传输的其他改进一起,通道火花接近工业标准。将提出研究和行业实际应用的概述。脉冲电子束薄膜沉积的有吸引力特征是即使在沉积多组分土 - 碱和碱玻璃期间也是在化学计量中的守恒。特殊发达的眼镜,如BioGlas〜我有能力在表面上锚定软活组织。以散装材料生物活性玻璃的形式脆性限制其应用。与脆性散装材料相反,医疗植入物上的薄层表现出可靠的生物功能。植入物的涂层具有这类材料是刚刚开始的欧洲收入的项目(具有软组织锚定能力的创新涂层)。

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