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Industrialization of Superconducting RF Accelerator Technology

机译:超导射频加速器技术的产业化

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Superconducting RF (SRF) accelerator technology has basically existed for 50 years. It took about 20 years to conduct basic R&D and prototyping at universities and international institutes before the first superconducting accelerators were built, with industry supplying complete accelerator cavities. In parallel, the design of large scale accelerators using SRF was done worldwide. In order to build those accelerators, industry has been involved for 30 years in building the required cavities and/or accelerator modules in time and budget. To enable industry to supply these high tech components, technology transfer was made from the laboratories in the following three regions: the Americas, Asia and Europe. As will be shown, the manufacture of the SRF cavities is normally accomplished in industry whereas the cavity testing and module assembly are not performed in industry in most cases, yet. The story of industrialization is so far a story of customized projects. Therefore a real SRF accelerator product is not yet available in this market. License agreements and technology transfer between leading SRF laboratories and industry is a powerful tool for enabling industry to manufacture SRF components or turnkey superconducting accelerator modules for other laboratories and users with few or no capabilities in SRF technology. Despite all this, the SRF accelerator market today is still a small market. The manufacture and preparation of the components require a range of specialized knowledge, as well as complex and expensive manufacturing installations like for high precision machining, electron beam welding, chemical surface preparation and class IS04 clean room assembly. Today, the involved industry in the US and Europe comprises medium-sized companies. In Japan, some big enterprises are involved. So far, roughly 2500 SRF cavities have been built by or ordered from industry worldwide. Another substantial step might come from the International Linear Collider (ILC) project currently being designed by the international collaboration GDE ('global design effort'). If the ILC will be built, about 18,000 SRF cavities need to be manufactured worldwide within about five years. The industrialization of SRF accelerator technology is analyzed and reviewed in this article in view of the main accelerator projects of the last two to three decades.
机译:超导射频(SRF)加速器技术已经基本存在了50年。在建造第一批超导加速器之前,大约需要20年的时间在大学和国际机构进行基本的研发和原型设计,而工业界提供了完整的加速器腔体。同时,在全球范围内使用SRF设计了大型加速器。为了制造这些加速器,工业界已经投入了30年的时间和预算来制造所需的型腔和/或加速器模块。为了使工业能够提供这些高科技组件,从以下三个地区的实验室进行了技术转让:美洲,亚洲和欧洲。如将显示的那样,SRF腔体的制造通常在工业上完成,而在大多数情况下,工业上尚不进行腔体测试和模块组装。到目前为止,工业化的故事是定制项目的故事。因此,在这个市场上还没有真正的SRF加速器产品。领先的SRF实验室与行业之间的许可协议和技术转让是使行业能够为其他实验室和用户生产SRF技术功能很少或没有的SRF组件或交钥匙超导加速器模块的强大工具。尽管如此,今天的SRF加速器市场仍然很小。零件的制造和准备需要广泛的专业知识,以及复杂而昂贵的制造设备,例如用于高精度加工,电子束焊接,化学表面处理和IS04级洁净室组装的设备。如今,在美国和欧洲涉及的行业包括中型公司。在日本,涉及一些大企业。到目前为止,全世界的工业已经建造或订购了大约2500个SRF型腔。另一个重大步骤可能来自国际合作GDE目前正在设计的国际线性对撞机(ILC)项目(“全球设计工作”)。如果要建造ILC,则需要在大约五年内在全球范围内制造大约18,000个SRF型腔。针对最近两到三十年的主要加速器项目,本文对SRF加速器技术的工业化进行了分析和回顾。

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