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DESIGN OF THE VACUUM SYSTEM FOR KEKB

机译:KEKB真空系统的设计

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摘要

The construction of a new asymmetrical collider with 3.5 GeV positron beam and 8 GeV electron beam has started at KEK. The collider consists of two rings with the circumference of 3 km intersecting at the colliding point The vacuum ducts deal with intense heat from synchrotron radiation because of a high design current, 2.6 A for a positron and 1.1 A for an electron. As a result of the compact design dimensions for a bunch, the requirement for smoothness of the inner surface is tight. We adopt copper as a material for the vacuum chambers of KEKB. Acid etch or chemical polishing is applied to clean the extruded surface. Using NEG strips as the main pump, a pumping speed is designed as 100/s(-1) m(-1). When the photo-desorption coefficient is 10(-6), a pressure of 10(-7) Pa will be realized. All chambers are baked before installation. By adopting ''dry-hood'' technique, in situ bake out will be omitted The pumping slots are backed up by mesh to prevent the penetration of a beam induced field which causes pump elements to heat up. The gap between flanges is filled using a Helicoflex vacuum seal. Contact force of a RF finger in a bellows is assured by a spring finger. Copyright (C) 1996 Elsevier Science Ltd. [References: 5]
机译:KEK开始建造带有3.5 GeV正电子束和8 GeV电子束的新型不对称对撞机。对撞机由两个环组成,两个环在碰撞点相交,相距3 km。真空管道由于高设计电流而处理来自同步加速器辐射的强烈热量,正电子为2.6 A,电子为1.1A。由于束的紧凑设计尺寸,对内表面光滑度的要求非常严格。我们采用铜作为KEKB真空室的材料。进行酸蚀或化学抛光以清洁挤出的表面。使用NEG条带作为主泵,抽速设计为100 / s(-1)m(-1)。当光解吸系数为10(-6)时,将实现10(-7)Pa的压力。所有腔室在安装前均已烘烤。通过采用“干燥罩”技术,可省去原位烘烤。泵送槽由网状支撑,以防止光束感应场穿透而导致泵浦元件发热。法兰之间的间隙使用Helicoflex真空密封件填充。弹簧指确保了波纹管中射频指的接触力。版权所有(C)1996 Elsevier Science Ltd. [参考:5]

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