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公开(公告)号:US20080129203A1
公开(公告)日:2008-06-05
申请号:US11565165
申请日:2006-11-30
Applicant: RONALD B. AGUSTSSON , SALIME M. BOUCHER , PEDRO E. FRIGOLA , ALEX Y MUROKH , JAMES B ROSENZWEIG , GIL TRAVISH
Inventor: RONALD B. AGUSTSSON , SALIME M. BOUCHER , PEDRO E. FRIGOLA , ALEX Y MUROKH , JAMES B ROSENZWEIG , GIL TRAVISH
IPC: H01J23/065
CPC classification number: H01J23/005 , B33Y80/00
Abstract: In an electron accelerator, a conductive housing defines a cavity. Photoelectrons are emitted from a photocathode into the cavity when light is applied to the photocathode. Via an opening formed in a wall of the conductive housing, the photoelectrons are output to the outside of the cavity. Coolant is flowed through a flow path formed in the wall of the conductive housing, to suppress a temperature rise of the conductive housing. The wall of the conductive housing is made by a metal additive manufacturing technique in such a way as to produce a flow path that has a gentle trajectory without discontinuities in gradient.
Abstract translation: 在电子加速器中,导电壳体限定空腔。 当光照射到光电阴极时,光电子从光电阴极发射到腔中。 通过形成在导电壳体的壁中的开口,光电子被输出到空腔的外部。 冷却剂通过形成在导电壳体的壁中的流路流动,以抑制导电壳体的温度升高。 导电壳体的壁由金属添加剂制造技术制成,以产生具有平缓轨迹的流动路径,而梯度不间断。
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公开(公告)号:US07411361B2
公开(公告)日:2008-08-12
申请号:US11565165
申请日:2006-11-30
Applicant: Ronald B. Agustsson , Salime M. Boucher , Pedro E. Frigola , Alex Y. Murokh , James B. Rosenzweig , Gil Travish
Inventor: Ronald B. Agustsson , Salime M. Boucher , Pedro E. Frigola , Alex Y. Murokh , James B. Rosenzweig , Gil Travish
CPC classification number: H01J23/005 , B33Y80/00
Abstract: In an electron accelerator, a conductive housing defines a cavity. Photoelectrons are emitted from a photocathode into the cavity when light is applied to the photocathode. Via an opening formed in a wall of the conductive housing, the photoelectrons are output to the outside of the cavity. Coolant is flowed through a flow path formed in the wall of the conductive housing, to suppress a temperature rise of the conductive housing. The wall of the conductive housing is made by a metal additive manufacturing technique in such a way as to produce a flow path that has a gentle trajectory without discontinuities in gradient.
Abstract translation: 在电子加速器中,导电壳体限定空腔。 当光照射到光电阴极时,光电子从光电阴极发射到腔中。 通过形成在导电壳体的壁中的开口,光电子被输出到空腔的外部。 冷却剂通过形成在导电壳体的壁中的流路流动,以抑制导电壳体的温度升高。 导电壳体的壁由金属添加剂制造技术制成,以便产生具有平缓轨迹的流动路径,而不存在梯度不连续性。
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