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    • 3. 发明授权
    • Stress-decoupling devices and methods for cooled mirror systems
    • 用于冷却镜系统的应力消除装置和方法
    • US08643823B2
    • 2014-02-04
    • US12660222
    • 2010-02-23
    • Giovanni BianucciStefano MorettiGordon YueGian Luca Cassol
    • Giovanni BianucciStefano MorettiGordon YueGian Luca Cassol
    • G03B27/42
    • G03B27/52G02B7/1815G03F7/70166G03F7/70891G21K1/067
    • A stress-decoupling device and methods of using same in a cooled grazing-incidence collector (GIC) mirror system are disclosed. A method includes providing a cooled GIC shell, providing input and output primary cooling-fluid manifolds, and fluidly connecting the cooled GIC shell to the input and output primary cooling-fluid manifolds through respective stress-decoupling devices. An exemplary stress-decoupling device includes inner and outer bellows that define a sealed cavity filled with a gas. An expansion-limiting member within the sealed cavity limits the expansion of the inner bellows due to the pressure of the cooling fluid flowing therethrough. The stress-decoupling device reduces or prevents the communication of stress from parts of the GIC mirror system to the GIC shells. Stress-decoupling systems and methods for a cooled spider as used in a GIC mirror system are also disclosed.
    • 公开了一种应用解耦装置及其在冷却式入射收集器(GIC)镜系统中的使用方法。 一种方法包括提供冷却的GIC壳体,提供输入和输出主要冷却流体歧管,以及通过相应的应力解耦装置将冷却的GIC壳体流体连接到输入和输出主冷却液歧管。 示例性的应力解耦装置包括限定填充有气体的密封腔的内部和外部波纹管。 密封空腔内的膨胀限制构件由于冷却流体流过其中的压力而限制了内部波纹管的膨胀。 应力消除装置减少或阻止了GIC镜系统部件到GIC外壳的应力传递。 还公开了用于GIC镜系统中的冷却蜘蛛的应力去耦系统和方法。
    • 4. 发明申请
    • Stress-decoupling devices and methods for cooled mirror systems
    • 用于冷却镜系统的应力消除装置和方法
    • US20110205506A1
    • 2011-08-25
    • US12660222
    • 2010-02-23
    • Giovanni BianucciStefano MorettiGordon YueGian Luca Cassol
    • Giovanni BianucciStefano MorettiGordon YueGian Luca Cassol
    • G03B27/52H05K7/20G01J3/10
    • G03B27/52G02B7/1815G03F7/70166G03F7/70891G21K1/067
    • A stress-decoupling device and methods of using same in a cooled grazing-incidence collector (GIC) mirror system are disclosed. A method includes providing a cooled GIC shell, providing input and output primary cooling-fluid manifolds, and fluidly connecting the cooled GIC shell to the input and output primary cooling-fluid manifolds through respective stress-decoupling devices. An exemplary stress-decoupling device includes inner and outer bellows that define a sealed cavity filled with a gas. An expansion-limiting member within the sealed cavity limits the expansion of the inner bellows due to the pressure of the cooling fluid flowing therethrough. The stress-decoupling device reduces or prevents the communication of stress from parts of the GIC mirror system to the GIC shells. Stress-decoupling systems and methods for a cooled spider as used in a GIC mirror system are also disclosed.
    • 公开了一种应用解耦装置及其在冷却式入射收集器(GIC)镜系统中的使用方法。 一种方法包括提供冷却的GIC壳体,提供输入和输出主要冷却流体歧管,以及通过相应的应力解耦装置将冷却的GIC壳体流体连接到输入和输出主冷却液歧管。 示例性的应力解耦装置包括限定填充有气体的密封腔的内部和外部波纹管。 密封空腔内的膨胀限制构件由于冷却流体流过其中的压力而限制了内部波纹管的膨胀。 应力消除装置减少或阻止了GIC镜系统部件到GIC外壳的应力传递。 还公开了用于GIC镜系统中的冷却蜘蛛的应力去耦系统和方法。