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  • Trans Tech Publications, Ltd.  (5)
  • Wu, Wen Kai  (5)
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  • Trans Tech Publications, Ltd.  (5)
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  • 1
    Online Resource
    Online Resource
    Trans Tech Publications, Ltd. ; 2013
    In:  Advanced Materials Research Vol. 765-767 ( 2013-9), p. 206-209
    In: Advanced Materials Research, Trans Tech Publications, Ltd., Vol. 765-767 ( 2013-9), p. 206-209
    Abstract: In target area of Inertial Confinement Fusion (ICF) facility, the rectangular beams arrangement at the main amplifier (MA) output is mapped to the spherical-geometry beams configuration near the target chamber. The beams are imported into the final optical assemblies with special angles. In this paper, the transport beams arrangement design of SG-III facility is described. Firstly, the primary requirements of the transport beams arrangement in ICF target area system are given. Then the typical transport beam pathway from the MA output to the target chamber center is analyzed. The general layout, beams path length, and the parameters of transport mirrors are discussed for the transport beam arrangement.
    Type of Medium: Online Resource
    ISSN: 1662-8985
    URL: Issue
    Language: Unknown
    Publisher: Trans Tech Publications, Ltd.
    Publication Date: 2013
    detail.hit.zdb_id: 2265002-7
    Location Call Number Limitation Availability
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  • 2
    Online Resource
    Online Resource
    Trans Tech Publications, Ltd. ; 2014
    In:  Advanced Materials Research Vol. 945-949 ( 2014-6), p. 25-29
    In: Advanced Materials Research, Trans Tech Publications, Ltd., Vol. 945-949 ( 2014-6), p. 25-29
    Abstract: The top-down mode has been widely used in the cooperation design of complex products. It has great advantages over traditional down-up mode for such a complex system as target area for the ICF facility. By taking target area of National Ignition Facility (NIF) for example, this paper will present a process of three-dimensional cooperation design supported by a design platform. The parametric design software Creo (upgraded Pro/E) and PDM software Windchill PDMlink are seamlessly connected in the platform using the floating license. The whole design process of target area was based on top-down mode and driven by the skeleton models. The sub-assembly includes target chamber, beam transport system, and supporting system. The design has been concurrently accomplished by the system engineer and the sub-assembly engineers on the design platform. It has validated the feasibility of the cooperation design based on the top-down mode. It can technically support the realization of the cooperation design for NIF scaled high-power laser driver.
    Type of Medium: Online Resource
    ISSN: 1662-8985
    URL: Issue
    Language: Unknown
    Publisher: Trans Tech Publications, Ltd.
    Publication Date: 2014
    detail.hit.zdb_id: 2265002-7
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  • 3
    Online Resource
    Online Resource
    Trans Tech Publications, Ltd. ; 2013
    In:  Advanced Materials Research Vol. 765-767 ( 2013-9), p. 286-290
    In: Advanced Materials Research, Trans Tech Publications, Ltd., Vol. 765-767 ( 2013-9), p. 286-290
    Abstract: ShenGuang III (SGIII) facility will be constructed for research in Inertial Confinement Fusion. In this paper, general structure layout and design of target area of SGIII facility are described. Target area structure support system must provide a stable and precisely platform for optical elements before and during a shot. General structure layout must satisfy the mul-function consideration and logistic priority. The modularity and hardware commonality, cleanliness, and low neutron activation should be considered in the structural design of target area. The general structure layout of target area is rectangle. The target bay and the switchyard have the multi-layered layout to satisfy the demand of transporting beam lasers unidirectionally from south to north and supporting the optics modules and physical diagnostic instruments with different height. The passageways of population & goods flow of target area are designed to include the vertical channels between the different layers and the horizontal channels on the same layer. The opto-mechanical elements (OM) are classified as OM1, OM2, and OM3. The OM1 are the infrastructures. The OM2 include target chamber, the shell of final optics assemblies, the mirror frames, and the beam enclosures. The OM3 is line replaceable units that are attached to the OM2 on kinematic equivalent three-vee mounts.
    Type of Medium: Online Resource
    ISSN: 1662-8985
    URL: Issue
    Language: Unknown
    Publisher: Trans Tech Publications, Ltd.
    Publication Date: 2013
    detail.hit.zdb_id: 2265002-7
    Location Call Number Limitation Availability
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  • 4
    Online Resource
    Online Resource
    Trans Tech Publications, Ltd. ; 2012
    In:  Advanced Materials Research Vol. 479-481 ( 2012-2), p. 813-817
    In: Advanced Materials Research, Trans Tech Publications, Ltd., Vol. 479-481 ( 2012-2), p. 813-817
    Abstract: In order to satisfy the requirement of optical system positioning in SG-III facility, the target area support system should provide a stable platform for optical elements. The target area support system includes a rectangular target area building, target chamber support structures and a switchyard steel frame. The vibrational stability of the target area support system will be achieved through a combination of structure design, large modal damping material, and friction dampers. Finite element analysis has been used to evaluate the target area support system. The rotation drifts of the transport mirrors, the translation drifts of the focal lenses, and the translation drift of the target are obtained. The orientation errors of each beam in target area system are less than 12.9μm based on the relation between the beam orientation error and optics elements drifts. And the safety factors are 1.44 to 2.3. The design of the target area support system has satisfied the stability requirements.
    Type of Medium: Online Resource
    ISSN: 1662-8985
    URL: Issue
    Language: Unknown
    Publisher: Trans Tech Publications, Ltd.
    Publication Date: 2012
    detail.hit.zdb_id: 2265002-7
    Location Call Number Limitation Availability
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  • 5
    Online Resource
    Online Resource
    Trans Tech Publications, Ltd. ; 2013
    In:  Advanced Materials Research Vol. 765-767 ( 2013-9), p. 2288-2293
    In: Advanced Materials Research, Trans Tech Publications, Ltd., Vol. 765-767 ( 2013-9), p. 2288-2293
    Abstract: High Power Laser System (HPLS) is a large optical instrument, provides extremely high temperature and pressure conditions for inertial confinement fusion (ICF) and high-energy-physics research. It contains large number of optics and which would be easily damaged due to high fluence of laser power. The contamination control of optical surfaces has a great significance to ensure the performance of the system and decrease costs. This paper discussed the background and development of cleanliness control techniques in high power laser systems, including contamination induced laser damage (CILD), contamination inspection, optical surface cleanliness degradation and maintaining.
    Type of Medium: Online Resource
    ISSN: 1662-8985
    URL: Issue
    Language: Unknown
    Publisher: Trans Tech Publications, Ltd.
    Publication Date: 2013
    detail.hit.zdb_id: 2265002-7
    Location Call Number Limitation Availability
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