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High heat flux test results for a thermal break DEMO divertor target and subsequent design and manufacture development

机译:高热通量测试结果,用于热折断DEMO偏滤器目标以及后续的设计和制造开发

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This paper focuses on the development of the water-cooled divertor target concept known as Thermal Break, which was carried out in two phases. In Phase 1, six small scale mock-ups were fabricated and subjected to high heat flux (HHF) testing of up to 25 MW/m(2) and thermal cycling of up to 500 cycles at 20 MW/m(2). All six mockups survived the campaign and maintained 20 MW/m(2) heat exhaust capability. Detailed examination of mockups was carried out to understand the damage mechanisms. One mock-up, which was tested beyond its design intent at 500 cycles, shows signs of progressive damage. Potential damage modes were identified and influenced subsequent Phase 2 mock-up design. Although there are signs of tungsten surface cracking, the predominant damage mode is not by "deep cracking" but substantial permanent deformation in the interlayer features.Therefore, in Phase 2 the manufacturing procedure was updated, the interlayer grooves were given stressre-lieving radii which have significantly reduced the interlayer plastic strain range. Interlayer design parameters were selected following the use of response surface-based design search and optimization. Mock-ups of the Phase 2 design have been manufactured and HHF testing is planned within 2018.
机译:本文着重于水冷式分流器目标概念的开发,即热中断,该过程分两个阶段进行。在阶段1中,制造了六个小型模型,并经受了高达25 MW / m(2)的高热通量(HHF)测试和以20 MW / m(2)的多达500个循环的热循环。所有六个样机均在竞选中幸存下来,并保持20 MW / m(2)的排热能力。进行了详细的模型检查,以了解损坏的机理。在500个周期内对一个模型进行了超出其设计意图的测试,显示出逐渐损坏的迹象。确定了潜在的损坏模式,并影响了后续的第二阶段模型设计。尽管有钨表面开裂的迹象,但主要的破坏方式不是“深开裂”而是中间层特征的实质性永久变形。因此,在第二阶段,更新了制造工艺,给中间层凹槽赋予了消除应力的半径,大大减小了层间塑性应变范围。在使用基于响应曲面的设计搜索和优化之后,选择了层间设计参数。已制造出第二阶段设计的模型,并计划在2018年内进行HHF测试。

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