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Coupled FEM-DBEM method to assess crack growth in magnet system of Wendelstein 7-X

机译:耦合FEM-DBEM方法评估Wendelstein 7-X磁体系统中的裂纹扩展

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摘要

The fivefold symmetric modular stellarator Wendelstein 7-X (W7-X) is currently underconstruction in Greifswald, Germany. The superconducting coils of the magnet system are bolted onto a centralsupport ring and interconnected with five so-called lateral support elements (LSEs) per half module. Afterwelding of the LSE hollow boxes to the coil cases, cracks were found in the vicinity of the welds that couldpotentially limit the allowed number N of electromagnetic (EM) load cycles of the machine. In response to theappearance of first cracks during assembly, the Stress Intensity Factors (SIFs) were calculated andcorresponding crack growth rates of theoretical semi-circular cracks of measured sizes in potentially criticalposition and orientation were predicted using Paris’ law, whose parameters were calibrated in fatigue tests atcryogenic temperature. In this paper the Dual Boundary Element Method (DBEM) is applied in a coupledFEM-DBEM approach to analyze the propagation of multiple cracks with different shapes. For this purpose,the crack path is assessed with the Minimum Strain Energy density criterion and SIFs are calculated by the Jintegralapproach. The Finite Element Method (FEM) is adopted to model, using the commercial codes Ansysor Abaqus;, the overall component whereas the submodel analysis, in the volume surrounding the cracked area,is performed by FEM (“FEM-FEM approach”) or alternatively by DBEM (“FEM-DBEM approach”). The“FEM-FEM approach” considers a FEM submodel, that is extracted from the FEM global model; the latterprovide the boundary conditions for the submodel. Such approach is affected by some restrictions in the crackpropagation phase, whereas, with the “FEM-DBEM approach”, the crack propagation simulation isstraightforward. In this case the submodel is created in a DBEM environment with boundary conditionsprovided by the global FEM analysis; then the crack is introduced and a crack propagation analysis has beenperformed to evaluate the effects of the crack shape and of the presence of nearby cracks on the allowednumber of EM load cycles.
机译:五重对称模块化恒星器Wendelstein 7-X(W7-X)目前在德国Greifswald正在建设中。磁体系统的超导线圈用螺栓固定在中央支撑环上,并与每个半模块的五个所谓的侧向支撑元件(LSE)互连。将LSE中空箱焊接到线圈箱后,在焊缝附近发现了裂纹,这可能会限制机器的电磁(EM)负载循环的允许次数N。针对装配过程中出现的第一道裂纹,计算了应力强度因子(SIF),并使用巴黎定律预测了在潜在临界位置和方向上测量尺寸的理论半圆形裂纹的相应裂纹增长率,并对其参数进行了疲劳校准。测试致癌温度。本文将双边界元方法(DBEM)应用于耦合FEM-DBEM方法中,以分析具有不同形状的多个裂纹的扩展。为此,使用最小应变能密度标准评估裂纹路径,并通过Jintegralapproach计算SIF。采用有限元方法(FEM)进行建模,使用商业代码Ansysor Abaqus;对整个组件进行建模,而对裂纹区域周围的体积进行子模型分析则通过FEM(“ FEM-FEM方法”)进行,或者由DBEM(“ FEM-DBEM方法”)提供。 “ FEM-FEM方法”考虑了一个FEM子模型,该子模型是从FEM全局模型中提取的;后者为子模型提供了边界条件。这种方法受裂纹扩展阶段的某些限制的影响,而采用“ FEM-DBEM方法”时,裂纹扩展模拟是很简单的。在这种情况下,子模型是在具有全局FEM分析提供的边界条件的DBEM环境中创建的;然后引入裂纹,并进行裂纹扩展分析,以评估裂纹形状和附近裂纹的存在对允许的EM载荷循环的影响。

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