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Interference fit process development for the ITER Vacuum Vessel Gravity Support mock-up fabrication

机译:ITER真空容器重力支撑模型制造的过盈配合工艺开发

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摘要

The ITER Vacuum Vessel (VV) is supported by the nine VV gravity supports (VVGS) located on the cryostat toroidal pedestal. The VVGS is dual hinge type that fastened by dowel in the hinge-block hole. This paper presents the technical approach and result on the interference fitting process of the sleeve to the full-scaled VVGS mock-up. Since the sleeve and the hinge-block hole have under millimeter tolerance and around two-meter long length, the shrink fit method has been selected for the interference fitting of the sleeve into the hinge-block hole. The duration time for required shrinkage was expected by the simple analytical approach of natural convective heat transfer. The coolant charging method was suggested to secure a sufficient time for the process. The liquid nitrogen was charged to the handling fixture capped sleeve hole's cavity. As a result, the necessary contraction time was secured as thousands of seconds. Consequently, the interference fitting was successfully done for VVGS mock-up fabrication, and the technical solutions will be applied to the VVGS manufacturing.
机译:ITER真空容器(VV)由位于低温恒温器环形基座上的九个VV重力支撑(VVGS)支撑。 VVGS是双铰链型,通过销钉固定在铰链阻挡孔中。本文介绍了将套筒过盈配合到完整尺寸VVGS模型中的技术方法和结果。由于套筒和铰链孔的公差小于毫米,长度约为两米,因此选择了收缩配合方法将套筒过盈配合到铰链孔中。通过自然对流换热的简单分析方法可以预期所需收缩的持续时间。建议使用冷却液填充方法以确保该过程有足够的时间。将液氮充入装在操作夹具上的套筒孔腔中。结果,确保了必要的收缩时间为数千秒。因此,过盈配合成功地用于VVGS的模型制造,并且技术解决方案将应用于VVGS的制造。

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