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New cold-expansion process for end sizing and dimensional precision of inside geometry on both ends of line pipes

机译:新的冷胀工艺,用于最终尺寸和线管两端内部几何尺寸的精度

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摘要

Cold-expansion process has been developed for ensuring dimensional precision of inside geometry on the end portions of line pipe. For expanding the inside diameter of line pipe, a plug insertion method by cold press in the axial direction from the end side was finally adopted. As the nature of end sizing operation, only very small amount of cold plastic strain is applicable by cold expansion, and in order to realize the high dimensional precision of end portion a special geometry of the plug had to be designed. If a single-taper plug is adopted the expanded portion tends to overshoot and the inside diameter of expanded portion is larger than the plug diameter. The new plug design allows smooth contact of the inside surface expanded by the inlet portion of the plug on the bearing portion of the plug and no overshooting phenomenon occurs. One of the simplest designs of this type of plug for practical use is a double-taper plug, and finite element method was carried out in order to determine the practical range of the plug geometry referring to the deep insight on the mechanism of expansion process.
机译:已经开发出冷膨胀工艺以确保管线管道端部上的内部几何形状的尺寸精度。为了扩大管路的内径,最终采用了从端侧沿轴向冷压的塞子插入方法。由于端部施胶操作的性质,通过冷膨胀仅可施加极少量的冷塑性应变,并且为了实现端部的高尺寸精度,必须设计塞子的特殊几何形状。如果采用单锥度塞子,则扩张部分趋于过冲并且扩张部分的内径大于塞子直径。新的阀塞设计可使阀塞入口部分扩展的内表面与阀塞轴承部分平滑接触,不会发生过冲现象。这种类型的塞子最实用的最简单设计之一是双锥塞,并通过对膨胀过程机理的深入了解,采用有限元方法来确定塞子几何形状的实用范围。

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