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Effect of axial surface scores on rapid crack propagation in polyethylene pipe

机译:轴向表面刻痕对聚乙烯管中裂纹快速扩展的影响

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摘要

Above a critical pressure and below a critical temperature, an internally pressurised plastic pipe can fail by sustained, axial, Rapid Crack Propagation (RCP). The fracture resistance of ductile pipe-grade polyethylenes is greater under plane stress than under plane strain - a fact which has important implications for large, thick-walled pipes. Previous small scale ISO 13477 'S4' tests on pipe have shown that a sharp, axial score on the inside pipe surface can suppress plane stress deformation during RCP, significantly reducing the critical pressure and increasing the critical temperature. This paper reports further results from S4 tests on specimens with sharp internal and external notches of controlled depth. The results are discussed in terms of ability of surface scores and notches to attract and guide cracks under different modes of pipe wall deformation, as well as their effect of reducing the resistance of the material to them.
机译:高于临界压力且低于临界温度,内部受压的塑料管可能会因持续的轴向快速裂纹扩展(RCP)而失效。韧性管道级聚乙烯的抗断裂强度在平面应力下要比在平面应变下好-这对于大型厚壁管材具有重要意义。先前对管道进行的小规模ISO 13477'S4'测试表明,管道内表面上的尖锐的轴向刻痕可以抑制RCP期间的平面应力变形,从而显着降低临界压力并提高临界温度。本文报告了在带有可控深度的内部和外部刻痕的标本上进行的S4测试的进一步结果。根据表面刻痕和切口在不同管壁变形模式下吸引和引导裂纹的能力,以及降低材料对它们的抵抗力的效果,对结果进行了讨论。

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