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EVALUATION OF A NEW APPROACH FOR CHARACTERIZING ENVIRONMENTAL STRESS CRACKING RESISTANCE (ESCR) OF POLYETHYLENE

机译:表征聚乙烯的环境应力抗裂性的新方法的评估

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A study was conducted to develop a new approach for characterizing environmental stress cracking resistance (ESCR) of polyethylene (PE). The main objective is to reduce time for the testing, to be shorter than that required for the current standard ESCR tests. The new approach applies indentation to generate deflection in the central region of a PE plate, and uses time for crack generation under constant displacement, during the exposure to an aggressive agent, to characterize ESCR. The indentation introduces stretch to a central annular region around the indenter, in which PE molecules are increasingly oriented in the stretch direction. Since this annular region is subjected to bi-axial tension, exposure to aggressive agent increases its vulnerability to crack formation in the stretch direction. ESCR is characterized by the time needed for crack formation during the exposure to an aggressive agent (10% Igepal CO-630 solution). This paper presents the test set-up for the new approach, and compares time for the crack generation using this new approach with that from ASTM D1693, condition A.
机译:进行了一项研究以开发表征聚乙烯(PE)的耐环境应力开裂性(ESCR)的新方法。主要目的是减少测试时间,使其比当前标准ESCR测试所需的时间短。新方法采用压痕以在PE板的中心区域产生挠曲,并在暴露于侵蚀剂的过程中利用时间在恒定位移下产生裂纹,以表征ESCR。压痕将拉伸引入到压头周围的中央环形区域,其中PE分子在拉伸方向上越来越多地定向。由于该环形区域受到双轴张力,因此暴露于侵蚀剂会增加其在拉伸方向上形成裂纹的脆弱性。 ESCR的特征是暴露于侵蚀剂(10%Igepal CO-630溶液)期间形成裂纹所需的时间。本文介绍了该新方法的测试设置,并比较了使用该新方法与ASTM D1693(条件A)中产生裂纹的时间。

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