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首页> 外文期刊>Macromolecular symposia >Analysis of Molecular and Morphological Effects on Slow Crack Growth in Modern PE Pipe Grades by Cyclic Fracture Mechanics Tests
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Analysis of Molecular and Morphological Effects on Slow Crack Growth in Modern PE Pipe Grades by Cyclic Fracture Mechanics Tests

机译:用循环断裂力学测试分析现代PE管材中缓慢裂纹扩展的分子和形态学影响

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摘要

Three different polyethylene (PE) pipe grades as well as three different lots of one of the grades were investigated by cyclic tests with cracked round bar (CRB) specimens, concerning resistance to slow crack growth. To enhance the test sensibility and proof its applicability for a quick quality assurance method various molecular and morphological characterizations on compression molded plates were carried out, with special attention on the influence of molecular and morphological differences, as well as lot to lot variations on the resistance to slow crack growth. The cyclic CRB tests allowed a ranking of the different pipe grades and lots with short testing times per material and testing machine, as a function of failure time as well as of crack initiation time with further reduction of testing time of about 50%. Moreover the ranking corresponded to the expectations based on the molecular and morphological properties of the materials, where only minor changes in the molecular mass distribution and the co-monomer concentration in case of lot to lot variations were proofed reliably.
机译:通过对带裂纹的圆棒(CRB)标本进行循环测试,研究了三种不同的聚乙烯(PE)管等级以及其中一种等级的三种不同批次,涉及对慢速裂纹扩展的抵抗力。为了提高测试灵敏度并证明其适用于快速质量保证方法,在压模板上进行了各种分子和形态表征,特别注意了分子和形态差异的影响以及批间差异对电阻的影响减慢裂纹的增长。循环CRB测试允许对每种材料和测试机的测试时间短的不同管材等级和批次进行排名,这是故障时间和裂纹萌生时间的函数,测试时间进一步减少了约50%。此外,该等级与基于材料的分子和形态特性的期望相对应,其中可靠地证明了在批间变化的情况下,分子质量分布和共聚单体浓度只有很小的变化。

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