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- W2007968337 abstract "AbstractAtomic force microscopy (AFM) in tapping mode has been used to characterise surface damage induced during the scratch test in ethylene - propylene diblock copolymers. The AFM enabled prediction of the deformation resistance of two different types of copolymer. The undeformed surface microstructure of the two copolymers (designated EP-M and EP-TC) was distinguished by differences in arrangement (regular or irregular) of fibrils, depending on their melt flow conditions. Type EP-M is a copolymer with long chains obtained by low melt flow rate, whereas EP-TC is a short chain copolymer with high melt flow rate. The microfibrils in both copolymers exhibited small kinks/nodules. Atomic force nanoscale images provided details of microfibrils containing molecular chains. The long chain EP-M copolymer exhibited non-uniformity in the alignment of molecular chains in comparison with short chain EP-TC. Surface deformation induced by the scratch test led to the formation of parabolic scratch tracks. The average..." @default.
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- W2007968337 date "2003-10-01" @default.
- W2007968337 modified "2023-09-26" @default.
- W2007968337 title "Atomic force microscopy characterisation of mechanically induced surface damage in ethylene-propylene diblock copolymeric materials" @default.
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- W2007968337 doi "https://doi.org/10.1179/026708303225005881" @default.
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