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Network polymers form enormous, complex, chemically bonded structures that do not melt without undergoing chemical decomposition.
This study is concerned with increasing the performance of adhesively bonded structures.
Adhesively bonded structures are increasingly used in the industry: aerospace, aeronautics, automotive and nautical fields.
A great attention was paid to edge effects classical from adhesively bonded structures.
These form triple hydrogen bonded structures and promote stable one phase blend formation.
Thin bonded structures having several geometric configurations under different load conditions have been considered.
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All polymorphs contain the same O H···O=C bonded connectivity motif as 1-I [graph set notation C11 8)], but the resulting extended 1D H-bonded structures differ fundamentally from one another geometrically.
In contrast, no clear trend for the Si = O-bonded structures is discernible because the O atom tends to create Si-O-Si bonds in some cases and -OH groups, which reduce the band gap energy, in other cases.
types of H-bonded structures of barbiturates (Ref. [23]).
The hydrogen-bonded structures in the system are discussed.
The competition between alternative H-bonded structures (HBSs) is an important aspect of crystal polymorphism.
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