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reviewer: 1
comments to the author
accepted
reviewer: 2
comments to the author
this paper focuses on study the effect of lamella thickness on bubble dissolution during rotomoulding process. however, the bubbles dissolution usually take place in the melted state, that is, in this work, maybe 190¡ãc and above. at this temperature, the lamella crystals of lldpe, with a melting point around 120-130¡ãc, have already disappeared. thus, the lamella thickness may not be the key factor of bubble dissolution.
in addition, in figure4, the areas of melting peaks present zn01 has a higher crystallinity, corresponding to its thicker lamella crystal. then, zn01 should have a small volume of amorphous region, in which the bubbles could be dissolved before melting. that is contradict to the author¡¯s conclution.
reviewer: 3
comments to the author
-it is true that little attention has been paid to the role of structure on bubble dissolution in rotomolding (in the open literature) and this paper will be a welcome addition.
-on page 4 5th line from top, the authors wrote " were grinded". while the word "grinded" is used in north america but "ground" in better as "coffee beans were ground" (about 1000 more google hits).
-on line 6 page 4.... parametes were
- figure 8, vertical coordinate bubber>>>>bubble
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we are pleased to share that the 2021 impact factor of polymer engineering and science increased to 2.573 and the 2021 citescore increased to 4.1, placing the journal in q2 in the area of polymers and plastics. we thank all our readers, authors, and reviewers for contributing to this increase.
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