Advances in Biomedical Polymers and Composites: Materials and Applications
Front Cover -- Advances in Biomedical Polymers and Composites -- Copyright Page -- Contents -- List of contributors -- 1 Introduction to biomedical polymer and composites -- 1.1 Introduction -- 1.2 Classification of polymers and composites -- 1.3 Fabrication techniques polymer composites -- 1.3.1 El...
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Weitere Verfasser: | , , , , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
San Diego
Elsevier
[2023]
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Schlagworte: | |
Online-Zugang: | BTU01 |
Zusammenfassung: | Front Cover -- Advances in Biomedical Polymers and Composites -- Copyright Page -- Contents -- List of contributors -- 1 Introduction to biomedical polymer and composites -- 1.1 Introduction -- 1.2 Classification of polymers and composites -- 1.3 Fabrication techniques polymer composites -- 1.3.1 Electrospinning -- 1.3.2 Melt extrusion -- 1.3.3 Solution mixing -- 1.3.4 Latex technology -- 1.4 Polymers and their composites for biomedical applications -- 1.4.1 Natural polymers and their composites -- 1.4.1.1 Collagen -- 1.4.1.2 Silk -- 1.4.1.3 Hyaluronic acid -- 1.4.1.4 Chitosan -- 1.4.1.5 Cellulose -- 1.4.2 Synthetic polymers and their composites -- 1.4.2.1 Polycaprolactone -- 1.4.2.2 Poly(l-lactic acid) -- 1.4.2.3 Poly(methyl methacrylate) -- 1.4.2.4 Poly(lactic-co-glycolic) acid -- 1.4.2.5 Polyvinylidene fluoride -- 1.4.2.6 Poly(ethylene glycol) -- 1.4.3 Gas-permeable polymeric membranes -- 1.4.4 Other polymeric composites -- 1.5 Challenges and future trends -- 1.6 Conclusion -- References -- 2 Foundation of composites -- 2.1 Introduction -- 2.2 Classification of composites -- 2.3 History of composites -- 2.3.1 Fiberglass in 20th century -- 2.3.2 Composite material in our daily life -- 2.4 Why composites? -- 2.5 Advantages of composites -- 2.5.1 Design flexibility -- 2.5.2 Light weight -- 2.5.3 High strength -- 2.5.4 Strength related to weight -- 2.5.5 Corrosion resistance -- 2.5.6 High-impact strength -- 2.5.7 Consolidation of many parts -- 2.5.8 Dimensional stability -- 2.5.9 Nonconductive -- 2.5.10 Nonmagnetic -- 2.5.11 Radar transparent -- 2.5.12 Low thermal conductivity -- 2.5.13 Durable -- 2.6 Applications of composites -- 2.6.1 Aerospace/aircrafts -- 2.6.2 Appliances -- 2.6.3 Automobile and transportation -- 2.6.4 Infrastructure -- 2.6.5 Environmental -- 2.6.6 Applications of electricity -- 2.7 Limitation of composites. |
Beschreibung: | Description based on publisher supplied metadata and other sources |
Beschreibung: | 1 Online-Ressource (xxviii, 814 Seiten) Illustrationen, Diagramme |
ISBN: | 9780323885256 |
Internformat
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520 | 3 | |a Front Cover -- Advances in Biomedical Polymers and Composites -- Copyright Page -- Contents -- List of contributors -- 1 Introduction to biomedical polymer and composites -- 1.1 Introduction -- 1.2 Classification of polymers and composites -- 1.3 Fabrication techniques polymer composites -- 1.3.1 Electrospinning -- 1.3.2 Melt extrusion -- 1.3.3 Solution mixing -- 1.3.4 Latex technology -- 1.4 Polymers and their composites for biomedical applications -- 1.4.1 Natural polymers and their composites -- 1.4.1.1 Collagen -- 1.4.1.2 Silk -- 1.4.1.3 Hyaluronic acid -- 1.4.1.4 Chitosan -- 1.4.1.5 Cellulose -- 1.4.2 Synthetic polymers and their composites -- 1.4.2.1 Polycaprolactone -- 1.4.2.2 Poly(l-lactic acid) -- 1.4.2.3 Poly(methyl methacrylate) -- 1.4.2.4 Poly(lactic-co-glycolic) acid -- 1.4.2.5 Polyvinylidene fluoride -- 1.4.2.6 Poly(ethylene glycol) -- 1.4.3 Gas-permeable polymeric membranes -- 1.4.4 Other polymeric composites -- 1.5 Challenges and future trends -- 1.6 Conclusion -- References -- 2 Foundation of composites -- 2.1 Introduction -- 2.2 Classification of composites -- 2.3 History of composites -- 2.3.1 Fiberglass in 20th century -- 2.3.2 Composite material in our daily life -- 2.4 Why composites? -- 2.5 Advantages of composites -- 2.5.1 Design flexibility -- 2.5.2 Light weight -- 2.5.3 High strength -- 2.5.4 Strength related to weight -- 2.5.5 Corrosion resistance -- 2.5.6 High-impact strength -- 2.5.7 Consolidation of many parts -- 2.5.8 Dimensional stability -- 2.5.9 Nonconductive -- 2.5.10 Nonmagnetic -- 2.5.11 Radar transparent -- 2.5.12 Low thermal conductivity -- 2.5.13 Durable -- 2.6 Applications of composites -- 2.6.1 Aerospace/aircrafts -- 2.6.2 Appliances -- 2.6.3 Automobile and transportation -- 2.6.4 Infrastructure -- 2.6.5 Environmental -- 2.6.6 Applications of electricity -- 2.7 Limitation of composites. | |
653 | 0 | |a Electronic books | |
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author2 | Pal, Kunal Verma, Sarika Datta, Pallab Barui, Ananya Hashmi, S. A. R. Srivastava, Avanish Kumar |
author2_role | edt edt edt edt edt edt |
author2_variant | k p kp s v sv p d pd a b ab s a r h sar sarh a k s ak aks |
author_facet | Pal, Kunal Verma, Sarika Datta, Pallab Barui, Ananya Hashmi, S. A. R. Srivastava, Avanish Kumar |
building | Verbundindex |
bvnumber | BV049091482 |
collection | ZDB-33-ESD |
ctrlnum | (OCoLC)1418710372 (DE-599)KEP081955871 |
dewey-full | 610.284 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 610 - Medicine and health |
dewey-raw | 610.284 |
dewey-search | 610.284 |
dewey-sort | 3610.284 |
dewey-tens | 610 - Medicine and health |
discipline | Medizin |
discipline_str_mv | Medizin |
format | Electronic eBook |
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id | DE-604.BV049091482 |
illustrated | Not Illustrated |
index_date | 2024-07-03T22:30:01Z |
indexdate | 2024-07-10T09:55:05Z |
institution | BVB |
isbn | 9780323885256 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-034353196 |
oclc_num | 1418710372 |
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owner | DE-634 |
owner_facet | DE-634 |
physical | 1 Online-Ressource (xxviii, 814 Seiten) Illustrationen, Diagramme |
psigel | ZDB-33-ESD ZDB-33-ESD BTU_Kauf |
publishDate | 2023 |
publishDateSearch | 2023 |
publishDateSort | 2023 |
publisher | Elsevier |
record_format | marc |
spelling | Advances in Biomedical Polymers and Composites Materials and Applications edited by Pal Kunal, Sarika Verma, Pallab Datta, Ananya Barui, S.A. R. Hashmi, Avanish Kumar Srivastava San Diego Elsevier [2023] 1 Online-Ressource (xxviii, 814 Seiten) Illustrationen, Diagramme txt rdacontent c rdamedia cr rdacarrier Description based on publisher supplied metadata and other sources Front Cover -- Advances in Biomedical Polymers and Composites -- Copyright Page -- Contents -- List of contributors -- 1 Introduction to biomedical polymer and composites -- 1.1 Introduction -- 1.2 Classification of polymers and composites -- 1.3 Fabrication techniques polymer composites -- 1.3.1 Electrospinning -- 1.3.2 Melt extrusion -- 1.3.3 Solution mixing -- 1.3.4 Latex technology -- 1.4 Polymers and their composites for biomedical applications -- 1.4.1 Natural polymers and their composites -- 1.4.1.1 Collagen -- 1.4.1.2 Silk -- 1.4.1.3 Hyaluronic acid -- 1.4.1.4 Chitosan -- 1.4.1.5 Cellulose -- 1.4.2 Synthetic polymers and their composites -- 1.4.2.1 Polycaprolactone -- 1.4.2.2 Poly(l-lactic acid) -- 1.4.2.3 Poly(methyl methacrylate) -- 1.4.2.4 Poly(lactic-co-glycolic) acid -- 1.4.2.5 Polyvinylidene fluoride -- 1.4.2.6 Poly(ethylene glycol) -- 1.4.3 Gas-permeable polymeric membranes -- 1.4.4 Other polymeric composites -- 1.5 Challenges and future trends -- 1.6 Conclusion -- References -- 2 Foundation of composites -- 2.1 Introduction -- 2.2 Classification of composites -- 2.3 History of composites -- 2.3.1 Fiberglass in 20th century -- 2.3.2 Composite material in our daily life -- 2.4 Why composites? -- 2.5 Advantages of composites -- 2.5.1 Design flexibility -- 2.5.2 Light weight -- 2.5.3 High strength -- 2.5.4 Strength related to weight -- 2.5.5 Corrosion resistance -- 2.5.6 High-impact strength -- 2.5.7 Consolidation of many parts -- 2.5.8 Dimensional stability -- 2.5.9 Nonconductive -- 2.5.10 Nonmagnetic -- 2.5.11 Radar transparent -- 2.5.12 Low thermal conductivity -- 2.5.13 Durable -- 2.6 Applications of composites -- 2.6.1 Aerospace/aircrafts -- 2.6.2 Appliances -- 2.6.3 Automobile and transportation -- 2.6.4 Infrastructure -- 2.6.5 Environmental -- 2.6.6 Applications of electricity -- 2.7 Limitation of composites. Electronic books Pal, Kunal edt Verma, Sarika edt Datta, Pallab edt Barui, Ananya edt Hashmi, S. A. R. edt Srivastava, Avanish Kumar edt Erscheint auch als Druck-Ausgabe 9780323885249 |
spellingShingle | Advances in Biomedical Polymers and Composites Materials and Applications |
title | Advances in Biomedical Polymers and Composites Materials and Applications |
title_auth | Advances in Biomedical Polymers and Composites Materials and Applications |
title_exact_search | Advances in Biomedical Polymers and Composites Materials and Applications |
title_exact_search_txtP | Advances in Biomedical Polymers and Composites Materials and Applications |
title_full | Advances in Biomedical Polymers and Composites Materials and Applications edited by Pal Kunal, Sarika Verma, Pallab Datta, Ananya Barui, S.A. R. Hashmi, Avanish Kumar Srivastava |
title_fullStr | Advances in Biomedical Polymers and Composites Materials and Applications edited by Pal Kunal, Sarika Verma, Pallab Datta, Ananya Barui, S.A. R. Hashmi, Avanish Kumar Srivastava |
title_full_unstemmed | Advances in Biomedical Polymers and Composites Materials and Applications edited by Pal Kunal, Sarika Verma, Pallab Datta, Ananya Barui, S.A. R. Hashmi, Avanish Kumar Srivastava |
title_short | Advances in Biomedical Polymers and Composites |
title_sort | advances in biomedical polymers and composites materials and applications |
title_sub | Materials and Applications |
work_keys_str_mv | AT palkunal advancesinbiomedicalpolymersandcompositesmaterialsandapplications AT vermasarika advancesinbiomedicalpolymersandcompositesmaterialsandapplications AT dattapallab advancesinbiomedicalpolymersandcompositesmaterialsandapplications AT baruiananya advancesinbiomedicalpolymersandcompositesmaterialsandapplications AT hashmisar advancesinbiomedicalpolymersandcompositesmaterialsandapplications AT srivastavaavanishkumar advancesinbiomedicalpolymersandcompositesmaterialsandapplications |