Nanomaterials in architecture and art conservation:
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Singapore
Pan Stanford Publishing
[2018]
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | xviii, 457 pages Illustrationen, Diagramme, Karten 24 cm |
ISBN: | 9814800260 9789814800266 |
Internformat
MARC
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653 | 0 | |a Nanostructured materials | |
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Datensatz im Suchindex
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adam_text | Contents Preface Acknowledgements Xlll XV 1 Introduction Gerald Ziegenbalg 2 Historic Substrate Characterisation and Modelling Johannes Weber, Miloš Drdácký, and Gerald Ziegenbalg 2.1 Deterioration of Stone and Historic Mortars 2.1.1 Natural Stone: Introduction 2.1.2 Classification of Rocks 2.1.3 Weathering of Building Stones 2.1.3.1 General remarks 2.1.3.2 Weathering phenomena and processes 2.1.3.3 Principle conclusions and issues of conservation 2.1.4 Defects and Failures on Historical Mortar 2.1.4.1 Surface layers 2.1.4.2 Defects and failures: cracks 2.1.4.3 Deformations 2.1.4.4 Detachment of layers from the substrate typically combined with deformation 2.1.4.5 Detachment, or loss of adhesion of a layer to the substrate 2.1.4.6 Damage due to material degradation 2.1.4.7 Damage due to loss of material 2.2 Physical Properties and Their Characterisation 2.2.1 Testing Material and Test Specimens 5 6 8 8 11 18 21 24 24 27 29 30 32 34 35 36
vi I Contents 2.2.2 Mechanical Characteristics 2.2.2.1 Non-standard destructive testing of the strength characteristics of historical substrates 2.2.2.2 Non-destructive testing of mechanical characteristics 2.2.3 Other Physical Characteristics 2.3 Physical Modelling and Testing of Consolidation Effects 2.3.1 Assessment of Consolidation Effects 2.3.2 Test Specimens for Material Testing 2.3.3 Laboratory Tests of Consolidation Effects on Stone 2.3.4 Laboratory Tests of Consolidation Effects on Mortar 2.3.5 Laboratory Testing of Consolidation Effects on Compacted Sand or Crushed Stone 2.3.6 In situ Testing of Consolidation Effects on Stone and Plaster 2.4 Microscopy as a Tool for the Characterisation of Materials 2.4.1 Introduction 2.4.2 Light Microscopy 2.4.3 Scanning Electron Microscopy 2.4.4 Conclusion 2.5 Chemical Composition, Chemical Reactivity and Their Determination 2.5.1 Introduction 2.5.2 Determination of theSalt Content of Stone, Mortar and Plaster 2.5.3 Quantitative Mortar Analyses 3 ձ 38 43 49 58 60 65 71 74 76 79 79 80 85 90 91 91 95 99 Inorganic Binders andConsolidants: A Critical Review Gerald Ziegenbalg,Zuzana Slížková, and Radek Ševčík 107 3.1 Introduction 3.2 Characteristics of Aqueous Calcium Hydroxide Suspensions 3.2.1 Air Lime 3.2.2 Hydraulic Lime ļQ7 լԸց ձձը
Contents 4 3.3 Dissolved Inorganic Components Used for Consolidation 3.3.1 Lime Water 3.3.2 Barium Hydroxide 3.4 Consolidants Based on Silicates 3.4.1 Introduction 3.4.2 Fluorosilicates 3.4.3 Soluble Alkali Metal Silicates 3.4.4 Colloidal Silica 3.5 Other Consolidants 3.5.1 Ammonium Phosphates 3.5.2 Ammonium Oxalate 3.5.3 Tartaric Acid 3.5.4 Biomineralisation 3.6 Nanomaterials 3.7 Conclusion 116 116 119 121 121 122 122 124 125 125 126 127 127 128 129 Fundamentals of Nanolime 131 Gerald Ziegenbalg, Claudia Dietze, and Gabriele Ziegenbalg 5 4.1 Introduction 4.2 Physico-Chemical Properties of Calcium Hydroxide Nanosols 4.2.1 Sedimentation Stability 4.2.2 Penetration Behaviour of Calcium Hydroxide Nanosols 4.3 Carbonation of Nanolime Dispersions 4.3.1 Introduction 4.3.2 Carbonation of Lime in Aqueous Dispersions 4.3.3 Carbonation of Alcoholic Calcium Hydroxide Dispersions 4.3.3.1 Solubility effects 4.3.3.2 Course of carbonation 4.4 Conclusion 131 155 155 157 163 Laboratory Characterisation of the Action of Nanolime 167 133 143 144 148 148 150 Arnulf Dä hne, Christoph Herm, and Gerald Ziegenbalg 5.1 Introduction 5.2 Favourable Laboratory Tests 167 168 vii
viii Contents 5.2.1 Modification of CaLoSiL® Nanosols Matching Specific Conservation Demands of Deteriorated Plaster and Stucco Work 5.2.2 Structural Strengthening of Mortar 5.2.3 Consolidation of Cracks and Gaps 5.3 Conclusion 6 The Combination of Nanolime Dispersions with Silicic Acid Esters 171 172 176 180 181 Małgorzata Dobrzynska-Musiela, Ewa Piaszczynski, Elisabeth Mascha, Jaroslav Valach, Gerald Ziegenbalg, and Claudia Dietze 6.1 Introduction 6.2 Fundamentals of the Application of SAEs 6.3 Possibilities for the Combination of SAEs and Nanolime 6.3.1 Fundamental Laboratory Investigations to Characterise the Use of Homogeneous Mixtures of SAEs and Nanolime 6.3.2 Fundamental Laboratory Investigations to Characterise the Consecutive Application of Nanolime and SAEs 6.3.2.1 Investigations to consolidate disintegrated natural stone: Römer tuff, Nordhessischer tuff and Baumberger sandstone 6.3.2.2 Investigations to consolidate disintegrated natural stone: Źerkowice sandstone, Gotland sandstone and Pińczów limestone 7 Practical Applications Karol Bayer, Dana Macounová, Małgorzata Dobrzynska-Musiela, Luboš Machačko, Ewa Piaszczynski, Nadine Wilhelm, Verena Wolf, Arnulf Dähne, Christoph Herm, Thomas Köberle, Zuzana Slížková, Jan Vojtechovsky, and Radek Ševčík 7.1 Introduction 181 183 188 189 192 197 203 2X5 r
Contents I ix 7.2 Kutná Hora Angel 7.2.1 Object: Basic Description 7.2.2 Stone Characterisation 7.2.3 Condition Assessment: Damage Phenomena 7.2.4 Condition Assessment: Scientific Investigations 7.2.4.1 Determination of water and ethanol absorption by Karsten tube 7.2A.2 Drilling resistance measurement 7.2.4.3 Ultrasound transmission measurement 7.2.4.4 Microscopic survey of limestone surface and repair mortar 7.2.4.5 Basic stone properties related to its porosity 7.2.5 Summary of the Statue Condition and Results of Scientific Investigations 7.2.6 The Conservation Process and the Main Conservation Requirements 7.2.7 Consolidation Testing of the ReferenceSamples 7.2.7.1 Penetration depth 7.2.7.2 Carbonation rate 7.2.7.3 Mechanical properties 7.2.7 A Study of microstructure 7.2.8 Summary of Consolidation Testing on Reference Samples 7.2.9 Conservation Treatment and Restoration of the Angel Statue 7.3 The Facade of the Church of the Visitation Order in Warsaw 7.3.1 Introduction 7.3.2 Description of the Object 7.3.3 Technique and Technology 7.3.4 Program of the Pre-Treatment Investigation: Results of Petrographic Analysis of theMortars 7.3.4.1 St. Augustine s statue 7.3.5 Condition of the Stucco Work 7.3.6 Plan of Conservation Treatment 7.3.7 Conservation Treatment 216 216 216 217 219 219 223 224 226 228 229 230 230 232 232 234 235 236 237 241 243 244 245 246 248 250 251 254
7.3.8 Assessment of Treatment Results The Western Elevation of St. John’s Cathedral in Toruń 7.4.1 Introduction 7.4.2 Object Description 7.4.3 Technique and Technology 7.4.4 Condition 7.4.5 Program of the Pre- and Post-Treatment Investigation 7.4.6 Investigation Results 7.4.6.1 Identification of the materials 7.4.6.2 Absorbability test of plasters with ethanol and CaLoSiL® E25 7.4.6.3 Porosimetry 7.4.6.4 Strength in bending flexular strength 7.4.6.5 Peeling test summary 7A.6.6 Drilling resistance summary 7.4.6.7 Investigation into optimisation of the application method 7.4.7 Plan of Conservation Treatment 7.4.8 Conservation Treatment 7.4.9 Assessment of the Treatment Results Dolní Kounice 7.5.1 Introduction 7.5.2 Characterisation of Preserved Plasters and Mortars 7.5.3 Condition of the Preserved Plasters 7.5.4 Tests of Consolidation Agents: 1st Stage 7.5.5 Subjective Assessment of the Consolidation Agent Tests Tests of Consolidation Agents: 2nd Stage Subjective Assessment of Tests with CaLoSiL® E25 Nanosol 7.5.6 7.5.7 7.5.8 7.5.9 Assessment of Consolidation Tests Overall Reinforcement of Plasters 7.5.10 Formation of a White Haze 7.5.11 Conclusion Xanten Cathedral 7.6.1 Introduction 7.6.2 Damage Characteristics 262 268 268 270 271 271 2 73 276 276 277 278 280 282 283 284 286 288 291 293 293 294 296 296 297 299 299 301 302 3о3 306 307 307 309
Contents xi 7.7 7.8 7.9 7.10 7.11 7.6.3 Characteristics of the Different Stones 7.6.3.1 Römer tuff 7.6.3.2 Drachenfels trachyte 7.6.3.3 Baumberger limestone 7.6.4 Laboratory Testing 7.6.4.1 Sandwich-form sample 7.6.4.2 Cubic samples 7.6.5 The Conservation Concept 7.6.6 Assessment of the Conservation 7.6.7 Summary and Conclusions Church Schmidtheim 7.7.1 Introduction 7.7.2 Damage Characteristics 7.7.3 The Conservation Concept 7.7.4 The Conservation Procedure 7.7.4.1 Laboratory testing 7.7.4.2 Conservation treatment 7.7.5 Conclusions Aachen Orsbach 7.8.1 Damage Assessment 7.8.2 Characteristics of Mortar and Stone 7.8.3 The Conservation Concept 7.8.4 Conservation 7.8.5 Assessment 7.8.6 Conclusions and Summary Megalopolis 7.9.1 Condition Assessment: Damage Phenomena 7.9.2 The Conservation Concept 7.9.3 The Conservation Procedure 7.9.3.1 Removal of biological growth 7.9.4 Conclusions Herculaneum 7.10.1 Basic Description of the Object 7.10.2 Test Fields 7.10.3 Trial Conservation 7.10.4 Evaluation 7.10.5 Conclusion Statue of Saint Florian 309 310 313 314 314 315 315 319 322 330 331 331 332 336 337 337 339 343 344 345 347 348 349 350 356 357 359 360 360 360 365 365 365 368 368 373 375 378
xii Contents 7.12 Leuben Castle 7.12.1 Basic Description of the Object 7.12.2 Test Fields 7.12.2.1 Test field 1: stuccoed facade (cf. Fig. 7.145) 7.12.2.2 Test field 2: interior wall (cf. Fig. 7.146) 7.12.3 Preliminary Tests 7.12.4 Trial Conservation 7.12.4.1 Test field 1 (see Fig. 7.147) 7.12.4.2 Test field 2 (see Fig. 7.148) 7.12.5 Evaluation 7.12.5.1 Test field 1 7.12.5.2 Test field 2 7.13 Dahlen Castle 7.13.1 Basic Description of the Object 7.13.2 Test Field 7.13.3 Preliminary Tests 7.13.4 Trial Conservation 7.13.5 Evaluation 7.14 Consolidation of Paint Layer with Lime Nanosols 7.14.1 Introduction 7.14.2 Trials on Test Panels 7.14.2.1 Selection of a suitable consolidant 7.14.2.2 Method of application 7.14.2.3 Tests in situ 7.14.3 Conclusion 8 Nanolime: Recent Publications and Application Recommendations 383 383 384 384 385 386 387 387 388 390 390 391 392 392 393 395 396 398 398 398 399 399 399 403 406 409 Gerald Ziegenbalg and Claudia Dietze 8.1 Recent Publications 8.2 Application Recommendations 9 Summary References Index 409 414 425 429 447
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id | DE-604.BV045459756 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:18:39Z |
institution | BVB |
isbn | 9814800260 9789814800266 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-030845016 |
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owner_facet | DE-473 DE-BY-UBG DE-525 |
physical | xviii, 457 pages Illustrationen, Diagramme, Karten 24 cm |
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publisher | Pan Stanford Publishing |
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spelling | Nanomaterials in architecture and art conservation edited by Gerald Ziegenbalg, Miloš Drdácký, Claudia Dietze, Dirk Schuch Singapore Pan Stanford Publishing [2018] © 2018 xviii, 457 pages Illustrationen, Diagramme, Karten 24 cm txt rdacontent sti rdacontent n rdamedia nc rdacarrier Nanostrukturiertes Material (DE-588)4342626-8 gnd rswk-swf Konservierung (DE-588)4114279-2 gnd rswk-swf Stein (DE-588)4183014-3 gnd rswk-swf Denkmalschutz (DE-588)4011457-0 gnd rswk-swf Nanostructured materials Architecture / Conservation and restoration Architecture / Environmental aspects Stein (DE-588)4183014-3 s Denkmalschutz (DE-588)4011457-0 s Konservierung (DE-588)4114279-2 s Nanostrukturiertes Material (DE-588)4342626-8 s DE-604 Ziegenbalg, Gerald 1960- (DE-588)121039463 edt Drdácký, Miloš 1945- Sonstige (DE-588)1179237617 oth Dietze, Claudia 1989- (DE-588)111759212X edt Schuch, Dirk 1984- Sonstige (DE-588)1049247027 oth Ebook version 978-0-429-76793-7 Digitalisierung UB Bamberg - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030845016&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Nanomaterials in architecture and art conservation Nanostrukturiertes Material (DE-588)4342626-8 gnd Konservierung (DE-588)4114279-2 gnd Stein (DE-588)4183014-3 gnd Denkmalschutz (DE-588)4011457-0 gnd |
subject_GND | (DE-588)4342626-8 (DE-588)4114279-2 (DE-588)4183014-3 (DE-588)4011457-0 |
title | Nanomaterials in architecture and art conservation |
title_auth | Nanomaterials in architecture and art conservation |
title_exact_search | Nanomaterials in architecture and art conservation |
title_full | Nanomaterials in architecture and art conservation edited by Gerald Ziegenbalg, Miloš Drdácký, Claudia Dietze, Dirk Schuch |
title_fullStr | Nanomaterials in architecture and art conservation edited by Gerald Ziegenbalg, Miloš Drdácký, Claudia Dietze, Dirk Schuch |
title_full_unstemmed | Nanomaterials in architecture and art conservation edited by Gerald Ziegenbalg, Miloš Drdácký, Claudia Dietze, Dirk Schuch |
title_short | Nanomaterials in architecture and art conservation |
title_sort | nanomaterials in architecture and art conservation |
topic | Nanostrukturiertes Material (DE-588)4342626-8 gnd Konservierung (DE-588)4114279-2 gnd Stein (DE-588)4183014-3 gnd Denkmalschutz (DE-588)4011457-0 gnd |
topic_facet | Nanostrukturiertes Material Konservierung Stein Denkmalschutz |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030845016&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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