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Historic Mortars

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Cover of 'Historic Mortars'

Table of Contents

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    Book Overview
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    Chapter 1 Historic Mortars: Characterisation, Assessment and Repair. A State-of-the-Art Summary
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    Chapter 2 Historic Documents in Understanding and Evaluation of Historic Lime Mortars
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    Chapter 3 The Earliest Use of Lime and Gypsum Mortars in Cyprus
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    Chapter 4 Mineralogical and Microstructural Analysis of Mortars from Kushite Archaeological Sites
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    Chapter 5 Cement Microstructures and Durability in Ancient Roman Seawater Concretes
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    Chapter 6 Historic Mortars with Burned Alum Shale as an Artificial Pozzolan
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    Chapter 7 Nineteenth Century “Novel” Building Materials: Examples of Various Historic Mortars Under the Microscope
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    Chapter 8 Lime Mortar with Natural Hydraulic Components: Characterisation of Reaction Rims with FTIR Imaging in ATR-Mode
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    Chapter 9 Characterisation of Dolomitic Lime Mortars from the Benedictine Monastery in Riesa, Saxony (Germany)
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    Chapter 10 Hydraulicity in Historic Lime Mortars: A Review
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    Chapter 11 Characterisation of Decorative Portuguese Gypsum Plasters from the Nineteenth and Twentieth Centuries: The Case of the Bolsa Palace in Oporto
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    Chapter 12 Repair Mortars Studied for the Conservation of Temple G1 in Mỹ Sơn, Vietnam
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    Chapter 13 Characteristics of Mortars from Ancient Bridges
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    Chapter 14 Diagnosis, Characterisation and Restoration of the Internal Renders of Santíssimo Sacramento Church in Lisbon
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    Chapter 15 Masonry Repair Options and Their Philosophical Ramifications
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    Chapter 16 Conservation of Historic Renders and Plasters: From Laboratory to Site
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    Chapter 17 Comparison Between Traditional, Lime Based, and Industrial, Dry Mortars
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    Chapter 18 Repair Mortars for the Sandstones of the Cathedral of Berne
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    Chapter 19 Compatibility of Repair Mortars with Nineteenth Century Natural Cement Cast Stone from the French Rhône-Alpes Region
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    Chapter 20 Two Views on Dealing with Rain Penetration Problems in Historic Fired Clay Brick Masonry
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    Chapter 21 Experimental Study of Hot Mixed Mortars in Comparison with Lime Putty and Hydrate Mortars
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    Chapter 22 The Effect of Calcination Time upon the Slaking Properties of Quicklime
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    Chapter 23 The Hydration of Modern Roman Cements Used for Current Architectural Conservation
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    Chapter 24 The Effect of Relative Humidity on the Performance of Lime-Pozzolan Mortars
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    Chapter 25 Morphological and Chemical Influence of Calcium Hydroxide on the Plasticity of Lime Based Mortars
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    Chapter 26 Water Transport Between Mortar and Brick: The Influence of Material Parameters
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    Chapter 27 Problems in the Assessment of the Stress-Strain Relationship of Masonry
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    Chapter 28 Influence of the Mechanical Properties of Lime Mortar on the Strength of Brick Masonry
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    Chapter 29 Influence of Interfacial Material Pore Structure on the Strength of the Brick/Lime Mortar Bond
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    Chapter 30 Grouts for Injection of Historical Masonries: Influence of the Binding System and Other Additions on the Properties of the Matrix
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    Chapter 31 Lime Based Grouts for Strengthening of Historical Masonry Buildings in Slovenia
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    Chapter 32 Characterisation of Mortars Using Drilling Resistance Measurement System (DRMS): Tests on Field Panels Samples
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    Chapter 33 In Situ Techniques for the Characterisation of Rendering Mortars
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    Chapter 34 Application of 1 H NMR to the Hydration Monitoring of Lime-Pozzolan Mortars
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    Chapter 35 Non-standard Testing in Characterisation and Consolidation Assessment of Historic Mortars
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Title
Historic Mortars
Published by
Springer Science & Business Media, June 2012
DOI 10.1007/978-94-007-4635-0
ISBNs
978-9-40-074635-0, 978-9-40-074634-3
Editors

Válek, Jan, Hughes, John J., Groot, Caspar J. W. P.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 92 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 92 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 17 18%
Student > Ph. D. Student 15 16%
Student > Master 10 11%
Student > Bachelor 9 10%
Student > Doctoral Student 8 9%
Other 8 9%
Unknown 25 27%
Readers by discipline Count As %
Engineering 32 35%
Arts and Humanities 10 11%
Materials Science 5 5%
Chemical Engineering 4 4%
Chemistry 4 4%
Other 10 11%
Unknown 27 29%