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Ultra-high performance concrete and high performance construction materials : proceedings of HiPerMat 2016 4th International Symposium on Ultra-High Performance Concrete and High Performance Materials, Kassel, March 9-11, 2016 / edited by Ekkehard Fehling, Bernhard Middendorf, Jenny Thiemicke.

By: Contributor(s): Material type: TextTextSeries: Schriftenreihe Baustoffe und Massivbau ; Heft 27.Publisher: Kassel : Kassel University Press GmbH, 2016Description: 1 online resource : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783737600958
  • 3737600953
Subject(s): Genre/Form: Additional physical formats: Erscheint auch als:: Proceedings of HiPerMat 2016 4th International Symposium on Ultra-High Performance Concrete and High Performance Materials Kassel, March 9-11, 2016DDC classification:
  • 620.136 23
LOC classification:
  • TA439 .H582 2016eb
Online resources:
Contents:
Front Cover; Title; Imprint; Introduction; Supporters; Scientific Committee for HiPerMat 2016; Table of content; Part One -- High Performance Construction Materials; Progresses in Researches and Applications of Ultra-HighPerformance Concrete (UHPC) in China; 1 Introduction; 2 Materials; 3 Production process; 4 Hydration and microstructure; 5 Mechanical properties; 6 Durability; 7 Applications of UHPC in China; 8 Conclusions; References; Heat-damaged Fibre-Reinforced HPC: Physical andMechanical Properties from Meso and Macro Investigations
Phase Composition and Strength of thermally treated UHPC1 Introduction; 2 Materials and Methods; 3 Results and discussion; 4 Conclusions; Acknowledgement; References; Time dependent Mass Loss of UHPC after single and cyclicthermal Exposure; 1 Introduction; 2 Material and Method; 3 Result and Conclusion; References; Experimental Study on thermal Spalling of ductile FibreReinforced Cementitious Composites; 1 Introduction; 2 Materials; 3 Test results; 4 Conclusion; References
Characterisation of Ultra-High Performance Fibre ReinforcedConcrete (UHPFC) under Tensile Loading by AcousticEmission and Optical Deformation Analysis1 Introduction; 2 Proceeding; 3 Conclusions; References; UHPC Foam Concretes on the Basis of Three-Phase-Foams; 1 Introduction; 2 Results and Discussion; 3 Conclusions; 4 References; Investigation of Superplasticiser-Particle-Interaction viaFluorescence Microscopy; 1 Introduction; 2 Results; 3 Conclusions and Outlook; References; Material and Chemical Analysis of UHPC using localMaterials; 1 Introduction; 2 Results of Material Testing
3 Chemical Analysis4 Conclusions; References; Use of Rice Husk Ash for Mitigating the autogenousShrinkage of Cement Pastes at low Water Cement Ratio; 1 Introduction; 2 Materials and Methods; 3 Results and discussion; 4 Conclusions; References; Study on the Hydration and micro structural Development ofUltra-High Performance Concrete with two kinds of Fly Ash; 1 Introduction; 2 Materials and methods; 3 Results and discussion; 4 Conclusions; References; Thermodynamic Modelling and experimental Study of AlkaliactivatedSlag Paste; 1 Introduction; 2 Materials and methods; 3 Results; 4 Conclusions
Summary: With HiPerMat 4 on March 9-11, 2016 the 4th International Symposium on UHPC and High Performance Construction Materials documents the actual state of development of application in the fields of - Material Science and Development - Composite Concrete Materials - Durability - Strength and Deformation Behaviour - Structural Design - Structural Modelling and Optimisation - Structural Sustainability - Guidelines and Standardisation - Lightweight Structures - High-Precision Manufacturing for Pre-Fabrication - Innovative Applications - Assembling and Joining This volume contains the short versions (two pages) of all contributions that have been accepted for publication at HiPerMat 4. The full papers are available in digital format as well. Reihe Schriftenreihe Baustoffe und Massivbau - Band 27
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With HiPerMat 4 on March 9-11, 2016 the 4th International Symposium on UHPC and High Performance Construction Materials documents the actual state of development of application in the fields of - Material Science and Development - Composite Concrete Materials - Durability - Strength and Deformation Behaviour - Structural Design - Structural Modelling and Optimisation - Structural Sustainability - Guidelines and Standardisation - Lightweight Structures - High-Precision Manufacturing for Pre-Fabrication - Innovative Applications - Assembling and Joining This volume contains the short versions (two pages) of all contributions that have been accepted for publication at HiPerMat 4. The full papers are available in digital format as well. Reihe Schriftenreihe Baustoffe und Massivbau - Band 27

Includes bibliographical references and index.

Online resource; title from PDF title page (EBSCO, viewed July 12, 2016).

Front Cover; Title; Imprint; Introduction; Supporters; Scientific Committee for HiPerMat 2016; Table of content; Part One -- High Performance Construction Materials; Progresses in Researches and Applications of Ultra-HighPerformance Concrete (UHPC) in China; 1 Introduction; 2 Materials; 3 Production process; 4 Hydration and microstructure; 5 Mechanical properties; 6 Durability; 7 Applications of UHPC in China; 8 Conclusions; References; Heat-damaged Fibre-Reinforced HPC: Physical andMechanical Properties from Meso and Macro Investigations

Phase Composition and Strength of thermally treated UHPC1 Introduction; 2 Materials and Methods; 3 Results and discussion; 4 Conclusions; Acknowledgement; References; Time dependent Mass Loss of UHPC after single and cyclicthermal Exposure; 1 Introduction; 2 Material and Method; 3 Result and Conclusion; References; Experimental Study on thermal Spalling of ductile FibreReinforced Cementitious Composites; 1 Introduction; 2 Materials; 3 Test results; 4 Conclusion; References

Characterisation of Ultra-High Performance Fibre ReinforcedConcrete (UHPFC) under Tensile Loading by AcousticEmission and Optical Deformation Analysis1 Introduction; 2 Proceeding; 3 Conclusions; References; UHPC Foam Concretes on the Basis of Three-Phase-Foams; 1 Introduction; 2 Results and Discussion; 3 Conclusions; 4 References; Investigation of Superplasticiser-Particle-Interaction viaFluorescence Microscopy; 1 Introduction; 2 Results; 3 Conclusions and Outlook; References; Material and Chemical Analysis of UHPC using localMaterials; 1 Introduction; 2 Results of Material Testing

3 Chemical Analysis4 Conclusions; References; Use of Rice Husk Ash for Mitigating the autogenousShrinkage of Cement Pastes at low Water Cement Ratio; 1 Introduction; 2 Materials and Methods; 3 Results and discussion; 4 Conclusions; References; Study on the Hydration and micro structural Development ofUltra-High Performance Concrete with two kinds of Fly Ash; 1 Introduction; 2 Materials and methods; 3 Results and discussion; 4 Conclusions; References; Thermodynamic Modelling and experimental Study of AlkaliactivatedSlag Paste; 1 Introduction; 2 Materials and methods; 3 Results; 4 Conclusions

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