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3D printing with steel
Additive Manufacturing for connections and structuresWiley | 2020|Verlag: Ernst & Sohn -
Structural member stability verification in the new Part 1‐1 of the second generation of Eurocode 3
Part 1: Evolution of Eurocodes, background to partial factors, cross‐section classification and structural analysisWiley | 2020|Verlag: Ernst & Sohn -
The implementation of adaptive elements into an experimental high‐rise building
Wiley | 2018|Verlag: Ernst & Sohn -
The generalized slenderness‐based resistance method for the design of SHS and RHS
Wiley | 2019|Verlag: Ernst & Sohn -
An improvement to Eurocode 2 and fib Model Code 2010 methods for calculating crack width in RC structures
Wiley | 2016|Verlag: Ernst & Sohn -
The compression chord capacity model for the shear design and assessment of reinforced and prestressed concrete beams
Wiley | 2016|Verlag: Ernst & Sohn -
Post‐cracking shear strength and deformability of HSS‐UHPFRC beams
Wiley | 2016|Verlag: Ernst & Sohn -
Performance based durability design, carbonation part 1 – Benchmarking of European present design rules
Wiley | 2016|Verlag: Ernst & Sohn -
Mechanical, durability and hygrothermal properties of concrete produced using Portland cement‐ceramic powder blends
Wiley | 2016|Verlag: Ernst & Sohn -
Dual potential capacity model for reinforced concrete beams subjected to shear
Wiley | 2016|Verlag: Ernst & Sohn -
Effect of ultrafine fly ash on the properties of concretes containing construction and demolition wastes as coarse aggregates
Wiley | 2016|Verlag: Ernst & Sohn -
Dynamic behaviour of unbraced steel frames resting on soft ground
Wiley | 2019|Verlag: Ernst & Sohn -
Effectiveness of plasters and textile reinforced mortars for strengthening clay masonry infill walls subjected to combined in‐plane/out‐of‐plane actions / Wirksamkeit von Putz und textilbewehrtem Mörtel bei der Verstärkung von Ausfachungswänden aus Ziegelmauerwerk, die kombinierter Scheiben‐ und Plattenbeanspruchung ausgesetzt sind
Online Contents | 2015|Verlag: Ernst, Berlin -
In‐situ assessment of strain behaviour inside tunnel linings using distributed fibre optic sensors
Beurteilung des In‐situ‐Dehnungsverhaltens der Tunnelschale mittels verteilter faseroptischer MesssystemeWiley | 2018|Verlag: Ernst & Sohn