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  • Icon representing RFEM 6, a finite element analysis software application. RFEM 6 Only Structural Analysis and Design Software You Need for Your Projects

    RFEM 6 serves as the basis of the modular program family and is used to define structures, materials, and actions for plate, wall, shell, and beam structures, as well as for solids and contact elements.

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    RSTAB 9 Icon without borders RSTAB 9 Iconic Frame and Truss Analysis Software

    RSTAB 9 is a powerful analysis and design software for 3D beam, frame, or truss structure calculations, reflecting the current state of the art and helping structural engineers meet requirements in modern civil engineering.

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  • Solutions
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  • Timber and Wood Structures
Software for Timber and Wood Structures
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How may I help you?

Do you have any questions about Dlubal products or need assistance in selecting the right one for your project?

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Working hours are from 9:00 AM to 3:00 PM Philadelphia time (EST)

+1 267 702 2815
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Software for Timber and Wood Structures

The Dlubal software packages RFEM and RSTAB, supported by specialized add-ons, are ideal solutions for the structural analysis and design of timber beams up to complex timber structures. RSTAB excels in the design of frame and truss structures, while RFEM enables comprehensive analyses of beam and plate structures, including cross-laminated timber (CLT).

The software provides efficient modeling, precise calculations, and an intuitive user interface that facilitates the implementation of innovative timber construction projects.

Questions about timber structures? Mia answers immediately!

  • Mia – Your AI Expert
Mia
Timber Structure:

Effectively Design and Analyze Timber Structures – Watch the Video Now!

Use the Dlubal structural analysis programs RFEM (FEA program) or RSTAB (frame analysis software) for your timber structures projects – powerful and user-friendly.

Pavilion Project © Blumer-Lehmann AG

Designed with Dlubal Software | Timber Pavilion Project "Into the Woods"

In 2021, a timber pavilion called "Into the Woods" was built in the garden of the Swiss Embassy in Copenhagen, Denmark. It was created on the occasion of the annual festival "3 Days of Design".

Dome Structure © sblumer ZT GmbH

CIMU on Île de Seguin: Masterpiece of Glulam Construction

A highlight of "La Seine Musicale" in Boulogne-Billancourt is the concert hall with a capacity of 1,150 people. Its characteristic glass-clad circular facade emphasizes the modern design.

Champagne School Building © Josef Kolb AG | © Photographer: Stefan Hofmann, Ph7, Biel

Designed with Dlubal Software | Timber School Building Champagne in Biel, Switzerland

The modular school will remain at the current location for eight years. Then, it will be possible to completely dismantle the 36 timber modules, including the screw foundations, and to reassemble them elsewhere.

Structural Models | Timber Structures
  • High-Rise Building

    High-Rise Building Made of Timber and Concrete

  • Geodesic Dome
    Geodesic Dome
  • Model 004295 | Timber Gridshell Structure | Curved Design
    Timber Gridshell Structure | Curved Design
  • Timber Bridge with Global Deformations
    Timber Bridge
  • Church

    Church Made of Timber and Concrete Members

  • Wooden Packaging
    Wooden Packaging

Main Program RFEM or RSTAB

  • RFEM 6 – All Types of Structures
  • RSTAB 9 – Member Structures
Icon representing RFEM 6, a finite element analysis software application.
RFEM 6 | 3D FEA Software

The successful Dlubal structural analysis software RFEM 6 is the basis of a modular program family that you can customize and combine according to your specific requirements.

In the main program RFEM, you can define structures, materials, and loads of planar and spatial structural systems consisting of plates, walls, shells, and members. Furthermore, you can create combined structures as well as model solid and contact elements. Join our excited customers!

More Information
(Timber Structures) RFEM Banner

Why RFEM?

Many tasks can be completed using a single program.

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Free Customer Support and Service

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Intuitive Graphical User Interface

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First Steps with RFEM

© www.timberdesign.cz

Recommended Add-on Products for Timber Structures

Design of Timber Members and Sets of Members

Timber Structure
RFEM | Product Category Icon
Timber Design for RFEM 6 Add-On

The Timber Design add-on performs the ultimate, serviceability, and fire resistance limit state design checks of timber members according to various standards.

Multilayer Surfaces such as CLT and Timber Frame Walls

Timber Building
  • 3D Viewer
  • 3D Viewer | Babylon
  • Virtual Reality
RFEM | Product Category Icon
Multilayer Surfaces (e.g. Laminate, CLT) for RFEM 6 Add-On

The "Multilayer Surfaces" add-on for RFEM 6 optimizes the modeling and analysis of multilayer timber structures, ideal for cross-laminated timber and timber stud walls. It effectively supports the structural analysis of prefabricated timber panels.

Hybrid Timber Construction with Complementary Materials

Display of a high-rise model that combines materials, such as timber and concrete.
  • 3D Viewer
  • 3D Viewer | Babylon
  • Virtual Reality
RFEM | Product Category Icon
Building Model for RFEM 6 Add-On

The "Building Model" add-on simplifies the modeling and analysis of timber buildings. It speeds up the creation of building models and automatizes the load generation, ideal for demanding structural timber projects.

Construction Stages

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  • 3D Viewer | Babylon
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Construction Stages Analysis (CSA) for RFEM 6 Add-on

The Construction Stages Analysis (CSA) add-on allows for considering the construction process of structures (member, surface, and solid structures) in RFEM.

Optimization of Model Parameters

Multi-Story Reinforced Concrete Building
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  • 3D Viewer | Babylon
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Optimization & Cost / CO2 Emission Estimation for RFEM 6 Add-On

The add-on uses particle swarm optimization (PSO) to determine optimal parameters for parameterized models based on weight, cost, or CO2 emissions.

Modal Analysis

Resulting Modular Analysis of Reinforced Concrete Structure
  • 3D Viewer
  • 3D Viewer | Babylon
  • Virtual Reality
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Modal Analysis for RFEM 6 Add-On

The Modal Analysis add-on allows for the calculation of eigenvalues, natural frequencies, and natural periods for member, surface, and solid models.

Response Spectrum Analysis

ASCE 7-16 Response Spectrum Analysis in RFEM
  • 3D Viewer
  • 3D Viewer | Babylon
  • Virtual Reality
RFEM | Product Category Icon
Response Spectrum Analysis for RFEM 6 Add-On

The Response Spectrum Analysis add-on performs seismic analysis using multi-modal response spectrum analysis. The spectra required for this can be created in compliance with the standards or can be user-defined. The equivalent static forces are generated from them. The add-on includes an extensive library of accelerograms from seismic zones that can be used to generate the response spectra.

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Models to Download

Wind Simulation & Wind Load Generation

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  • 3D Viewer
  • 3D Viewer | Babylon
  • Virtual Reality
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RWIND 3 – Basic Stand-Alone

RWIND uses CFD technology to simulate wind flows on structures and transfer the resulting wind loads directly into RFEM or RSTAB for the structural analysis.

Building Information Modeling (BIM)

Interfaces for Data Exchange

Dlubal Software is integrated seamlessly into BIM processes, allows for data exchange, and provides a webservice for reading and writing data.

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Convinced of My Choice and Recommend RFEM 6!

After analyzing the options on the market, we chose RFEM by Dlubal for the calculation of our timber/steel structures, because it is the software that allows the most efficient 3D modeling for these types of complex models.

We appreciated the help of Dlubal's customer service, which was able to guide us in order to model all the technical optimizations. We witnessed the responsiveness and technicality of the Dlubal customer service, which we were able to discuss very specific points with.

We have experimented with the fact that the software does all the Eurocode design checks and yet remains very flexible to the requirements of the project.

We highly recommend the RFEM 6 software!

Victor LACOUR

PoCo
29 Avenue Jean Jaurès, 75004, Paris
France

atelierpoco.com
  • RFEM 6
  • Timber Design for RFEM 6
  • Steel Design for RFEM 6
    • Steel Structures
    • Timber Structures
    • France

Optimizing Projects with RFEM 6 by Dlubal Software: Investment Without Hesitation

After researching the with structural analysis software market, I finally decided to choose RFEM by Dlubal for the design of all types of timber structures (traditional framework, glued-laminated timber, timber-framed walls, mechanically welded fittings, and so on). The software is quite easy to learn and relatively intuitive; I don't need any training.
If you get stuck on a topic, you can rely on fast and efficient support. Moreover, there is multi-material software that can solve all the issues you encounter.
In other words, go ahead and invest!
Thibaut Dussart
Thibaut DUSSART

Girard Ouvrages Bois
1 Avenue du General Patton, 45330, Malesherbes
France

www.gobois.fr/
  • RFEM 6
  • Timber Design for RFEM 6
  • Timber Structures
    • Laminate and Sandwich Structures
    • France

RFEM 6 by Dlubal: Best Choice for 3D Timber Design According to Swiss SIA Standards

After analyzing the other structural analysis software offers on the market, we chose Dlubal's RFEM to calculate our three-dimensional timber structures. 
This is the software that we believe is best suited for structural analysis and design according to the Swiss SIA standards. 
The user interface is clear and intuitive, the results are displayed in detail, they can be edited and checked manually, which minimizes the effect of a "black box" and supports engineers in their decision-making.
The technical support team is attentive to our needs, reacting quickly and competently, responsive and competent, which confirms our choice.
Alexandre Angeloz
Alexandre Angéloz

MP Ingenieurs Conseils SA
Rue du Centre 16, 1023, Crissier
Switzerland

mp-ingenieurs.ch/
  • RFEM 6
  • Timber Design for RFEM 6
  • Timber Structures
    • SIA 261
    • SIA 263
    • SIA 265
    • Switzerland
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John W. Olver Design Building at University of Massachusetts, USA (© Alex Schreyer / UMass)

John W. Olver Design Building, University of Massachusetts, USA

The building is largely exposed and consists of 5-ply CLT concrete composite floor panels supported by a glulam post and beam structure.

  • Project Location

    Amherst, MA, USA

  • Software

    RFEM 5

More About Customer Project
© Alex Schreyer / UMass
Solutions | Timber Structures

Pavilion Project "Into the Woods"

In 2021, a timber pavilion called "Into the Woods" was built in the garden of the Swiss Embassy in Copenhagen, Denmark. It was created on the occasion of the annual festival "3 Days of Design".

  • Project Location

    Hellerup, Denmark

  • Software

    RSTAB 8 | Structural Frame & Truss Analysis Software

More About Customer Project
© Blumer-Lehmann AG
Azerbaijan Pavilion at Expo 2021 in Dubai, UAE (© Rubner - Versatile Synergy)

Azerbaijan Pavilion at Expo 2021 in Dubai, UAE (© Rubner – Versatile Synergy)

The pavilion consists of three structures: a tree, an agora, and a footbridge. The tree consists of elements creeping from the bottom to the top, a trunk, and branches. The agora at the foot of the tree forms the entrance to the pavilion and consists of horizontal components at a height of 5 m (16.4 ft).

  • Project Location

    Dubai, UAE

  • Software

    RFEM

More About Customer Project
© Rubner – Versatile Synergy

Integrated Standards for Timber Design

Standards for Timber Design

European Union | Flag EN 1995-1-1 | 2014-05 (Eurocode 5)
Switzerland | Flag SIA 265:2021-05 (Swiss standard)
Italy Flag NTC | 2018-01 (Italian standard)
EN-US | Flag NDS 2025 (American standard)
Canada | Flag CSA O86-24 (Canadian standard)
People's Republic of China | Flag GB 50005 | 2017-11 (Chinese standard)
People's Republic of China | Flag GB/T 50708 | 2012 (Chinese standard | Glued-laminated timber members)
Australia | Flag AS 1720 | 2010-06 (Australian standard)
Brazil Flag NBR 7190 | 2022-06 (Brazilian standard)
South Africa Flag SANS 10163 | 2003-12 (South African standard)

Annexes for EN 1995-1-1

DE | Flag DIN EN 1995-1-1/NA:2014-07 (Germany)
Austria | Flag ÖNORM EN 1995-1-1/NA:2019-06 (Austria)
Switzerland | Flag SN EN 1995-1-1/NA:2015-03 (Switzerland)
Bulgaria | Flag BDS EN 1995-1-1/NA:20157-06 (Bulgaria)
EN-GB | Flag BS EN 1995-1-1/NA:2019-09 (United Kingdom)
European Union | Flag CEN EN 1995-1-1/2014-05 (European Union)
Cyprus Flag CYS EN 1995-1-1/NA:2019-06 (Cyprus)
CS | Flag CZE EN 1995-1-1/NA:2015-05 (Czech Republic)
Denmark Flag DS EN 1995-1-1/NA:2019-09 (Denmark)
Greek Flag ELOT EN 1995-1-1/NA:2010-01 (Greece)
Estonia Flag EVS EN 1995-1-1/NA:2015-11 (Estonia)
Croatia Flag HRN EN 1995-1-1/NA:2015-03 (Croatia)
Ireland Flag I.S. I. 1995-1-1/NA:2014-05 (Irland)
Luxemburg Flag ILNAS EN 1995-1-1/NA:2020-3 (Luxembourg)
Iceland Flag IST EN 1995-1-1/NA:2014-09 (Iceland)
Lithuania Flag LST EN 1995-1-1/NA:2014-06 (Lithuania)
Latvia Flag LVS EN 1995-1-1/NA:2014-12 (Latvia)
Hungary Flag MSZ EN 1995-1-1/NA:2015-06 (Hungary)
Belgium Flag NBN EN 1995-1-1/NA:2014-06 (Belgium)
Flag of the Netherlands NEN EN 1995-1-1/NA:2014-06 (Netherlands)
France Flag NF EN 1995-1-1/NA:2020-04 (France)
Portugal Flag NP EN 1995-1-1/NA:2014-09 (Portugal)
Norway Flag NS EN 1995-1-1/NA:2014-08 (Norway)
Poland Flag PN EN 1995-1-1/NA:2014-07 (Poland)
Finland Flag SFS EN 1995-1-1/NA:2016-12 (Finland)
Slovenia Flag SIST EN 1995-1-1/NA:2018-01 (Slovenia)
Romania Flag SR EN 1995-1-1/NA:2014-12 (Romania)
Singapore Flag SS EN 1995-1-1/NA:2018-02 (Singapore)
Sweden Flag SS EN 1995-1-1/NA:2014-05 (Sweden)
Slovakia Flag STN EN 1995-1-1/NA:2019-12 (Slovakia)
Belarus Flag TKP EN 1995-1-1/NA:2019-09 (Belarus)
Spain Flag UNE EN 1995-1-1/NA:2016-04 (Spain)
Italy Flag UNI EN 1995-1-1/NA:2016-11 (Italy)
My Name is Mia: Your AI Assistant 24/7
Do you have any questions about timber structures?
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