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Contents:
  1. Design of Prestressed Concrete to AS3600-2009
  2. 2. Concrete cover
  3. Bridge Design| Prestressed Concrete Bridge Beam Design Tutorial to BS
  4. Topic outline
  5. Optimum design of prestressed concrete beams using constrained differential evolution algorithm

PRE-Stress checks and designs are special end reinforcement stirrups with regard to splitting and spalling.

For hollowcore members with active structural topping, it is possible to choose to calculate the Composite web shear capacity according to EN Annex F. This setting is enabled in the 'Calculation settings'-tab. Note that this method for calculating web shear failure only is valid for the simplified method in EN 4.

Fire design can be performed for concrete elements according to Eurocode 2, with complementary code EN for hollow-core members. With the latest features, PRE-Stress is the perfect tool for designing your precast hollow core slab.

Design of Prestressed Concrete to AS3600-2009

Quickly import the cross section from AutoCAD, add the loads and carry out your calculation. Load combinations can be generated automatically and you can perform checks for spalling and fire.


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The inclined bars are aligned automatically to the slope of the beam and continuity is ensured through the full-bond option. Study the behaviour of the beam under torsion by applying loads with eccentricity and get an automatic detailed report of the internal forces and Eurocode check.


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PRE-Stress is the perfect tool for calculating and designing double T beams. Apply the strands automatically with the reinforcement pattern and get an automatic detailed report of the internal forces and Eurocode check.

2. Concrete cover

In this training material, we are showing the analysis and design of a prestressed concrete precast element, as well as fire calculations carried out in PRE-Stress 6. This video material included in the playlist is intended to be used along with a course material that can be found in the Documents section. Get started now. ARCH: Architecture. AVEN: Aviation. AVIA: Aviation. AVIF: Aviation. AVIG: Aviation. BINF: Bioinformatics. BIOC: Biochemistry. BIOT: Biotechnology. BLDG: Building. CHEM: Chemistry. COMM: Commerce. CRIM: Criminology.

CRTV: Creative practice. ECON: Economics.

Bridge Design| Prestressed Concrete Bridge Beam Design Tutorial to BS

ENGG: Engineering interdisciplinary. FINS: Finance. GEOL: Geology. GEOS: Geoscience. GSBE: Architecture. GSOE: Engineering. HUMS: Humanities. INOV: Innovation.

Topic outline

JAPN: Japanese. LAWS: Law. LING: Linguistics. MARK: Marketing. MATH: Mathematics.

Optimum design of prestressed concrete beams using constrained differential evolution algorithm

MBAX: Management. MDCN: Medicine. MDIA: Media. MFAC: Medicine. MFIN: Finance. Stress at jacking end controlled the optimum design for long spans, while the shear strength requirement controlled the design for short spans. Thamer , Information Technology Journal, 1: DOI: Full Name:. Online First.

✓Explanation of Prestressed concrete /introduction

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