Structural design is the criterion of identifying the architectural plan, construction safety, functionality all combined with the economy of construction.
The set of plans and calculations Documents required for issuance of the license.
Elaborate designs, with all necessary detail and fully harmonized with the corresponding studies (architecture and engineering).
Full compliance with the applicable regulations of reinforced concrete (EKOS2000) and the current seismic Regulation (EAK2000 and additional provisions), full responsibility for the accuracy of the calculations and punctuality of static designs.
Recommended general, structural design to meet not only the minimum assumptions arising from the earthquake safety regulations, but also to be resolved for seismic hazard zone greater than anticipated, greater earthquake safety, always comply with the decision of the owner.
Total static drawings needed to build the project.
The designs are enriched with all necessary static construction detail and are updated with their respective architectural and engineering requirements .
With the delivery of the study and application coexist technical standards for the performance of work, which the contractor before giving financial offer must obtain knowledge for the proper and smooth functioning of the work, while the engineer will be on hand for any information or clarification.
In turn supervisions to work in the construction phase, monitoring is essential and control on the part of the correct and accurate positioning of reinforcement, which must be consistent with the laws of art and science, the static adequacy of formwork, concreting planning phases, generally full implementation of construction plans and specifications and generally unpredictable solutions that arise.
- Reinforced concrete designs.
new construction:
Apart from conventional studies of reinforced concrete, the design evolves continuously monitored and implemented by using new materials and methods.
The requirement for free openings with large slabs include large holes leads to the design using modern finite element method, which allows the integration of interiors without interior beams but only in perimeter.
The modern way design avoids mounting plate beams, providing great architectural and operational advantages, increasing the aesthetic quality, the correct estimation of the thickness of the plate and the reinforcement, to ease any mechanical passages, greater headroom floor, and ease and speed of construction due to the flatness of the formwork.
In cases where the flat plate mounted on beams without intermediate pole or wall calculated using the vertical load power from the plate and placed special punching and shear reinforcement systems to ensure the punching in association with the vertical elements.
This process brings accurate results and always leads to savings in construction and even substantial and commensurate savings in salaries and IKA.
As usual in recent projects with high demands, plans are drawn up with spreeding rebars of beams, include every detail reinforcement all beams and their fasteners , from foundation to the last level of the superstructure, with straight and bent lengths, the lengths curvature-anchoring lengths coating and total cutting length according to the latest seismic provisions that are mandatory and applicable to large-scale public and private projects on the correct placement of rebar. Thus, the engineer does not succumb to marginal compromises possible arbitrary placement of garages, with considerable help correct and proper execution of the project and 100% performance in seismic study done. The above projects deemed mandatory irrespective of the project size, the new studies undertaken.
For existing structures:
Include renovations, restorations and existing controls with possible aid.
Used concrete jackets, shotcrete, minerals and modern technology such as carbon fiber and carbon materials with high strength and easy application.
-Steel Structures:
Dominant structural element is steel, for buildings with large openings has advantages oover concrete.
Importance is placed on functionality and economy, designing "smart profiles and detailing."
In the drawings all sides of the metal body are showed and the connection details of the nodes, elements needed for the proper performance of the structure.
- Composite structures:
Extension of steel structures in cooperation with concrete.
Same with the steel structure.
-Masonry structures:
Include new buildings made of rubble stone, brick, HTONG etc..
Main subject is to check existing buildings and renovations-reinforcements with filling gaps with ciment under pressure or gunite.
-Wooden structures:
Featuring wooden roofs, wooden floors and a total construction with wooden bearing structure as tree trunks and wooden panels.
Also check the data and renovations-reinforcements with steel or carbon fiber.
- Structural programs used:
The fixes are made, using the NEXT program COMPUTEC.
Also for structures with masonry and wooden structures for the alternative, the program used FEDRA-T of RUNNET.
Issue of building licenses with all the necessary studies, architectural, structural, and H / M, with submission to the competent building services.
Surveys and drawings using modern surveying instruments.
We prepare and submit all documents, records and studies required for the completion of the process and provide statements of non-arbitrariness and building ID.