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Sugam Engineers
Mysore Road, Bengaluru, Karnataka
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Steel Structure

The journey of steel started in the late 1700s when the British began using steel structures. The need was driven mainly out of the fireproof property of steel structures. With time, by the late 1800s, steel began to be increasingly used for a number of metal building construction purposes. The early 1900s especially saw the number of skyscrapers in cities like Chicago that used steel as their basic supporting structure. Thus steel entered a new era in which the real properties of steel like strength, stability and durability could be exploited to make metal building thought to be a figment of imagination just a few years ago.

Today, with advances in manufacturing, steel is entering another phase where it is able to provide the highest quality of buildings in terms of strength, the best levels of customisation and at affordable prices. This seems like the magic material that buildings have been looking for ages.

Today in many developed countries a very large percentage of multi-storied buildings are built with steel, where as steel is not so commonly used in construction of multi-storied buildings in India even though it is a better material than reinforced concrete. India is lagging far behind in terms of percentage of commercial structures built with less than 1% market share. UK and China leads the pack with 65% to 70% share, with US, Japan and Western Europe clocking 25% to 45%.

Most of the prominent landmarks of the world viz., World Trade Centre (WTC), Burj Khalifa have been built on steel structures. Steel Structures are so popular in China within a span of two decades the Shangai City has more than 400 skyscrapers and nearly 4000 commercial structures. In spite of World Trade Centre destroyed on 9-11-2001 still many builders prefer to opt for steel for multi story building construction. Eiffel Tower built in 1869 and latest master piece construction- Burj Khalifa in 2010 have used steel as reliable material for construction. Steel based structures have become very popular in the last century and they managed to take architects' and engineers' imagination



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  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
  • Multistorey Building
Multistorey Building
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Multistorey Building

Product Details:
Type of Construction structureSteel Frame Structures
Grade345 MPa
MaterialSteel
Built TypeModular, Panel Build, Prefab
FinishingGalvanized, Paint Coated
The dominance of steel in the Multistorey Building is based on tangible client-related benefits including the ability to provide column free floor spans, efficient circulation space, integration of building services, and the influence of the site and local access conditions on the construction process. For inner city projects, speed of construction and minimum storage of materials on-site require a high level of pre-fabrication, which steel-framed systems can provide.

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  • Composite Steel Structure
  • Composite Steel Structure
  • Composite Steel Structure
Composite Steel Structure
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Composite Steel Structure

Product Details:
MaterialSteel
Grade304,316
TechniqueCold rolled
PositionExterior
Surface TreatmentGalvanized
Composite Steel Structure construction dominates the non-residential multi-storey building sector. This has been the case for over twenty years. Its success is due to the strength and stiffness that can be achieved, with minimum use of materials.
The reason why composite construction is often so good can be expressed in one simple way - concrete is good in compression and steel is good in tension. By joining the two materials together structurally these strengths can be exploited to result in a highly efficient and lightweight design. The reduced self weight of composite elements has a knock-on effect by reducing the forces in those elements supporting them, including the foundations. Composite systems also offer benefits in terms of speed of construction. The floor depth reductions that can be achieved using composite construction can also provide significant benefits in terms of the costs of services and the building envelope.
The scope of this article covers composite beams, composite slabs, composite columns and composite connections. Whilst beams and slabs are very common in UK construction, indeed there exist a number of different basic types of composite beam, composite columns and composite connections are much less so. The reasons for this are considered below.

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  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
  • Pre Engineering Building (PEB)
Pre Engineering Building (PEB)
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Pre Engineering Building (PEB)

Product Details:
Frame FinishingPowder Coated
Material GradeQ345B, Q235B
MaterialSteel
Built TypeModular, Prefab
Pre Engineering Building (PEB) Concrete filled steel column (CFSC)

The CFSC system has many advantages compared with the ordinary steel or the reinforced concrete system. One of the main advantages is the interaction between the steel column and concrete, local buckling of the steel column is delayed by the restraint of the concrete and the strength of concrete is increased by the confining effect of the steel column.

Advantages

The CFSC column system has many advantages compared with ordinary steel or reinforced concrete systems. Interaction between steel column and concrete: Local buckling of the steel column is delayed and the strength deterioration after the local buckling is moderated, both due to the restraining effect of the concrete. On the other hand, the strength of the concrete is increased due to the confining effect provided by the steel column. Drying shrinkage and creep of the concrete are much smaller than in ordinary reinforced concrete.

Cross-sectional properties

The steel ratio in the CFSC cross section is much large than in reinforced concrete and concrete-encased steel cross sections. The steel of the CFSC section is well plasticized under bending because it is located most outside the section.

Construction efficiency
Labor for forms and reinforcing bars is omitted, and concrete casting is done by tremie or pump-up method. This efficiency leads to a cleaner construction site and a reduction in manpower, construction cost, and project length.
Fire resistance
Concrete improves fire resistance so that fireproof material can be reduced or omitted.
Cost performance

Because of the merits listed above, better cost performance is obtained by replacing a steel structure with a CFSC structure.

Ecology
The environmental burden can be reduced by omitting the form work and by reusing steel column and using –quality concrete with recycled aggregates.

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  • Corrugated Web Beams
  • Corrugated Web Beams
  • Corrugated Web Beams
  • Corrugated Web Beams
Corrugated Web Beams
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Corrugated Web Beams

Product Details:
MaterialSteel
Depth 200 mm to 2000 mm
Span 30 m
Column Spacing 4
PositionExterior
Corrugated Web Beams (CWB)

Corrugated web beam (CWB) The Corrugated web beam stands for the structural beam. The production process is exclusive designed by Sugam Engineer’s .It is built up girder with thin corrugated web and two “C” channel flanges. For the larger span, we use two webs. Corrugation in webs enormously increases their stability against buckling and can result in very economical designs.

Because of the high strength to weight ratio, the span lengths could be wider, so a less number of columns are needed. Further there are costs saving possible at the weight, concrete, transport, and erection comparing a standard I-girder. Since the corrugation of the web provides higher resistance against bending about the weak axis, none of auxiliary lifting equipment normally required. Due to weight advantages with the same per running meter corrugated we beam enables significantly greater clear span of 30meter for multi floor building and 60meter of single span for PEB.

The advantages of corrugated web beam
  • Thinner web
  • Lower dead weight
  • Better buckling behavior. Due to lower weight, the erection and transport cost reduce To reduce the height of beam we can design double corrugated web
  • Engineers have realized that corrugation in webs increase their stability against buckling and can result in very economical designs.
  • Less cost and higher load carrying capacity.
  • Corrugated web beam provide a high strength-to-weight ratio.
  • Furthermore, erection cost is reduced, since the corrugation in the web provides a higher resistance against bending about the weak axis.
  • Corrugated steel web beam introduces the use of thin plates without stiffeners to improve both aesthetics and the economy of the buildings and bridges. Research has shown that corrugated web beam have improved shear stability and better fatigue resistance than conventional I-beam with flat webs. It can eliminate the use of larger thickness stiffeners plate that allow the reduction in beam weight and result in economic design. When the corrugated webs are compared with stiffened flats webs, it can be found that the corrugated steel web beam enables the use of thinner webs. It was found that corrugated steel web beam have 9 to 13% less weight than current traditionally stiffened girders with flat webs.
  • Corrugated web steel beam is build up of two steel flanges welded to a corrugated web. The web and flanges can be made from different type of steel grade depending on design requirement. The trapezoidal profile used in structures that has special requirement to avoid fatigue failure.
  • In construction application, the corrugated web beam is usually carry most of the compressive stress and transmits shear in the beam while flanges support the major external loads.
  • The corrugated web beam is usually investigated by comparing the thickness and the shape. It can decrease the cost and materials without weakening the load-carrying capability of the beam.

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    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    • Concrete Filled Steel Column
    Concrete Filled Steel Column
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    Concrete Filled Steel Column

    Product Details:
    MaterialSteel
    FinishingPaint Coated
    Sheet Thickness6 mm
    BrandSugam
    Automation GradeAutomatic
    Concrete filled steel column (CFSC)

    The CFSC system has many advantages compared with the ordinary steel or the reinforced concrete system. One of the main advantages is the interaction between the steel column and concrete, local buckling of the steel column is delayed by the restraint of the concrete and the strength of concrete is increased by the confining effect of the steel column.

    Advantages

    The CFSC column system has many advantages compared with ordinary steel or reinforced concrete systems. Interaction between steel column and concrete: Local buckling of the steel column is delayed and the strength deterioration after the local buckling is moderated, both due to the restraining effect of the concrete. On the other hand, the strength of the concrete is increased due to the confining effect provided by the steel column. Drying shrinkage and creep of the concrete are much smaller than in ordinary reinforced concrete.

    Cross-sectional properties

    The steel ratio in the CFSC cross section is much large than in reinforced concrete and concrete-encased steel cross sections. The steel of the CFSC section is well plasticized under bending because it is located most outside the section.

    Construction efficiency

    Labor for forms and reinforcing bars is omitted, and concrete casting is done by tremie or pump-up method. This efficiency leads to a cleaner construction site and a reduction in manpower, construction cost, and project length.

    Fire resistance

    Concrete improves fire resistance so that fireproof material can be reduced or omitted.

    Cost performance

    Because of the merits listed above, better cost performance is obtained by replacing a steel structure with a CFSC structure.


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    Steel Structure Prefabricated Muliplex Theater
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    Steel Structure Prefabricated Muliplex Theater

    Product Details:
    Size42,840 Sq. Ft
    Dimensions10.5 m X 8.2 m
    Floor Size5.2 m
    Capacity850 kg/ Sq m
    Built TypeModular
    We are engaged in bringing forth an attractive collection of Steel Structure Prefabricated Muliplex Theater that is precisely manufactured and has an immense aesthetic appeal.

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    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    • Steel Structure Prefabricated Convention Hall
    Steel Structure Prefabricated Convention Hall
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    Steel Structure Prefabricated Convention Hall

    Product Details:
    Floor height 3.2 m,12 m,3.2 m,12 m,3.2 m,12 m
    Centre of hall 17 m X 17 m
    Dome Diameter11 m
    MaterialSteel
    UseIndustrial
    FeatureEasily Assembled, Eco Friendly
    Built TypeModular, Prefab
    FinishingGalvanized, Paint Coated
    Steel Structure Prefabricated Convention Hall are medium to substantial size steel structures comprising of essential and auxiliary steel basic edges laying on common establishments and furnished with suitable material, side cladding and water down take game plans. Every steel pre fabricated structure is independently and separately intended to suit the particular application (end use), size and land area. In perspective of the numerous points of interest of theories structures over different sorts of structures and structures, they are in a perfect world suited for a wide range of medium to expansive size steel structures.

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    • Stainless Steel Columns
    • Stainless Steel Columns
    Stainless Steel Columns
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    Stainless Steel Columns

    Product Details:
    ShapeCircular, Square, Rectangular, Hexagonal
    MaterialStainless Steel
    Material GradeSS 304,316
    SurfaceGalvanized
    Concrete filled steel column (CFSC)

    The CFSC system has many advantages compared with the ordinary steel or the reinforced concrete system. One of the main advantages is the interaction between the steel column and concrete, local buckling of the steel column is delayed by the restraint of the concrete and the strength of concrete is increased by the confining effect of the steel column.

    Advantages

    The CFSC column system has many advantages compared with ordinary steel or reinforced concrete systems. Interaction between steel column and concrete: Local buckling of the steel column is delayed and the strength deterioration after the local buckling is moderated, both due to the restraining effect of the concrete. On the other hand, the strength of the concrete is increased due to the confining effect provided by the steel column. Drying shrinkage and creep of the concrete are much smaller than in ordinary reinforced concrete.


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    • Pay Mode Terms: T/T (Bank Transfer)
    Yes! I am Interested

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