filler slab structural design

For 1 m3. Effective Span of Slab2.


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. Generally speaking for a slab thickness of 125mm the filler material depth should not exceed 60mm. The minimum thickness can be determined by many factors. Owing to the construction of the slabonce done with the shuttering the reinforcement are laid in a grid form with the sizes depending on its structural designWith considerations in choosing the filler material it has to be inert in natureless weight and has to fit the structurally reinforced gridThe filler should be soaked in water well before being placed as.

1 minuteContentsBasics of Reinforced Concrete Slab Design1. Filler materials are placed without compromising structural strength stability and durability replacing unwanted and non-functional tension concrete from below - resulting in cost savings 20and decreased dead load. To sum it up consider using a filler slab for the following.

However it was used in. This filler slab is analyzed using STAADPro and ANSYS software. Of these varied archaic systems cinder concrete slab construction became one of the most dominant structural slab systems used from the 1920s to the 1940s.

As the name suggests in a filler slab part of concrete in the bottom of the slab in the tension zone to be specific is replaced by filler materials. Improved thermal comfort for the interiors. RCC Filler slab vs.

Create an interesting look. The W-shape has parallel inner and outer flange surfaces with a constant thickness while the. Material saving assuming a 100 mm thick slab 254386 m and calculating the material and cost savings as per market material rates of Ahmedabad Gujarat August 2011 and comparing the savings.

Load transfer at the control and construction joints. Filler slab is alternate slab construction technology where part of concrete in bottom of slab is replaced by filler material. Surface levelness and flatness.

161 bags 19 saving Rs 418 m3 saving in cement cost. What is filler slab. Save on construction cost.

Shear strength of beamless slabs usually a controlling factor. The thickness of a floor slab must be determined early in design because the weight of the slab is an important part of the dead load of the structure. The filler materials are granite dust and foundry sand.

The k value used for floor slab design reflects the response of the sub-grade under temporary elastic conditions and small deflections usually 005 inches. Conventional Solid RCC Slab. Improved thermal comfort for the interiors.

Filler slab is supposed to be a cost effective efficient simple and very innovative construction technology for slab construction if it is effectively designed and constructed. The four function categories ie. Filler slab is compared with the conventional slab of same size.

How Do We Design Filler Slabs Filler Slabs Rcc Filler Slab Advantages Of Filler Slabs Roofing What Is Filler Slab Filler Slab Tatva Kala Architects Facebook. Settlement under applied loads. The slab is represented by a mesh of slab segments called elements joined to each other at nodes.

5 Structural design The filler slab may be analyzed as a two way spanning grid slab. The filler slab can be designed like a conventional RCC slab as per IS 456-2000 design guidelines The thickness of filler material should not exceed the depth of the neutral axis. This method of construction is called filler slab.

The S-shape is in the design of the inner surfaces of the flange. The design integrity of a filler slab involves careful planning taking into account the negative zones and reinforcement areas. Patterned ceilings Filler slabs provide aesthetically pleasing patterned ceilings.

Easy to use Software becoming more widely available Very accurate if used properly better than Grillage. Reduce use of energy intensive materials embodied energy. The elements can be triangular rectangular or quadrilateral.

Structural Support Functions The floor slab of the below grade building enclosure must be designed to carry downward vertical gravity loadings as well as. A filler slab with two stacked clay tiles as shown in the sketch above also increases the thermal insulation of the slab. FE is increasing in popularity.

In case of continuous slab the support section is designed as doubly reinforced. The midspan section is designed as a T-beam with cast-in-situ concrete of flange taking compression and reinforcement at the bottom of the slab in the web portion taking tension. This article explores the origin history design performance and relevance today of cinder slab construction with focus primarily on use in New York City NYC.

The basic principal is that the concrete in bottom half of RCC slab is structurally not required as concrete acts as compression material which is required in top half portion of slab. Adequacy of the structural capacity. This method of construction is called filler slab.

The filler blocks are placed between the reinforcement spacing by providing a cover of 20mm. Slab must be thick enough to provide adequate shear strength. Two-way slab is designed.

Concrete Slab Design ProcedureDesign of Continuous Slab Basics of Reinforced Concrete Slab Design Slabs are generally designed on the assumption that they consists of a number of beams of breadth one. Structural Support Environmental Control Finish and Distribution are expanded in general terms for floor slab systems. Filler slab construction which reduces the self-weight of slabs and has reduced loads along the rest of the load path up to foundation is an effective way for cost reduction.

In most houses the filler material is left open without plastering to form aesthetic design symmetry but some residents prefer to cover the space with Plaster of Paris. Filler materials are placed without compromising structural strength stability and durability replacing unwanted and non-functional tension concrete from below - resulting in cost savings 20and decreased dead load.


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