Necessary data for RCC Rate Analysis: 1. Calculation of materials: Material should be calculated for sand, cement, coarse aggregate and steel for a specific mix design. For calculation purpose, assume a mix design of 1:1.5:3. The dry volume of total materials ...

How to calculate weight of sewage pipe and also know about rcc sewage pipe weight calculation formula and what is drainage system and Drainage pipe Outer Dia D1 =800mm =0.8 m Inner Dia D2 =700 mm =0.7m Thickness of pipe = 100 mm =0.1m Length of

complicated for practical application; the calculation methods based on nonlinear static pushover analysis are used. Mayuri D. Bhagwat et al. (2014) performed dynamic analysis of multistoried practiced RCC building considering for Koyna and Bhuj ...

· Quantity Estimation of Reinforcement in Kg **Unit weight in kg/m is calculated using the formula = D 2 /162 For 8mm bar = 8 2 /162 = 64/162 = 0.395 kg/m …

· I am writing you for my own house building and have some questions. I want to build 6 x 14 meters two-story RCC building with concrete Saltbox roof-slab of 4.5″ thickness and 15 columns for building …

10 N/mm 2 or 100 Kg/cm 2 M20 or M200 1 : 2 : 4 15 N/mm 2 or 150 Kg/cm 2 M20 or M200 1 : 1.5 : 3 20 N/mm 2 or 200 Kg/cm 2 M25 or M250 1 : 1 : 2 25 N/mm 2 or 250 Kg/cm 2

1. Steel requirement for RCC beam = 1 to 2% or 78.5 kg to 157 kg/m³ 2. Steel requirement for RCC column = 0.8 to 6 % or 62.8 kg to 471 kg/m³ 5. Steel requirement for Foundation = 0.5 to 0.8% or 34.25 to 62.8 kg/m³ Note: These are just approximate …

Cost Estimation RCC Building Excel Sheet. Calculation of Brick Masonry Estimating Quantity Excel Sheet. ... READ MORE:- 1 CFT 10mm, 20mm and 40mm aggregate weight in kg. Construction cost of 1000 sq ft rcc slab total cost of material:-Cost of steel ...

· NOTE: These are the standard RCC column sizes, but it will increase or decrease with respect to the load. We can calculate the column size according to the load on the column: This formula used for column design calculations, with the help of this formula we will find out the size of the column, and You can also calculate the bearing capacity of the column to put the value of column size.

in building construction.Build-Quant reads an Architectural Plan Drawing prepared inAutoCAD directly. ... Name No Dia BarLt No Dia BarLt No Dia BarLen No Dia BarLen No Dia BarLt No Dia BarL kg B1 2 12 1.637 1 10 1.580 2 16+ 1 B2 2 12 3.182 1 10 4 ...

Concrete is the mixture of cement, sand, aggregates and water. Cement concrete is the major building material in the construction industry. It can be Quantity of Aggregate in cum = 1.54 / 7 × 4 (where 4 is the ratio of aggregate ) = 0.88 cum Quantity of Aggregate in kg = 0.88 × 1500 (Density of Aggregate = 1450 to 1550 kg / cum )

· For column = 2.5 % of concrete volume. For RCC Roads, 0.6% concrete volume. Lets take example of RCC Column, where reinforcement required is 2.5% of concrete volume, weight of steel required will be: =196.25 kg. 2.

How to calculate Steel quantity for rcc slab, in this topic we know about how to calculate steel quantity for rcc slab and weight calculation.We know that roof slab is horizontal part of building put over brick wall for the covering of building structure. For the roof casting ...

· Size of reinforcement required for RCC Members is important one. Different size and quantity of reinforcement is required for different RCC members in buildings. Quantity of reinforcement per cubic meter and its suitable sizes for different reinforced concrete construction is discussed. S.No RCC Member Quantity in kg/m3 Size of reinforcement required 1 Column footings 75 …

building reduces the performance point of structure. There was reduction in displacement or deformation of the RCC building also. III. METHODOLOGY Process of designing G+7 building structure by using software''s. FIG 1BEAM STRESSES Fig 2 FIG 3

Therefore we are multiplying the 1440 kg density of cement to calculate the cement quantity. Required amount Cement quantity = 63 Kg = 1.26 bags (50 Kg bag) Required amount of Sand = 0.306565 X 6/7 = 0.26277 Cubic metre (m3) Therefore, For 1 cum of brickwork, we need. 500 Numbers of bricks.

For rate analysis of RCC, we need to multiply each quantity with their rates to get the amount for every item of work. Rates vary from place to place and time to time. It is advisable to assume local rates or standard rates of the place. The sum total of all the four items above will give the rate or cost for 1m 3 …

· Development Length is usually specified in the drawings, but if not thenyou can calculate it as, D.L = Depth – 2 times cover 4. Binding wire = 10 grams per kg of reinforcement.

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As a thumb rule you can use the following values for calculating reinforcement in one cubic meter of normal RCC building structure. Raft / Footing = 90 kg/cum Column = 160 kg/cum Beam = 130 kg/cum Slab = 100 kg/cum Of course this will vary with th...

evaluation of G+10 building using STAAD.pro & Comparison between manual & software program calculation. In this the seismic responses of a residential G+10 RCC building is analyses by the Equivalent static method & STAAD.pro Software as per

Density of RCC = 68.15 kg/ft 3 or 150.23 lb/ft 3. After putting the above value in the formula, the following result is obtained :-. Self weight of RCC slab = 150 x 0.5 = 75 lb/ft 2. If it is required to calculate the total weight of the slab, then area of the slab should be measured first. …

Calculation of Quantity Estimation for Reinforcement in Kg Unit weight in kg/m is calculated using the formula = D2/162 For 8mm bar = 82/162 = 64/162 = 0.395 kg/m Steps for calculating steel weight 1.

Area of residential building is 100 m 2 Steel in residential building = volume x 2.5 (table value) Steel in residential building = 100 x 2.5 Steel in residential building = 25 kg Thumb Rule for Steel in RCC …

= 398.2 kg Keep in mind that unit of Diameter (D) must be in millimeter and Length (L) must be in meter. And final result will be in Kg. For Distribution bar W = {(D^2)/162} * L = {(10^2)/162} * 456 = 281.48 kg Hence, in this way you can calculate weight or

Following steps can be used as a guide. i) decide on the RCC framing plan for each floor. It is called RCC layout. In the layout you have to fix the column positions, the orientations of columns. The framing beams are to join columns to each other...

· Weight of member = cross section area of member x length of member x RCC density For a 0.3 m wide 0.45 m deep beam section of 5 m clear length & material density = 25 kn/m3 (for RCC), the weight will be; Weight of beam = (0.3 x 0.45) x 5 x 25 = 16.875 Kn

z. CALCULATION AND DESIGN OF STAIRS Critical stairs The of practice C P 110 give the standard using in the design of stairs Input Private building Public building Rise R Less than 220mm Less than 190mm Riser G Greater than

With regard to Column – It is acknowledged that the concrete''s self-weight stays around 2400 kg/m3, that is up to 240 kN as well as the steel''s self-weight stays just about 8000 kg/m3. As a result, a column having dimension 230 mm x 600 mm as well as one % steel as well as 3 meters normal height, the column''s self-weight stays just about 1000 kg for every floor that is just like 10 kN.

BUILDING DESIGN 2.1 G+4 BUILDING DESIGN 2.1.1 DESIGN OF SLAB: I: kitchen room size: 4.83m×4.83m fe 415, M20, Clear cover =20mm Assuming the depth of the slab as 120mm effective depth = 120-20- 10 2 =100 mm Load calculation: 2 2 2 2

· Density of bricks varies between 1500 to 2000 kg per cubic meter. For a 6″ thick wall of 3 meter height and a length of 1 meter, we can calculate the load per running meter to be equal to 0.150 x 1 x 3 x 2000 = 900 kg which is equivalent to 9 kN/meter.

Sl. No RCC Member Quantity in kg/m3 Size of reinforcement required 5 Lintel beam 125 12mm, 16mm dia – 85% Stirrups – 6 mm or 8mm – 15% 6 Sunshades 60 8mm dia – 75% Distributer – 6mm – 25% 7 Canopy slab upto 2.0 m span 125 10mm dia – 80%

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