The first step is to determine the volume of the steel sheet with the equation as follows V = L x W x T When calculating the weight of steel sheet stock the equation consists of the following elements V = Volume L = The length of the steel sheet W = The width of the steel sheet T = The steel sheet s thickness
Get PriceSteel Quantity Calculation Cutting length main bar formula = l 2 x ld 1 x 2 x 1d where l = clear span of the slab ld = development length which is 40 d where d is diameter of bar = inclined length bend length 1d = 45° bends d is diameter of bar first calculate the length of d You Might Also Like
Get PriceYou asked how do you calculate steel quantity Calculate Steel quantity in slab as 1% of volume of concrete = × 7850× 3= 236kg according to using Thumb Rule Steel quantity required for RCC slab should be 1% of total volume of concrete here steel density = 7850 kg/m3 so quantity of steel in slab = × 7850× 3= 236kg
Get PriceRemember That the formula to calculate the weight of steel rod is given by W= D2/ x Total Length If the length is in feet and diameter is in mm and W=D2/ x Length If the length is in meter and diameter in mm Here the length is in feet so we will use the formula for length in feet
Get PriceThe density of steel may be taking as quintal per cu m or grams per cu m 490 lbs per cu ft The percentage of steel reinforcement depends on the design of the structure In absence of detail design the percentage for steel concrete may be taking approximately as given below Lintel slabs etc to % Beams to %
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Get PriceFor low index springs the stress concentration will be much higher at the ID than at the formula of bending stress can be given as σ = My/I The formula in terms of units of each quantity can be given as Units = N mm x mm/mm 4 From above we can derive that the units of bending stress is Units = N/mm 2 Allowable bending stress
Get PriceUnit weight of steel is d square/162 How is it derived To be accurate W= D2/ it is Its is derived from the very basic concept weight = density x volume it is also can be written as weight = density x area x length since 1] density of steel= 7850 kg/m3 > 7850/ 1000X1000X1000 kg/mm 2] Length= 1 m 3] Area = π pi x d2/ 4
Get PriceHow do you calculate steel quantity for columns and beams Calculate Steel quantity in beam as 2% of volume of concrete = × 7850× = 830 kg according to using Thumb Rule Steel quantity required in RCC beam should be 2% of total volume of concrete here steel density = 7850 kg/m3 so quantity of steel in beam = × 7850×
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Get PriceSteel Quantity Calculation Cutting length main bar formula = l 2 x ld 1 x 2 x 1d where l = clear span of the slab ld = development length which is 40 d where d is diameter of bar = inclined length bend length 1d = 45° bends d is diameter of bar first calculate the length of d You Might Also Like
Get PriceCalculate steel quantity in beam Using the thumb rule multiply the amount of steel in the beam by 2% of the volume of concrete or x 7850 x x 830 kg Given that the steel density in this case is 7850 kg/m3 the quantity of steel needed in an RCC beam should be equal to 2% of the entire volume of concrete or 830 kilogrammes
Get PriceMain steel bars=No of bars cutting length weight of the bar /162 Equation 7 /162 is the weight of a steel which is derived from steel volume times its density which is 7850 kg/m 3 Calculate Steel for Footing Size of footing and its reinforcement details bar size and spacing shall be known This can be achieved from design drawings
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Get PriceSteel quantity =80×30 Steel quantity = 80 × 30 Total Quantity = kg or ton What is Steel Qauntity calculation A steel used un building structure fabricated with steel for the internal support and for exterior cladding as opposed to steel framed buildings which generally use other materials for floors walls and external envelope
Get PriceHow to Calculate Quantity of Steel In Two Way Slab Two Way Slab BBS by Civil Lead Two Way Slab Given Data Step #1 Bar Numbers Step# 2 Cutting Length For Main Bar For Distribution Bar Step# 3 Top Distribution Bar For Shorter Span For Longer Span Step# 4 The calculation for Extra Top Bar For Shorter Span For Longer Span
Get PriceFollowing are the steps to calculate the quantity of steel for RCC slab 1 Prepare a bar bending schedule in order to classify different shapes of bars bent up bar straight anchor bar eos bar curtail bar etc and diameters 2 List down all the shapes of bars from the drawing 3 Count the number of bars of each of those shapes 4
Get PriceThumb rule for Steel essential for RCC slab should be 80 kgs/m3 then quantity of steel essential for 100 sq ft m3 RCC slab is equivalent to 80 × = Kgs Mild steel bars IS 432 part I 1982 are mainly provided for tensile stress of RCC Reinforced cement concrete slab beams etc in reinforced cement concrete work
Get PriceSteps to calculate the Reinforcement required for Slab Deduct the cover for finding length of bar Evaluate the length of the distribution bar Calculate the Value of D Depth of slab Top cover Bottom cover Find out the No of Bars Compute the Total wt of steel required for slab reinforcement Conclusion
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Get PriceCalculation 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 = kg/m Steps for calculating steel weight 1
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Get PriceStep 1 Calculation of Numbers of Bars Step 2 Calculation of Cutting Length For Main Bar Distribution Bar Step 3 Top Distribution Step 4 Extra Top Bar Step 5 Calculation of Steel Weight BBS of One Way Slab Conclusion
Get PriceTotal length of distribution bars Ly = L 2 L1 2 L2 2 L3 2 L4 2 L5 2 L6 2 L7 = 2× 2× 2× 2× 2× 2× 2× = m Weight of distribution bars = 8^2 x /162 = kg Total weight of steel reinforcement = = kg BBS OF Circular Slab For Main Reinforcement
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Get PriceBeam Minimum steel percentage is equal to percent Steel Quantity is equal to /100 x 1 is equal to m 3 Steel Weight is equal to x 7850 is equal to kg /m 3 Maximum steel percentage is equal to percent Steel Quantity is equal to /100 x 1 is equal to m 3
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