cement concrete calculator | pcc calculator | rcc,calculate cement concrete mix design or estimate how much cement concrete volume is required for your construction using our free online calculator. know exactly how many bags, kg and ton of cement, sand and aggregate is needed of specific cement, sand and aggregate ratio (m20, m15, m10, m7.5).concrete weight calculator | dumpsters.com,how much does concrete weigh? the weight of concrete is calculated based on the length, width and thickness of the slab. remember: a cubic foot or yard of concrete weighs less once it’s broken up due to the empty spaces between the pieces. concrete weight per cubic foot • a solid slab of concrete weighs 150 pounds per cubic foot..
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the weight of a concrete slab can be estimated by computing the volume of the slab and multiplying the volume (v) by the density of the concrete. the volume is simply the area (a = l*w) times the depth (d). the formula for the weight of a slab used in this calculator is: tw = l•w•d•md.
1) for concrete slab. we can calculate weight of concrete slab estimated by multiplying the volume of slab and density of concrete, the volume is simply represented as area (v = area × depth) times the depth. now you can calculate weight of comcrete slab in following steps:-1) a concrete slab of dimension 10 feet long by 10 feet wide by 4 inch depth
calculate weight of concrete slab. we can calculate weight of concrete slab estimated by multiplying the volume of slab and density of concrete, the volume is simply represented as area (v = area × depth) times the depth. now you can calculate weight of complete slab in following steps:-. total weight = volume × density.
concrete mix estimation. our mix-on-site concrete calculation is based on batching by volume (large construction sites employ batching by weight which is more exact). you can also estimate the quantity of sand and gravel required by weight; simply multiply the volumetric quantity of sand and gravel with 1400 kg/m 3 (bulk density of sand) and 1600
the concrete calculator™ allows to perform the analysis or design of up to six different section shapes depending on the type of load selected. the type of loads (compression, bending, shear, etc.) for which the analysis or design can be made is different for each shapes. – rectangular section – pure bending – compression and bi-axial bending
concrete calculator. use our concrete calculator to accurately estimate both the volume and weight of concrete that you will need to fill a specific area based on its shape and size. as a contingency, we suggest you buy slightly more concrete than you have estimated you will need, just in case.
formula's used: length * width * depth = v. example calculation: slab length = 10 m width = 8 m concrete slab thickness = 100 mm --- changing mm to m 100 ÷ 1000 = 0.1 10 * 8 * 0.1 = 8. you will need 8 cubic metres of concrete for this slab.
similarly, how do you calculate water load on a slab? dead load: self weight of the slab= mass / weight of the slab i.e. density *area. as we know that density of reinforced concrete is 25 kn/m3. here length is considered to be 1m. three types of load are considered while designing slab: dead load of the slab. live load of the slab. floor finish load.
load capacity of simply supported concrete slabs. load capacities of simply supported concrete slabs: imposed loads varies from approximately 1.5 kn/m2 (153 kg/m2) in domestic buildings to approximately 1 0 kn/m2 (1053 kg/m2) in heavy industrial areas. 500
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let’s say i need to construct a square concrete slab that is 12 feet wide (an area of 144 square feet) and 4 inches deep. i want to calculate how many 40 lb bags of concrete i need. the calculator would perform the following calculations to calculate that the slab would need 174 bags:
e6cfff90-da27-11e2-8e97-bc764e04d25f. the rebar weight calculator computes the total weight concrete slab with one rebar grid mat of reinforcement bars (rebar) needed for a concrete slab based on the dimensions of the slab and the spacing and size of the rebar. instructions: choose units and enter the following:
concrete calculator . how much concrete do i need? select the volume type you want to calculate from the five options below. slab footing column steps known enter the length (m), width (m) and depth (mm) of the slabs. = = = total volume of slab concrete (m 3) clear . calculate . enter the overall lengths (m) of the footings, and their width (mm
firstly find the volume of concrete in cu.m. then if it is p.c.c multiply it by 2400 as density of concrete is 2400kg/ cu.m now for r.c.c u know the no. of bars and their lengths. find cross sectional area of each bar and multiply by length e.g...
the thickness of the base plate is 0.3 m. calculation : the volume of the foundation is equal to v f = 10 * 6 * 0.3 = 18 m. for the reinforcement of such a foundation, it is planned to use two layers of rebar mesh 12 mm in diameter. (with a radius of 0.006 m.) with a total length of 1232 m.
concrete can be ordered in 1/4 yard increments with a minimum of 1 yard. slump – slump is a measure of the consistency of the concrete. a 4-inch slump (the measure of the distance a wet concrete cone will fall) is typical. if you want more slump you may want to speak with a technical representative to discuss your specific needs.
the concrete calculator is calibrated to exactly 23.60 kn/m 3 unit weight per concrete volume. which is, as internationally defined, how heavy is normal reinforced concrete. in uscs units (united states customary system units), its weight comes to ~150lb/ft 3 and ~2,400 kg/m 3 if
if you're mixing the concrete by hand and you need to calculate the amount of pre-mixed concrete bags needed to do your project, this calculator will also figure the amount of bags you need. just enter your thickness, length, and width, then click on 'calculate' and the calculator will show you how many 40 lb, 60 lb, and 80 lb bags you need to do your slab.
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. suppose, total area of the slab = 200 square feet. so, total self weight of the slab = self weight
calculate self weight of the concrete slabs; 3. estimate any other loads (e.g. live load for maintenance) likely to come on the concrete slab; 4. add (1)+(2)+(3); 5.
the ratio of the stiffness of the slab to the stiffness of the foundation. 1. for 6' to 10' thick slabs on grade with 'k' values between 100 pci and 200. 15% to 20% for a wheel (or post) spacing of 3' to 4'. 2. for wheel (or post) spacings of 5' to 15', the increase in stress is. approximately 0% to 5%.
concrete material calculator. volume of concrete. add your concrete proportion (for example : ratio is (1 : 2 : 4) , enter 1 in cement , 2 in sand and 4 in aggregate. cement.
a slab is in the shape of a rectangle, in order to calculate the volume of concrete required for the slab, find out the surface area of the slab and then multiply it with the depth/thickness of slab as shown in fig. from the above fig length = 6m, breadth = 5m and thickness/depth of the slab = 0.15m. the volume of concrete = area of rectangle x depth
weight of concrete = 0.414 x 2400 = 993.6 kg; weight of steel (1%) in concrete = 0.414x 0.01 x 8000 = 33 kg; total weight of column = 994 + 33 = 1026 kg = 10kn; while doing column design calculations, we assume the self weight of columns is between 10 to 15 kn per floor.