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- Structural Engineering Calc. Vs. iConcrete
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Structural Engineering Calc. vs iConcrete Utilisation & Stats
Structural Engineering Calculator contains 58 Calculations of different Structural and Civil Engineering parameters.
- Available in Imperial (USCS) and Metric Units (SI UNITS).
Structural Engineering Calc. contains following 58 Calculators:
1.Shear Capacity of Flexural Members
2.Critical Ratio
3.Effective Length Factor
4.Slenderness Ratio
5.Allowable Compressive Stress of Columns (Slenderness Ratio ‹ Critical Ratio)
6.Allowable Compressive Stress of Columns (Slenderness Ratio › Critical Ratio)
7.Safety Factor
8.Maximum load - Axially Loaded Members
9.Allowable Bending Stress (Compact Members)
10.Allowable Bending Stress (NonCompact Members)
11.Moment Gradient Factor
12.Allowable Stress - Compression Flange
13.Plastic Moment
14.Maximum Unbraced Length for Plastic Design (I-Shaped Beams)
15.Maximum Unbraced Length for Plastic Design (Solid Rectangular Bars and Symmetrical Box Beams
16.Laterally Unbraced Length - Full Plastic Bending capacity (I Shapes and Channels)
17.Laterally Unbraced Length - Full Plastic Bending capacity (Solid Rectangular Bars and Box Beams)
18.Laterally Unbraced Length - Full Plastic Bending capacity (Solid Rectangular Bars bent about major axis)
19.Limiting Buckling Moment
20.Nominal Moment (Compact Beams)
21.Critical Elastic Moment - Compact Beams
22.Critical Elastic Moment - Solid Rectangular Bars and Symmetrical Box
23.Allowable Shear Stress
24.Allowable Shear Stress with Tension Field Action
25.Area required by the Bearing Plate (Plate Covering the Full Area of Concrete Support)
26.Area required by the Bearing Plate (Plate Covering ‹ than the Full Area of Concrete Support)
27.Minimum Plate Thickness
28.Area required for a Base Plate under a Column supported by a Concrete
29.Plate Length
30.Thickness of Plate (Cantilever Bending)
31.Flange Thickness (H-Shaped Column)
32.Web thickness (H-Shaped Columns)
33.Actual Bearing Pressure under the Plate
34.Allowable Bearing Stress (Rollers/Rockers)
35.Web Depth/Thickness Ratio (Unstiffened Web)
36.Web Depth/Thickness Ratio (Transverse Stiffeners)
37.Deflection at the Top (Wall with Solid Rectangular Cross Section)
38.Deflection at the Top (Shear Wall with a Concentrated Load at the Top)
39.Deflection at the Top (Fixed Wall against rotation at the top)
40.Combined Axial Compression (Ratio of Computed Axial Stress to Allowable Axial Stress › 0.15)
41.Combined Axial Compression(Ratio of Computed Axial Stress to Allowable Axial Stress ‹= 0.15)
42.Axial Stress for a Concentrated Load (Applied at a distance larger than depth of the beam from the end of beam)
43.Axial Stress for a Concentrated Load (Applied close to the beam end)
44.Concentrated Load of Reaction (Applied at a distance from the beam end of atleast half the depth of beam)
45.Concentrated Load of Reaction (Applied closer than half the depth of beam)
46.Relative Slenderness of Web and Flange
47.Total Column Load (Relative Slenderness of Web and Flange ‹ 2.3)
48.Total Column Load (Relative Slenderness of Web and Flange › 1.7)
49.Combined Cross-Sectional Area of a pair of Column-Web Stiffeners
50.Column Web Depth clear of Fillets"
51.Thickness of Column Flange"
52.Allowable Bearing Stress on Projected Area of Fasteners
53.Maximum Unit Stress in Steel
54.Maximum Stress in the Bottom Flange
55.Number of Shear Connectors
56.Total Horizontal Shear (Based on Area of Concrete Flange)
57.Total Horizontal Shear (Based on Area of Steel Beam)
58.Total Horizontal Shear (Based on Area of Longitudinal Reinforcement)
- Available for both iPad and iPhone.
- Can use either ( . ) dot or ( , ) comma as decimal separator, based on regional settings of the device.
- Apple App Store
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iConcrete: Design of Reinforced Concrete Beams.
For all structural engineers and reinforced concrete designers: This engineering application for the iPhone or the iPod Touch calculates the dimensions and area steel reinforcement for rectangular and Tee beams (T-Beams) of reinforced concrete members. That includes single and double reinforced beams.
The program calculates the strength of singly reinforced and doubly reinforced T and Rectangular concrete beams. It calculates positive moment, negative moment and shear. Based on given positive and negative moments the program calculates the balanced depth and balanced area of steel reinforcement. It also calculates the weight of concrete and steel and the total weight of the section.
The program is based on ACI 318. Other codes will be added in future revisions. The balanced section and reinforcement and the strength is calculated in two methods: Working Stress Design (WSD) and Ultimate Strength Design (USD) which is also called Limit State Design (LSD) or Strength Design Method (SDM).
The input is beam width, beam depth, areas of tension reinforcement and compression reinforcement, steel yield strength, concrete ultimate strength, size and spacing of sterrups, and for the T-Beam, width and depth of flange slab. to find the balanced section dimensions, you need to input the positive and negative moments and to find the strength you need to input the depth and areas of steel. The modular ratio (N) for working stress design can be input or calculated.
The input can be in mm or inch units, the output is in mm or inch units. The weight can be displayed in kg/m or Lb/ft and the moments and shears are in kN, Lb, kN.m and Lb.ft. The input data can also be converted between the two unit systems.
See also iSection in the App Store.
Keywords: Reinforced Concrete, خرسانة مسلحة, Béton Armé, คอนกรีตเสริมเหล็ก, 钢筋混凝土, Beton Arme, Stahlbeton, Cemento Armato, חיזק בטון, Железобетонных конструкций, Tăng cường bê tông, 鉄筋コンクリート, Hormigón Armado, Armerad betong.
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Structural Engineering Calc. VS.
iConcrete
13écembre d, 2024