For end-users and operators there is a special SafanDarley E-Toolbox, with the E-Bending application for calculation of the required bending force, and the E-Cut app for calculating the maximum cutting capacity for a SafanDarley guillotine shear. SafanDarley BV will continue in developing innovative machines and usefully apps for metal working industry.

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Similar Apps

1
SafanDarley E-App
2
Bystronic Bend Solver
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Beam Calculator lite
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ContBmAnlsy
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Structural Engineering Calc.
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Size Flo
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Structural Engineering lite
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Walter RADR
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ISO Screws Basic Calculator
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A-Frame 3D

SafanDarley Toolbox alternatives

i-nigma QR Code, Data Matrix and 1D barcode reader

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Bosch Toolbox

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Volvo On Call

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More Information About alternatives

SafanDarley E-App

The SafanDarley E-App is a practical application for users who bend or cut metal plates. It gives all kind of information about SafanDarley and his product ranges. SafanDarley BV will continue in developing innovative machines and usefully apps for metal working industry.

  • size 7.9 MB
  • version 2.01

Bystronic Bend Solver

The Bystronic Bend Solver calculates very easy many parameters for bending sheet metal andcomes with lovely graphics. The Bystronic Bend Solver is supporting the bending / press brake operator, team leader orline manager perfectly in his day to day workflow. Bystronic: Best choice.www.bystronic.comFeatures:+ Calculation of optimal settings for Bystronic bending machines+ Calculation of bending force+ Calculation of box height+ Calculation of stamp height+ Recommendation of tools and machines+ Numerous metal sheets to choose+ Graphical indication of bending part

  • size 2.3 MB
  • version 2.0.1

Beam Calculator lite

Beam Calculator contains 34 calculators to calculate and convert different Beam and Civil Engineering parameters. Available in imperial and metric units. Available in Metric and Imperial Units Critical Bending Moment (Rectangular Cross Section) Critical Bending Moment (Open Cross Section) Critical Bending Moment (Nonuniform Bending Moment Gradient) Moment Gradient FactorMore Calculators available for in-App Purchase : Maximum Stress (Axial and Bending Loads) Maximum Stress (Deflection due to Bending is Large) Deflection (Axial Compression and Bending) Critical Buckling Load Stress (Unsymmetrical Bending) Total Unit Stress (Eccentric Loading) Deflection (Eccentric Loading) Stress (Eccentric Loading) Trial Design Area of Steel Area of Compression Depth of Compression Area Distance from Centroid to Extreme Compressive Fiber Nominal Moment Capacity Adjusted Steel Area Balanced Steel Reinforcement Ratio Minimum Steel Reinforcement Ratio Maximum Steel Reinforcement Ratio Required Beam Dimensions Concrete Shear Strength Steel Shear Strength Maximum Allowable Steel Shear Maximum Allowable Total Shear Horizontal Shear Steel Area Angled Shear Steel Area Vertical Stirrup Spacing Angled Stirrup Spacing Vertical Stirrup Shear Strength Angled Stirrup Shear Strength Stirrup Embedment Length Maximum Tension Steel Spacing Available in English, Franais, Espaol, Italiano, Deutsch & Portugus

  • size 21.8 MB
  • version 2.0

ContBmAnlsy

Continuous Beam Analysis Provides Structure analysis for up to six span continuous Beams having both far ends with various fixity. Following are the features of the App.- You can have spans of various length and you can change span lengths.- Up to six Point Load you can add or change or delete Point Load in each span.- You can change Uniformly Distributed Load by value and you can change placement of UDL load in each span separately. - Generate Bending Moment Diagram.- Generate Shear Force Diagram as well.- find moment and shear force value on entire Beam length.-For various possible combination of UDL and Point loads it generates maximum and minimum Shear Force and Bending Moment for design purpose.

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  • version 1.3

Structural Engineering Calc.

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 Members2.Critical Ratio3.Effective Length Factor4.Slenderness Ratio5.Allowable Compressive Stress of Columns (Slenderness Ratio Critical Ratio)6.Allowable Compressive Stress of Columns (Slenderness Ratio Critical Ratio)7.Safety Factor8.Maximum load - Axially Loaded Members9.Allowable Bending Stress (Compact Members)10.Allowable Bending Stress (NonCompact Members)11.Moment Gradient Factor12.Allowable Stress - Compression Flange13.Plastic Moment14.Maximum Unbraced Length for Plastic Design (I-Shaped Beams)15.Maximum Unbraced Length for Plastic Design (Solid Rectangular Bars and Symmetrical Box Beams16.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 Moment20.Nominal Moment (Compact Beams)21.Critical Elastic Moment - Compact Beams22.Critical Elastic Moment - Solid Rectangular Bars and Symmetrical Box23.Allowable Shear Stress24.Allowable Shear Stress with Tension Field Action25.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 Thickness28.Area required for a Base Plate under a Column supported by a Concrete29.Plate Length30.Thickness of Plate (Cantilever Bending)31.Flange Thickness (H-Shaped Column)32.Web thickness (H-Shaped Columns)33.Actual Bearing Pressure under the Plate34.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 Flange47.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 Stiffeners50.Column Web Depth clear of Fillets51.Thickness of Column Flange52.Allowable Bearing Stress on Projected Area of Fasteners53.Maximum Unit Stress in Steel54.Maximum Stress in the Bottom Flange55.Number of Shear Connectors56.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.

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Size Flo

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Structural Engineering lite

Structural Engineering Calculator contains 58 Calculations of different Structural and Civil Engineering parameters.- Available in Imperial (USCS) and Metric Units (SI UNITS).Lis of 58 Calculators:1.Shear Capacity of Flexural Members2.Critical Ratio3.Effective Length Factor4.Slenderness Ratio5.Allowable Compressive Stress of Columns (Slenderness Ratio Critical Ratio)More Calculators available for in-App Purchase :6.Allowable Compressive Stress of Columns (Slenderness Ratio Critical Ratio)7.Safety Factor8.Maximum load - Axially Loaded Members9.Allowable Bending Stress (Compact Members)10.Allowable Bending Stress (NonCompact Members)11.Moment Gradient Factor12.Allowable Stress - Compression Flange13.Plastic Moment14.Maximum Unbraced Length for Plastic Design (I-Shaped Beams)15.Maximum Unbraced Length for Plastic Design (Solid Rectangular Bars and Symmetrical Box Beams16.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 Moment20.Nominal Moment (Compact Beams)21.Critical Elastic Moment - Compact Beams22.Critical Elastic Moment - Solid Rectangular Bars and Symmetrical Box23.Allowable Shear Stress24.Allowable Shear Stress with Tension Field Action25.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 Thickness28.Area required for a Base Plate under a Column supported by a Concrete29.Plate Length30.Thickness of Plate (Cantilever Bending)31.Flange Thickness (H-Shaped Column)32.Web thickness (H-Shaped Columns)33.Actual Bearing Pressure under the Plate34.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 Flange47.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 Stiffeners50.Column Web Depth clear of Fillets51.Thickness of Column Flange52.Allowable Bearing Stress on Projected Area of Fasteners53.Maximum Unit Stress in Steel54.Maximum Stress in the Bottom Flange55.Number of Shear Connectors56.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.

  • size 22.2 MB
  • version 4.1

Walter RADR

The Walter RADR app helps metal working industry professionals work better and more efficiently by providing the most innovative solutions in high performance abrasives, power tools, tooling, industrial parts washing systems, cleaners, degreasers and lubricants. Starting from the abrasives hub, the welding zone or industrial cleaning and degreasing station, use the Walter Radar app to identify the best product to use in specific metal fabricating and finishing jobs. BIO-CIRCLE eliminates the need for frequent replenishment, monthly waste disposal and toxic material management challenges associated with solvent-based cleaning systems.

  • size 5.1 MB
  • version 1.1.1

ISO Screws Basic Calculator

This App is not a professional Software, but provide you a Basic Calculation for the ISO screw connections. Starting from the dimensions of the screws and the mechanical & physical properties of the connection, this App calculates simultaneously all the most important parameters usually considered for the stability of the Screw connection. Inputs:Material Ultimate Stress [u]Material Yield Stress [y]Material Maximum Compression Stress [c]Material Youngs Modulus [E]Bolt Head Plate Friction CoefficientBolt Thread Plate Friction CoefficientScrews Nominal & Head DiametersScrews Length & Hole DepthExternal Axial Load and Torque Outputs:Axial Force on the ScrewCompression Force On PlatesMaximum Possible Transverse Load Total Stress On ScrewStress on ThreadScrew Head Contact Pressure

  • size 13.6 MB
  • version 1.0

A-Frame 3D

The Space Frame is considered to be the complicated structure due to the members of such frames may be oriented in any directions in three-dimensional space more over the external loads oriented in any arbitrary directions can be applied to joints, as well as members. A-Frame 3D is an app that is so easy to use yet so powerful Data input is just as simple as- Node coordination (x, y, z)- Member alignment (node-i to node-j)- Applied loads to each nodes and members- Material properties E, G, Iy, Ix, J and A valuesNot only A-Frame can solve the Space Frame but the app also showing the calculation step by step for the result data so that you can counter check the correctness of the calculation. A-Frame 3D solves the space frame by using the Stiffness Matrix Method, providing following features:- The frame members can be aligned in any direction in space.- Load applied to each members can oriented in any direct around the frame members.- Equilibrium check for Forces & Bending Moments- Deformation of each points along the members.- Shear Force Diagram (S.F.D) and Bending Moment Diagram (B.M.D) of each sections along each members in 3D.

  • size 25.8 MB
  • version 1.6