Mechanics of Materials
Mechanics of materials, aka Strength of materials, is a subject which deals with the behavior of solid objects subject to stresses and strains.
The study of strength of materials often refers to various methods of calculating the stresses and strains in structural members, such as beams, columns, and shafts. The methods employed to predict the response of a structure under loading and its susceptibility to various failure modes takes into account the properties of the materials such as its yield strength, ultimate strength, Young's modulus, and Poisson's ratio; in addition the mechanical element's macroscopic properties (geometric properties), such as it length, width, thickness, boundary constraints and abrupt changes in geometry such as holes are considered.
vCalc's Mechanics of Materials contains formulas that help in determining the relationship between the structure of materials at atomic or molecular scales and their macroscopic properties.
Parent Categories
Mechanics of Materials Equations
- Bulk (volume) Strain MichaelBartmess Use Equation
- Change Length due to Strain MichaelBartmess Use Equation
- Cubic Yards to Cubic Meters KurtHeckman Use Equation
- Deformation Due to Temperature MichaelBartmess Use Equation
- Density of Air-free Water MichaelBartmess Use Equation
- elastic factor k with units MichaelBartmess Use Equation
- Elastic Longitudinal Deformation MichaelBartmess Use Equation
- Endurance Limit - Steel MichaelBartmess Use Equation
- Expansion Due to Temperature (with Material Lookup) MichaelBartmess Use Equation
- Flow Rate Unit Conversion KurtHeckman Use Equation
- Force Unit Conversion KurtHeckman Use Equation
- Hooke's Law (3D general) shear strainxy MichaelBartmess Use Equation
- Hooke's Law (3D general) shear strainyz MichaelBartmess Use Equation
- Hooke's Law (3D general) shear strainzx MichaelBartmess Use Equation
- Hooke's Law (3D general) strainx MichaelBartmess Use Equation
- Hooke's Law (3D general) strainy MichaelBartmess Use Equation
- Hooke's Law (3D general) strainz MichaelBartmess Use Equation
- Hooke's Law (plane stress y component) MichaelBartmess Use Equation
- Hooke's Law (plane stress) strainx MichaelBartmess Use Equation
- Hooke's Law (plane stress) strainz MichaelBartmess Use Equation
- Hooke's Law (uniaxial stress) strainy,z MichaelBartmess Use Equation
- Hooke's Law (uniaxial stress) strainx MichaelBartmess Use Equation
- kPa to mmHg KurtHeckman Use Equation
- Lame's First Parameter (E,G) MichaelBartmess Use Equation
- Lame's First Parameter (E,ν) MichaelBartmess Use Equation
- Lame's First Parameter (G,M) MichaelBartmess Use Equation
- Lame's First Parameter (G,ν) MichaelBartmess Use Equation
- Lame's First Parameter (K,E) MichaelBartmess Use Equation
- Lame's First Parameter (K,G) MichaelBartmess Use Equation
- Lame's First Parameter (K,ν) MichaelBartmess Use Equation
- Linear Elastic Stress (σ) MichaelBartmess Use Equation
- Load Factor, kc MichaelBartmess Use Equation
- Modulus of Elasticity MichaelBartmess Use Equation
- Original Length from Strain MichaelBartmess Use Equation
- Outward Axial Stress on a Cylinder MichaelBartmess Use Equation
- Percent Change in Area MichaelBartmess Use Equation
- Percent Change in Flow KurtHeckman Use Equation
- Percent Change in Length KurtHeckman Use Equation
- Percent Change in Volume KurtHeckman Use Equation
- Percent Change in Weight KurtHeckman Use Equation
- Percentage Elongation MichaelBartmess Use Equation
- Poisson's Ratio MichaelBartmess Use Equation
- Power Unit Conversion KurtHeckman Use Equation
- Pressure Units Conversion KurtHeckman Use Equation
- Principal Plane Stress (σ1=σmax) MichaelBartmess Use Equation
- Reduction in Area KurtHeckman Use Equation
- Shear Modulus MichaelBartmess Use Equation
- Shear Modulus (with input strain ratio) MichaelBartmess Use Equation
- Shear Strain MichaelBartmess Use Equation
- Shear Strain (pure) MichaelBartmess Use Equation
- Shear Stress MichaelBartmess Use Equation
- Size Factor, kb MichaelBartmess Use Equation
- Strain (Beam) MichaelBartmess Use Equation
- Strain (Engineering, Basic Definition) MichaelBartmess Use Equation
- Strain (Uniaxial) MichaelBartmess Use Equation
- Stress (Axial) in Cylinder MichaelBartmess Use Equation
- Stress (Radial) in Cylinder MichaelBartmess Use Equation
- Stress (Radial) out Cylinder MichaelBartmess Use Equation
- Stress (Tangential) in Cylinder MichaelBartmess Use Equation
- Stress (Tangential) out Cylinder MichaelBartmess Use Equation
- Stress on Cross Section MichaelBartmess Use Equation
- Surface Factor, ka MichaelBartmess Use Equation
- Temperature Coefficient of Expansion Lookup MichaelBartmess Use Equation
- Temperature Factor, kd MichaelBartmess Use Equation
- Tons (US) to Metric Tons KurtHeckman Use Equation
- Torsion Stress MichaelBartmess Use Equation
- Volume Unit Conversion KurtHeckman Use Equation
- Young's Modulus (EiE) MichaelBartmess Use Equation
Mechanics of Materials Data Items
- Boiling Point of Copper JenniferJenkins Use Data Item
- Brass Density JenniferJenkins Use Data Item
- Brinell Hardness of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Brinell Hardness of Beryllium Copper JenniferJenkins Use Data Item
- Brinell Hardness of Ductile Cast Iron JenniferJenkins Use Data Item
- Brinell Hardness of Graphite JenniferJenkins Use Data Item
- Brinell Hardness of Gray Cast Iron JenniferJenkins Use Data Item
- Brinell Hardness of High Carbon Steel JenniferJenkins Use Data Item
- Brinell Hardness of Malleable Cast Iron JenniferJenkins Use Data Item
- Brinell Hardness of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Brinell Hardness of Tool Steel JenniferJenkins Use Data Item
- Brinell Hardness of White Cast Iron JenniferJenkins Use Data Item
- Brinell Harness of Brass JenniferJenkins Use Data Item
- Carbon Fiber Thermal Conductivity JenniferJenkins Use Data Item
- Copper Density KurtHeckman Use Data Item
- Density of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Density of Beryllium Copper JenniferJenkins Use Data Item
- Density of Carbon Fiber JenniferJenkins Use Data Item
- Density of Ductile Cast Iron JenniferJenkins Use Data Item
- Density of Graphite JenniferJenkins Use Data Item
- Density of Gray Cast Iron JenniferJenkins Use Data Item
- Density of High Carbon Steel JenniferJenkins Use Data Item
- Density of Malleable Cast Iron JenniferJenkins Use Data Item
- Density of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Density of Porcelain JenniferJenkins Use Data Item
- Density of Tool Steel JenniferJenkins Use Data Item
- Density of White Cast Iron JenniferJenkins Use Data Item
- Heat Capacity of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Heat Capacity of Beryllium Copper JenniferJenkins Use Data Item
- Heat Capacity of Brass JenniferJenkins Use Data Item
- Heat Capacity of Carbon Fiber JenniferJenkins Use Data Item
- Heat Capacity of Ductile Cast Iron JenniferJenkins Use Data Item
- Heat Capacity of Graphite JenniferJenkins Use Data Item
- Heat Capacity of Gray Cast Iron JenniferJenkins Use Data Item
- Heat Capacity of High Carbon Steel JenniferJenkins Use Data Item
- Heat Capacity of Malleable Cast Iron JenniferJenkins Use Data Item
- Heat Capacity of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Heat Capacity of Porcelain JenniferJenkins Use Data Item
- Heat Capacity of Tool Steel JenniferJenkins Use Data Item
- Heat Capacity of White Cast Iron JenniferJenkins Use Data Item
- Melting Point of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Melting Point of Beryllium Copper JenniferJenkins Use Data Item
- Melting Point of Brass JenniferJenkins Use Data Item
- Melting Point of Carbon Fiber JenniferJenkins Use Data Item
- Melting Point of Copper JenniferJenkins Use Data Item
- Melting Point of Ductile Cast Iron JenniferJenkins Use Data Item
- Melting Point of Graphite JenniferJenkins Use Data Item
- Melting Point of Gray Cast Iron JenniferJenkins Use Data Item
- Melting Point of High Carbon Steel JenniferJenkins Use Data Item
- Melting Point of Malleable Cast Iron JenniferJenkins Use Data Item
- Melting Point of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Melting Point of Porcelain JenniferJenkins Use Data Item
- Melting Point of Tool Steel JenniferJenkins Use Data Item
- Melting Point of White Cast Iron JenniferJenkins Use Data Item
- Modulus of Elasticity for Austenitic Stainless Steel JenniferJenkins Use Data Item
- Modulus of Elasticity for Beryllium Copper JenniferJenkins Use Data Item
- Modulus of Elasticity for Brass JenniferJenkins Use Data Item
- Modulus of Elasticity for Carbon Fiber JenniferJenkins Use Data Item
- Modulus of Elasticity for Copper JenniferJenkins Use Data Item
- Modulus of Elasticity for Ductile Cast Iron JenniferJenkins Use Data Item
- Modulus of Elasticity for Graphite JenniferJenkins Use Data Item
- Modulus of Elasticity for Gray Cast Iron JenniferJenkins Use Data Item
- Modulus of Elasticity for Malleable Cast Iron JenniferJenkins Use Data Item
- Modulus of Elasticity for Martensitic Stainless Steel JenniferJenkins Use Data Item
- Modulus of Elasticity for White Cast Iron JenniferJenkins Use Data Item
- Modulus of Elasticity of High Carbon Steel JenniferJenkins Use Data Item
- Modulus of Elasticity of Tool Steel JenniferJenkins Use Data Item
- Mohs Hardness of Porcelain JenniferJenkins Use Data Item
- Thermal Conductivity of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Thermal Conductivity of Beryllium Copper JenniferJenkins Use Data Item
- Thermal Conductivity of Brass JenniferJenkins Use Data Item
- Thermal Conductivity of Copper JenniferJenkins Use Data Item
- Thermal Conductivity of Ductile Cast Iron JenniferJenkins Use Data Item
- Thermal Conductivity of Graphite JenniferJenkins Use Data Item
- Thermal Conductivity of Gray Cast Iron JenniferJenkins Use Data Item
- Thermal Conductivity of High Carbon Steel JenniferJenkins Use Data Item
- Thermal Conductivity of Malleable Cast Iron JenniferJenkins Use Data Item
- Thermal Conductivity of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Thermal Conductivity of Porcelain JenniferJenkins Use Data Item
- Thermal Conductivity of Tool Steel JenniferJenkins Use Data Item
- Thermal Conductivity of White Cast Iron JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Beryllium Copper JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Brass JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Carbon Fiber JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Copper JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Ductile Cast Iron JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Graphite JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Gray Cast Iron JenniferJenkins Use Data Item
- Ultimate Tensile Strength of High Carbon Steel JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Malleable Cast Iron JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Porcelain JenniferJenkins Use Data Item
- Ultimate Tensile Strength of Tool Steel JenniferJenkins Use Data Item
- Ultimate Tensile Strength of White Cast Iron JenniferJenkins Use Data Item
- Yield Strength of Austenitic Stainless Steel JenniferJenkins Use Data Item
- Yield Strength of Beryllium Copper JenniferJenkins Use Data Item
- Yield Strength of Brass JenniferJenkins Use Data Item
- Yield Strength of Carbon Fiber JenniferJenkins Use Data Item
- Yield Strength of Copper JenniferJenkins Use Data Item
- Yield Strength of High Carbon Steel JenniferJenkins Use Data Item
- Yield Strength of Martensitic Stainless Steel JenniferJenkins Use Data Item
- Yield Strength of Tool Steel JenniferJenkins Use Data Item
Mechanics of Materials Datasets
- Attachments
No attachments |