Oturum Aç

Engineering stress is calculated as the load divided by the original, undeformed cross-sectional area. It approximates a material under load. This approximation is especially relevant post-yield in ductile materials. Though engineering stress-strain diagrams are often used for their convenience and accessibility, they can sometimes fall short in accuracy, particularly when dealing with large strain values.

In contrast, true stress offers a more precise portrayal. It is computed by dividing the applied load by the instantaneous cross-sectional area of the specimen during deformation. As the load increases, the cross-sectional area decreases, which is accurately reflected in the true stress value. During the necking phase, the true stress keeps increasing as it is proportional to the load while being inversely proportional to the area, and this continues until the specimen eventually ruptures.

The concept of true strain further enhances this accurate depiction. It considers successive recorded length values. Each increment of the distance between the gauge marks is divided by its corresponding length to obtain the elementary strain. The true strain is the accumulation of these elementary strain values, precisely reflecting the material's behavior. Unlike engineering stress-strain diagrams, true stress versus true strain diagrams maintain consistency during the necking phase and across various tests, such as tensile and compressive tests.

Etiketler
True StressTrue StrainEngineering StressDuctile MaterialsLoadCross sectional AreaDeformationNecking PhaseStress strain DiagramsTensile TestsCompressive TestsMaterial Behavior

Bölümden 18:

article

Now Playing

18.5 : True Stress and True Strain

Stress and Strain - Axial Loading

242 Görüntüleme Sayısı

article

18.1 : Normal Strain under Axial Loading

Stress and Strain - Axial Loading

389 Görüntüleme Sayısı

article

18.2 : Stress-Strain Diagram

Stress and Strain - Axial Loading

492 Görüntüleme Sayısı

article

18.3 : Stress-Strain Diagram - Ductile Materials

Stress and Strain - Axial Loading

493 Görüntüleme Sayısı

article

18.4 : Stress-Strain Diagram - Brittle Materials

Stress and Strain - Axial Loading

748 Görüntüleme Sayısı

article

18.6 : Hooke's Law

Stress and Strain - Axial Loading

304 Görüntüleme Sayısı

article

18.7 : Plastic Behavior

Stress and Strain - Axial Loading

165 Görüntüleme Sayısı

article

18.8 : Fatigue

Stress and Strain - Axial Loading

155 Görüntüleme Sayısı

article

18.9 : Deformation of Member under Multiple Loadings

Stress and Strain - Axial Loading

114 Görüntüleme Sayısı

article

18.10 : Statically Indeterminate Problem Solving

Stress and Strain - Axial Loading

319 Görüntüleme Sayısı

article

18.11 : Thermal Strain

Stress and Strain - Axial Loading

307 Görüntüleme Sayısı

article

18.12 : Temperature Dependent Deformation

Stress and Strain - Axial Loading

115 Görüntüleme Sayısı

article

18.13 : Poisson's Ratio

Stress and Strain - Axial Loading

302 Görüntüleme Sayısı

article

18.14 : Generalized Hooke's Law

Stress and Strain - Axial Loading

672 Görüntüleme Sayısı

article

18.15 : Bulk Modulus

Stress and Strain - Axial Loading

242 Görüntüleme Sayısı

See More

JoVE Logo

Gizlilik

Kullanım Şartları

İlkeler

Araştırma

Eğitim

JoVE Hakkında

Telif Hakkı © 2020 MyJove Corporation. Tüm hakları saklıdır