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Our youtube channel: FemexIran This channel includes: ⭐️ Tips and tricks about Abaqus ( one post every day ) ⭐️ Notification about publishing new tutorials ⭐️ Notifications about discounts on premium tutorials and online consultancy and tutoring service

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🛎 We want to inform you that today is the last day for the 50% discount code "october2023". The deadline for using the discount code will not be extended. You can use the discount code to purchase each of the premium tutorials and packages presented on our YouTube channel. 💻 Link to our Youtube channel: https://youtube.com/@FemexIran ♦️ Link to the discount code video: https://youtu.be/McXVQ0zDUd0?si=KATMfoopWFUtwiP6 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" until the end of today. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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50 percent discount code for all the premium Abaqus tutorials and packages from October 5th to 20th

Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=705s

Including 39 hours of step-by-step tutorials. Discount code: october2023 Discount percentage: 50% If you want to purchase any premium tutorials and packages with a discount, please send us the names of the tutorials or packages with the discount code. You can send an email or text us via Telegram or WhatsApp. [email protected] (+98) 9351324013 (Telegram and WhatsApp) Certain free tutorials offer extended premium packages. The prices, excluding any discounts, are outlined in the description below the videos. When you provide us with the discount code "october2023“, you will only be required to pay half of the stated prices. If you specify the names of the premium tutorials or packages you desire without mentioning the discount code, the 50 percent discount will not be applied to your orders. The discount code can be utilized multiple times between October 5th and 20th. There are no restrictions on the quantity of premium tutorials or packages you can purchase using the discount. The sole limitation on the discount code is its expiration, which is the end of October 20th.

🛎 The Comprehensive Abaqus Package is useful for these groups of people: - Master or Ph.D. students who want to use Abaqus in doing their theses. - Graduated mechanical, aerospace, structure, and metallurgy students who want to add FEM and Abaqus to their skills. - Mechanical, aerospace, and structure design engineers who want to add FEM and Abaqus to their skills. - Everybody who has experience in using Abaqus and wants to improve their skills in using it. 🎯 According to your major or field of interest, you can buy mechanical or structure sub-packages that have a more appropriate price. 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=AkxktiyvLeU&t=4s 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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Comprehensive Abaqus Package

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. The Comprehensive Abaqus Package consists of sixteen chapters. The package suits engineers from different backgrounds, including Mechanical, Aerospace, Civil, Metallurgy, and Textile engineering. Studying this package doesn’t need any prerequisites. Also, you can purchase each of its chapters individually. Even you can ask for a customized package corresponding to your project or thesis. The Comprehensive Abaqus Package allows beginners and intermediate users to become general FE analysts and prepare for related occupations. Each of the mentioned packages and individual chapters includes: - CAE, JNL and INP files - Step-by-step tutorials with detailed explanations and investigation of the results - Slides and reference papers and standards Also, you can pay the cost of the mentioned packages in 2, 3 or 4 installments according to your budget or income. These gifts are provided for the buyers: 1) A permanent 30 % discount to purchase every premium package or tutorial on the FEMEX YouTube channel. 2) 30 % discount on online tutoring and consultancy services. This discount is valid for up to four months. 3) Chapter 8 cannot be purchased separately. If you buy chapter 9 or each of its examples separately, chapter 11, chapter 14 or chapter 16, also you will have access to chapter 8's files. 4) Chapter 12 cannot be purchased separately. If you buy any other chapters, also you will have access to chapter 12's files. Comprehensive Abaqus Package: Including 16 chapters (full package) - duration: 39 hours - price: 165 EUR (instead of 275 EUR) Abaqus Essentials Package: Including chapters 1 through 9 - duration: 20 hours - price: 95 EUR (instead of 120 EUR) Abaqus Package for Mechanical engineers: Including chapters 1 through 15 - duration: 35 hours - price: 145 EUR (instead of 245 EUR) Abaqus Package for Structure engineers: Including chapters 1 through 16, except chapter 15 and example 1 of chapter 9 - duration: 35 hours - price: 145 EUR (instead of 235 EUR) Abaqus Package for Steel Structures: Including chapters 1 through 14, except example 1 of chapter 9 - duration: 32 hours - price: 130 EUR (instead of 205 EUR) In the future, updates will be provided for free for everybody who purchases each chapter or each package. The cost of each chapter or package will increase after each update for new buyers. But those who purchase the package would have endless access to all the upcoming updates. This will make the content up to date for new needs and new problems which must be solved via FE simulation. Table of content: - Chapter 1: Introduction to the Finite Element Method - Chapter 2: System of units in Abaqus - Chapter 3: Modeling a beam fixed at both ends using beam elements - Chapter 4: Modeling a beam fixed at both ends using solid elements (price of chapters 1 through 4 together: 15 EUR) - Chapter 5: Meshing and partitioning (price: 20 EUR) - Chapter 6: Modeling tensile test (price: 20 EUR) - Chapter 7: Modeling of a plate with stiffeners under blast load (price: 20 EUR) - Chapter 8: Contact theory Chapter 8 cannot be purchased separately. If you buy chapter 9 or each of its examples separately, chapter 11, chapter 14 or chapter 16, also you will have access to chapter 8's files. - Chapter 9: Solving quasi-static problems using dynamic steps (total price: 45 EUR) example 1 (2D and 3D rolling simulation) + quasi-static theories = 25 EUR example 2 (bolt connection simulation) + quasi-static theories = 30 EUR - Chapter 10: Buckling and post-buckling (price: 30 EUR) - Chapter 11: Damage analysis (total price: 50 EUR) example 1…

🛎 Impact Simulation of Composites and Fiber Metal Laminates via Abaqus 🎯 This tutorial includes: - How to define Hashin damage and visualize its parameters - How to define cohesive surface between each two layer - How to conduct Low Velocity Impact (LVI) simulation - How to define Tie constraint using the Find Contact Pair tool - How to calculate the impact force and compare it with the experiment 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=87oMNzBokYI&t=29s 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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Impact Simulation of Composites and Fiber Metal Laminates via Abaqus preview

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=414s

Including 39 hours of step-by-step tutorials. Chapter 11 of the package is related to this tutorial. Step by step tutorials for using cohesive elements and cohesive surfaces:

https://www.youtube.com/watch?v=O6FM2MgUgQs

Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. This is the preview of one of our premium tutorials named: “Impact Simulation of Composites and Fiber Metal Laminates via Abaqus ”. Based on a reference paper, the low-velocity impact simulation of fiber metal laminate is conducted. The reference paper studies the effect of impactor initial kinetic energy on the damage pattern of FML specimens via performing extensive experiments. This tutorial simulates and verifies a suggested specimen with the paper results. Package 1 description: - cost: 40 EUR (must be paid by the PayPal) - included files: tutorials, slides, Abaqus files (CAE, JNL, INP) - models are created by using Abaqus 6.14 (2014) - duration: 1 hour and 15 minutes - size of the package: 234 MB - level: advanced - after watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 2 description: - cost: 30 EUR (must be paid by the PayPal) - included files: tutorials, slides - duration: 1 hour and 15 minutes - level: advanced - after watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 3 description: - cost: 15 EUR (must be paid by the PayPal) - included files: Abaqus files (CAE, JNL, INP) - models are created by using Abaqus 6.14 (2014) - level: advanced table of technical content: - how to define Hashin damage criterion to model intra layer damage in composites - how to define composite using the continuum shell elements - how to use the composite layup tool - how to create Fiber Metal Laminates in Abaqus - how to use "Find Contact Pair Tool" to define the tie constrains or surface to surface contacts automatically - how to define cohesive interaction using Abaqus/Explicit solver to simulate debonding and interlayer damage - how to define cohesive interaction property - how to plot the force-time curve of the impact - how to activate the element deletion capability - how to visualize delamination and debonding in the Abaqus visualization module - how to assign individual interaction property to selected contacting surfaces in General contact #Abaqus #explicit #dynamic #dynamic_step #dynamic_explicit #damage_analysis #continuum_damage_mechanics #damage #hashin #hashin_damage #shell #continuum_shell #FML #Fiber_Metal_Laminate #composite #composite_layup #delamination #cohesive #debonding #cohesive_interaction #cohesive_surface

🛎 Impact Simulation of Composites and Fiber Metal Laminates via Abaqus 🎯 This tutorial includes: - How to define Hashin damage and visualize its parameters - How to define cohesive surface between each two layer - How to conduct Low Velocity Impact (LVI) simulation - How to define Tie constraint using the Find Contact Pair tool - How to calculate the impact force and compare it with the experiment 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=87oMNzBokYI&t=29s
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🛎 Use of Cohesive Method and XFEM together for Delamination and Damage Analysis in Abaqus 🎯 This tutorial includes: - How to do damage analysis in matrix using XFEM - How to define cohesive surface between matrix and fiber to study delamination - Comparison of the results of two RVEs with different sizes - How to resolve convergence issues when using XFEM and cohesive surface 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=NgDmFZluYBs&t=65s 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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use of cohesive method and XFEM together for delamination and damage analysis in Abaqus preview

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=414s

Including 39 hours of step-by-step tutorials. Step by step tutorials for using cohesive elements and cohesive surfaces:

https://www.youtube.com/watch?v=O6FM2MgUgQs&t=144s

https://www.youtube.com/watch?v=87oMNzBokYI&t=31s

Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. This is the preview of one of our paid tutorials named: “Use of cohesive zone method and XFEM together for delamination and damage analysis in Abaqus”. In this tutorial the micro mechanical models of fiber/matrix debonding and damage is created and analyzed. cohesive interaction is defined between fiber and matrix. the matrix is defined as an enrichment zone for XFEM analysis. The models are created in 2D space. There are two models: 1) Single fiber model 2) Multiple fiber model In the first model, there is only one fiber and there is matrix around it. In the second model, there are 4 fibers and matrix around them. models are created step by step with detailed explanations. after the completion of the simulations, results are discussed. finally the equivalent stress-strain curve in x direction is plotted for each of the models and compared. Package 1 specifications: - cost: 40 EUR (must be paid by the PayPal) - included files: tutorials, slides, Abaqus files (CAE, JNL, INP) - models are created by using Abaqus 6.14 (2014) - duration: 1 hour and 15 minutes - size of the package: 250 MB - level: advanced - after watching this video, you can ask your questions about video explanations and tutorial's content by sending email to [email protected] . Package 2 specifications: - cost: 30 EUR (must be paid by the PayPal) - included files: tutorials, slides - duration: 1 hour and 15 minutes - level: advanced - after watching this video, you can ask your questions about video explanations and tutorial's content by sending email to [email protected] . Package 3 specifications: - cost: 15 EUR (must be paid by the PayPal) - included files: Abaqus files (CAE, JNL, INP) - models are created by using Abaqus 6.14 (2014) - level: advanced table of technical content: - how to define cohesive interaction in Abaqus/Standard solver - how to define XFEM crack and enrichment zone for crack propagation - how to set Abaqus/Standard solver for performing highly nonlinear fracture analysis - how to obtain the equivalent stress-strain curve in micro models #Abaqus #XFEM #crack #fracture #fracture_mechanics #crack_propagation #crack_analysis #CZM #cohesive #cohesive_element #cohesive_surface #delamination

🛎 Use of Cohesive Method and XFEM together for Delamination and Damage Analysis in Abaqus 🎯 This tutorial includes: - How to do damage analysis in matrix using XFEM - How to define cohesive surface between matrix and fiber to study delamination - Comparison of the results of two RVEs with different sizes - How to resolve convergence issues when using XFEM and cohesive surface 💻 link to the preview of tutorial: https://lnkd.in/ewxa3vZ7 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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🛎 Auxetic Structure Analysis in Abaqus: 2D, 3D, Static and Dynamic Analyses 🎯 This tutorial includes: - How to model Auxetic structures in 2D and 3D - How to calculate the equivalent Poisson's ratio from 2D and 3D models - How to do quasi-static and Dynamic analyzes on Auxetic structures - Using Static General and Dynamic Explicit steps and compare the results. 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=w0U4MC_v7KE&t=20s 💲 You can buy this tutorial or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
نمایش همه...
Auxetic Structure Analysis in Abaqus: 2D, 3D, Static and Dynamic Analyses preview

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

Contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=414s

Including 39 hours of step-by-step tutorials. Step by step tutorials to do the impact analysis and quasi static analysis via dynamic steps:

https://www.youtube.com/watch?v=87oMNzBokYI

https://www.youtube.com/watch?v=Y4uKpgpHjgk

Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. In this tutorial, a re-entrant auxetic structure is modeled in 2D and 3D spaces using Abaqus/Standard and Abaqus/Explicit solvers. The dynamic and quasi-static loads are applied to the auxetic structure to study its response to various types of loading. A comparison of the results shows that 2D and 3D simulations have good agreement with each other. Force-displacement curve and Poisson’s ratio are calculated from the 2D and 3D models and compared to each other. The dynamic load is modeled using a circular rigid part impacting the structure with an initial speed of 10 m/s. It is assumed that the auxetic structure is made of ABS. Package 1 description: - Cost: 40 GBP (must be paid by the PayPal) - Included files: tutorials, slides, Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Duration: 2 hour and 5 minutes - Size of the package: 520 MB - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 2 description: - Cost: 30 GBP (must be paid by the PayPal) - Included files: tutorials, slides - Duration: 2 hour and 5 minutes - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 3 description: - Cost: 15 GBP (must be paid by the PayPal) - Included files: Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Level: advanced Table of technical content: - How to define auxetic structure in the 2D and 3D spaces - How to plot force-displacement curve for the auxetic structure in 2D and 3D spaces - How to calculate the Poisson's ratio for the auxetic structure in 2D and 3D spaces - How to create mapped mesh on the auxetic structure - How to define two elements through the thickness directions of the members of the auxetic structure - How to use Abaqus/Explicit solver to do impact and quasi-static simulations #Abaqus #explicit #dynamic #dynamic_step #dynamic_explicit #implicit #static #quasi_static #static_general #mass_scaling #auxetic #auxetic_structure #re_enterant #re_enterant_auxetic_structure

🛎 Simulation of Debonding in Abaqus by Cohesive Zone Modeling with 2D and 3D Models 🎯 This tutorial includes: - How to use cohesive elements in 2D and 3D models - How to use cohesive surfaces in 2D and 3D models - How to do quasi-static analysis using Dynamic Explicit step - How to solve convergence issues when using Static General step for fracture mechanics analyzes 💻 link to the preview of tutorial: https://www.youtube.com/watch?v=O6FM2MgUgQs&t=6s 💲 You can buy this chapter or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
نمایش همه...
Simulation of Debonding in Abaqus by Cohesive Zone Modeling with 2D and 3D Models preview

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

Contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=414s

Including 39 hours of step-by-step tutorials. Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. Based on a thesis, the Double Cantilever Beam (DCB) test is simulated. The thesis studies the damage propagation and delamination in DCB and ENF tests. This tutorial simulates and verifies the DCB test with the numerical and experimental results presented in the paper. Package 1 description: - Cost: 40 EUR (must be paid by the PayPal) - Included files: tutorials, slides, Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Duration: 2 hour and 15 minutes - Size of the package: 359 MB - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 2 description: - Cost: 30 EUR (must be paid by the PayPal) - Included files: tutorials, slides - Duration: 2 hour and 15 minutes - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 3 description: - Cost: 15 EUR (must be paid by the PayPal) - Included files: Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Level: advanced Table of technical content: - How to define cohesive surface in 2D and 3D spaces and solve the model using the Abaqus/explicit and Abaqus/standard solvers - How to define cohesive element in 2D and 3D spaces and solve the model using the Abaqus/explicit and Abaqus/standard solvers - How to use the "Find Contact Pair Tool" in the interaction module - How to measure the stable time increment before solving the model using the Abaqus/explicit solver - How to define node based set and use it in the modeling procedure - How to remove the numerical noise via the implemented filters in the visualization module like the Butterworth filter - How to plot the force-displacement curve - How to define mass scaling according to the measured stable time increment - How to visualize delamination and debonding in the Abaqus visualization module - How to assign individual interaction property to selected contacting surfaces in General contact #Abaqus #explicit #dynamic #dynamic_step #dynamic_explicit #damage_analysis #continuum_damage_mechanics #damage #delamination #cohesive #debonding #cohesive_interaction #cohesive_surface #implicit #static #quasi_static #static_general #mass_scaling #filter #numerical_noise #abaqus_filter

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🛎 14 minutes from Chapter 14 of Comprehensive Abaqus Package is uploaded. 🎯 Chapter 14 includes: - How to do heat transfer analysis - How to do thermo-mechanical analysis - How to write and implement DFLUX subroutine - How to define moving heat flux using DFLUX subroutine - How to define conical volumetric heat flux using DFLUX subroutine 💻 link to the preview of Chapter 14: https: https://lnkd.in/eYejB4TJ 💻 link to the preview of Comprehensive Abaqus Package: https://lnkd.in/eKeiqGat 💲 You can buy this chapter or every other premium tutorial or package with 50% discount using discount code "october2023" from 5th to 20th of October. 🛎 Feel free to contact us if you need any consultancy about the premium tutorials or packages: 📱 Telegram and WhatsApp: (+98) 9351324013 📧 email: [email protected]
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Comprehensive_Abaqus_Package_Chapter_14_thermo_mechanical_analysis.mp438.83 MB
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🔔 List of the free tutorials in our youtube channel which have extended premium packages ‼️ you can purchase all of the extended premium packages with 50% discount until 20th of October by sending the discount code "october2023" to us. ✅ extended premium packages are explained in the description below each tutorial in our YouTube channel. ♦️ Stress Intensity Factor and J-integral calculation via Abaqus part 1:  Using the contour integral method https://youtu.be/ZDx7TXT5Atg ♦️ high velocity impact simulation in abaqus: adding thermal effects and temperature dependency https://youtu.be/5PrE9HNo99g ♦️ scratch test simulation in abaqus part 2 : defining cohesive interaction to model delamination https://youtu.be/88bC2ErQqmc ♦️ scratch test simulation in abaqus part 1 : paper validation https://youtu.be/C6rW3het-o0 ♦️ laser shock peening (lsp) : using subroutines in abaqus part 1 https://youtu.be/CHcSUI_UQMM ♦️ ultrasonic process simulation using abaqus https://youtu.be/dxoavlGRC5Y ♦️ laser shot peening (lsp) modeling and simulation in abaqus https://youtu.be/ZpDsK49gSE0 ♦️ defining moving loads in Abaqus https://youtu.be/14s2hmYztSo?si=RPyq3z-R2Psodt-G ♦️ tensile test and welding simulation of a lap joint in a multi-step analysis via Abaqus https://youtu.be/hnefm9NllXY?si=ps0HxAoLDCFLmhsz
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Stress Intensity Factor and J-integral calculation via Abaqus part 1: Using Contour Integral method

50% discount code explanation:

https://www.youtube.com/watch?v=McXVQ0zDUd0

contact info for using our services: [email protected] Our telegram channel for Abaqus :

https://t.me/abaqus_asist

We put discount codes for premium tutorials and packages on the Telegram channel. Comprehensive Abaqus Package:

https://www.youtube.com/watch?v=AkxktiyvLeU&t=414s

Including 39 hours of step-by-step tutorials. Don’t hesitate to ask any questions you might have about the explanations presented in this video using the comments below. We try to answer all questions regarding the video details in the comments below. The Contour Integral and extended finite element methods (XFEM) are two methods for calculating stress intensity factors and J-integrals in Abaqus. In this tutorial, The calculation of the J-integral in the Compact Tension specimen via Abaqus using the Contour Integral method in 2D and 3D spaces is explained according to a paper. The complex procedure of creating a focused “spider web” mesh with elements concentrated at the crack tip is explained in detail. In addition to using an appropriate mesh pattern, the crack singularity settings are done to finally obtain the most accurate answer without generating too many elements in the crack tip region to reach accurate results. Package 1 description: - Cost: 40 EUR (must be paid by the PayPal) - Included files: tutorials, slides, Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 2 description: - Cost: 30 EUR (must be paid by the PayPal) - Included files: tutorials, slides - Level: advanced - After watching this video, you can ask your questions about video explanations and tutorial's content by sending an email to [email protected] Package 3 description: - Cost: 15 EUR (must be paid by the PayPal) - Included files: Abaqus files (CAE, JNL, INP) - Models are created by using Abaqus 6.14 (2014) - Level: advanced Table of content: - Reference paper - Load definition - Defining the sketch of the specimen - Defining mechanical behavior - Crack singularity settings - Differences between the crack and seam - Generating partitions around the crack - Modeling procedure - Illustration of each contour integral in the “spider-web” mesh pattern - Defining coupling constraints to apply loads - Crack definition settings - Mesh generation - 3D modelling - Comparing the Mises stress contours - Plastic domain visualization - Comparing the obtained results with the paper results - Validation of J-integral - Validation of reaction force - Comparing the J-integral calculation of three models - Comparing the stress intensity factors calculation of three models - Purchase of the complete package #Abaqus #contour_integral #j_integral #SIF #stress_intensity_factor #spider_web_mesh #XFEM #crack #fracture #fracture_mechanics #crack_propagation #crack_analysis #CZM

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