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Our telegram channel for Abaqus and Q&A: https://t.me/abaqus_asist Our Telegram channel for FFS, Structure Integrity and the analysis of fixed equipment: https://t.me/ffs_asme_dnv_api_femex Our LinkedIn page: / amirhossein-mirzabozorg-15443b47 If you want to be informed about our 50% discount codes and other announcements, join our Telegram channel or follow us in LinkedIn. Contact info for using our services: mirzabozorg71@gmail.com Comprehensive Abaqus Package: • Comprehensive Abaqus Package Including 39 hours of step-by-step tutorials. Step by step tutorials to do the impact analysis, quasi static analysis via dynamic steps and introducing ductile damage to the model: • Impact Simulation of Composites and Fiber ... • Static and Quasi-Static Analysis by using ... • Damage Analysis of Notched Specimen in Ten... 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. Address of the first part of this tutorial: • Nonlinear Dynamic Analysis in Abaqus part 1 Dynamic implicit step is the only step of Abaqus/Standard solver which can be used to solve nonlinear dynamic problems. In this tutorial, we will compare the results obtained by dynamic implicit and dynamic explicit steps. Also the settings of the dynamic implicit step will be discussed in detail. One of the most important issues in the post processing of the nonlinear dynamic problems is the way of applying filter on the results to remove the numerical noise for better understanding and interpreting of the results. In this tutorial, the Butterworth filter is used to filter the reaction force curve. table of content: Steps for conducting nonlinear analysis in Abaqus Dynamic implicit step settings Solving the problem using dynamic implicit step Comparison of stress contours Comparing dynamic explicit and dynamic implicit results Applying filter to the results Comparison of filtered and unfiltered results #Abaqus #explicit #implicit #dynamic_implicit #dynamic #dynamic_step #dynamic_explicit #Impact #Impact_analysis #nonlinear_analysis #nonilnear_dynamic_analysis #filter #abaqus_filter #butterworth_filter