Generative Design Ansys
Watch this video to learn how the latest features in ansys discovery help you to rapidly explore, iterate and validate hundreds of potential shapes using top. And justin hendrickson, director of product management at ansys, says, “topology optimization is a key building block to deliver generative design. ” colin swearingen, solution consultant at dassault systèmes, says, “topology optimization is one method of generative design, a subset of generative design. Generative design and topology optimization are areas of tremendous interest in product engineering these days, but they can sometimes be confusing. At ansys, we consider them to be one and the same. Ansys discovery combines these concepts and removes the complications of the traditional design process, enabling engineers to explore and iterate. Topology optimization capabilities account. Enable light weight design with lattice optimization; Take your optimized part back to cad for further design processes;
Generative design and topology optimization are areas of tremendous interest in product engineering these days, but they can sometimes be confusing. At ansys, we consider them to be one and the same. Ansys discovery combines these concepts and removes the complications of the traditional design process, enabling engineers to explore and iterate. Topology optimization capabilities account. Enable light weight design with lattice optimization; Take your optimized part back to cad for further design processes; Generative design is a technology in which 3d models are created and optimized by computer software. A user sets up requirements for the model, such as manufacturing processes, loads, and constraints, and then the software offers designs that meet those requirements. That doesn't mean the designer is off the hook when it comes to engineering a. But , generative design and topology optimization are two different things(as far as i learnt).
And justin hendrickson, director of product management at ansys, says, “topology optimization is a key building block to deliver generative design. ” colin swearingen, solution consultant at dassault systèmes, says, “topology optimization is one method of generative design, a subset of generative design. Generative design and topology optimization are areas of tremendous interest in product engineering these days, but they can sometimes be confusing. At ansys, we consider them to be one and the same. Ansys discovery combines these concepts and removes the complications of the traditional design process, enabling engineers to explore and iterate. Topology optimization capabilities account. Enable light weight design with lattice optimization; Take your optimized part back to cad for further design processes; Generative design is a technology in which 3d models are created and optimized by computer software. A user sets up requirements for the model, such as manufacturing processes, loads, and constraints, and then the software offers designs that meet those requirements.
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Video Gallery For Generative Design Ansys
Discover the Optimal Shape with Generative Design in ANSYS DiscoveryWatch this video to learn how the latest features in ANSYS Discovery help you to rapidly explore, iterate and validate hundreds of potential shapes using topology optimization during upfront design and concept development for additive manufacturing or traditional manufacturing processes. Generate the optimal shape, material and process to ensure superior performance of your product before you start building it. |
Ansys Discovery - Generative Design DemonstrationFor more information contact LEAP Australia: Stay connected to LEAP on: |
Design Exploration for Every Engineer with Generative Design in ANSYS DiscoveryANSYS Discovery enables engineers to rapidly evaluate hundreds of potential shapes for a component through topology optimization. By varying design constraints, loading conditions and allowable regions, Discovery can produce designs that convert easily to CAD-ready models for additive manufacturing. Engineers can explore various geometries, materials and physics inputs in record time to arrive at the optimal topology for their product. |
From Generative Results to ANSYS MechanicalIf you have ANSYS Mechanical 2020 R1, or later, installed on your computer and you want to run an analysis on your generative design model, export your static stress study from the Simulation Workspace directly into ANSYS Mechanical for analysis. Go here for more details on this technology: ►FREE TRIAL | autode.sk/2uLm8a6 CONNECT: |
ANSYS 18.1 Topology OptimizationANSYS v18.1 Workbench Tutorial video on how to use the topology optimization feature in order to reduce the total mass of a mechanical metal bracket. DOWNLOAD: Long Description: We will begin by opening ANSYS v18.1 Workbench interface. Check the engineering data to ensure the proper material is selected (in our case it will be the default material). Open up SpaceClaim to create our geometry (note, you can always right click on the geometry cell and click to open in DesignModeler instead if you are more comfortable using it). Once in SpaceClaim, we will use the line tool and pull tool to create our metal bracket. Once created, we exit SpaceClaim and head into Mechanical to set up our loads and boundary conditions. Create a mesh using the sizing "Proximity and Curvature" to better capture the round corner details. Add two cylindrical supports, choose to make the tangential component free. Add one bearing load with 50KN in the X-dir and 100KN in the Z-dir. Add Equivalent Stress results and Solve to view the stress results. Exit Mechanical and go back to the project schematic window. Drag Topology Optimization onto cell 7 "Results" of the first analysis. This will link the static structural analysis to the topology optimization analysis. Leave most of the settings default. Change the Response Constraint to retain 60% of the mass. Solve the system. Exit out of Mechanical and right click on cell 7 Results on the topology optimization analysis and click on "Transfer to Design Validation System" in order to export the STL file generated into a new static structural analysis automatically. Open up SpaceClaim in the new analysis to view the STL import results. Create a new sketch plane and copy the edges of the STL file to a new sketch. Under the Repair tab, use the option Fit Curves to simplify the rough curve geometry from the import. Choose to Correct Tangency and keep the default distance 0.1mm. Simpify the rest of the geometry as needed using the Trim Away tool and Create Corner tool. Should you want to reduce the amount of faces for mesh generation, use the Merge Faces tool under the repair tab to merge selected faces into one face. In order to not export all product structure files into the analysis, we must right click on the products in the structure tree and choose "Suppress for Physics" in order to remove these items from the analysis. Keep only the Solid file. Exit SpaceClaim and open Mechanical by double clicking on the Model cell. Say yes when prompted to read upstream data. Regenerate mesh and reapply boundary conditions and loads. Finally solve the model to view the final results. ---Please subscribe to my channel DrDalyo for more videos! Enjoy! |
Generative Design & Ansys Simulation in CreoGet PTC Creo here! novedge.com/products/ptc-creo-7-0-design-essentials-subscription What it's About In this webinar, we’ll be exploring some of the enhancements made in the latest release of Creo, version 7.0.2. This includes expanding the capabilities of Generative Design to take advantage of the cloud and introducing Creo Ansys Simulation; the 2nd product created as a result of the Creo-Ansys partnership. The webinar is free and lasts about one hour, including the Q&A session. Who is Presenting the Webinar Paul Dye is a member of the Virtual Center of Excellence with PTC, a group trained in giving high-level overviews of all PTC products. Paul specializes in the area of Creo, aided by his background in Mechanical Engineering, Engineering Design, and 3D Modeling. Who Should Attend Engineers, Mechanical Designers, CAD Designers, CAD Managers, and those interested in emerging technologies |
Topology Optimization Ansys Discovery Live - 2019 R1 1Get in touch: Get more ANSYS Tips & Tricks: Learn more about our ANSYS consulting and testing services: Subscribe to our monthly newsletter: Subscribe to this channel: |
Design Exploration for Every Engineer with Generative Design in ANSYS DiscoveryAnsys Discovery is the first simulation-driven design tool to combine instant physics simulation, proven Ansys high-fidelity simulation and interactive geometry modeling in a single user experience. Leveraging the all-new Discovery early in your product design processes will drive substantial gains in engineering productivity, spur innovation and increase your product’s overall performance. Learn more about ANSYS Discovery: inas.ro/en/ansys-3d-design |
Topology Optimization & Additive Manufacturing in ANSYS (Fully Narrated Tutorial)In this video tutorial, I will show you the complete process of running a Topology Optimization analysis in ANSYS. From this video tutorial will learn how to run a topology optimization analysis, design validation, and mesh recommendations for an optimized body to run a validation analysis on it. The CAD file of the Optimized Shape can be found at: Become a Channel Member: ▶️ You Can Find Me On: |
Topology Optimization vs. Generative DesignDesign for additive manufacturing (DFAM) goes beyond design for manufacturing (DFM). It's not just about creating a part that can be 3D printed, but one that takes advantage of 3D printing's unique benefits. Senior Editor Stephanie Hendrixson discusses how generative design and topology optimization are used in DFAM with Eric Miller, cofounder and principal of Phoenix Analysis & Design Technologies (PADT). Visit Additive Manufacturing magazine online at additivemanufacturing.media/ |
✅ Solidworks Simulation Topology Optimization | Generative DesignSolidworks Simulation Topology Optimization 🚩 Solidworks Design Complete Course : 📌Solidworks Simulation Complete Playlist : 📌Solidworks Flow Simulation Complete Playlist : 📌Solidworks Weldment Course Playlist : 📌Solidworks tutorial for beginner exercise -1 📌Solidworks tutorial for beginner exercise -2 📌Solidworks tutorial for beginner exercise -3 📌Solidworks tutorial for beginner exercise -4 📌Solidworks tutorial for beginner exercise -5 📌Solidworks tutorial for beginner exercise -6 📌Solidworks tutorial for beginner exercise -7 📌Solidworks tutorial for beginner exercise -8 📌Solidworks tutorial for beginner exercise -9 📌Solidworks tutorial for beginner exercise -10 📌Solidworks tutorial for beginner exercise -11 📌Solidworks tutorial for beginner exercise -12 📌Solidworks tutorial for beginner exercise -13 #GenerativeDesign |
Creo Generative Design - Topology Simulate Live - Creo 7Demonstrating the power of PTC Creo ‘Topology and Generative Design’ with ‘Simulate Live’ to generate a requirements-driven design and verification. For more information about Creo and contact us: pdsvision.com/solutions/cad/ |
Functional Generative Design - First LookLearn More: goengineer.com/3dexperience/design goengineer.com |
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ParetoWorks: a SOLIDWORKS add-in for Generative Design when it matters mostParetoWorks enables better early design concepts in SolidWorks that balance constraints, objectives, product performance, resources, and time constraints. The SolidWorks Design Engineer is empowered to explore more designs in less time thereby reducing time, cost, and rework of design concepts. Each design concept is generated to meet the performance constraints and objectives. For a free trial or more info visit: sciartsoft.com/paretoworks |
3DEXPERIENCE How-to Tutorial | Functional Generative Design | Additive Manufacturing | Part 1/2Join the SIMULIA Community! Create a profile, explore the platform, collaborate with peers, ask technical questions to Dassault Systèmes experts and uncover new possibilities. It's free to join! 3ds.com/products-services/simulia/communities/simulia-community/?utm_campaign=202007_spe_simu_SLC_en&utm_medium=socialnetwork&utm_source=youtube&utm_content=txt&utm_term=cl_simulia Welcome to the SIMULIA Additive Manufacturing Simulation Instructional Series. This is the 1st part of the functional Generative Design Video. In this video you will see, how to define the functional specifications, analysis inputs, optimization targets and constraints. This video will guide you in creating a complex organic shape for additive manufacturing processes while maintaining their strength and rigidity. Follow SIMULIA on Social! Learn more! About SIMULIA: As we mentioned above, become a member of the SIMULIA Learning Community to gain free access to our platform where you can find the latest resources for SIMULIA software and to collaborate with other users. The key that unlocks the door of innovative thinking and knowledge building, the SIMULIA Learning Community provides you with the tools you need to expand your knowledge, whenever and wherever. |
Function-Driven Generative Design Webinar | TeaserDiscuss with worldwide CATIA users on the community : go.3ds.com/catia Discover how Design meets Simulation in the continuous journey for lightweight optimized design! #3DEXPERIENCE #CATIA |
Generative Design: Ready for Prime TimeGenerative design is widely regarded as the Holy Grail of design engineering automation. Simply press a button, and have artificial intelligence create an optimized part. It's a supremely difficult challenge, and, like autonomous driving, is much more difficult than it appears. Engineering.com's design engineering expert Roopinder Tara discusses the state-of-the-art in generative design with Jim Anderton. * * * * * * * * * |
Fluid Flow and Generative DesignCan you incorporate fluid flow analysis into generative design? The answer is yes, and Chad Jackson is here to talk about how. |