Videos

MAYA Simulation, Engineering Software Solutions

MAYA is a leading developer of simulation CAE and DCIM software. We provide training and digital product development, analysis and testing services. http://www.mayasimulation.com As a core Siemens PLM development partner and reseller, we deliver total solutions, customized to meet your needs. - Leading Software Developer for NX CAE, Femap, DC Clarity LC - Software Reseller for Siemens PLM, LMS International - Service Provider for Training, Consulting (Thermal, Flow, Structural), Software Development, NX Customization

Maya HTT - eCAD / mCAD Expertise

https://www.mayahtt.com/expertise/ecad-mechatronics ECAD & Mechatronics The process of exchanging data between ECAD systems driven by electrical engineers and MCAD systems driven by mechanical engineers or designers can prove challenging. For these systems to perform properly, an effective marriage of mechanical and electrical domains is required. MAYA’s strong experience in both disciplines, and their integration, helps ensure your projects go smoothly. MAYA also develops printed circuit board (PCB) data exchange and modelling products that provide associative and bi-directional data exchange between ECAD PCB layout software and Siemens PLM digital product development applications such as NX™. We offer a unique set of products and services to: Translate data exchange files to NX™ or NX™ I-deas 3D geometry (supported formats include IDF, IDX, GenCAD, and native Zuken PCB databases) Develop customized workflows for data exchange between ECAD and MCAD systems Boost your productivity through quick-start services to teach best practices Key benefits of a MAYA solution include: Enhanced design collaboration through information sharing between electrical and mechanical engineers Eliminate ECAD/MCAD or MCAD/ECAD engineering data communication errors by removing manual data transfers Shorten design time to improve overall efficiency Eliminate tedious work for mechanical designers by automatically creating and placing electrical and mechanical components in a 3D printed circuit board assembly Leverage and reuse existing 3D component models from a PLM database Enable fast downstream packaging and simulation studies, such as interference checking, board level thermal analyses, system-level cooling analyses, and drop test and vibration simulations

Maya HTT - Composites Services

https://www.mayahtt.com/composites Maya HTT specializes in the structural and thermal design of parts and assemblies made from advanced composite materials. We offer simulation, software development, training and mentoring services, allowing your composites designs to meet their specific requirements. Capabilities and Expertise Part Sizing and Optimization Stiffness, strength, weight, heat transfer Linear and nolinear statics, dynamics Damage Modeling Delamination, progressive ply failure, core Design and Stress Analysis Mentoring/Review CAD/CAE software customization Features, Material Selection and Analysis Sandwich structures Bonded and bolted joints Through-thickness conductivity Support for Material Characterization Test support Stress/strain limit derivation methodology Design for Manufacturability Design guideline development Manufacturing method selection Certification Requirement Management In-Service Experience Standard/non-standard repair development Effects of long-term environmental exposure

Maya HTT - NX™ Open Customization Expertise

https://www.mayahtt.com/expertise/nx-open-customization NX™ Open Customization MAYA’s NX™ Open development and customization service tailors NX™ solutions to your specific engineering needs. We help you automate repetitive tasks and capture, re-use and apply best practices in your engineering processes. We do this using our skills and experience in software development, support and training. As an OEM developer for Siemens PLM®, MAYA has an unrivalled knowledge of the NX™ platform’s core code. Our applications have proven robustness.

Maya HTT - PLM & Teamcenter Expertise

https://www.mayahtt.com/expertise/data... Product data management (PDM) is the use of software to manage product data and process-related information in a single, central system. This information can include CAD data, models, parts information, manufacturing instructions, requirements, notes, documents – and much more. The ideal PDM system is accessible by multiple applications and multiple teams across an organization, and supports business-specific needs, while ensuring secure data management. Choosing the right PDM software can provide a company in any industry with a solid foundation that can be easily expanded into a full product lifecycle management (PLM) platform.

Maya HTT - Training/Mentoring Services

https://www.mayahtt.com/services/training The fastest and most efficient way to become productive using specialized engineering software is to enroll in our training courses. But training isn’t a one-size-fits all proposition. MAYA, a Siemens PLM Software development partner and Official PLM Training Center since 1982, offers a diverse range of training options to meet your organizational, resource, and process needs. What sets our training offerings apart from other is: Adaptability; we can modify content, timing, and location to meet your specific needs, challenges, and industry Knowledge; as a key developer of Siemens PLM Software NX™ solutions we harness this knowledge for your team’s benefit Expertise; our trainers are all practicing industry experts working on real-world problems Our training offerings include: Standard training Custom training with modified agenda and/or compressed timelines to meet your needs Adding specific activities such as new industry-related tutorials, or working with your models Learning Advantage – a suite of self-guided online tutorials Our certified trainers are all experienced engineering consultants who apply real-world experience. We offer beginner, intermediate, and advanced level courses in Pre/Post Processing, Structural Analysis, Thermal Analysis, CAD and Product Design and Customization for NX™, Teamcenter®, FEMAP, and Solid Edge®. Most classes are one to five days long. All our courses are composed of both lecture and hands-on workshop examples. Upon completion of the course, students receive a certificate of completion, lecture notes and an online access to the tutorial files. Training can be delivered: At our facility in Montreal, Canada At your location Online In our unique Mobile Training Classroom – we provide you with all the training equipment and software at a location of your choice MAYA can also help I-deas users migrate to the integrated NX™ development environment through training support. We’ll make sure your users are quickly up-to-speed on the NX™ environment for minimal disruption in your workflow. Available Courses: NX Advanced Simulation Process Femap 101 NX Space Systems Thermal NX Electronics Systems Cooling NX Basic Design Essentials for NX Designers Solid Edge NX Using TC for Simulation Introduction to NX for Experienced Users NX Advanced Simulation Solutions NX Laminate Composites NX Motion Simulation NX Thermal NX Thermal and Flow Analysis Femap Thermal and Flow analysis NX Flow Analysis NX Sketching Fundamentals NX Synchronous Modeling Fundamentals Intermediate NX Design and Assemblies NX PCB Exchange NX Knowledge Fusion for Designers NX Open API Programming NX for the lighting industry NX Synchronous Modeling and Parametric Design NX Routing Electrical NX Response Simulation NX Advanced Thermal and Flow Analysis See our scheduled training classes on our Events Calendar Read our complete Services Brochure here “Maya has by far done the best training job of anyone I’ve met to date. Usually I’m stuck with people at an extreme end of the knowledge spectrum…they either know the software very well, or have vast industry knowledge that they don’t know how to properly communicate. Many times if I take the trainer off their script/slideshow, they can’t properly address my question…. and I realize I constantly ask questions outside of what is being presented. That wasn’t a problem when I was at Maya though; they nailed every question and related everything to real life/industry in a perfect way.”” Nick Bruno, ValveTech, Inc.

NX 9 - Advanced Durability (via NX Response Simulation)

NX 9 - Advanced Durability (via NX Response Simulation)

Siemens Solid Edge - Subscription Facts

Solid Edge® software is a comprehensive 3D design system that uses synchronous technology to accelerate design, make revisions faster, and enable better re-use. With 3D CAD, simulation, and design management, Solid Edge helps companies uniquely design better and complete their projects faster.

Siemens Solid Edge - Subscription Facts Japanese

Solid Edge® software is a comprehensive 3D design system that uses synchronous technology to accelerate design, make revisions faster, and enable better re-use. With 3D CAD, simulation, and design management, Solid Edge helps companies uniquely design better and complete their projects faster.

Webinar: NX Thermal Flow for Building Enclosures Part 3

Learn how to prepare your model for analysis and post-process your results

Webinar: NX Thermal Flow for Building Enclosures Part 2

Learn how to model fluid volumes, set-up material properties, and mesh your geometry

Webinar: NX Thermal Flow for Building Enclosures Part 1

Explore the UI and Learn how to Manipulate your Geometry for Thermal Simulation

Femap DataSurfaces

MeshLayer

Rotor Dynamics Shell and Solid Model

Femap SpotWeld

Femap SolidMeshInternalBeams

Femap ResultsMapping

Femap MetalForming1

Femap MeshSplitting

Femap GluedConnection

Femap ExtendSurface

Femap Composite Layup

Femap API

Siemens Curiosity Mars Rover Video

Siemens Curiosity Mars Rover Video

Siemens PLM Graham Packaging Company - Video Case Study

https://www.mayahtt.com Graham Packaging Company, L.P. (Graham Packaging) is a worldwide leader in the design, manufacture and sale of custom blow-molded rigid plastic containers. This case study highlights how Graham Packaging is using NX CAE in conjunction with NX CAD to simulate mold performance before cutting physical molds.

NX 9 Surface Wrapping tutorial

https://mayahtt.com NX 9 introduces new simulation capabilities for mesh morphing, provides greater control over mesh quality and allows you to specify surface wrapping resolution for better creation of fluid domains. Performance enhancements greatly reduce analysis time for large models, and there are new tools for analyzing dynamics of composite parts.

Ventrac case study on using Solid Edge for product development

Venture products case study on using Solid Edge for product development

Trlby case study about Solid Edge

Trlby case study about Solid Edge

Ten Kate Racing using Solid Edge for engineering

Ten Kate Racing using Solid Edge for engineering

Siemens PLM Volvo Cars Robotics Simulation

Siemens PLM Volvo Cars Robotics Simulation

Lurssen on using Siemens PLM for ship building

Lurssen on using Siemens PLM for ship building

ATK on using PLM for the aerospace industry

ATK on using PLM for the aerospace industry

San Engineering using Siemens PLM software

San Engineering using Siemens PLM software

Samjin Precision Manufacturing Case Study Video

Samjin Precision Manufacturing Case Study Video

Razor Case Study using Solid Edge

Razor Case Study using Solid Edge. Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.

Royal Australian Navy Success Story with Teamcenter

Royal Australian Navy Success Story with Teamcenter. Teamcenter helps you deliver increasingly complex products to market while maximizing productivity and streamlining global operations.

Miven Machine Tools: A Solid Edge case study

Miven Machine Tools: A Solid Edge case study. Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.

Leutenegger Frei Case Study Video using Solid Edge

Leutenegger Frei Case Study Video using Solid Edge. Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.

Accelerate Product Development With An Integrated Design and Simulation Environment

Hi Con Technocast Case Study using SolidEdge

Hi Con Technocast Case Study using SolidEdge. Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.

Everdigm Video Case Study about using SolidEdge

Everdigm Video Case Study about using SolidEdge. Solid Edge, a core component of the Velocity Series™ portfolio, is the most complete hybrid 2D/3D CAD system that uses synchronous technology for accelerated design, faster change, and improved imported reuse. With superior part and assembly modeling, drafting, transparent data management, and built-in finite element analysis, Solid Edge eases the growing complexity of product design.

Modern CAE Environment for the Automotive Industry Webinar

Automotive industry organizations recognize CAE as a key enabler to achieving stringent performance and schedule targets for new programs. However, traditional, disconnected CAE tools and processes pose a challenge to analyzing increasing product complexity and competitive pressures. This presentation will introduce a modern simulation environment designed to help automotive OEMs and suppliers manage ever greater amounts of simulation data. Attendees will learn how to conduct earlier and faster analysis iterations, analyze more complex phenomena, and model/simulate larger products or systems.

Geometry Optimization of an Automotive Intake Duct

Powertrain Engineers are often challenged with boosting vehicle engine performance while managing ever-increasing physical and manufacturing complexity. Many time-consuming design iterations need to be performed to achieve optimal performance. Particularly with automotive intake ducts the objective is minimize the manifold pressure loss while staying within dimensional limits for both physical positioning and manufacturing. NX Thermal/Flow now incorporates the ability to drive simulation changes from physical design criteria. In this webinar you will see how varying the design parameters of an intake duct can achieve the desired pressure loss. Geometry optimization walks the user through the steps to define the optimization including achieving a given simulation result measure as the target design objective. In addition to a Duct optimization you will see other examples that incorporate optimization into PCB thermal analyses & fluid flow optimization through a ball valve.

Modern CAE Environment for Integrated Thermal and Flow Analysis

This presentation explores the thermal and fluid analysis capabilities that exist within the suite of NX CAE solutions from Siemens PLM Software. Working with examples from the automotive, aerospace, and electronics industries, attendees will learn how these capabilities are seamlessly integrated — not only with one another, but with related simulation disciplines such as structural analysis.

NX 7.5 Correlation Pre Test Model Update

The NX CAE suite now includes powerful tools that help you verify the dynamic properties of your models. NX FE Model Correlation allows you to quantitatively and qualitatively compare simulation and modal test results, as well as compare two different simulations. Pre-test planning capabilities let you plan a modal test using analysis results in few simple steps- this will ensure that your modal test will capture all natural modes of interest without any time consuming trial-and-error. Last but not least, you can even let the software optimally improve your models using the advanced NX FE Model Updating add-on. All of these products are fully integrated with the NX CAE suite- that means, you can follow straightforward, coherent workflows, covering the entire process of correlation and model updating- while at the same time, being able to modify your FE model at any time and propagate the changes automatically to your correlation and updating calculations. We show you how pre-test planning, correlation, and model updating can contribute to the challenging task of model verification and calibration - and how you can achieve a more rapid turnaround through tight integration with the NX CAE platform.

NX 7.5 Advanced Durability

In this demonstration, we will use NX Advanced Durability (NXAD) to evaluate the fatigue life of a muffler under various loading conditions represented by transient and static solutions. NX NASTRAN will be used to determine the stresses and strains in the muffler. Fatigue life will be computed using both low cycle (strain) and high cycle (stress) approaches.

NX 7.5 Durability Wizard

In this demonstration, you will use NX Durability Wizard to evaluate the fatigue life of a knuckle part under various loading conditions represented by a static solution. NX NASTRAN will be used to determine the stresses and strains in the part. Fatigue life will be computed using the high cycle (stress) approach.

Summary and Overview of Correlation [Automotive Composite Structure Design and Analysis (05/05)]

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Thickness and Design Validation [Automotive Composite Structure Design and Analysis (04/05)]

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