List of Altair HyperMesh Customers
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Since 2010, our global team of researchers has been studying Altair HyperMesh customers around the world, aggregating massive amounts of data points that form the basis of our forecast assumptions and perhaps the rise and fall of certain vendors and their products on a quarterly basis.
Each quarter our research team identifies companies that have purchased Altair HyperMesh for 3D Modeling from public (Press Releases, Customer References, Testimonials, Case Studies and Success Stories) and proprietary sources, including the customer size, industry, location, implementation status, partner involvement, LOB Key Stakeholders and related IT decision-makers contact details.
Companies using Altair HyperMesh for 3D Modeling include: CNH Industrial USA, a United States based Manufacturing organisation with 6000 employees and revenues of $1.50 billion, Iveco Defence Vehicles, a Italy based Aerospace and Defense organisation with 1131 employees and revenues of $1.05 billion, Katcon, a Mexico based Automotive organisation with 3900 employees and revenues of $600.0 million, Streparava, a Italy based Automotive organisation with 419 employees and revenues of $336.0 million, SITAEL, a Italy based Aerospace and Defense organisation with 266 employees and revenues of $73.0 million and many others.
Contact us if you need a completed and verified list of companies using Altair HyperMesh, including the breakdown by industry (21 Verticals), Geography (Region, Country, State, City), Company Size (Revenue, Employees, Asset) and related IT Decision Makers, Key Stakeholders, business and technology executives responsible for the software purchases.
The Altair HyperMesh customer wins are being incorporated in our Enterprise Applications Buyer Insight and Technographics Customer Database which has over 100 data fields that detail company usage of software systems and their digital transformation initiatives. Apps Run The World wants to become your No. 1 technographic data source!
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| Logo | Customer | Industry | Empl. | Revenue | Country | Vendor | Application | Category | When | SI | Insight |
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CNH Industrial USA | Manufacturing | 6000 | $1.5B | United States | Altair Engineering | Altair HyperMesh | 3D Modeling | 2017 | n/a |
In 2017, CNH Industrial USA implemented Altair HyperMesh to support electromechanical product development for lighting and camera systems on large tractors, sprayers, and selected harvesting machines, Apps Category . The deployment targeted the company engineering organization in Oak Brook with direct workflows for Electrical Design Engineers responsible for DFMEAs, FEAs, DVPRs, and Bill of Materials management.
The Altair HyperMesh implementation emphasized mesh preparation and finite element model orchestration, including geometry cleanup, meshing of heat sink and plastic components, definition of contacts and assemblies, and export of solver-ready model decks for downstream simulation. The implementation was used alongside CAD and simulation tools for validating heat sink, PCB, and optical element designs, and to support proof of concept prototypes and laboratory validation of lamp performance against simulation results.
HyperMesh was integrated into PLM and engineering data flows through Siemens Teamcenter for effective data transfer, and it complemented CAD systems such as CREO and CATIA and solver tools referenced in engineering requirements like ANSYS. Operational coverage included collaboration with suppliers and internal teams for specification creation, BOM exchange, and benchmarking activities, and it supported engineering tasks such as schematics review, IO selection, and root cause analysis workflows.
Governance and process changes included formal ownership of Engineering Change Notices in the PLM system, standards development for lighting and camera components, documented risk management and DVPR procedures, and coordinated release and launch activities with suppliers and internal customers. The deployment aligned simulation and PLM practices with existing product development lifecycles to ensure traceable documentation and cross functional engineering coordination.
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Geven | Manufacturing | 299 | $62M | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2020 | n/a |
In 2020, Geven implemented Altair HyperMesh for 3D Modeling to support CAE driven stress analysis across its engineering functions. The deployment targeted model pre processing and mesh preparation workflows while aligning the application with the companys manufacturing and product development cadence at its Italy operations.
Altair HyperMesh was configured to provide advanced mesh generation, model assembly, geometry cleanup and attribute mapping consistent with 3D Modeling and finite element analysis preparation. Implementation emphasized automation through scripting and template creation to standardize block creation, contact definitions and load case setup for CAE engineers, reflecting common capabilities of the 3D Modeling category.
The rollout focused on the engineering and R&D groups where CAE engineers perform stress analysis and validation. Governance included establishing modeling standards, user skills development in HyperMesh based stress analysis, and workflow handoffs between design and simulation teams to ensure consistent model readiness for downstream solver execution.
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Iveco Defence Vehicles | Aerospace and Defense | 1131 | $1.0B | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2020 | n/a |
In 2020, Iveco Defence Vehicles implemented Altair HyperMesh as its 3D Modeling platform. The deployment supported engineers in the Concept Development and Protection Unit in Bolzano, and it was adopted by the Protection Simulations Team for vehicle survivability engineering.
Configuration work centered on finite element pre processing, high fidelity meshing, and model preparation workflows typical of 3D Modeling platforms, with scripting and automation used to standardize repeated tasks. Engineers developed automated calculation routines for Expected Protection Capability within Altair HyperMesh, and the application was used to author technical models and simulation inputs for terminal ballistics scenarios.
Altair HyperMesh was integrated into the protection simulation chain together with IMPETUS Afea for dynamic impact simulation, forming a linked pre processing and solver workflow for vulnerable area assessment. Operational coverage explicitly includes validation of structural weak areas of military vehicles against STANAG 4569, and the toolset supports test planning and supervision activities carried out by the Protection Simulations Team.
Governance and process changes accompanied the implementation, with new standard work documents produced and a shift toward automated, repeatable validation workflows for protection engineering. Test planning, supervision, and technical documentation practices were restructured to incorporate model based simulation outputs from Altair HyperMesh and to formalize methods for virtual vulnerable area assessment.
The implementation is used for simulation of impact tests in the domain of terminal ballistics, for development of advanced assessment methods using Altair HyperMesh and IMPETUS Afea, and for generation of automated validation calculations used in vehicle protection verification.
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Katcon | Automotive | 3900 | $600M | Mexico | Altair Engineering | Altair HyperMesh | 3D Modeling | 2013 | n/a |
In 2013, Katcon deployed Altair HyperMesh as part of its Computer-Aided Engineering implementation to strengthen virtual validation and mesh preparation capabilities. Altair HyperMesh was adopted across Katcon engineering labs in Mexico, Michigan, Poland, Luxembourg, and China to provide a standardized environment for finite element model setup and mesh generation supporting the companys multi-site product development activities.
The Altair HyperMesh deployment emphasized core CAE capabilities including high-fidelity mesh generation, geometry cleanup and defeaturing, model attribute mapping, and automated pre-processing routines for batch model preparation. Configuration included template-based model setups and scripting to accelerate repeatable workflows for static, dynamic, steady, and transient simulation use cases that the CAE organization executes.
Integrations were aligned with existing CAD and PLM infrastructures, leveraging Katcons expertise in NX and CATIA and the Siemens Teamcenter platform to move CAD data and manage revision control across development, quality, manufacturing, and purchasing. Solver interoperability was enabled with the broader toolchain referenced by Katcon, including Abaqus, ANSYS Fluent, Nastran, AVL Fire, and GT-Power, allowing HyperMesh to act as the primary pre-processor within the virtual development pipeline.
Governance of the Altair HyperMesh rollout operated within Teamcenters change management and PLM processes, embedding CAE model review and approval into Katcons cross-functional workflows. The implementation supported correlation studies that bridge virtual and physical testing performed at Katcons regional testing sites, reinforcing a structured handoff between simulation, rapid prototyping, and physical validation activities.
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SICAMB | Manufacturing | 343 | $43M | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2014 | n/a |
In 2014, SICAMB implemented Altair HyperMesh for 3D Modeling. The deployment focused on the engineering organization, supporting structure design workstreams tied to aircraft component assemblies, including primary and secondary structure design, assembly integration, and feasibility verification for Main Deck Cargo Door programs.
Altair HyperMesh was configured as the finite element pre‑processor and mesh generation environment for 3D CAD model preparation and model verification. Functional capabilities implemented included CAD import and cleansing, mesh generation and quality controls, finite element model setup for structural analysis, and preparation of analysis input datasets consistent with engineering workflows.
Integrations and input management explicitly included Catia V5 geometry intake and use of Excel spreadsheets for weight and center of gravity estimation, with PowerPoint used for engineering deliverables and reviews. Operational coverage spanned structure design engineers responsible for assembly integration, as well as verification checks for electrical and hydraulic system interfaces during model feasibility assessments.
Governance emphasized 3D CAD model management and a CAD database management approach to standardize input models for analysis, enforce model verification checkpoints, and align engineering deliverables. Altair HyperMesh served as the central 3D Modeling tool in SICAMB’s engineering workflow for preparing validated analysis-ready models.
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Aerospace and Defense | 266 | $73M | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2012 | n/a |
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Automotive | 419 | $336M | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2018 | n/a |
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Manufacturing | 550 | $44M | Italy | Altair Engineering | Altair HyperMesh | 3D Modeling | 2021 | n/a |
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Buyer Intent: Companies Evaluating Altair HyperMesh
- State of California, a United States based Government organization with 412245 Employees
Discover Software Buyers actively Evaluating Enterprise Applications
| Logo | Company | Industry | Employees | Revenue | Country | Evaluated |
|---|---|---|---|---|---|---|
| State of California | Government | 412245 | $298.0B | United States | 2024-06-13 |