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Multibody Dynamics Adams Jobs (NOW HIRING)

Performing kinematic and kinetic analyses using multibody dynamics simulation software such as Adams Hexagon a strong plus. Required to prepare or oversee the preparation of designs for manufacture ...

Use multibody dynamics (MBD) to derive structural load cases from real task duty cycles, including ... Experience with MBD tools (Adams, Simpack, or similar) and scripting (Python, MATLAB) for load ...

Use multibody dynamics (MBD) to derive structural load cases from real task duty cycles, including ... Experience with MBD tools (Adams, Simpack, or similar) and scripting (Python, MATLAB) for load ...

Develop production-quality C++ interfaces for simplified, replay-based, and high-fidelity multibody ... Vehicle, CARLA, CarSim, CarMaker, Simulink and Simscape, ADAMS, Simbody, BeamNG, Unreal Engine and ...

Showing results 21-40

Multibody Dynamics Adams information

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$21.5K

$110.1K

$156K

How much do multibody dynamics adams jobs pay per year?

As of Sep 13, 2026, the average yearly pay for multibody dynamics adams in the United States is $110,056.00, according to ZipRecruiter salary data. Most workers in this role earn between $100,000.00 and $119,500.00 per year, depending on experience, location, and employer.

What is a multibody dynamics Adams engineer?

A Multibody Dynamics Adams engineer is a specialist who uses the MSC Adams software to simulate and analyze the movement and interaction of interconnected bodies in mechanical systems. They model complex assemblies such as vehicles, machinery, or robotics to predict their dynamic behavior under various conditions. Their work helps improve product design by identifying potential issues early, optimizing performance, and reducing the need for physical prototypes. These engineers often collaborate with design, testing, and manufacturing teams to ensure products meet functional and safety requirements.

What are the key skills and qualifications needed to thrive as a multibody dynamics Adams engineer?

To thrive as a Multibody Dynamics Adams Engineer, you need a solid background in mechanical engineering, physics, and strong analytical skills, often supported by a relevant engineering degree. Proficiency in using MSC Adams software for modeling, simulating, and analyzing mechanical systems, along with familiarity with CAD tools and possibly MATLAB, is typically required. Excellent problem-solving abilities, attention to detail, and effective communication skills help you interpret simulation results and collaborate with multidisciplinary teams. These skills and qualifications are crucial for accurately predicting system behavior, optimizing designs, and ensuring robust product performance in engineering projects.

What are common challenges faced when working with multibody dynamics (Adams) software in engineering projects?

A frequent challenge for engineers using Multibody Dynamics (Adams) software is accurately modeling complex mechanical systems while balancing simulation fidelity and computational efficiency. It can also be difficult to interpret simulation results and troubleshoot convergence issues, especially when dealing with nonlinear contacts, flexible bodies, or advanced control systems. Collaboration with design, testing, and controls teams is essential, as integrating models with real-world data often requires clear communication and iterative validation. Staying updated with the latest software features and best practices can help streamline workflows and enhance simulation accuracy.

What is the difference between Multibody Dynamics Adams vs Multibody Simulation Engineer?

AspectMultibody Dynamics AdamsMultibody Simulation Engineer
CredentialsEngineering degree, certification in Adams or similar softwareEngineering degree, experience with multibody simulation tools
Work EnvironmentSoftware development, simulation analysis, automotive/aerospace industriesDesign validation, testing, simulation modeling in engineering teams
Industry UsageAutomotive, aerospace, roboticsAutomotive, manufacturing, product design

Multibody Dynamics Adams focuses on developing and applying Adams software for multibody system simulation, primarily in software engineering roles. In contrast, a Multibody Simulation Engineer uses such tools for practical system analysis and design validation. Both roles require engineering backgrounds, but Adams specialists often work in software development, while simulation engineers focus on applying the software to solve engineering problems.

What other helpful pages are available for Multibody Dynamics Adams?

Other pages related to Multibody Dynamics Adams:

Infographic showing various Multibody Dynamics Adams job openings in the United States as of September 2026, with employment types broken down into 100% Full Time. Highlights an 94% In-person, and 6% Hybrid job distribution, with an average salary of $110,056 per year, or $52.9 per hour.

Mechanical Engineer

Huntsville, AL

Teledyne
Electrical Equipment, Appliance, and Component Manufacturing • 5 - 10K employees

Full-time

Posted 4 days ago


Teledyne Technologies rating

8.3

Company rating: 8.3 out of 10

Based on 49 frontline employees who took The Breakroom Quiz


Job description

Be visionary

Teledyne Technologies Incorporated provides enabling technologies for industrial growth markets that require advanced technology and high reliability. These markets include aerospace and defense, factory automation, air and water quality environmental monitoring, electronics design and development, oceanographic research, deepwater oil and gas exploration and production, medical imaging and pharmaceutical research.

We are looking for individuals who thrive on making an impact and want the excitement of being on a team that wins.

Job Description

Job Summary:

Researches, plans, and designs and analyzes mechanical and electromechanical products and systems, and directs and coordinates activities involved in fabrication, operation, application, installation, and repair of mechanical or electromechanical products and systems used in industrial applications. Will at times be required to lead small engineering team (3-5 engineers) providing technical leadership, oversight and direction to the engineering team plus will be the primary interface to the Program Manager and/or lead project engineer.

Applies knowledge of engineering principles to design products such as automated industrial systems and equipment, engines, instruments, controls, robots, machines, mechanisms, pressure vessels, process piping systems, gloveboxes etc. Required to be proficient working with 3D modeling software such as SolidWorks, preparing hand calculations, thermal, stress and structural analyses using FEA tool ANSYS or equivalent. Performing kinematic and kinetic analyses using multibody dynamics simulation software such as Adams Hexagon a strong plus. Required to prepare or oversee the preparation of designs for manufacture (DFM).

Works on complex issues where analysis of situations or data requires an in-depth evaluation of variable factors. Relies on extensive experience and judgment to plan and accomplish goals. A wide degree of creativity and latitude is expected determine methods, techniques and evaluation criteria for obtaining results. Exercises judgment in selecting methods, techniques and evaluation criteria for obtaining results. Networks with key contacts outside own area of expertise. Determines critical methods and procedures on new assignments and may coordinate activities of other personnel.

Primarily works on the design of systems and equipment that support the DOE and commercial nuclear, including Advanced Reactor or Small Modular Reactor (Generation III, III + and Generation IV), fusion reactor and nuclear fuel processing markets.

Essential Duties and Responsibilities may include the following. Other duties may be assigned.

  • Develop designs based on customer and regulatory requirements. Following systems engineering principles must be able to decompose requirements into tangible, manufacturable designs and verify and validate (V&V) the designs are compliant with those requirements
  • Develop designs for manufacture (DFM).
  • Create 3D models, and design and shop drawings using SolidWorks 3D modeling SW.
  • Working knowledge and ability to apply Geometric, Dimensioning and Tolerancing (GD&T) to designs.
  • Perform kinematic, stress, structural and thermal analyses on systems and equipment used in the Government and Commercial nuclear markets by preparing, reviewing and checking hand calculations, Finite Element Analyses (FEA) using ANSYS.
  • Ability to perform kinematic and kinetic analyses using multibody dynamic simulation software such Adams by Hexagon a strong plus.
  • Researches and analyzes data such as customer design proposal, specifications, and manuals to determine feasibility of design or application.
  • Designs products or systems such as instruments, controls, robots, engines, machines, and mechanical, thermal, hydraulic, or heat transfer systems.
  • May plan and direct other engineers in fabrication of equipment, and development of methods and procedures for testing products or systems. Interface closely with systems and design engineering, manufacturing and testing and able to develop manufacturable designs.
  • Directs and coordinates fabrication and installation activities to ensure products and systems conform to engineering design and customer specifications.
  • Coordinates operation, maintenance, and repair activities to obtain optimum utilization of machines and equipment.
  • Designs products and systems to interface machines, hardware, and software.
  • Perform work utilizing principles of systems engineering per INCOSE, DOD 5000 or ISO/IEC/IEEE 15288
  • Write and review Design Basis Documents (DBDs), System Design Descriptions (SDD)
  • Write and review design and procurement specifications
  • Evaluates field installations and recommends design modifications to eliminate machine or system malfunctions.
  • Daily availability to include evenings and weekends when necessary to reach goals and deadlines.
  • Prepare proposals, develop estimates including prepare Basis of Estimates (BOEs).
  • Write and review reports. white papers and prepare calculations and reports per the rigors of ASME NQA-1

Supervisory Responsibilities

This job has no supervisory responsibilities but may provide technical leadership to lower-level engineers including carrying out lead responsibilities in accordance with applicable regulations and laws and the organization's policies and procedures. This includes, but is not limited to training employees, planning, assigning, directing work and resolving technically related work problems.

Competencies

To perform the job successfully, an individual should demonstrate the following competencies:

  • Analytical - Collects and researches data; Uses intuition and experience to complement data.
  • Design - Generates creative solutions; Uses feedback to modify designs; Applies design principles; Demonstrates attention to detail.
  • Problem Solving - Identifies and resolves problems in a timely manner; Gathers and analyzes information skillfully.
  • Project Management - Communicates changes and progress.
  • Technical Skills - Pursues training and development opportunities; Strives to continuously build knowledge and skills; Shares expertise with others.
  • Oral Communication - Listens and gets clarification; Responds well to questions; Participates in meetings.
  • Written Communication - Writes clearly and informatively; Edits work for spelling and grammar; Presents numerical data effectively. Must have strong technical writing skills.
  • Teamwork - Gives and welcomes feedback; Supports everyone's efforts to succeed. Collaborate with supervisors, teammates and customers.
  • Business Acumen - Understands business implications of decisions.
  • Ethics - Treats people with respect.
  • Organizational Support - Follows policies and procedures; Supports organization's goals and values.
  • Judgment - Includes appropriate people in decision-making process.
  • Motivation - Demonstrates persistence and overcomes obstacles.
  • Planning/Organizing - Prioritizes and plans work activities; Uses time efficiently.
  • Professionalism - Approaches others in a tactful manner; Reacts well under pressure; Accepts responsibility for own actions; Follows through on commitments.
  • Quality - Demonstrates accuracy and thoroughness; Looks for ways to improve and promote quality; Applies feedback to improve performance; Monitors own work to ensure quality.
  • Quantity - Completes work in timely manner; Strives to increase productivity.
  • Safety and Security - Observes safety and security procedures including using Personal Protective Equipment (PPE) as required and wearing company issued badge when on company property; Reports potentially unsafe conditions; Uses equipment and materials properly.
  • Adaptability - Adapts to changes in the work environment; Able to deal with frequent change, delays, or unexpected events.
  • Dependability - Follows instructions, responds to management direction; Commits to long hours of work when necessary to reach goals.
  • Initiative - Seeks increased responsibilities; Asks for and offers help when needed.
  • Innovation - Generates suggestions for improving work.

Qualifications:

To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed below are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

Education and/or Experience:

Bachelor's degree (B.S.) from four-year college or university in a related field and 5-10 years of directly related experience and/or training; or equivalent combination of education and experience.

  • Active Professional Engineering License a strong plus
  • Experience working within the nuclear industry is a plus but not mandatory.

Language Skills:

  • Ability to read, analyze, and interpret general business periodicals, professional journals, technical procedures, or governmental regulations.
  • Ability to write reports, business correspondence, and procedure manuals.
  • Ability to effectively present information and respond to questions from groups of managers, clients, customers, and the general public.

Mathematical Skills:

  • Ability to work with mathematical concepts such as probability and statistical inference, and fundamentals of plane and solid geometry and trigonometry.
  • Ability to apply trigonometry, calculus and statistics for design, analysis and problem solving.

Reasoning Ability:

  • Ability to apply common sense understanding to carry out instructions furnished in written, oral or diagram form.
  • Ability to deal with problems involving a few concrete variables in standardized situations.

Computer Skills:

To perform this job successfully, an individual should be knowledgeable in using software conducive to presenting analytical results, such as charts, graphs, and presentations using Excel, PowerPoint, Access, etc.

Other Essential Duties

Follows all import/export requirements, consulting with facility import/export personnel as required.

Other Skills and Abilities

  • Basic Knowledge of ISO and/or AS9100
  • Working knowledge of Lean Manufacturing/6 Sigma/Kaizen
  • Knowledge of specific software (design, analysis, ERP...)
  • Working knowledge of ASME NQA-1 a strong plus

Other Qualifications

  • US Citizenship with ability to attain/maintain government security clearance.
  • Ability to travel (domestically/internationally) approximately _+/-10__%.
  • Active Licensed Professional Engineer a strong plus.
  • ASME VIII Certifying Engineer and/or a Section III, Appendix XXIII Certifying Engineer a strong plus.

#TBE

Teledyne and all of our employees are committed to conducting business with the highest ethical standards. We require all employees to comply with all applicable laws, regulations, rules and regulatory orders. Our reputation for honesty, integrity and high ethics is as important to us as our reputation for making innovative sensing solutions.

Teledyne is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability or veteran status, age, or any other characteristic or non-merit based factor made unlawful by federal, state, or local laws.


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