Online or onsite, instructor-led live Mechanical Engineering training courses demonstrate through interactive hands-on practice how to use engineering principles, design tools, and simulation techniques to develop, analyze, and optimize mechanical systems and components.
Mechanical Engineering training is available as "online live training" or "onsite live training". Online live training (aka "remote live training") is carried out by way of an interactive, remote desktop. Onsite live Mechanical Engineering training can be carried out locally on customer premises in Szczecin or in NobleProg corporate training centers in Szczecin.
NobleProg -- Your Local Training Provider
Szczecin
Biuro Aloha, Jerzego Janosika 17, Szczecin, Poland, 71-424
The training room is fully equipped, providing all necessary amenities for participants. Additionally, it has attractive transportation connections to all strategic points of the city, facilitating access for both residents and visitors. It is located just 3 kilometers from the city center, allowing for quick access to other important urban locations and amenities.
PC-DMIS is a leading metrology software for programming and operating coordinate measuring machines (CMMs). This version of the training focuses on using PC-DMIS in non-CAD mode, where all measurements are defined manually or through machine probing rather than imported CAD models.
This instructor-led, live training (online or onsite) is aimed at intermediate-level metrology and quality engineering professionals who wish to create, run, and validate CMM measurement routines directly from measured data without using CAD models.
By the end of this training, participants will be able to:
Create and edit PC-DMIS programs without CAD models.
Define measurement features manually or through machine probing.
Establish datums and alignments using physical features.
Apply GD&T principles to measured data.
Generate and interpret inspection reports and dimensional results.
Format of the Course
Interactive lecture and discussion.
Hands-on practice in PC-DMIS non-CAD mode using a live or simulated CMM.
Practical exercises based on real part inspection workflows.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
PC-DMIS is a widely used metrology software solution for programming and operating coordinate measuring machines (CMMs), enabling accurate measurement, inspection, and reporting of manufactured parts.
This instructor-led, live training (online or onsite) is aimed at intermediate-level metrology and quality engineering professionals who wish to efficiently program, run, and validate CMM measurement routines using PC-DMIS.
By the end of this training, participants will be able to:
Create and edit PC-DMIS programs for common part geometries.
Import and work with CAD models and establish measurement strategies.
Execute measurement routines on CMMs and interpret results and reports.
Apply alignment, datum and feature extraction techniques.
Configure inspection reports and export measurement data for quality systems.
Format of the Course
Interactive lecture and discussion.
Hands-on exercises in PC-DMIS and CMM simulation or lab environments.
Practical case studies based on real inspection scenarios.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
Lifting Machines safety and compliance training is focused on the technical operation, safe work practices, and regulatory requirements for industrial lifting equipment.
This instructor-led, live training (online or onsite) is aimed at intermediate-level technicians and supervisors who wish to operate, inspect, and manage lifting machines safely while ensuring compliance with applicable standards and regulations.
By the end of this training, participants will be able to:
Identify types of lifting machines and their correct applications.
Perform pre-use inspections and basic preventative maintenance checks.
Apply safe operating procedures and use appropriate PPE during lifting operations.
Interpret and comply with relevant national and international lifting standards and regulations.
Conduct risk assessments and implement control measures for lifting tasks.
Respond effectively to lifting-related incidents and complete required reporting.
Format of the Course
Interactive lecture and discussion.
Practical, hands-on exercises with real equipment where possible.
Scenario-based workshops and group risk assessment activities.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
ANSYS Workbench is an integrated platform for performing finite element simulations and multiphysics analysis.
This instructor-led, live training (online or onsite) is aimed at beginner-level engineers and technical professionals who wish to build confidence setting up, solving, and interpreting foundational simulations in ANSYS Workbench.
By the end of this training, participants will be able to:
Navigate the Workbench interface and manage projects efficiently.
Prepare clean geometry and assign appropriate materials and units.
Create high-quality meshes and apply loads, supports, and contacts correctly.
Run static structural analyses, review results, and document findings.
Format of the Course
Interactive lecture and discussion.
Lots of exercises and practice.
Hands-on implementation in a live-lab environment.
Course Customization Options
To request a customized training for this course, please contact us to arrange.
This instructor-led, live training in Szczecin (online or onsite) is aimed at beginner-level to intermediate-level aviation professionals who wish to understand ICAO’s regulatory framework, structure, and how to ensure compliance with its core Annexes and protocols.
By the end of this training, participants will be able to:
Understand ICAO’s role, structure, and regulatory authority.
Identify key ICAO Annexes and their areas of impact on aviation.
Apply ICAO standards in aviation safety, security, and operations.
Support compliance efforts aligned with national and international oversight.
The BEM (Boundary Element Method) is a numerical computational method and design technique for solving a range of engineering and physical problems. BEM is a promising alternative to FEM (Finite Element Method) as it bypasses the need for a 3D finite element mesh of an entire space.
In this instructor-led, live training, participants will learn the theory and benefits of using BEM as they apply BEM techniques to solving engineering design problems related to complex three dimensional structures. The mathematical concepts behind BEM are explained and applied as coding exercises throughout the training.
Audience
Developers
Engineers
Format of the course
Part lecture, part discussion, exercises and heavy hands-on practice
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