Equipment of the Production Organization Workshop (room 1043)
A set of mobile assembly stations for simulating the production process
A “Lean-5S” mobile station – related to work organization;
Also available as a supplement to the set of mobile assembly stations:
An Arduino camera (3 units) – related to quality control in the production process of assembled components
An educational game: “Koromo-Japanese Workshop” – related to the application
of Lean Manufacturing methods and tools to automotive workshop management
An educational game: “SMED” – related to work organization in the
product assembly process
An educational game: “Projektopolis” – related to project management
Research offer and scope of services
Possibility of conducting training in Lean Manufacturing methods and tools using available equipment.
Persons responsible for the laboratory – contact details
dr inż. Marzena Kuczyńska-Chałada
e-mail: marzena.kuczynska-chalada@polsl.pl
dr inż. Joanna Furman (603 4341)
e-mail: joanna.furman@polsl.pl
3D Virtual Reality Laboratory Equipment
- Computer workstations including a VR headset for simulating production and logistics processes
- FlexSim 2023 simulation software (full educational version)
Research offer and scope of services
Analysis of selected production process parameters to verify their efficiency, production process costs, and the utilization of production stations, personnel, and means of transport. Construction of 3D models (layout of the production hall/enterprise/production area). Real-time prediction of production process parameters.
Persons responsible for the laboratory – contact details
joana.furman@polsl.pl
e-mail: joanna.furman@polsl.pl
Reverse Engineering Laboratory Equipment (1044)
- 6 Creality Ender 3 3D printers
- ZMorph VX 3D printer with interchangeable hotends (CNC, Laser, Thick Paste Extruder)
- 2 Original Prusa i3 MK3S 3D printers + Enclosure, which provides a stable printing environment at an elevated temperature, facilitating printing with advanced materials such as PC Blend, Nylon, PP, ASA, and others (preventing warping).
- Original Prusa MINI+ 3D printer
- Anycubic Photon 3D printer for 3D printing with light-curable resins
- KELANT S400s 3D printer
- Matter and Form 3D scanner
- Creaform 3D scanner + 50 licenses of VXinspectTM and VXmodelTM software
- OCULUS Meta Quest 3 128GB VR headset
Research offer and scope of services
We offer comprehensive research and prototyping services using
modern 3D printers, 3D scanners, and VR technology. Thanks to our technological resources, we can implement projects at various stages, from concept, through prototyping, to analysis and optimization of finished products. Our machinery includes six
Creality Ender 3 3D printers and the advanced ZMorph VX 3D printer, which, thanks to its interchangeable hotends, offers not only 3D printing but also CNC functions, laser engraving, and paste printing, enabling the processing of a wide range of materials, such as wood, aluminum, ceramics, and other plastics. This allows us to complete projects requiring high precision and complexity.
Our Original Prusa i3 MK3S 3D printers with enclosures for high-temperature printing allow us to create projects using
advanced materials such as PC Blend, Nylon, PP, and ASA. This allows us to print components with high durability and resistance to chemical and thermal conditions. Furthermore, the smaller Original Prusa MINI+ printer ensures fast and precise prints, ideal for smaller prototype projects.
We 3D print with light-cured resins using the Anycubic Photon and KELANT S400s printers, which offer the highest surface quality and precision printing using DLP technology. This allows us to deliver very high-resolution models, ideal for projects requiring the reproduction of the smallest details.
Our offer also includes 3D scanning services, which we perform using Matter and Form and Creaform scanners. Thanks to the advanced VXinspectTM and VXmodelTM software, we are able to create extremely accurate 3D models that can be used for reverse engineering, dimensional analysis, and quality inspection. These scanners enable us to precisely map object geometry, which is extremely useful in prototyping and design optimization processes.
In addition, we offer the option of utilizing VR technology using the OCULUS MetaQuest 3 goggles, which enable interactive presentations of 3D models and design visualizations. Virtual reality enables us to conduct virtual inspections, ergonomic tests, and functional evaluations of designs, significantly streamlining the product design and optimization process.
Our services also include technical consultations, reverse engineering, 3D model processing, and the creation of technical documentation and research reports. We can provide customized solutions tailored to specific project requirements.
Persons responsible for the laboratory – contact details
dr inż. Roksana Poloczek
e-mail: roksana.poloczek@polsl.pl
Ergonomics and occupational safety laboratory (room 3046)
Ergonomics and occupational safety laboratory equipment:
- Rotating Disc Balancer
- Cross-Beam Apparatus
- Poppelreuter Tables
- Stress Level Meter
- Virometer
- Streetometer
- Nightscope
- SPD System
Research offer and scope of services
For research purposes only.
The laboratory diagnoses the sense of balance, tests eye-hand coordination, and assesses stress resistance.
The research stations offer the ability to diagnose spatial differentiation, visual acuity, and the ability to assess angular velocity. Visual perception performance is tested in limited lighting conditions and after exposure to white light. Furthermore, physical tests of concentration and divided attention can be conducted, as well as dozens of different computer-based tests in the fields of occupational psychology and transport psychology.
Acoustic equipment:
- SVAN 979 Sound and Vibration Level Meter
- STIPA Speech Intelligibility Measurement System
Research offer and scope of services
This sound and vibration level meter with a built-in analyzer and signal generator is designed for acoustic engineering applications, such as building or industrial acoustics measurements, providing precise frequency analysis from infrasound to ultrasound.
The STIPA system can be used to design and evaluate public address and emergency systems, communication channels, speech intelligibility, communication in rooms and auditoriums, and more.
Persons responsible for the laboratory – contact details
dr inż. Karolina Łakomy
e-mail: karolina.lakomy@polsl.pl