Give a second life to broken or unused classroom objects.
Students model and print simple replacement parts: chair feet, buttons, handles, curtain clips, scissor handles or small missing pieces.
Machines-3D education pathways
Build the right digital fabrication setup by level: middle school, high school, higher education and universities. Each pathway connects project ideas to real Machines-3D catalog solutions.
Ideal for short workshops, interdisciplinary projects and first CAD-to-object experiences.
Students model and print simple replacement parts: chair feet, buttons, handles, curtain clips, scissor handles or small missing pieces.
Students design fins, ogives, accessories and optional launch ramps while documenting parameters, trajectories and iterations.
Projects connect history, science and technology through models, terrain reliefs, archaeological objects, old tools, coins and small mechanisms.
Students design ergonomic pen adapters, tactile signs, writing guides, raised markers or small supports for classmates and shared spaces.
For longer projects where students model, test, document, improve and justify technical choices.
Students analyse an existing object, redesign missing or damaged elements, print prototypes and validate mechanical constraints.
Students create Arduino cases, sensor brackets, ventilation grids, robot bumpers, wheel covers and ergonomic handles.
Projects include ergonomic handles, wheelchair phone or lamp mounts, custom support tablets, writing guides and gripping aids.
For year-long projects, research prototypes, industrial simulation, robotics competitions and accessibility innovation.
Students work on mechanical design, project management, industrial logic and deliverables that can be demonstrated and valued.
Examples include custom joysticks, tablet supports, alternative switches, smartphone holders, motorized mounts and accessible workstation adapters.
Students design structural parts, grippers, gears, brackets, docking systems, sensor mounts and test whether each prototype answers the specification.
Students can produce ergonomic shells, packaging, molds, fixtures, small batches and test parts for multidisciplinary projects.
Laser cuttingA versatile 55 W CO₂ laser platform for FabLabs, design classes and prototyping.
View product →
3D scanningWireless hybrid scanning for reverse engineering, digital creation and hands-on learning.
View product →Multi-material 3D printing and laser tools combined for ambitious classroom projects.
View product →Need to build a lab for multiple levels?
Machines-3D UAE supports construction teams with large-scale additive manufacturing, concrete printing workflows, scanning, materials and training.
Robotic concrete printing system for buildings, walls and architectural structures.
Discover system → Training & R&DCompact concrete printing platform for labs, schools and prototyping teams.
View printer → EnablementHands-on support to validate materials, operators and project workflows.
Book training →Concrete 3D printing systems for walls, forms, furniture and architectural elements.
3D scanning for site measurements, reverse engineering and quality control.
Printable mortar, material preparation and drying workflows for reliable builds.
Operator training, project setup and ongoing support from Machines-3D experts.
TERMIX-3D
Developed by Constructions-3D after years of R&D, Termix-3D is a printable concrete material designed specifically for large-scale 3D construction workflows.
Printed structures, walls and architectural demonstrators.
Benches, public space objects and custom landscape elements.
Functional forms, molds, prototypes and civil engineering components.
Ready to evaluate 3D concrete printing?
INDUSTRIAL APPLICATIONS
From a physical component to a verified digital model, from a design to a functional part: connect 3D scanning, engineering and additive manufacturing around your production needs.

Metal additive manufacturing
Use metal 3D printing for lightweight structures, internal channels and consolidated assemblies. Select the alloy, process and finishing route around the part’s requirements.
Cooling inserts · brackets · fluid manifolds

Reverse engineering
Capture an existing part with 3D scanning, rebuild its geometry in CAD, then check the reconstructed model against the scan. A mesh is the starting point, not an editable engineering model.
Legacy components · housings · mating interfaces

3D metrology & quality control
Use metrology-grade scanning to compare manufactured surfaces with nominal CAD, analyse deviations and document dimensional checks. Choose the measurement system around tolerances, part size and surface condition.
Castings · machined parts · welded assemblies
Jigs, fixtures & production aids
Print application-specific tools for positioning, assembly and handling. Match the polymer or composite to loads, heat, chemicals and expected wear before releasing the tool to production.
Drilling guides · assembly fixtures · robot grippers
Functional prototyping
Evaluate fit, assembly and ergonomics with physical prototypes. Choose materials and print orientation to suit the test, then iterate before committing to production tooling.
Enclosures · ducts · assembly mock-ups
Maintenance & spare parts
Digitise suitable spare parts and assess on-demand production. Review the original function, material, operating conditions and acceptance criteria before qualifying a replacement.
Obsolete covers · adapters · non-critical replacement parts
START WITH YOUR APPLICATION
Share the part size, material, tolerances, operating conditions and expected volume. These requirements guide the choice of scanning, printing, software and validation workflow.
Discuss your applicationInspired by Farm-3D
Bring production, repair and monitoring capabilities directly on-site — including constrained, isolated or extreme environments where execution time and operational continuity are critical.
Discuss mission needs →Containerized additive manufacturing workshops integrating FDM, SLA, SLS and LPBF technologies depending on the mission.
Centralize, supervise and analyze production and environmental data from a deployed printer farm.
Digital Management Environmental Operating System for planning, monitoring, traceability and quality reporting.
Operational resilience
Mobile additive manufacturing reduces logistics dependency and supports strategic activities with high standards of performance, reliability, safety and industrial compliance.
Deployable workshops sized for the operating environment.
Automated, secure mini-series production in a controlled environment.
Supervision according to the organization and security constraints.
Quality, traceability and operational conformity for industrial standards.
Containerized micro-factory with controlled environment and custom 3D printing fleet for maintenance and repair operations.
Immediately operational mini-series production unit with automated and secure local or remote management.
Compact prototyping workshop to support rapid innovation and agile development anywhere.
Machines-3D Dentaire
Scanners, 3D printers, resins, CAD/CAM software, post-processing and expert support for dental practices, orthodontists and laboratories.
Intra-oral scanning, 3D printing and support to modernize treatments directly in the clinic.
View practice solution →CAD software, 3D production and post-processing for productive, repeatable lab workflows.
View lab solution →Scanners, software and 3D printing tools for orthodontic case planning and production.
View ortho solution →
01Precise capture of intra-oral or anatomical data to create a detailed 3D model for the entire design and manufacturing process.
Discover scanners →
02Virtual creation of crowns, bridges, aligners, surgical guides and other dental devices with specialized CAD/CAM software.
View software →
03Rapid, precise and repeatable production of models, surgical guides and temporary devices for clinics or dental laboratories.
Explore printers →
04Cleaning, curing and finishing steps to ensure quality, durability and biocompatibility of produced parts.
Learn more →
Lightweight intraoral scanning for fast, precise chairside acquisition.
View scanner →
High-precision resin 3D printing designed for efficient dental production.
View printer →
Shape-memory resin for the direct 3D printing of clear aligners.
View resin →Custom request
The sales team can help scope your scanners, printers, resins, CAD/CAM software, post-processing and training into one clear equipment offer.
Get a dental quote →Why Machines-3D UAE?
From expert advice to after-sales support, we are with you at every step of your 3D printing journey.
