ENGINEERING
Analyse manual processes and integrate them as complete robotic solutions.
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Modernise existing machinery, control systems and safety technology.
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Structure material flow, workstations and production areas efficiently.
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SERVICE & SUPPORT
Planned maintenance and service agreements for our systems, retrofits and suitable third-party equipment.
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Direct assistance with faults, technical questions and operating automation systems.
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Automatically load workpieces into CNC machines, presses and machining centres.
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Reliably stack and unstack cartons, containers, components and workpiece carriers.
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Automate assembly sequences, screwdriving and component feeding reproducibly.
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Apply adhesives, sealants and process media evenly along defined paths.
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Use vision to inspect, measure, identify and document components.
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Automate path-controlled welding, grinding, polishing and deburring.
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PROCESS AUTOMATION
We automate robotic welding, grinding, polishing and deburring. Workholding, process tooling, extraction and safety are engineered as one complete system.
NIKLAS ENGINEERING
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01
Robotic welding
02
Grinding and polishing
03
Deburring and edge finishing
TYPICAL CHALLENGES
Our engineering is based on the real variation found in day-to-day production. This determines the robotics, gripping technology, sensors and peripherals.
01
COMPONENT VARIATION
Clamping, manufacturing and thermal tolerances shift the seam or surface. Touch sensing, vision or seam tracking corrects the robot path.
02
PROCESS FORCE
Grinding and polishing depend on force, angle, speed and tool wear. A purely position-controlled path can quickly produce uneven material removal.
03
PERIPHERALS
The process cell includes robotics, positioners, workpiece clamping, torch cleaning, extraction and tool changes.
TECHNICAL SOLUTION CONCEPT
We integrate robotics, fixtures, process tooling and sensors. In welding, seam position and parameters are monitored; in surface finishing, force control and tool management ensure uniform material removal.
01
Engineer workholding, accessibility and processing sequence
02
Compensate for tolerances using touch sensing, vision, seam tracking or force control
03
Integrate the welding source, positioner, torch maintenance or grinding tool
04
Allow for extraction, guarding, tool life and quality data
ENGINEERING CRITERIA
The key process data are recorded early and documented as verifiable technical constraints.
01
GEOMETRY
Robot pose, torch or tool angle, positioner and collision envelopes are simulated together.
02
TOLERANCE
The required sensors depend on gap, seam shape, contour deviation and fixture quality.
03
PROCESS
Welding current, wire, speed and heat input—or force, rotational speed and grit—are managed as recipes.
04
MAINTENANCE
Torch tips, wire, abrasives and tool condition are monitored and incorporated into the system sequence.
HOW WE WORK
Trials, engineering and production ramp-up are aligned with the defining characteristics of your process.
01
We assess geometry, tolerances, fixtures, process parameters, required surface or weld quality and variants.
02
Critical contours are tested using original parts; simulation and trials validate accessibility and the process window.
03
During ramp-up, we test component variation, tool changes, extraction, restart and documented quality characteristics.
SERVICE & SUPPORT
The scope of service is aligned with the installed technology, shift pattern and your maintenance organisation.
01
Inspect tools, extraction, workholding and protective systems.
02
Optimise robot paths, process parameters and programs.
03
Maintain program versions, wear parts and a repeatable restart procedure.
DISCUSS YOUR PROJECT WITH US
Tell us about the task, current cycle time and key operating conditions. We will respond with an initial technical assessment and the appropriate next step.