These fully automated systems use industrial robots and can be applied across automotive, railway, shipbuilding, and other industries.
High-precision robots improve quality and productivity while significantly enhancing worker safety and the working environment.
This system fully automates arc-welding processes previously performed manually by using industrial robots and can be applied across automotive, railway, shipbuilding, and other industries.
High-precision robots improve quality and productivity while significantly enhancing worker safety and the working environment.
With strong technology and cost competitiveness, this solution has earned significant interest and recognition from domestic automakers and overseas railway-vehicle customers.
Hot stamping forms steel sheets by heating them to approximately 900°C, stamping them, and then rapidly cooling them in the die. The process offers benefits including high-strength part production, lightweighting, improved crash performance, low springback, and excellent weldability, and has attracted significant industry attention..
K-ROAD ROBOTICS was the first company in Korea to gain automation integration experience with this type of system and applies that experience to deliver reliable solutions to customers.
Railway vehicle sidewalls are made of very long, thin steel sheets and are therefore susceptible to deformation and welding defects. K-ROAD ROBOTICS provides automated welding systems designed to maintain consistently high weld quality.
Fast & Precise Laser Cutting Machine
The SLCM Series includes CNC CO2 and fiber-laser cutting and welding systems.
A high-speed laser head operating at increased gas pressure significantly reduces gas consumption and operating costs, while the high-performance laser cutting system processes thick materials with minimal burr formation.
An integrated two-axis system enables fast, precise cutting. The system’s laser collimator delivers low insertion loss, high output power, and minimal laser-beam deviation.
Combined laser cutting with laser welding machine
An integrated laser processing system that performs both welding and cutting using laser technology
The system processes long materials up to 25 m with high dimensional accuracy and operates using a CNC controller together with software developed in-house by K-ROAD ROBOTICS. High precision and a fast travel system deliver excellent productivity.
Maintain high quality welded product
Railway vehicle sidewalls are made of very long, thin steel sheets, making them susceptible to deformation or welding defects.
K-ROAD ROBOTICS provides automated welding systems that help maintain consistently excellent weld quality.
Robust, high-precision jigs minimize dimensional error, and robotic welding processes are designed to accurately reach the required weld points.
A dual welding process enables the system to achieve the required productivity.
SRSWM 6000
Spot welding, a form of resistance welding, joins materials of different thicknesses and is one of the most widely used welding processes in manufacturing.
Automated spot welding is widely applied across industries due to its fast welding speed, ease of use, and cost efficiency compared with other systems.
Robots used in spot-welding processes can access difficult positions and geometries while maintaining consistent weld quality.
STSWM 6000
This system welds railway-vehicle sidewall sheets and frames and consists of a welding gantry, spot guns, servo-driven spot-gun positioning, a CNC controller, and related equipment.
The CNC controller uses multiple axes to position the system accurately at each weld location, while the spot guns enable fast cycle times.
A quick-change device for spot-welding tips can also be implemented to reduce tip replacement time.
Perfect Long seam welding
The roof of a railway vehicle must be tightly sealed by welding to prevent water leakage and dust ingress.
K-ROAD ROBOTICS uses a Seam Tracking System to weld and seal all required points, helping prevent the ingress of foreign material.
An intelligent tracking camera mounted on the welding torch automatically guides the torch accurately to the required weld point.
The welding robot moves laterally on an overhead gantry system with minimal backlash, enabling consistent high-quality production.
SRSWM 6000
Spot welding, a form of resistance welding, joins materials of different thicknesses and is one of the most commonly used welding processes in manufacturing.
Automated spot welding is widely used across industries because of its fast welding speed, ease of use, and high cost efficiency compared with other systems.
Robots used in spot-welding processes can weld difficult positions and geometries while maintaining consistent weld quality.
Heavy product welding
The underframe of a railway vehicle consists of the headstock and intermediate frame sections.
Because each frame is large and heavy and requires precise welding, the system must provide both robust support and high welding accuracy.
K-ROAD ROBOTICS provides a robust welding system with positioners, enabling welding at required points on both the upper and lower sides of the product.
SRAWM 6500
The endwall of a railway vehicle has a complex structure and therefore requires extensive welding..
To prevent material deformation and accurately reach the required weld points, K-ROAD ROBOTICS provides precise and robust jig structures.
Positioners are used to weld both the inside and outside of the endwall, while arc sensing and tactile nozzle sensors guide the welding robot to the correct weld position.
Wide and Longitude welding Envelope
The shell is the final body structure of a railway vehicle and requires welding at numerous points.
For accurate welding, the welding robot is mounted on a two-axis (X, Z) gantry system. When product gaps occur, an integrated laser tracking camera compensates for them during welding.
SRSWM 6000
This process completes the final railway-vehicle shell through spot welding
스The system includes six spot welders: two for sidewall-to-underframe welding, two for roof-to-sidewall welding, and two for endwall-to-body welding.
The welding units travel on carriages, and the spot-welding gun is selected according to the product design.
Robotic spot and Fast welding speed This system is designed to weld frame side beams and integrates MIG/MAG welding modules, jigs for the head and tail stocks, seam tracking, and intelligent control functions.
SRSBM 6000
This system removes scale from product surfaces.
A six-axis robot performs high-quality shot blasting regardless of structural complexity, size, or shape, while minimizing repeated blasting and reducing maintenance costs.
When more precise blasting is required, the process can be performed fully automatically without manual operation.
Robots perform hazardous tasks in harsh environments, including blasting materials that may be harmful to workers and repeatedly transporting heavy items.
A streamlined program structure reduces equipment setup time, and the system includes a recycling process that continuously cleans the blasting media.
his fully automated system uses AGVs to transport rolling rolls to grinding machines and supports handling and loading throughout the grinding process. It provides benefits including higher productivity, improved working conditions, and better quality. K-ROAD ROBOTICS was the first company in Korea to develop this system, and its performance and quality have been recognized in steel-industry applications.
This fully automated system transports rolling rolls used in the ZRM to grinding machines by AGV and supports handling and loading throughout the grinding process. By automating work that was previously performed manually, it improves productivity, working conditions, and quality.
K-ROAD ROBOTICS was the first company in Korea to develop this system, and its performance and quality have been recognized in steel-industry applications.
Our independently developed band-cutting system automatically detects the position and number of bands on coils or packaging, cuts them, and handles the scrap. It can be applied to various packaging formats including coils and tubes. Automating work that was previously manual helps improve both the working environment and productivity
As the only patent holder in Korea, we supply this solution exclusively and maintain strong performance and price competitiveness against overseas products from Germany, Japan, and other countries.
This automated system inspects surface defects on cold-rolled steel sheets. By automating a process that was previously performed manually, it enables inspectors to perform grindstone testing more easily and efficiently.
Our proprietary ideas minimize inconvenience and hazards at the worksite, helping improve customer satisfaction.
Using laser or mechanical methods, this technology narrows the spacing between magnetic domain walls on the steel-sheet surface. This shortens domain-wall travel during magnetization, reduces domain-wall movement, and lowers energy loss as heat.
The system improves the magnetic properties of core materials used in transformers and other equipment, enhancing electrical-steel performance and enabling production of higher-value steel sheets. It is a precision-processing technology held by only a limited number of companies worldwide.
Based on robotics and automation technologies, K-ROAD ROBOTICS automates the dismantling of end-of-life battery packs and modules, cell extraction, transfer, and sorting.
Robotic dismantling technology for diverse battery structures and safe transfer systems reduce worker exposure to hazardous processes and support efficient downstream recycling operations.
Robot Dismantling
Cell Extraction
Safety & Transfer
Integrated Automation
Battery Pack Infeed Battery Pack Infeed
Pack / Module Dismantling Pack / Module Dismantling
Cell Extraction Cell Extraction
Transfer & Sorting Transfer & Sorting
Interface with Downstream Processes Recycling Process
※ Process concept diagram for website use. Detailed process scope may vary depending on customer requirements.
K-ROAD ROBOTICS provides raw-material and product transfer, graphitization-furnace logistics, automated loading/unloading, and production-line automation systems for synthetic-graphite production processes used in secondary-battery anode materials.
Drawing on our experience in synthetic-graphite production automation, we continue to advance technologies for unmanned high-temperature processes and improved production efficiency, while expanding into high-efficiency continuous electric furnaces and integrated automation solutions.
Graphitization Automation
Material Handling
AGV / Gantry Robot
Continuous Process
Raw Material Supply Raw Material Supply
Raw Material Transfer Material Transfer
Preheating Pre-Heating
Graphitization Graphitization
Cooling & Discharge Cooling & Discharge
Transfer to Downstream Processes Product Transfer
※ Process concept diagram for website use. Detailed process scope may vary depending on customer requirements.