INNOVATION THROUGH AUTOMATION

Robotic Welding

Bringing processes together with

Robotic Welding Solutions

Upgrade your welding Process with MWES' Easy-Arc

Whether your parts are simple, have complex geometries or require heavy welding applications, MWES offers custom-built and turnkey automated welding systems for various capability ranges and weld processes. Our experience and in-house capabilities allow us to design, build and install custom robotic welding systems and our Easy-Arc welding solutions. Our AWS Certified Welding Inspectors (CWI) and AWS Certified Robotic Arc Welding Technicians (CRAW-T) will ensure high-quality results for your automation system.

With the ongoing shortages of skilled welders, robotically automating your manufacturing operation is a reality. Advancements in robotics have made automation of even a few processes, a productive and cost-saving innovation that companies of any size can benefit from. Moreover, the MWES Easy-Arc robotic welding cart is a portable all-in-one robotic welding system that offers many distinctive benefits to organizations large or small. Whether it’s welding large steel trusses, structural framing, large cylinder assembly, framing for data center servers, or small component welding, MWES has the solutions for projects large and small.

Advantages to Robotic Welding Solutions

From improved productivity and adaptability to fewer weld distortions, here are seven advantages that businesses see when they invest in and implement robotic welding systems.

More Productivity
Robots are generally more efficient at welding tasks than humans are. With a robotic welding system, welded components can be processed between three to five times more efficiently than using manual welders. Robots can work continuously, with no need for breaks. They also have higher arc on-time percentages than professional welders.
Repeatability
To consistently replicate results, a manual welder has to gain a high skill level and maintain high concentration levels on each and every task. A robotic welder is capable of processing the same welding tasks with repeatable results continuously, for as long as is necessary.
Adaptability
Manual welders make use of several jigs, using different ones with different production runs. Robots reduce time spent changing tools with their grippers that can handle parts of any size or shape. These robotic grippers can grab a welding component, place it properly on the assembly and keep a firm hold on the part while performing welding processes on it.
Limiting Weld Distortions
Contractions and expansions of the base and weld metal during the heating and cooling phases of a welding process, lead to distortions. MWES designs robotic welders to be fine-tuned to properly size the weld based on the joint requirements. This reduces the number of necessary weld passes, allowing the robotic welder to complete the weld very efficiently and reduce the time that the metals are exposed to heat, thus reducing the chance of distortions.
Labor Solutions
When there is a lack of skilled manual welders, robotic welders can handle the workload, as well as reduce the number of additional hours a business needs for production purposes, since they alleviate the need to seek and train more welders.
Reduction in Sizing Errors
Manual welders determine the size of the weld based on the operator’s judgment. This could lead to larger welds than what was actually needed. Robot welders are programmed to select the correct dimensions of the joint required for the job, saving time and materials for each welding task.
Lowering Costs
Robots offer a variety of production cost-saving benefits. Robotic welders can fully produce parts at lower production costs by increasing overall productivity, quality and consistency across the entire welding process. Robots require less energy than manual welders and have fewer requirements for consumables, due to their improved efficiency with materials and with welding cycles.
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Our Robotic Welding Partners

Building the future of manufacturing, together

The Areas where we can Help

Robotic Welding expertise

Automated Weld Inspection

Automated Weld Inspection

Automated weld analyzing systems can be integrated into robotic welding cells to track weld performance in real-time or the inspection process can be completed as its own stage after the weld...
Easy-Arc Cobot Weld Carts

Easy-Arc Cobot Weld Carts

Midwest Engineered Systems Easy-Arc Collaborative Robot Welding systems were created to supplement the abilities of human welders with industry-leading performance.
Easy-Arc Custom Welding Cells

Easy-Arc Custom Welding Cells

Our team of welding automation experts draws on more than 30 years of experience in cutting-edge welding design, development, and programming. When it comes to developing specialized welding...
Easy-Arc FW Laser Weld Cell

Easy-Arc FW Laser Weld Cell

The MWES Easy-Arc HW Laser Cell is an easy-to-use, fully-enclosed compact fully automated robot welding system.
Easy-Arc HW Laser Weld Cell

Easy-Arc HW Laser Weld Cell

The MWES Easy-Arc HW Laser Cell is an easy-to-use, fully-enclosed compact fully automated robot welding system.
Easy-Arc Laser Welding Cells

Easy-Arc Laser Welding Cells

Easy-Arc Laser Welding System’s purpose is to give the absolute best in terms of high quality, dependable performance, and cost considerations in a fully-enclosed work cell.
Easy-Arc Standard Welding Cells

Easy-Arc Standard Welding Cells

Standard, robotic arc welding cells offer the best combination of price and performance. MWES provides complete robot systems, available in several flexible, modular packages.
Indexing 2-Axis Positioner Weld Cell

Indexing 2-Axis Positioner Weld Cell

The Indexing 2-Axis Positioner Cell comes with a full range of safety features and can accommodate two robots. The loading zone of the cell is available in two variations: roll door or light...
Indexing Ferris Wheel Weld Cell

Indexing Ferris Wheel Weld Cell

The Indexing Ferris Wheel Cell comes with a full range of safety features and can accommodate two robots. The loading zone of the cell is available in two variations: roll door or light curt...
Indexing H-Frame Weld Cell

Indexing H-Frame Weld Cell

The Indexing H-Frame Cell comes with a full range of safety features and can accommodate two or three robots. The loading zone of the cell is available in two variations: roll door or light ...
Indexing Standard Weld Cell

Indexing Standard Weld Cell

The standard Indexing Cell comes with a full range of safety features and can accommodate up to three robots. The loading zone of the cell is available in two variations: roll door or light ...
Easy-Arc TC300 Weld Cart

Easy-Arc TC300 Weld Cart

The MWES Easy-Arc TC300 Weld Cart utilizes a collaborative robot which is an industrial robot arm designed for operator safety, ease of use and programmability.
Easy-Arc Welding Positioners

Easy-Arc Welding Positioners

Weld positioner systems place welding parts in optimal positions even in some of the most challenging applications.
GMAW & GTAW Robotic Welding

GMAW & GTAW Robotic Welding

The two most common types of gas arc welding are Gas Metal Arc Welding (MIG) and Tungsten Inert Gas Welding (TIG).
Heavy & Light Gauge Welding

Heavy & Light Gauge Welding

Demand has increased in recent years for high-strength, heavy-gauge steel. This is particularly the case for large-scale construction projects.
Heavy Deposition Welding

Heavy Deposition Welding

In the heavy fabrication industry creating welded parts requires welds that have a heavy deposition rate to create stronger components.
Integrated Welding

Integrated Welding

With standard integrated weld systems, the welding automation machinery is designed to specialize in just one of the processes.
Laser Hybrid Welding

Laser Hybrid Welding

Laser hybrid welding is a process that uses a combination of laser and wire arc welding systems. Combined, these processes build on each’s strengths while reducing their weaknesses.
Multi-Process Welding

Multi-Process Welding

Multi-process automated welding systems maximizes speed, output and accuracy, particularly for challenging welds. MWES can integrate a variety of multi-process welding setups.
Resistance Spot Welding

Resistance Spot Welding

This welding process also allows both similar and dissimilar materials to be welded together with no shielding gasses or fluxes.
Robotic Arc Welding

Robotic Arc Welding

Traditionally, all arc welding work had been done with manual labor, however, over the last several decades more and more arc welding work has been transitioned over to robotic automation.
Seam Welding Automation

Seam Welding Automation

This form of welding creates a strong enough bond in the workpiece that makes it fluid and gas tight.
Tandem Welding Systems

Tandem Welding Systems

The tandem welding process consists of two electronically isolated wires, two separate power sources and two feed units.
Types of Welding Processes

Types of Welding Processes

All of these processes are compatible with robotic automation and combined with robot vision systems, these processes are unmatched.
Weld Upgrades & Retrofits

Weld Upgrades & Retrofits

Newer technology has the potential to improve equipment reliability, weld quality and overall throughput for your operation.
Welding Fixtures

Welding Fixtures

One of the most important keys to success in designing and building automated welding systems is the ability to properly hold pre-tacked assemblies or capture multiple components for welding....