Robotic Welding and Palletizing
Cobot welding and robotic palletizing are the two fastest-growing cobot applications in small manufacturing. This guide covers what each involves, what it really costs, where it works well, and where it fails.
Cobot welding at a glance
A cobot welder is a robot arm fitted with a MIG (GMAW), TIG (GTAW) or laser welding torch, programmed to run consistent weld passes. The system includes the cobot, a welding power source, a wire feeder, a weld cell (fume extraction, optional guarding), and programming time.
Where cobot welding works — and where it doesn't
Cobot welding is strongest when: joint geometry is consistent and repeatable batch to batch, weld runs are at least 20–30 seconds long, and parts can be fixtured accurately (within ±1 mm). It struggles with: highly variable joint fit-up, very short tack welds, complex multi-pass TIG, and custom one-off fabrication where setup time exceeds weld time.
See the detailed guide: Cobot Welding for Small Shops: Cost, Limits, Payback.
Cobot palletizers vs conventional palletizers
A cobot palletizer uses a collaborative robot (typically 20–35 kg payload) to stack boxes, bags or trays onto pallets. A conventional palletizer uses a dedicated industrial robot or conveyor-based system. Key differences:
| Factor | Cobot palletizer | Conventional palletizer |
|---|---|---|
| Throughput | 5–12 cycles/min | 12–40 cycles/min |
| Installed cost | $50,000–$120,000 | $100,000–$400,000+ |
| Floor space | Small (3–5 m²) | Large (10–30+ m²) |
| Programming changes | Easy (drag-and-drop pallet patterns) | Moderate to complex |
| Best for | Low-medium volume, multiple SKUs | High-volume, single or few SKUs |
See the full comparison: Cobot Palletizer vs Conventional Palletizer.
Guides in this section
Cobot Welding for Small Shops: Cost, Limits, Payback
Full installed-cost breakdown, MIG vs TIG, joint geometry requirements, and a payback calculation for a two-welder shop.
Cobot Palletizer vs Conventional Palletizer
Throughput, installed cost, programming effort, and a decision framework for choosing between collaborative and conventional palletizing.
TIG Welding With a Robot: Applications and Limitations
When robotic TIG (GTAW) makes sense, joint tolerance requirements, and why it is less common in cobots than MIG welding.
Case Packing Robots: Selection and Integration Guide
Robotic case packing for food, beverage and consumer goods — robot types, infeed requirements, and throughput benchmarks.
Frequently asked questions
Is cobot welding worth it for a shop with 2 welders?
What throughput can a cobot palletizer achieve?
Can a cobot do TIG welding?
Do I need a fume extraction system for a cobot welder?
Sources
- ESAB cobot welding guide, esab.com, accessed September 2026
- Hirebotics Beacon cobot welder specifications, hirebotics.com, accessed September 2026
- OSHA Welding, Cutting, and Brazing — 29 CFR 1910.252
- American Welding Society, Welding Digest — "Cobot Welding: The Future of Automated Manufacturing", September 2024