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ABAGY

AI-powered no-code welding robot programming

Vision-based software that automates robot path generation for welding applications without manual programming. Uses machine vision and AI to enable high-mix and one-off part welding using standard industrial robots.

$1.5M raisedGrowth Stage
Founded 2019 · 3+ beta customers and active partnerships with Fairmont Machinery, Calvary Robotics, Nordica Sterling Robotics
Website →← All Tools

Why This Tool Exists

The Problem

Construction and fabrication firms face a critical welder shortage and cannot justify robotic welding for high-mix, custom, or one-off part production due to expensive and time-consuming robot programming requirements. This forces teams to rely on manual welding labor even when automation would be more economical and efficient.

The Solution

ABAGY uses machine vision and AI to automatically generate robot welding paths in minutes from 3D CAD models. Operators simply select joints to weld and set parameters—no robot programming knowledge required. The system adapts to part variations in real-time using computer vision.

How You Use It

Delivery Method
SaaSHardware + SoftwareIntegration Services
Integrations
FanucKukaKawasakiYaskawaPanasonicABBFroniusLincolnMillerEsabLorch
Disciplines
Workflows
Project Phases
Construction Administration, Fabrication
Project Types
Commercial, Industrial, Infrastructure, Specialized Structures

Data Transparency

Exactly what this tool uses and how

Input
What it needs
Required:3D CAD model or part drawing, Welding joint specifications
Optional:Welding parameters (voltage, speed, wire), Part positioning/fixture data, Simulation requirements
Formats:3D models, CAD files, 2D drawings, DWG, STEP
Output
What you get
Format:Automated robot path planning with simulation and control parameters
Fields:Robot trajectory/path, Welding parameters, Joint-by-joint instructions, Collision detection, Simulation visualization, Fixture and positioning requirements
Algorithm
How it works
Model:Proprietary machine vision and AI system (trained on welding tasks)
Accuracy:Not publicly specified (claims real-world deployment-ready accuracy)
Privacy
How your data is protected
Retention:Project-based retention (full duration not specified)
Training:Not publicly specified whether production data used for model training
Compliance:GDPR compliant, Data protection policy available
API
Integration
Endpoint:Contact vendor for API access and custom integrations
Method:Not publicly documented

Use Cases

  • ·High-mix welding automation for bridge structures and offshore platforms
  • ·One-of-a-kind and custom part welding without programming overhead
  • ·Commercial construction steel frame fabrication
  • ·Shipbuilding component welding
  • ·Heavy equipment manufacturing with frequent design variations
  • ·Retrofit existing welding robots with automated programming capability

Pricing

Free
Not applicable
Pro
Contact vendor for pricing (software + hardware + integration package)
Enterprise
Custom pricing based on deployment scope, robot platform, and integration needs
Sources & Research NotesResearch date: 2026-04-03
Fields Checked (16)
problem, solution, deliveryMethod, integrations, disciplines, projectPhases, projectTypes, yearFounded, maturityStage, fundingTotal, customerBase, input-formats, output-structure, algorithm-approach, useCases, privacy-compliance
Not Found (6)
pricing-specific-rates, algorithm-accuracy-metrics, api-documentation, privacy-data-retention-days, customer-count-exact, soc2-certification
About this research: This record summarizes the cited sources and fields checked. A research date does not establish hands-on testing. Consult the original sources for current details and limitations.