MetalWorm Robotic WAAM Systems with Lodestar 3D

MetalWorm WAAM Systems in India

Explore MetalWorm compact, special, multi-station and laboratory robotic Wire Arc Additive Manufacturing systems with India-focused application evaluation and project coordination from Lodestar 3D.
MetalWorm MW-LAB robotic WAAM Lab System for additive manufacturing research and alloy development
MetalWorm MW-LAB robotic WAAM Lab System for additive manufacturing research and alloy development

Compact to Multi-Station

A broad robotic WAAM portfolio

Large Metal Components

Systems for demanding work envelopes

Process Monitoring

Software, sensors and control options

Lodestar 3D Support

India-focused project coordination
MetalWorm WAAM Special System producing a large industrial metal component
MetalWorm OEM Overview

Robotic WAAM Platforms Supported in India by Lodestar 3D

MetalWorm WAAM Special System producing a large industrial metal component
MetalWorm develops robotic Wire Arc Additive Manufacturing systems for compact industrial cells, large and specialised components, multi-station production and academic research. Lodestar 3D helps Indian customers understand the portfolio, map the system to the target part and workflow, and coordinate technical and commercial discussions for the project.
Why MetalWorm

Built Around Part Scale, Motion, Deposition and Process Control

A concise view of the capabilities that define MetalWorm’s robotic WAAM system portfolio.

1

Broad System Range

Configurations span compact cells, large special systems, multi-station platforms and R&D equipment.

2

Robotic Flexibility

Robot, slider, gantry and positioner layouts can be matched to component geometry and handling needs.

3

Monitoring & Control

Standard and advanced configurations can include software, sensors, cameras and process-control options.

4

Custom Engineering

Special work envelopes, payloads, stations and process add-ons can be evaluated for project requirements.

TPM3D S320HT SLS Industrial 3D Printer.

Discuss Your Industrial SLS Requirement

Share your part size, polymer material, monthly output, surface-finish expectations and powder-handling requirements with Lodestar 3D.
Featured MetalWorm WAAM Systems

Explore the MetalWorm Product Range

Select a system category based on part size, work envelope, station count, positioning requirement and intended production or research use.
Compact WAAM

MHTTN1000

Ø0.7 m × 0.7 m · 6+2 axes · 1000 kg payload

Single-station compact cell with a two-axis positioner for medium-scale rotational components.
Two-Station Compact

MHTTN500RP

1 m × 0.5 m × 0.7 m · 6+1 axes · 2 stations

Single-station compact cell with a two-axis positioner for medium-scale rotational components.

Double Skyhook

MHTTN500DS

Ø0.7 m × 0.7 m · 6+5 axes · 500 kg payload

Double-skyhook compact system for multi-axis positioning and two-station operation.
THDZ Positioner

MHTTN500THDZ

Ø0.7 m × 0.7 m · 6+3 axes · 2 stations

Compact dual-station configuration using a THDZ positioner for controlled part movement.

Special & Large-Scale System Series

Robotic WAAM configurations for larger components, long parts, high payloads and multi-station production.
Large Skyhook System

MW2000S

Ø1.5 m × 2 m · 6+2 axes · 2000 kg payload

Large robotic WAAM platform with a two-axis skyhook positioner for substantial components.
Drop Center

MW1000DC

Ø2 m × 1 m · 6+2 axes · up to 10,000 kg

Drop-center system for large and heavy components requiring high positioner payload capacity.
Z-Axis Gantry

MW2500ZGRP

Ø2 m × 4 m · 6+1+1 axes · 2500 kg payload

Z-axis and rotary-positioner platform for tall, large-diameter and vertically extended parts.
Dual Robot / Two Station

MW5000DS+SH

Positioner Ø1.5 m × 2 m · table 1 m × 5 m × 2 m

Two-station system combining slider, skyhook and table configurations for varied large-part production.
Three-Station WAAM

Multi Station Robotic

3 stations · gantry · payloads up to 20,000 kg

Large multi-station platform combining drop center, TH positioner and skyhook work zones.
Slider + Skyhook

MW1000S+CS

Ø1 m × 1 m · 6+1+2 axes · 1000 kg payload

Slider, compact skyhook and tail-side arrangement for elongated or rotational WAAM parts.

Laboratory & Research System

A compact platform for universities, research institutes and industrial R&D teams studying WAAM materials and parameters.
Academic & R&D WAAM

MW-LAB

Ø0.5 m × 0.5 m · 6+2 optional axes · 250 kg payload

Research-focused robotic WAAM system designed for material trials, parameter development and education.
Why Lodestar 3D

Your India-Focused Route to MetalWorm WAAM Systems

Lodestar 3D helps customers move from system discovery to a structured OEM discussion by collecting the application, component, material, motion and facility information required for WAAM system evaluation.

System Selection

Identify the appropriate compact, special, multi-station or laboratory WAAM category.

Application Mapping

Structure part dimensions, material, deposition process, payload and positioning requirements.

Project Planning

Coordinate cell layout, utilities, safety, training and commercial discussions.

Local Communication

Maintain an India-based point of contact throughout the enquiry and evaluation process.
Frequently Asked Questions

MetalWorm and Lodestar 3D FAQs

MetalWorm develops robotic Wire Arc Additive Manufacturing systems for compact production, large and specialised parts, multi-station manufacturing and academic research.
The featured range includes MHTTN1000, MHTTN500RP, MHTTN500DS, MHTTN500THDZ, MW2000S, MW1000DC, MW2500ZGRP, MW1000S+CS, MW5000DS+SH, Multi Station Robotic WAAM System and MW-LAB.
Lodestar 3D supports India-based application assessment, requirement collection, system shortlisting and project-stage communication for MetalWorm WAAM enquiries.

MW-LAB is designed for academic research and R&D activities. It provides a compact robotic platform for testing materials, process parameters and WAAM workflows.

MetalWorm presents compact and special systems with different robots, positioners, work envelopes, stations, payloads, software and sensor options. Final configuration should be evaluated against the project requirement.
Share the component dimensions, target material, expected deposition process, annual volume, required payload, preferred number of stations, facility constraints and post-processing plan with Lodestar 3D.

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