Kennametal/MTA PTA Junior Star/TAE EVO M10 Powder Welding System - Image 1
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Kennametal/MTA PTA Junior Star/TAE EVO M10 Powder Welding System

Manufacturer
Kennametal/MTA
Model
PTA Junior Star/TAE EVO M10
Type
Powder Welding System
Year
2013
Category
Metal processing machines
Sub-category
Welding and cutting
Price: Upon request

Specifications

Overview

Self-built powder welding machine with Kennametal power source and MTA cooler for applying Stellite to valves

Cooler MTA TAE EVO 10M

Year of construction
2013
Cooling capacity
approx. 3kW
Refrigerant
R407
Filling quantity
0.8kg
Max. operating pressure
28bar
Flow rate
approx. 0.59m³/h

Weight & Dimensions

Dimensions X/Y/Z
approx. 600mm/600mm/800mm
Weight
approx. 100kg

Power Source Kennametal Stellite PTA Junior Star

Year of construction
2013
Open circuit voltage
75V
Welding current range
10A/10V-250A/38V
Protection class
I

Documentation

Documentation available

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AI Description

Beta

Capabilities

This custom-built powder welding system combines a Kennametal PTA Junior Star power source with an MTA TAE EVO M10 cooler, designed for applying hard-facing materials like Stellite to valve surfaces. The system applies wear-resistant coatings through powder welding, a process that builds up protective layers on components exposed to high temperatures, friction, or corrosive conditions. The cooler maintains optimal operating temperatures during extended welding runs, while the power source delivers the precise energy needed for consistent coating quality.

Industries & Uses

Valve manufacturers, oil and gas equipment producers, and industrial repair shops rely on powder welding systems like this to extend equipment life and restore worn components to specification. It's also used by job shops that specialize in hard-facing services. Businesses in power generation, petrochemicals, and heavy machinery maintenance benefit from having this capability in-house rather than outsourcing expensive hard-facing work.

What to Check When Buying

When evaluating this used system, request maintenance records and cooling fluid history for the MTA unit—coolers that haven't been properly serviced may have reduced efficiency. Ask about the power source's actual operating hours and whether it has been calibrated recently. Inspect hose connections and electrical leads for wear or damage. Verify that both components power up and that the cooler's refrigerant charge is documented. Check that all mounting hardware and control interfaces are complete.

This description is AI-generated and is intended as a general guide only. As with all AI-generated content, it may contain inaccuracies. Please verify all details directly with the seller before making a purchasing decision.

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