TMetal supplies engineered metal powder, wire, and cast‑rod alloys for additive manufacturing and hardfacing, targeting high‑stress sectors such as power generation, oil & gas, and industrial manufacturing. Its Toronto‑based facility uses automated powder metallurgy and laser cladding to produce custom‑tailored alloys that resist erosion, corrosion, abrasion and extreme temperatures, with rapid turnaround and global OEM support.
Funding
Funding not disclosed
Founders
Product
Problem
Manufacturers in power generation, oil & gas, and industrial sectors require metal components that can withstand extreme erosion, corrosion, abrasion, and high temperatures, but standard metal powders and alloys often lack the necessary performance and customization for these demanding environments.
Solution
TMetal provides engineered metal powders, wires, and cast‑rod alloys specifically formulated for additive manufacturing and hardfacing applications. By offering a range of alloy compositions—such as laser‑clad powders for carbon‑steel valve seats (TMP06) and powder‑metallurgy grades for cutting tools (TMP12)—the company enables rapid, high‑volume production of parts that meet stringent durability requirements. Its manufacturing facility utilizes advanced automation to deliver precise alloy customization, fast turnaround, and consistent particle size control. TMetal also supports customers throughout the material selection, production, and global delivery process, ensuring that the chosen alloy aligns with the operating environment and performance targets.
Target Audience
Primary customers are OEMs and component manufacturers in power generation, oil & gas, and industrial machining that require high‑performance metal powders or hardfacing alloys for additive manufacturing or wear‑surface applications.
Features
- Laser‑clad powders (e.g., TMP06) optimized for PTA and laser cladding of carbon‑steel substrates in valve seat and disc applications
- Powder‑metallurgy grades (e.g., TMP12) for high‑performance saw tips and cutting inserts with sub‑53 µm particle size
- Custom alloy formulation to resist erosion, corrosion, abrasion, and temperatures up to extreme levels
- Automated high‑capacity production with tight particle‑size distribution for both PTA and laser‑cladding processes
- End‑to‑end technical support from material selection through global logistics and implementation