T5 vs T6 Tempering: Heat Treatment & Mechanical Hardness in Solar Extrusions
Understanding the critical differences between air-cooled T5 and solution-heat-treated artificial precipitation-aged T6 tempers in solar aluminum structures.
Key Engineering Takeaways
- โ T6 temper delivers 40% higher mechanical yield strength compared to T5
- โ Webster hardness must reach min. 12 HW across every production batch
- โ Prevents catastrophic fastener pull-out and flange bending under storm winds
Extrusion Quenching & Artificial Aging Kinetics
When aluminum exits the extrusion press at 500ยฐC, it must be rapidly cooled to hold alloying elements in solid solution. T5 profiles are cooled from elevated temperature shaping and artificially aged. T6 profiles undergo rapid water/forced-air quench followed by 6 to 8 hours in artificial aging precipitation furnaces at 180ยฐCโ200ยฐC, nucleating fine Mg2Si needles that block dislocation movement.
Hardness & Yield Strength Benchmarks
T5 temper typically yields 8โ10 Webster Hardness (HW) and ~130 MPa yield strength, which is inadequate for gusting wind uplifts. T6 temper guarantees minimum 12โ14 HW (approx. 75โ85 HB) and yield strength exceeding 200โ240 MPa, satisfying Eurocode 9 structural requirements.
Frequently Asked Technical Questions
Why is T5 unsuitable for heavy solar racking?
How is hardness verified during manufacturing?
Require Project Statics Calculation?
Our engineering desk calculates project-specific wind uplift and snow load moment capacities according to Eurocode 9 within 24 hours.