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Linkedalu Metal Group Co., Ltd LINKEDALU Metal Group
Solar Panel Frame Extrusions

PV Frames Engineered for Automated Framing Lines

A frame that twists during lamination, pits after three monsoons, or arrives at the plant with mounting holes 2 mm off is not just a defective part, it is a warranty claim waiting to happen. On the surface a solar frame looks simple: a long aluminum profile with a groove for the laminate, a slot for the mounting bolt and a few drainage paths. In an automated framing station, small deviations turn into real bottlenecks. A subtle bow can jam the framing machine, a rushed anodizing seal fails salt spray within months, and slotted holes that drift out of tolerance force installers to re-drill on site, scratching the coating and wiping out project margin.

We manage the whole fabrication chain rather than just supplying the profile: precision cutting, CNC punching, drainage slotting, grounding boss integration and protective film application, so the frames arrive at your module plant ready to feed the framing machinery.

Straightness: Why Micro-Twist Causes Cell Micro-Cracks

If a profile has a slight structural twist, it forces the glass laminate into a constant, subtle curve while the silicone cures. That residual stress concentrates at the solar cell edges, and months later under environmental loading the micro-cracks propagate. The module may pass initial testing while its long-term power degradation curve steepens.

We hold profile straightness to 0.5 mm/m or better. Every profile passes through a dedicated tension stretcher after leaving the press, because roller straightening only masks internal stress rather than removing it. Cross-sections are monitored at the start and end of every production run with a profile projector, and critical dimensions touching the laminate and mounting clamps are held to 0.15 mm. For standard rooftop projects the alloy is 6063-T5; large-format utility panels and heavy snow-load zones step up to 6063-T6 or 6005-T5.

Anodizing and Sealing: Stopping White Rust

White rust on anodized aluminum is almost always a sealing problem. If the oxide pores are not fully closed, moisture and salt ions penetrate the layer and cause sub-surface corrosion, which is what happens when lines use cold-sealing additives or run billets high in iron tramp elements.

Our baseline for outdoor exposure is AA15 at 15 µm or more. For high humidity, coastal sites and floating solar, we mandate AA20 at 20 µm or more as an architectural finish. We seal with a high-temperature nickel salt hot-water process rather than a quick cold dip, validate every batch with the ISO 3210 acid dissolution test to confirm pore closure, and run a chrome-free passivation pre-treatment to arrest filiform corrosion at scratch points. Profiles are extruded from primary 6063 billet, never remelted scrap, because clean metal yields a clean oxide seal.

Hole Position and Post-Extrusion Fabrication

Misaligned tolerances stall ground-mount installations immediately. If pre-drilled frame holes miss the racking slots by a few millimeters, the crew re-drills on site, which voids the manufacturer's warranty and exposes raw aluminum to corrosion. We CNC drill or punch every mounting hole after the profile is cut to length, referencing the same datum edge across the whole batch, which keeps hole positional tolerance within 0.2 mm. Drain slots are engineered as elongated channels so water actually evacuates instead of clogging a small circular hole with dust and organic matter. Grounding marks are extruded into the die as a raised boss and pre-drilled, giving a clean flat surface for electrical contact without scraping anodizing away on site.

Surface Protection in Transit

Frames rejected for scratches are the most frustrating kind, because the extrusion itself may be metallurgically perfect. We apply heavy-duty PE protective film in-line as the profile exits the aging oven, and it stays on through cutting, punching and assembly. Saw and punch tooling uses nylon or rubber contact pads to eliminate metal-on-metal friction, and finished frames are stacked with foam or corrugated separators, stretch wrapped and loaded onto reinforced export pallets. The film peels cleanly at your assembly line.

Profile Selection and Ordering

Standard PV frames for residential and commercial modules use 6063-T5 with AA15 anodizing in silver or black. High-strength frames for large-format modules and heavy snow or wind loads use 6063-T6 or 6005-T5 with AA15 or AA20. Coastal, offshore and floating sites use 6063-T5 or T6 with AA20 and nickel sealing. BIPV, thin-film and special laminates run to specification with anodized, electrophoretic or PVDF finishes.

Engineered frame features include an integrated grounding boss extruded as a raised pad, a silicone overflow groove sized to your specified adhesive bead volume, and directional drainage slots positioned so that water evacuates at varying design tilt angles. For a completely custom profile the MOQ is 500 kg per shape; because a standard frame needs both a long-side and a short-side profile, the combined entry threshold is typically 1,000 kg. Every frame in an order is extruded from one billet batch and anodized in one tank run, so color matches across every pallet.

Typical applications

  • check Residential and commercial PV modules
  • check Utility-scale modules
  • check BIPV and thin-film modules
  • check Floating solar arrays
  • check Coastal and high-humidity installations

Industrial Aluminum · Solar Energy Profiles

Solar Panel Frame Extrusions

Aluminum solar panel frames extruded in 6063-T5 or 6063-T6, held to 0.5 mm/m straightness and anodized AA15 or AA20, supplied cut, CNC punched, drainage slotted and film protected for automated framing lines.

Technical parameters

Alloy & Temper 6063-T5 standard; 6063-T6 or 6005-T5 for large-format and heavy snow or wind loads
Hardness ≥8 HW
Straightness ≤0.5 mm/m, tension-stretched after extrusion
Cross-Section Dimensions ±0.15 mm on critical features (laminate and clamp contact)
Cut Length & Hole Position Cut ±0.2 mm; hole position ±0.2 mm from a fixed datum
Anodizing AA15 (≥15 µm) standard; AA20 (≥20 µm) for coastal, floating and high humidity
Sealing Quality High-temperature nickel salt sealing; validated by ISO 3210 acid dissolution test
Frame Features Integrated grounding boss, silicone overflow groove, directional drainage slots
Length & Fabrication 6 m extruded; cut, CNC punched, drainage slotted, in-line PE film applied
MOQ & Standards 500 kg per profile shape (≈1,000 kg for a long-side/short-side pair); ISO 9001:2015
Alloy 6005 6063
Application BIPV and thin-film modules Floating solar arrays Residential and commercial PV modules Utility-scale modules
Surface finish Anodized Pvdf Coated
Industry Industrial Equipment Solar Energy
Temper T5 T6
  • verified_userMill test report supplied with every shipment
  • scheduleTypical lead time 15–25 days after die approval
  • publicExport packing, FOB Xiamen / CIF / DDP

Technical FAQ

Could frame profile twist be causing our cell micro-cracks? add
Yes, it is highly probable. If a profile bows or twists out of the press, the automated framing machine forces the glass laminate into a warped plane to close the corners. Once the structural adhesive cures, the glass is locked under continuous mechanical stress, and environmental wind or snow loads then trigger micro-cracks along the cell matrix. Holding straightness to 0.5 mm per meter or better is the control that prevents it.
Is AA15 anodizing enough for a floating solar array? add
No. AA15 and an improperly sealed layer pit quickly in high salinity and humidity. For floating solar or coastal projects within about 5 km of breaking surf we specify AA20, at 20 µm minimum, combined with high-temperature nickel salt sealing. That produces a denser barrier layer able to resist continuous chloride ion attack over a 25-year service life.
Are mounting and drainage holes punched inline during extrusion? add
No. Inline punching on the run-out table compromises tolerances, because the metal is still contracting as it cools. Profiles are first extruded, tension-stretched and fully aged to their final T5 or T6 temper, then passed to CNC fabrication where they are cut, punched and drilled from a fixed datum. That is how hole positions hold within 0.2 mm across an entire batch.
What is the MOQ for a custom PV frame profile? add
For a completely custom profile requiring new tooling, the MOQ is 500 kg per profile shape. Because a standard solar frame needs both a long-side and a short-side profile, the combined entry threshold is typically 1,000 kg to amortize engineering and die setup. If you are matching an industry-standard frame geometry we may already hold the tooling, which allows smaller validation runs.

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Include your drawing reference, alloy, finish, quantity and destination port. If you have a DXF or PDF, mention it in the message and we will request it by email.

Drawings & CAD files: email DWG, DXF, STEP or PDF to sales@linkedalu.com — they are quoted together with this request.

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Why engineers buy this profile from us

  • Die design in-house. Our tooling engineers balance metal flow before the first billet is pressed, which keeps wall thickness and straightness repeatable order after order.
  • One partner for finishing. Extrusion, anodizing, coating, machining and assembly happen on one site, so tolerances are not lost between suppliers.
  • Documentation that clears customs and auditors. Composition, mechanical properties, dimensional and coating reports ship with the goods.
  • Stable supply. 100,000 tonnes of annual capacity and 26 presses mean your schedule is not hostage to a single line.
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