Engineered to international building codes (EN 12020-2, CE, NFRC), providing high structural wind load resistance and ultra-low thermal transmittance.
Triple Glazed
Designed for luxury villas requiring maximum energy efficiency. Features NFRC certified thermal break profiles and heavy-duty lift-and-slide hardware.
ROTO Hardware
Integrated with authentic German ROTO multi-point locking systems, achieving superior acoustic damping and high resistance against forced entry.
Energy Efficient
Sleek modern aesthetics tailored for high-end residential balconies, featuring double glazed tempered Low-E glass and ultra-smooth bottom track rollers.
AS2047 Standard
Full-opening bi-fold door engineered to stringent Australian AS2047 hurricane wind load criteria, ideal for seamless indoor-outdoor patio integration.
Minimal Sightline
Ultra-narrow 20mm visible sightline with fully concealed outer frame embedding into ceiling and wall finishes for maximum architectural clarity.
Motorized System
Automated roof access solution engineered with heavy-duty linear actuators, rain sensors, and laminated safety glass for stairs and rooftop terraces.
Heavy-Duty Rail
Multi-track sliding partition configuration utilizing architectural grade aluminum extrusions (EN 12020-2) and corrosion-resistant stainless rollers.
Commercial Grade
Versatile glass door envelope system optimized for commercial office partitions, high-end hospitality suites, and modern residential developments.
In modern architectural design, the boundary between interior space and the external landscape has increasingly dissolved. Frameless glass assemblies, structural silicone glazing (SSG), and minimal-sightline thermal break sliding systems represent the pinnacle of fenestration engineering. As specialized OEM/ODM manufacturers and direct exporters, ALUCCO (GOMAX Emlak Gayrimenkul Insaat Dis Ticaret Ltd. Sti.) combines European engineering rigor with high-capacity extrusion infrastructure to deliver custom architectural envelopes globally.
Procuring custom OEM frameless glass systems involves strict adherence to structural mechanics, thermal performance modeling, and material compatibility. Standard catalog solutions rarely satisfy the wind load, deflection limits (L/175 or L/240 under structural stress), and thermal boundary requirements imposed by luxury residential towers, commercial facades, and high-wind coastal developments.
Information Gain Benchmark: True frameless aesthetics rely not on omitting structural framing entirely, but on engineering sub-surface aluminum extrusions embedded into structural soffits and floor slabs while maintaining continuous thermal isolation via high-density Polyamide PA66GF25 thermal barriers.
Every fenestration unit we manufacture undergoes finite element analysis (FEA) to verify glass panel deflection, stress distribution at point-supported fixings, and air/water tightness under dynamic pressure. Our production aligns with EN 12020-2 for dimensional extrusion tolerances, Qualicoat Standards for surface anodizing/powder coating (min. 60 µm), and EN 12211 for dynamic wind load resistance up to 3.0 kPa (equivalent to Category 4 hurricanes).
The global trade landscape for structural architectural glass and custom aluminum systems is shifting rapidly. Driven by stringent decarbonization mandates (such as the EU Energy Performance of Buildings Directive and US Title 24 Standards), facade engineering decisions are no longer purely aesthetic—they are data-driven environmental investments.
Procurement mandates increasingly dictate primary aluminum extruded using renewable hydro-electric power, achieving embodied carbon footprints below 4.0 kg CO2e/kg aluminum compared to global averages of 16.5 kg CO2e/kg.
Next-generation minimal frame doors are replacing conventional IGUs with hybrid VIG glass panes. VIG achieves thermal U-values down to Ug 0.4 W/m²K in glass thicknesses of less than 10mm, reducing total panel dead weight.
Importers and B2B facade contractors now demand project-specific digital dossiers containing CE certifications, EN 1026 air permeability test reports, and EN 1027 water tightness validation before shipment approval.
The engineering trajectory of frameless glass and minimal sliding systems is driven by material science innovations in structural interlayers, precision stainless steel bearing rollers, and concealed hydraulic dampening mechanisms.
Historically, frameless sliding systems faced thermal bridge issues and structural deflection along wide spans. Modern OEM manufacturing solves these limitations through three core structural breakthroughs:
| Glass & Frame System | Frame Depth / Sightline | Thermal Performance (Uw) | Water Tightness (EN 1027) | Wind Load Resistance | Max Glass Thickness |
|---|---|---|---|---|---|
| Triple Glazed Lift-and-Slide | 76 – 110 mm profile / 50 mm stile | Uw 0.9 – 1.3 W/m²K | Class 9A (600 Pa) | Class C4 (1600 Pa) | Up to 52 mm |
| Minimalist Frameless Slider | 20 mm visible interlock sightline | Uw 1.2 – 1.6 W/m²K | Class 7A (300 Pa) | Class C3 (1200 Pa) | Up to 38 mm |
| Bi-Fold Patio Doors (AS2047) | 70 – 85 mm profile depth | Uw 1.4 – 1.8 W/m²K | Class 8A (450 Pa) | Class C4 (1600 Pa) | Up to 44 mm |
| Retractable Roof Skylight | Concealed heavy-duty track | Uw 1.1 – 1.5 W/m²K | Class E1050 (1050 Pa) | Snow load to 150 kg/m² | Up to 40 mm Laminated |
Operating from Turkey’s premier industrial extrusion cluster, ALUCCO (GOMAX Ltd. Sti.) bridges architectural design intent with precise industrial manufacturing. Unlike trading companies, we operate as a dedicated project engineering partner.
Our in-house facade engineers convert your DWG elevations and architectural schedules into fully detailed shop drawings, profile section cuts, and statics calculations within 72 hours.
We maintain direct OEM partnerships with global hardware leaders including German ROTO, Siegenia, STAC, and GU, ensuring flawless operating mechanics and long-term replacement parts availability.
Every glass sash and aluminum frame is corner-protected, film-wrapped, and loaded into fumigated solid wooden crates lined with moisture-absorbing silica gel packs to withstand 30+ days at sea.
Frameless aesthetics are achieved by embedding structural aluminum sub-frames directly into floor slabs and ceiling channels. Structural rigidity relies on heavy-gauge tempered glass (typically 10mm to 12mm single panels or 30mm+ double glazed units) bonded with structural silicone sealant (conforming to ASTM C1184). The glass pane itself acts as the primary structural element transferring wind loads directly to building anchor points.
Depending on profile depth, polyamide thermal break width (24mm to 34mm), and glazing specification (double or triple Low-E with argon gas fill and warm-edge spacers), our system U-values range from Uw 1.8 W/m²K down to Uw 0.9 W/m²K. We provide exact thermal calculation reports based on your specific project elevation dimensions prior to manufacturing.
Every project export package includes complete commercial invoices with accurate HS codes, packing lists detailed by elevation mark, CE declarations of performance, EN 1026/1027/12211 physical test reports, Qualicoat coating thickness certificates, and ISPM-15 crate fumigation certificates for seamless customs clearance.
We operate on a project basis rather than strict piece counts. A consolidated container load (20ft or 40ft FCL) containing windows, doors, and hardware for a villa project or apartment floor is the most cost-efficient starting point. Standard production lead times are 25 to 35 days following shop drawing approval and color sample sign-off.
Yes. We supply powder coatings in any RAL or NCS color code with film thicknesses exceeding 60 µm under Qualicoat control, as well as textured, metallic, and sublimation wood-grain finishes. Anodized finishes up to 25 microns (Qualanod grade) are available for aggressive marine coastal environments.