Economical Series Playground · SS-012541
Price on request
SKU: SS-012541
Product Technical Specifications Seating Area: 730 × 760 cm (287 x 299 in) Safety Area: 1030 × 1060 cm (406 x 417 in) Slide Connection Height: 150 cm (59.1 in) User Capacity: 3 User Age Group: 3 years and up Carrier Construction The load‑bearing structure is made of round steel tubes with a minimum diameter of 89 mm (3.5 in) and a wall thickness of 2.5 mm (0.1 in), cold‑formed to TS EN 10219‑2, TS‑6476, DIN 2394 standards and welded by high‑frequency welding. Tubes are sand‑blasted and then coated in a polyester‑based electrostatic powder‑coat. The upper ends of the tubes are sealed with polyethylene caps that are fixed with at least two half‑sphere‑shaped aluminum rivets, applied by injection molding to prevent water, moisture, and foreign material ingress. Vertical and horizontal 89 mm (3.5 in) sand‑blasted tubes intersect at right angles and are joined with aluminium‑cast or injection‑moulded polyamide connectors. The lower sections of the load‑bearing tubes are welded to steel plate flanges measuring at least 150 × 150 × 5 mm (5.9 x 5.9 x 0.2 in). For installations on hard ground, the flanges are anchored with steel expansion bolts (minimum 8 × 75 mm (0.3 x 3 in)) inserted through 10 mm (0.4 in) holes. For soil installations, an anchoring system comprising four galvanized M10 × 40 screws welded to a 150 × 150 × 5 mm (5.9 x 5.9 x 0.2 in) plate is used on a 200 mm (7.9 in)‑high, 89 mm (3.5 in)‑diameter sand‑blasted tube. All carrier tubes are supplied as single pieces; no additional pipe sections, weld seams, or stitching marks are present. Platforms, railings, or clamps are not welded directly to the carrier tubes. However, plastic‑coated or steel platforms can be attached using flanges with a minimum 5 mm (0.2 in) wall thickness, sized to match the platform corners and bolt holes. CTP (Glass‑Fiber‑Reinforced Polyester) Products CTP stands for "Cam Elyaf Takviyeli Polyester" (Glass‑Fiber‑Reinforced Polyester). CTP is used for slides, stairs, railings, barriers, accessories, roofing, and similar components. The material is a composite of unsaturated polyester matrix reinforced with glass fibers, resulting in higher mechanical strength. It is a versatile alternative to wood, concrete, metal, or glass, allowing easy adaptation of properties to suit specific applications. The composite is resistant to climate variations, temperature changes, chlorine‑treated water, and all typical chemicals. It does not become electrically charged and remains non‑conductive. Glass fibers are woven into a fine, flexible fabric that is placed in a mold, infused with polyester resin and catalyst, then layered and cured. The resulting material is strong, lightweight, and can be sanded and painted for a smooth finish. A high‑performance acrylic‑based accelerator (Isoftalik/NPG) enables the creation of a two‑coat, 0.80 µm thick film that tolerates temperatures up to 215 °C without fatigue, cracking, yellowing, fading, or loss of gloss. Two‑coat (450 g/m²) and single‑coat (600 g/m²) applications are applied over a 5 mm (0.2 in)‑thick fiber layer using CE 92 N8 polyester resin, delivering excellent mechanical durability. No post‑production coloring is performed. Polyethylene Products Low‑density linear polyethylene (LLDPE) is a thermoplastic used in a wide range of components such as slides, stairs, railings, barriers, accessories, and roofing. It is semi‑permeable, flexible, and highly durable, with low cost and excellent chemical resistance. Depending on molecular weight, crystallinity, and branching, polyethylene grades vary, but all provide good resistance to outdoor conditions and moisture, modest mechanical strength, and superior chemical resistance. Polyethylene components used in slides, stairs, railings, barriers, and accessories are colored with masterbatch pigments that have a lightfastness rating of 6 or higher to prevent fading. Wall thickness is a minimum of 6 mm (0.2 in) for parts subjected to pressure or friction, and at least 4 mm (0.2 in) for barriers or shade structures that are not load‑bearing. Thickness tolerance is ±5 %. Electrostatic Powder‑Coating All metal parts are first grit‑blasted to remove oil, dirt, and rust, creating a porous surface that enhances powder adhesion. The parts are then coated in an electrostatic powder‑coat using fine steel beads propelled by compressed air, ensuring an even, durable finish. All metal components are fabricated following these processes.