Playground – Train Series

Playground – Train Series

Price on request

SKU: PS-0050604

Product Technical Specifications Play Area: 705 x 1200 cm (278 x 472 in) Safety Area: 1005 x 1500 cm (396 x 591 in) Slide Connection Height: 100 cm (39.4 in) x 150 cm (59.1 in) Spare Parts - H:100 cm (39.4 in) metal climbing element – 1 piece - Polyethylene tube passage – 1 piece - Polyethylene barrier – 6 pieces - Polyethylene train roof – 1 piece - Composite stair – 1 piece - Metal stair guard – 1 piece - H:100 cm (39.4 in) straight slide – 2 pieces - Metal slide guard – 1 piece - H:100 cm (39.4 in) spiral slide – 1 piece - Metal climbing entry – 1 piece - 116 × 116 mm (4.6 x 4.6 in) square composite platform – 3 pieces - H:100 cm (39.4 in) UFO climbing – 1 piece Polyethylene Products Linear Low‑Density Polyethylene (LLDPE) is a thermoplastic used in a wide range of products. It is a semi‑permeable, pliable, and highly durable polymer that, because of its low cost and high resistance, is widely preferred in industry. Polyethylene is classified into categories based on density and chemical characteristics. Its mechanical properties depend on molecular weight, crystal structure, and branching type. Regardless of the grade, it offers good resistance to outdoor conditions and moisture, flexibility, low mechanical strength, and excellent chemical resistance. Polyethylene components are used to manufacture slides, stairs, railings, barriers, accessories, roofs, etc. To prevent colour fading, masterbatch pigments used for colouring polyethylene must have a lightfastness rating of 6 or higher. The material thickness shall be at least 6 mm (0.2 in) for parts exposed to pressure and friction, and at least 4 mm (0.2 in) for non‑load‑bearing barriers and shade structures. Thickness tolerance is ±5 %. Carrier Construction The supporting structure will be made of round‑section steel tubes that are cold‑formed to meet TS EN 10219‑2, TS‑6476, and DIN 2394 standards, with a minimum outer diameter of 114 mm (4.5 in) and a minimum wall thickness of 2 mm (0.1 in). These tubes will be welded using high‑frequency welding and painted with a polyester‑based electrostatic powder coat after sandblasting. Electrostatic Powder Coating Process All metal components will be cleaned of oil, grease, and rust by sandblasting to create a porous surface for better paint adhesion. A fine‑grain abrasive coating will be applied using a pressurized air system to open pores and remove contaminants. After cleaning, the components will be coated with a polyester‑based electrostatic powder and cured in a 200–220 °C oven for 20 minutes. Following coating, the parts will undergo a 10‑minute 70 °C bath with 5 % degreasing solution, then a 15‑minute 50 °C dip in a 1 % iron bath. After thorough rinsing and drying, the metal parts will receive a final polyester‑based electrostatic powder coat and be baked at 180–200 °C for 20–30 minutes. All weld seams will be fully painted after welding to prevent corrosion.

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