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| Standard: | EN 1991-1-4 & EN 1993-3-1 | Matériel: | Acier angulaire GB Q235B/Q355B/Q420B |
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| Norme de galvanisation: | ASTM A123/ISO 1461 | Certificat: | ISO 9001:2008 COC |
| Hauteur: | 20-110M | Structure: | Quatre pattes |
| Écrous et boulons: | Grade 8.8/6.8/4.8 | Durée de vie: | Plus de 20 ans |
| Accessoires: | Montures d'antenne, échelles d'escalade, système de protection contre la foudre | Charge du plat au micro-ondes: | Jusqu'à 6 plats |
| Traitement de surface: | Peint ou revêtu de poudre | Type de fondation: | Fondation en béton ou en acier |
| Application: | Télécommunications, Transmission électrique, Radiodiffusion | Nom du produit: | Tour en acier angulaire à 4 pattes |
| Vitesse du vent Résistance: | ≥60 M/S | Plage de hauteur: | 10m à 60m |
| Revêtement: | Galvanisé à chaud | Résistance au vent: | Haut |
| Type de base: | Base concrète | Montage de l'antenne: | Monture supérieure ou latérale |
| Type de connexion: | Boulonné | Usage: | Transmission et distribution |
| Galvanisation: | Galvanisé à chaud | Charge de conception: | Personnalisable |
| Entretien: | Faible entretien requis | Personnalisation: | Disponible sur demande |
| Chargement des récipients au micro-ondes: | Personnalisable | Escalier de montée: | Externe ou interne |
| Type de fondation: | Base concrète | Type de plate-forme: | Rond ou carré |
| Origine: | Chine | Méthode d'installation: | assemblé ou soudé |
| Capacité de charge: | Personnalisé | chargeCapacité: | Conçu selon les exigences du client |
| Temps d'installation: | Plus courtes que les tours en treillis traditionnelles | Méthode d'installation: | Assemblage boulonné ou soudé |
| Taper: | Angulaire | Type de tour: | Autosuffisant |
| Poids: | Varie en fonction de la hauteur et du design | Type d'installation: | Boulonné ou soudé |
| Mettre en évidence: | wind resistant 4 legged steel tower,angular steel tower with warranty,4 legged steel tower deflection |
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JIAYAO CO.,LID
The 4-legged angular steel lattice tower is a freestanding, high-strength steel structure designed for critical infrastructure support. Characterized by its square-based four-legged frame and crisscross lattice connections, it serves as a reliable backbone for communication, power transmission, and other industrial applications worldwide . Unlike guyed towers that rely on external wires for stability, this self-supporting design stands independently, making it adaptable to diverse environments from urban areas to remote regions.
Product Description
Packaging Details: Telecom tower will be bundled by Galvanized strapping as per client's requirements.
Deliver:Shipped in 20 days after payment from Tianjin port
Tower members: One steel tower is separated into several bundles.
Bolts: Pacrum.lon bag or steel
| Design | ||
| 1. Design Code | ANSI/TIA-222-G/H/F, EN 1991-1-4 & EN 1993-3-1 | |
| Structure Steel | ||
| 2. Grade | Mild Steel | High Tensile Steel |
| GB/T 700:Q235B, Q235C,Q235D | GB/T1591:Q355B, Q355C,Q355D | |
| ASTM A36 | ASTM A572 Gr50 | |
| EN10025: S235JR, S235J0,S235J2 | EN10025: S355JR, S355J0,S355J2 | |
| 3. Design Wind Speed | Up to 250 km/h | |
| 4. Allowable deflection | 0.5 ~1.0 degree @ operational speed | |
| 5. Tension strength (Mpa) | 360~510 | 470~630 |
| 6. Yield strength (t≤16mm) (Mpa) | 235 | 355 |
| 7. Elongation (%) | 20 | 24 |
| 8. Impact strength KV (J) | 27(20°C)---Q235B(S235JR) | 27(20°C)---Q345B(S355JR) |
| 27(0°C)---Q235C(S235J0) | 27(0°C)---Q345C(S355J0) | |
| 27(-20°C)---Q235D(S235J2) | 27(-20°C)---Q345D(S355J2) | |
| Bolts & Nuts | ||
| 9. Grade | Grade 4.8, 6.8, 8.8 | |
| 10. Standards for mechanical properties | ||
| 10.1 Bolts | ISO 898-1 | |
| 10.2 Nuts | ISO 898-2 | |
| 10.3 Washers | ISO 6507-1 | |
| 11. Standards for Dimensions | ||
| 11.1 Bolts | DIN7990, DIN931, DIN933 | |
| 11.2 Nuts | ISO4032, ISO4034 | |
| 11.3 Washers | DIN7989, DIN127B, ISO7091 | |
| Welding | ||
| 12. Method | CO2 Shielded Arc Welding & Submerged Arc Welding(SAW) | |
| 13. Standard | AWS D1.1 | |
| Marking | ||
| 14. Method of marking of the members | Hydraulic Press Stamping | |
| Galvanizing | ||
| 15. Galvanization standard of steel sections | ISO 1461 or ASTM A123 | |
| 16. Galvanization standard of bolts and nuts | ISO 1461 or ASTM A153 | |
| Test | ||
| 17. Factory test |
Tensile test,Elements analysis, Sharpy test(impact test), Cold Bending, Preece test,Hammer test |
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The lattice structure of a 4-legged angular steel tower is a crisscross, truss-like framework that connects the tower’s four vertical angle steel legs. Composed of interconnected steel members (typically angular steel or lattice bars), it forms a web-like pattern that distributes loads—including the tower’s own weight, equipment weight, wind, seismic forces, and ice loads—evenly across all four legs. This structure is integrated throughout the tower’s height, complementing the tower’s tapered design (wider at the base, narrower at the top) to enhance structural integrity and stability. The lattice configuration balances high strength with lightweight performance, minimizing material usage while maximizing load-bearing capacity and resistance to extreme environmental conditions. It also facilitates airflow, reducing wind resistance and further improving the tower’s overall stability.
Mounting a microwave (MW) dish on a 4-legged angular steel tower follows a systematic, safety-compliant process:
The main structure of a 4-legged angular steel tower is a self-supporting framework designed for stability and load-bearing, consisting of three core components:
Supplementary structural elements (e.g., equipment platforms, climbing ladders, and cable trays) are integrated into the main framework to support practical functionality, but the four vertical legs and lattice truss connections form the tower’s structural backbone.
Together, the platform and ladder enhance the tower’s usability by enabling safe, efficient access to high-altitude equipment and components, supporting ongoing operation and maintenance.
Galvanizing is a vital surface treatment for 4-legged angular steel lattice towers, providing long-term corrosion resistance to withstand harsh outdoor conditions and extend the tower’s service life beyond 20 years. Below is a simplified overview of its galvanizing testing:
Adhere to ASTM (A123, B117, A572), ISO (1461, 9227, 898), tower design codes (TIA/EIA-222-G/F), and local regulations.
This testing ensures the galvanized coating’s reliability, supporting the tower’s performance in infrastructure applications.
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Monopole tower, is a commonly used type, with beautiful appearance, covering an small area of 9 to 18 square meter, cost - effective , and is adopted by majority of the construction. Tower body adopt more reasonable section, which is connected through high strength bolt or overlap(slip connection). It has the characteristics of easy installation and can adapt to a variety of complicated field site.
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Personne à contacter: Eric.Jia
Téléphone: +86-13903181586