Introduction
Hydraulic steel strand lifting equipment consists of three main components: the load-bearing system, the power system, and the control system. The load-bearing system includes the lifting jack, component clamp, safety clamp, and high-strength, low-slack steel strand. The power system is a pump station equipped with various hydraulic valves. It receives commands from the control system, opens and closes the solenoid valves, thereby controlling the oil circuit and driving the jack cylinder and piston. The control system includes the main control cabinet, the pump station starter box, and connecting cables, and coordinates the movement of all moving components in the entire system.
Product Performance
- The lifting jack anchor features reverse-motion self-locking. Even if the lifting jack malfunctions during lifting, the component will not fall, ensuring a safe lifting process. The component can be securely locked in any position during the lifting process.
- It offers strong scalability, allowing for configuration of the number of lifting jacks based on the weight of the component being lifted. Each hydraulic pump station and corresponding lifting jack connect to the control system via a network as an independent unit. As long as there are appropriate load-bearing points, the lifting height and range are unlimited.
- The lifting system features millimeter-level fine-tuning, enabling precise vertical positioning in mid-air.
- The device is compact, lightweight, and has a high load capacity, making it particularly suitable for lifting large-tonnage components in confined spaces or indoors.
- The device is highly automated, simple to operate, safe, reliable, and adaptable to a wide range of applications.
| Modelo | Presión nominal | Capacidad nominal de elevación | Accidente cerebrovascular | diámetro del orificio pasante | Diámetro del cordón de acero | Número de hilo | Peso | Dimensión |
| (MPa) | (kN) | (mm) | (mm) | (mm) | (kg) | (mm) | ||
| SJS-180 | 22 | 181 | 250 | 18 | 15.24 | 1 | 90 | φ190 × φ190 × 1300 |
| SJS-300 | 18 | 317 | 250 | 80 | P15.24 | 3 | 145 | φ300 × φ300 × 1800 |
| SJS-500 | 20 | 523 | 250 | 120 | 15.24 | 7 | 260 | φ410 × φ410 × 1682 |
| SJS-1000 | 27 | 1003 | 250 | 140 | 15.24 | 9 | 450 | φ410 × φ410 × 1750 |
| SJS-1500 | 27 | 1461 | 250 | 180 | 15.24 | 13 | 662 | φ440 × φ440 × 1800 |
| SJS-2000 | 27 | 2036 | 250 | 200 | 15.24 | 19 | 875 | φ465 × φ465 × 1810 |
| SJS-3000 | 27 | 2941 | 250 | 240 | 15.24 | 27 | 1350 | φ530 × φ530 × 2000 |
| SJS-3500 | 27 | 3518 | 250 | 260 | P15.24 | 31 | 1556 | φ580 × φ580 × 2050 |
Preguntas frecuentes – Sistema de elevación síncrona
Nuestro sistema puede alcanzar una precisión de +/-1 mm.
Si el cliente tiene unas exigencias elevadas, nuestro sistema de frecuencia variable puede alcanzar una precisión de +/-0,1 mm.
Normalmente son 4, 8, 12 y 16 tomas.
CA 380 V, 50 Hz.
Será un sistema completo que incluirá gatos hidráulicos, una estación de bombeo de control, un sensor de desplazamiento, un sensor de presión, cables, mangueras hidráulicas, etc.
Sí, los clientes solo tienen que indicarnos los requisitos y la cantidad de sistemas; nuestros ingenieros se encargarán de diseñar el programa y conectar los distintos sistemas entre sí, de modo que el usuario solo tendrá que manejar uno de ellos para controlarlos todos.




