Number of lifting Points: 2 - 120
Accuracy: ± 0.5mm over full stroke
Maximun Operating Pressure: 700bar /10000PSI
Oil Flow (L/min): 0.4-1.0
Power(KW): 0.75-3.0
Oil Capacity (L): 65-200
Dimension (mm): Contact us for different specifications.
Weight (KG): 100-350
Computer controlled synchronous jacking system.
SPHF=Variable frequency synchronous jacking system
SPHP=Pulse synchronous jacking system
Product Line: Industrial Tools
Customizable with special requirement
SPHF / SPHP Series Synchronous Hydraulic Lifting System , Heavy Lifting Solution
SPHF=Variable frequency synchronous jacking system
SPHP=Pulse synchronous jacking system
Number of lifting Points: 2、3、……、120
Accuracy: ± 0.5mm over full stroke
Maximun Operating Pressure: 700bar
Oil Flow (L/min): 0.4-1.0
power(KW): 0.75-3.0
Oil Capacity (L): 65-200
Dimension (mm): Contact us for different specifications.
Weight (KG): 100-350
Computer controlled synchronous jacking system.
Fully automatic computer control system.
Speed lifting controlled.
Ultra-high pressure balance valve circuit.
Frequency or pulse conversion speed control for highaccuracy of ± 0.5mm.
Adjustable oil flowately control the lifting speed of oil cylinder.
High-precision electronic control of displacement and pressure detection system.
Synchronous jacking, synchronous landing, heavy load city weight, etc.
PLC control system, automatic zero finding function.
Suitable for transportation, railway, bridge, suBWay, shipbuilding, construction, hydraulic engineering, etc.
Typical Synchronous Jacking Applications:
1.Top up, down, heavy construction weighing.
2.Bridge maintenance.
3.Roof lifting.
4.Reinforce support and load from temporary support transfer the support to a fixed support.
5.Heavy equipment installation.
6.Segmented bridge jacking and box jacking.
7.Pile foundation test.
8.Foundation support.
Number of lifting Points: 2、4、……、120 Accuracy: ±0.5mm over full stroke Maximun Operating Pressure: 700bar | |||||||
Model Number | Maximun Pressure (bar) | Lifting Points | Oil Flow (L/min) | Power (KW) | Oil Capacity (L) | Dimension (mm) | Weight (Kg) |
SPHF-0.4-2 | 700 | 2 | 0.4 | 0.75 | 65 | 600×800×1000 | 100 |
SPHF-1-4 | 700 | 4 | 1.0 | 1.5 | 150 | 700×900×1200 | 250 |
SPHF-2.5-4Y | 700 | 4 | 2.5 | 3 | 200 | 900×1400×1200 | 350 |
Model Number | Maximun Pressure (bar) | Lifting Points | Oil Flow (L/min) | Power (KW) | Oil Capacity (L) | Dimension (mm) | Weight (Kg) |
SPHP-1-4 | 700 | 4 | 1.0 | 1.5 | 150 | 1000×750×1000 | 300 |
SPHP-1-4Y | 700 | 4 | 1.0 | 1.5 | 150 | 1000×750×1000 | 300 |
How to choose the right system or equipment for the lifting task at hand?
Answer: Users should consider factors such as maximum allowable weight, height, space available, budget, and desired precision when choosing a synchronous lifting system or heavy lift equipment.
What kind of maintenance is required for these systems or equipment?
Answer: Regular maintenance is crucial to keep synchronous lifting systems and heavy lift equipment in proper working condition. This may include cleaning, lubrication, inspection, and replacement of worn parts.
How to ensure safety during lifting operations using these systems or equipment?
Answer: Safety should be the top priority during lifting operations using synchronous lifting systems or heavy lift equipment. Proper training, clear communication, adherence to safety protocols, and use of appropriate personal protective equipment are essential for safe lifting.
What are some common mistakes to avoid when using these systems or equipment?
Answer: Common mistakes to avoid when using synchronous lifting systems or heavy lift equipment include exceeding capacity limits, improper placement of lifting points, inadequate support or stabilization, and failure to monitor the load during lifting.
How to troubleshoot issues that may arise during lifting operations?
Answer: Users should have a clear understanding of troubleshooting procedures and be familiar with common issues that may arise with synchronous lifting systems or heavy lift equipment. Quick identification and resolution of any problems can minimize downtime and ensure safe lifting operations.
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