Hydraulic press is the main equipment for compression molding. According to the frame structure, it is divided into frame structure and column structure. We provide hydraulic press solutions specifically for the production of lightweight composite panels (such as various honeycomb sandwich panels), polyurethane insulation panels, bulletproof armor panels, glass fiber reinforced plastic panels, glass composite panels, multi-layer press fiber reinforced polyester panels, and plate mold composite materials for glass fiber felt thermoplastic plastics, plastic pallets, and other materials.
Plastic tray; Manhole cover; Leakage grate; Leakage fecal plate; Stacked road bricks, etc
Description | YG32-630A | YG32-800 | YG32-800A | YG32-1000 | YG32-1250 | YG32-1500 | YG32-2000 | ||
Rated Pressure | KN | 6300 | 8000 | 8000 | 10000 | 12500 | 15000 | 20000 | |
Maximum Pressure Ofliquid | MPa | 25 | 25 | 25 | 25 | 25 | 25 | 25 | |
Max Stroke of Slide | mm | 900 | 900 | 1000 | 1000 | 1200 | 1200 | 1200 | |
Cushion pressure | KN | 2500 | 2500 | 3000 | 3000 | 4000 | 4000 | 5000 | |
Max Stroke of Cushion | mm | 350 | 350 | 350 | 400 | 400 | 400 | 400 | |
Daylight | mm | 1500 | 1600 | 1800 | 1800 | 1800 | 1800 | 1800 | |
Speed of Slide | Descent | mm/s | 150-200 | 200-250 | 200-250 | 200-250 | 250-300 | 250-300 | 250-300 |
Pressing | mm/s | 10-20 | 11-22 | 11-22 | 9-18 | 10-22 | 11-23 | 11-23 | |
Return | mm/s | 160 | 180 | 180 | 160 | 200 | 200 | 220 | |
Size of Table | L-R | mm | 2800 | 3000 | 3600 | 3000 | 3800 | 3500 | 3800 |
F-B | mm | 1600 | 2000 | 2400 | 2000 | 2200 | 2200 | 2600 | |
Size of Cushion | L-R | mm | 2010 | 2300 | 2910 | 2310 | 3060 | 2760 | 3210 |
F-B | mm | 960 | 1410 | 1710 | 1410 | 1560 | 1560 | 2010 | |
Main Motor Power | KW | 45+22 | 2*45 | 2*45 | 2*45 | 3*45 | 4*45 | 5*45 |
1. Automotive Industry: Hydraulic press for compression molding plays a vital role in the manufacturing of automotive parts like bumpers, dashboards, door panels, and interior trim components.
They offer precise molding capabilities and ensure consistency in part production.
2. Construction Industry: The hydraulic compression machine is ideal for producing construction materials such as plastic trays, manhole covers, leaking grates, leaking manure boards, and plank road bricks.
Hydraulic compression machines offer the necessary strength and durability required for these applications.
3. Electronics Industry: With the growing demand for electronic devices, plastic compression moulding machines are used to produce plastic components like housing enclosures, connectors, and switches.
These hydraulic compression machines ensure high-quality and precise molding for electronic products.
4. Packaging Industry: Hydraulic plastic product press machines are used for manufacturing plastic pallets and other packaging materials.
These machines provide efficient and cost-effective solutions for producing pallets that are sturdy and able to withstand heavy loads.
5. Aerospace Industry: Hydraulic compression machines play a crucial role in producing lightweight composite panels used in aerospace applications.
They are specifically designed to handle materials like honeycomb sandwich panels, polyurethane insulating panels, and bulletproof armor panels.
6. Furniture Industry: Hydraulic compression machines are utilized in the production of furniture components, such as laminated panels, drawer fronts, and table tops.
These These hydraulic compression machines offer great control over the molding process and can accommodate various materials and designs.
7. Renewable Energy Sector: With an increasing focus on sustainable energy, hydraulic compression moulding machine is used to produce components for solar panels, wind turbine blades, and energy storage systems.
The machines enable the manufacturing of durable and high-quality components needed for renewable energy infrastructure.
Hydraulic molding press technologies have revolutionized production processes across industries by offering high efficiency and productivity.
Here are some key ways in which hydraulic molding press technologies enhance production efficiency:
1. Rapid Cycle Times: Hydraulic compression moulding machine can operate at high speeds, resulting in reduced cycle times.
This allows for faster production and higher output, leading to increased overall efficiency.
2. Precise Control: Hydraulic molding press technologies provide precise control over the molding process, ensuring accurate and consistent production of parts.
This eliminates the need for rework or adjustments, saving time and improving productivity.
3. Automation Integration: Plastic compression moulding machine can be integrated with automation systems, such as robots and conveyors, to streamline the production process.
This minimizes manual handling, reduces human error, and maximizes efficiency.
4. Energy Efficiency: Modern hydraulic molding press machines are designed to be energy-efficient, incorporating advanced technologies like variable frequency drives and efficient hydraulic systems.
These Modern hydraulic molding press machines not only reduce energy consumption but also lowers operational costs.
5. Versatile Tooling Options: Hydraulic molding press technologies offer a wide range of tooling options, allowing for the production of various part sizes, shapes, and complexities.
The flexibility in tooling options enhances production efficiency by enabling multi-cavity molds and reducing the need for frequent tool changes.
6. Reduced Downtime: Hydraulic compression moulding machine is known for reliability and durability, resulting in reduced downtime due to breakdowns or maintenance rrequirements.
This Hydraulic compression moulding machine ensures uninterrupted production and maximizes productivity.
7. Ease of Operation: Hydraulic compression press technologies are designed to be user-friendly, with intuitive interfaces and easy setup procedures.
This reduces operator training time and minimizes errors, contributing to improved overall efficiency.
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