Explore our heavy-duty industrial forming presses engineered for ultimate load efficiency and structural rigidity.
Architecting high-efficiency, multi-axis system integration for complex modern forging ecosystems.
With the push toward Industry 4.0, hydraulic fluid circuits must work in harmony with electronic control systems. High-frequency digital valves, intelligent sensors, and real-time proportional control cards have replaced standard manual systems, ensuring millisecond-level reaction times and precise repeatability.
Modern manufacturing facilities require a lower environmental footprint. Servo-driven hydraulic pump architectures reduce idle electrical load by up to 70%, utilizing dynamic pump speed regulations to match demand cycle stages without wasting system oil throughput or heating reservoirs.
Stamping, drawing, and superplastic hot forming processes expose system frames to extreme stress cycles. Finite Element Analysis (FEA) is applied to all pre-tensioned structural tie rods, ensuring negligible frame deflection under peak mechanical loading conditions.
Discover our specialized heavy machinery technologies designed for high-strength steel, superalloys, and composite materials.
We supply complete system technologies for high-volume automotive manufacturing, structural panel fabrication, and heavy metal components. By integrating dynamic pressure controls, we provide precise thickness control and zero tearing on deep draws.
Our heavy-duty hot stamping production lines operate reliably in demanding high-temperature environments. We combine robust automation with high-pressure gas or fluid expansion (hydroforming) to create complex hollow structures with exceptional strength-to-weight ratios.
Non-metallic components play a key role in automotive weight reduction and aerospace structural design. Our composite compression molding systems deliver precise cure time control, multi-zone heat regulation, and parallel control during processing.
By utilizing high-pressure resin injection alongside rapid compression, we enable cycle times suitable for automotive structural mass production. This makes lightweight polymers a viable alternative to heavy castings.
For high-temperature processing of titanium, nickel-based superalloys, and structural cylinders, specialized velocity controls and deep heat management are essential. Our custom systems ensure reliable operations under extreme conditions.
These systems utilize slow, controlled deformation speeds combined with high temperatures to shape difficult materials without creating residual internal stress, making them ideal for high-precision applications.
Providing custom, end-to-end engineering solutions designed to meet specialized plant requirements.
We provide specialized forming systems using high pressure water or gas. Our technologies enable lightweight, high-rigidity structural frame parts without welding seams.
Providing high-yield press lines for ultra-high strength steel (UHSS) forming, integrated with rapid heating furnaces, tool cooling arrays, and robotic handling systems.
Ideal for high-volume parts requiring multiple forming steps within a single press cycle, including extrusion, drawing, and precision punching.
Designed for forming titanium and nickel-based alloys. Precise temperature and speed control ensure high material flow control and zero cracking.
Designed for fiber-reinforced thermoplastic and thermoset composites, ensuring fast cycle times, consistent part density, and minimal waste.
Established in 1937, Chongqing Jiangdong Machinery Co., Ltd. (Jiangdong Machinery) is an integrated developer and manufacturer of industrial hydraulic forming technology. Our capabilities cover the R&D, production, sales, and service of hydraulic presses, lightweight forming technologies, lightweight components, hot and cold stamping dies, and metal castings.
Our hydraulic presses and automated production lines feature advanced levels of automation, intelligence, and flexibility. Jiangdong Machinery provides metal and non-metal hydraulic forming equipment and integrated process solutions, with a strong focus on lightweight automotive applications, aerospace structural components, and heavy industrial forging.
Ensuring operational reliability through comprehensive lifetime service and engineering support.

We design forming systems tailored to your specific process parameters, workspace footprint, and cycle time requirements.

Online diagnostics, PLC software updates, and remote troubleshooting reduce downtime without waiting for on-site technicians.

Scheduled system inspections, cylinder seal replacements, and hydraulic oil filtering extend the operational life of your press.

Experienced field engineers assist with installation, commissioning, tool calibration, and operator training.

Stocked replacement cylinders, valves, pumps, and custom seals maintain system design specifications and performance.
A technical guide to manufacturing high-performance structural parts and composite components.
Internal high-pressure forming (hydroforming) is critical for producing complex hollow metal components. By feeding high-pressure fluid inside a tubular blank while applying mechanical axial force, the metal expands to fill the mold cavity. This process eliminates the weld lines typical of traditional stamp-and-weld assemblies, improving structural integrity and reducing overall weight.
This technology is widely used in automotive engine cradles, chassis frame components, and roof rails, offering material utilization rates up to 90% and higher dimensional consistency than conventional stamping methods.
Fiber-reinforced plastics (FRP) and carbon composites are essential for lightweighting. LFT-D (Long-Fiber Thermoplastic Direct) compression molding enables direct extrusion and compression of long-fiber reinforced materials in a continuous line, which reduces processing steps and material degradation.
HP-RTM (High Pressure Resin Transfer Molding) injects thermoset resin under high pressure into a closed mold containing dry fiber preforms. This ensures rapid fiber wet-out and fast curing, making it suitable for high-volume automotive parts manufacturing.
| Technology | Common Materials | Target Industries | Key Process Indicators |
|---|---|---|---|
| Hydroforming | Stainless Steel, Aluminum Alloys, Copper | Automotive Chassis, Structural Tubes | Pressure up to 4000 bar, cycle times < 25s |
| HP-RTM | Carbon Fiber, Epoxy Resin | Aerospace, Performance Automotive | Injection pressure > 80 bar, cure time < 3 mins |
| Superplastic Forming (SPF) | Titanium (Ti-6Al-4V), Al-Li Alloys | Aerospace Bulkheads, Ducting | Temperatures > 900°C, low strain rate control |
| Hot Stamping (UHSS) | Boron Steel, High Strength Steel | A/B Pillars, Bumper Beams | Tensile strength > 1500 MPa, rapid cooling rates |
Our upcoming product development focuses on the integration of digital twins and predictive maintenance architectures. Real-time hydraulic oil sensor suites monitor moisture, particle count, and chemical stability, notifying plant operators before seal failure or valve blockage occurs.
Additionally, servo-hydraulic hybrid systems are designed to recover kinetic energy from slide descent, storing power in electrical accumulators to reduce energy requirements during the high-pressure molding phase.
Answers to common questions regarding hydraulic press operations, maintenance, and system customization.
Stay informed about our latest global projects, customer visits, and technical events.
A business delegation visited our manufacturing facility to evaluate our sheet metal forming lines and discuss new supply cooperation.
Read Full Report →Partners from Thailand, Indonesia, and Malaysia visited Chongqing to inspect our large-scale press assembly halls and smart control software integrations.
Read Full Report →We presented our latest superplastic forming technologies and hot stamping lines for high-strength steel at major industrial trade exhibitions.
Read Full Report →Explore our industrial-scale forming lines and custom metalworking systems.