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6700T Gantry Hydraulic Press

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As a key piece of equipment for heavy-duty hydraulic forming, the 6700-ton gantry hydraulic press, with its high-rigidity structure, stable pressure output, and flexible adaptability, has become the preferred equipment in the heavy industrial processing field, widely serving the high-precision forming needs of multiple industries.

Safety Configuration and Application Scenarios: The equipment comes standard with safety light curtain protection, overload alarm, emergency stop button, and anti-slip fixtures on the worktable. Positioning fixtures can be added as needed to comprehensively avoid safety hazards in the processing of heavy workpieces.

Wide Range of Applications: It can be used for hot forging, upsetting, and bending and leveling of large flanges, gear rings, marine anchor chains, and other metal parts; it can also meet the precision forging needs of new energy vehicle chassis and battery pack shells, as well as the lamination forming needs of carbon fiber components and fiberglass hulls, covering multiple fields such as engineering machinery, shipbuilding, and new energy equipment.

I. Engineering Machinery Manufacturing Field: As a key forming equipment in this field, it is mainly used for forging and shaping large structural parts. It can perform hot forging and upsetting processes for thick-walled metal parts such as track plates, track roller housings, and frame beams for excavators, cranes, loaders, and other equipment. High-pressure pressing increases workpiece density and structural rigidity, ensuring components can withstand impact loads under complex working conditions. Simultaneously, it can precisely level castings such as large machine tool beds and construction machinery bases, correcting machining deformation and ensuring equipment assembly accuracy.

II. New Energy Equipment Manufacturing Field: Adapting to the lightweight and high-strength processing needs of the new energy industry, covering the two core sectors of wind power and new energy vehicles. In the wind power sector, it is used for molding and precision press-fitting of large structural components such as wind turbine flanges, hubs, and nacelle supports. Stable pressure holding ensures tight fit of components, improving wind load resistance. In the new energy vehicle sector, it performs deep drawing and forging of aluminum alloy battery pack housings, chassis subframes, and motor housings, balancing workpiece strength and lightweight requirements, contributing to improved range and optimized safety performance of new energy vehicles.

III. Shipbuilding and Marine Engineering: Adapted to the processing needs of large, thick plates and irregularly shaped parts in shipbuilding, it can perform hot forging, bending, and ribbing of components such as marine anchor chains, flanges, hull ribs, and thick deck plates. Especially for high-strength steel plates specifically for shipbuilding, precise control of pressing parameters can prevent plate deformation and cracking, ensuring the sealing and corrosion resistance of the hull structure. It can also complete the press-fitting process for core components such as ship propulsion systems and rudder systems, meeting the stringent standards for marine engineering equipment.

IV. Composite Materials and High-End Manufacturing: In composite material processing, it is used for the lamination molding of large carbon fiber components, fiberglass hulls, and wind turbine blade main beams. 1500 tons of high pressure ensures tight interlayer bonding of composite materials, eliminating internal air bubbles and voids, improving the fatigue resistance, structural strength, and service life of the product, widely serving aerospace and high-end rail transportation fields. In addition, it can be used for the pressing molding of large graphite electrodes, refractory bricks, and other metallurgical consumables. Through high-pressure densification treatment, the service life of consumables under high-temperature conditions is extended.

V. Heavy Metal Forging and Recycling In the field of metal forging, it can be used for the blanking and precision forging of large gear rings, gear blanks, and shaft forgings, replacing traditional hammer forging processes, improving the dimensional accuracy and mechanical properties of forgings, and adapting to the manufacturing needs of heavy machinery transmission systems. In the field of resource recycling, it can perform high-pressure briquetting of scrap metals such as end-of-life car bodies, large steel scraps, and scrap copper and aluminum, significantly reducing volume, facilitating subsequent transportation and remelting, and improving resource recycling efficiency and utilization.

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