Engineered to exact configurations. Select our key capabilities below to view specifications and project samples.
In the modern manufacturing sector, the demand for complex, high-precision, and structural metal components is at an all-time high. The shift toward lightweight automotive structures, critical medical devices, and heavy-duty aerospace transmission systems requires advanced processing methods. Multi-station transfer press stamping has emerged as the premier solution for high-volume, deep-drawn manufacturing.
Unlike conventional progressive die stamping, transfer press systems mechanically transport individual workpieces through a series of dedicated, independent tooling stations. This process enables severe deformations, deep draws, lateral punching, and complex geometries that are impossible in single-die setups. By utilizing distinct stations, manufacturers achieve optimal material flow, minimal thinning, and exceptional dimensional stability across structural alloys.
Procurement executives face complex supply chain dynamics. High-volume buyers require suppliers that offer end-to-end tooling design, rapid prototyping, and high-volume scalability. They also need to minimize risks related to logistics, tariff fluctuations, and lead times.
Xinye Metal addresses international requirements by integrating design for manufacturability (DFM) with in-house CNC post-machining, surface finishing, and quality control. This consolidation reduces cross-docking delays and minimizes defect rates.
Operating out of the Ningbo Industrial Zone, Xinye leverages direct deepwater port access and robust high-speed rail connections to Shanghai. This logistical framework ensures consistent delivery schedules for global assembly lines.
A heritage of engineering excellence, combining decades of metalworking experience with advanced CNC technology.
Ningbo Jiangbei XinYe Metal Works Co., Ltd. was founded in 1996 as an owner-managed SME corporation. Over the past three decades, we have evolved from a local family business into a precision manufacturing partner. Today, the company operates a total area of 16,000 square meters of production floor, with an additional 11,000 square meters of construction space ready for expansion.
Our workforce consists of 130 employees, with 80 production staff and 50 specialists in product development, engineering, quality, and management. This balanced team structure ensures we can provide technical support, detailed feasibility studies, and robust quality documentation for every project.
Our competencies span multiple technologies: high-precision CNC machining, aluminum alloy hot forging, lost wax stainless steel casting, extrusion, transfer stamping, anodizing, and electrochemical polishing. This integrated approach allows us to deliver finished, ready-to-assemble components to OEMs worldwide.
State-of-the-art machinery imported from Japan and Europe, designed for high repeatability and tight tolerances.
Our heavy-forming division operates structural machinery built to handle high tonnage applications:
For post-stamping, drilling, and finishing, our machining division is equipped with high-precision systems:
We configure production shifts to support global assembly demands:
Friction Press Station
Hydraulic Forming Line
High-Speed Stamping Press
4-Axis CNC Machining Center
Component Metrology
Finishing Operations
Assembly Line
Shipping Yard
Understanding metal behavior under high pressure is essential to producing high-tolerance stamping components.
Transfer press stamping manages localized strain during metal deformation. Unlike simple bending, deep drawing forces raw sheet metal into a die cavity using a mechanical punch. The material undergoes radial drawing stress and tangential compressive stress, which can lead to tearing or wrinkling if not properly managed.
Our tooling design calculates the exact Draw Ratio ($\beta = D_0/d_p$) for each station to prevent structural failure. By distributing the drawing process across multiple die stages, we allow the metal to work-harden gradually. This progressive deformation maintains wall thickness within specifications and prevents stress cracking in critical areas, such as the radii of deep-drawn containers.
Additionally, we utilize finite element analysis (FEA) software to simulate sheet metal forming before cutting tool steel. This simulation estimates thinning, identifies potential split lines, and optimizes blank profiles, which reduces tooling modification cycles and accelerates production timelines.
Phase 1: Finite Element Simulation
Simulate material flow across all transfer stations to optimize blank holder force and minimize material waste.
Phase 2: Custom Carbide Die Sets
Utilize high-wear tungsten carbide inserts in critical draw stations to ensure consistent dimensions across production runs exceeding 500,000 cycles.
Phase 3: Sensor-Assisted Part Transport
Implement optical sensors on our mechanical transfer arms to monitor part positioning at every stroke, minimizing tool crash risks.
From initial design evaluation to final packaging, our process ensures traceability and quality at every stage.
Our engineering team analyzes customer-submitted CAD models and 2D drawings. We review tolerances, key features, and material specifications, and suggest design modifications to optimize tooling and lower production costs.
We construct prototype tooling to produce test samples. These parts undergo dimensional checks to verify the stamping process works as designed before committing to full production tooling.
We prepare a full Quality Inspection Report, including Coordinate Measuring Machine (CMM) data, chemical composition analysis, and surface finish values, for customer review and approval.
Following sample approval, we build production-grade tool sets. The stamping line is configured with automated transfer arms, sensor arrays, and lubrication systems to begin high-speed manufacturing.
We conduct in-process inspections at scheduled intervals. All measurement records and material certificates are archived, providing full traceability from raw coil stock to finished product.
Components can be integrated into sub-assemblies in our dedicated workshop. Parts are packed using custom crates, anti-corrosive VCI bags, and reinforced containers to ensure safe transit during transport.
ISO 9001:2015 and SA8000 certified processes, backed by advanced testing equipment to ensure part conformance.
At Xinye Metal, quality control is integrated into every phase of production. We inspect all incoming raw materials, checking chemistry, thickness variations, and mechanical properties. In-process inspection stations verify part dimensions at each shift change to detect tool wear early.
Our quality system is supported by ISO 9001:2015 and SA8000 certifications. These frameworks define our standard operating procedures, instrument calibration intervals, and employee training programs. This structured approach helps us achieve low defect rates (measured in Parts Per Million) for high-volume automotive and medical runs.
Verifies the alloy composition of incoming raw materials to prevent the use of sub-standard coil stock.
Provides high-accuracy 3D coordinate measurements to verify tight tolerances on complex geometries.
Enables non-contact optical inspection of small, complex features and dimensions.
Dual-camera optical inspection system for checking micro-tolerances on electronic connectors.
Measures surface roughness on mating features, critical for sealing applications.
Tests material mechanical properties, checking tensile yield strengths and compression limits.
We serve international OEMs across key sectors, including aerospace, automotive, safety systems, and food processing equipment.
We manufacture structural enclosures and sensing elements for safety systems used in mining and oil & gas operations, including gas detectors and flame sensors.
We supply tight-tolerance components for automotive transmissions, electric drives, and e-bike structures, including brake levers and connector tubes.
We manufacture critical aviation fuel hydrant pit boxes, hinge brackets, turbine inlet rings, and power transmission parts designed for high-stress aerospace environments.
We produce high-strength cutter discs and feed rollers for industrial forestry equipment, utilizing wear-resistant Q345B, 42CrMo, and NM400 steel alloys.
Take a virtual tour of our production floor and watch our precision forming machinery in action.
This video details our overall manufacturing services, showing our design offices, casting floor, stamping lines, CNC machinery, and quality control systems.
This video showcases our high-speed vertical machining setup, highlighting the tight positioning and cycle times achieved by our CNC equipment.
"Always comes first, our priority, our responsibility, to exceed your expectations." We build long-term manufacturing partnerships through open communication and consistent performance.
"Taking any action carefully and detailed as the commitment to give a total solution." We coordinate all stages of production, from raw material sourcing through to final delivery.
"What we do, what we create, we give it all with dedication and ambition." We invest in employee training and the latest machinery to continually improve our operations.
Answers to common questions about our transfer press stamping capabilities, lead times, and quality systems.
Browse our core capability lines. Contact us to discuss your manufacturing specifications.