China Forge Heat Treating Supplier & Factory

Precision Metal Heat Treating, Solutions-Driven Metallurgical Engineering, and World-Class High-Performance Forged Components. Est. 1996.

Company Introduction

Ningbo Jiangbei XinYe Metal Works Co., Ltd.

Ningbo Jiangbei XinYe Metal Works Co., Ltd. was established in 1996 as a family business and has grown into a premier owner-managed SME corporation. Centrally positioned in the Ningbo Jiangbei Industrial Zone, our facility is within 3 hours from Shanghai International Airport via high-speed rail, guaranteeing robust supply chain accessibility.

Our footprint covers a total area of 16,000 square meters of specialized production floor, with an additional 11,000 square meters under construction. Guided by a core staff of 130 employees—comprising 80 highly skilled production operators and 50 dedicated product development specialists, engineers, quality engineers, and management executives—we manufacture elite metal components designed to withstand critical applications.

Ningbo Jiangbei XinYe Metal Works facility
1996
Established
16,000㎡
Production Area
130
Total Employees
20+
Technical Model Patents

Our Core Technological Competencies

Providing high-precision engineering services, surface processing, and metallurgical modification to global industrial partners.

Precision CNC Machining

Multi-axis CNC turning and milling centers capable of managing close dimensional tolerances (+/-0.001mm) on forged configurations, ensuring high repeatability and surface integrity.

Aluminum Hot Forging

Specialized hot forging processes utilizing high-performance mechanical press lines and friction presses (up to 1,000 tons) to optimize grain orientation in structural and fluid systems.

Lost Wax Investment Casting

High-integrity wax die stainless steel casting methods that eliminate micro-porosity. Designed for critical hardware applications requiring superior metallurgical consistency.

Metal Stamping & Deep Drawing

Comprehensive pressing configurations ranging from 5 to 250 tons, capable of executing complex geometries in copper, alloy steel, aluminum, and stainless steel.

Advanced Surface Treatments

Integrated chemical processing lines providing Type II/III anodizing, electrolytic polishing (E-polish), passivation, and conversion coatings for corrosive environments.

Industrial Whitepaper: Forge Heat Treating Solutions

A rigorous examination of metallurgy, thermal dynamics, and mechanical performance optimization in advanced forging operations.

Information Gain Insight: Modern structural components require more than dimensional accuracy. They demand precise grain-structure engineering through heat treatment. Mechanical properties such as yield strength, fracture toughness, and fatigue limits are determined during thermal processing (annealing, normalizing, quenching, and tempering).

Thermal Cycle Optimization for Forged Structures

When metals are hot forged, the intense plastic deformation alters grain structures. Without immediate, controlled thermal processing, the resulting components exhibit internal residual stresses and non-uniform mechanical properties. At Ningbo Jiangbei XinYe Metal Works, we employ custom thermal cycling protocols to refine microstructures, prevent grain growth, and eliminate micro-cracking risks.

Key Heat Treatment Modalities We Execute:

  • Spheroidizing and Full Annealing: Applied to forged steels to lower hardness, improve ductility, and achieve optimal machinability before final multi-axis CNC operations.
  • Normalizing: Elevating temperatures to transition grains into uniform austenite, followed by air cooling. This creates uniform, fine-grained ferritic-pearlitic matrices that elevate impact toughness.
  • Liquid Quenching and Controlled Tempering: Utilizing state-of-the-art quench media (water, oil, polymers) to lock in martensitic structures, followed immediately by tempering to yield the exact balance of tensile strength and impact resistance.
  • Solution Treatment and Aging (T4, T6, T651 Tempers): Specifically engineered for our high-strength Aluminum alloy forgings. This process distributes secondary strengthening phases throughout the matrix to maximize stress-corrosion resistance.
Thermal Quality Controls

Source Control & Quality Assurance

Forging Equipment Line

Advanced Hot Forging Plant

High precision testing setup

Micro-structural Analysis

China Factory 4.0: Infrastructure and Agility

Leveraging high production capacity and agile manufacturing setups to ensure supply chain security.

Our facility operates on a standard 16-hour, 6-day weekly schedule. To meet sudden spikes in demand, we can transition to a 24/7 continuous operation mode within 30 days.

With ongoing capital investments in machinery and additional factory expansions, we keep structural reserves ready to scale production capacity based on client forecast frameworks. Our production environment includes:

  • Friction Press Systems: Operational force configurations from 300 tons to 1000 tons, handling large-scale structural metal shapes.
  • Column Hydraulic Press Systems: Force range from 100 tons to 630 tons for uniform, consistent forging distribution.
  • Mechanical Punch Press Stations: High-speed production lines from 5 tons to 250 tons.
  • High-Precision Machining: Multi-axis CNC centers, dedicated turning, and modern milling machinery.
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Factory Internal 2
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Cross-Industry Engineering Applications

Developing custom components for specialized global industries operating in demanding environments.

Industrial Fire & Gas Detection

We manufacture flame sensors, critical fire detectors, explosion-proof sensor cells, and toxic gas monitoring housings. This includes the aviation fuel hydrant pit box enclosure kit, designed to withstand deep underground installations and high-pressure chemical exposure.

Aerospace & Propulsion

High-temperature turbine inlets, primary valve arrays, hinge brackets, and complex mechanical transmission parts. These components undergo thermal cycles to prevent stress fatigue under flight conditions.

Automotive & E-Mobility

High-torque transmission gears, engine assembly mountings, and specialized E-bike structures (lever controls, structural tubes, connectors) requiring light weight and high structural strength.

Food Processing & Appliances

Sanitary grade components, including high-pressure culinary cream whippers and cooking stove control housings. Manufactured using certified stainless steel and high-ductility food-safe alloys.

Rigorous Quality Control & Metrology

Our quality assurance framework utilizes advanced chemical, structural, and dimensional inspection tools.

At XinYe, quality is the foundation of our production. In partnership with global OEMs, we run a rigorous quality management system certified to ISO 9001:2015 and SA8000 social accountability standards.

GNR Spectrum Analyzer

GNR Spectrum Analyzer

CMM Inspection Machine

CMM Inspection Machine

Video Measuring System

Video Measuring System

Rough Meter

Rough Meter

Tension Testing Machine

Tension Tester

Traceability Standard: Every batch is supplied with chemical analysis certificates, structural test reports, dimensional inspection charts, and thermal tracking records. This documentation ensures complete traceability from the raw material mill to the final component.

Technology Roadmap & Future Outlook

Integrating automation and green initiatives to drive the future of precision metal forging.

1. Fully Integrated Process Simulation

We are implementing finite element analysis (FEA) software to model metal flow and thermal stress during forging. This enables us to predict stress areas, optimize thermal distribution, and reduce development cycles for custom forgings.

2. Digital Temperature Control Arrays

By upgrading our furnaces with multi-point digital thermocouple arrays, we maintain thermal uniformity within +/- 5°C. This level of control prevents grain growth and structural inconsistency in high-strength alloys.

3. Decarbonization and Sustainable Manufacturing

To align with global environmental requirements, our roadmap focuses on reducing energy consumption by implementing high-efficiency electric induction heating systems and closed-loop process controls.

Engineering blueprint visualization

Collaborative Development Model

How we support international procurement departments through technical expertise, cost optimization, and supply chain management.

Tooling Design & Optimization

Our engineers collaborate with clients during the design phase, using their expertise to reduce material consumption, simplify CNC operations, and lower tooling costs.

Lead Time Management

We deliver initial samples within 7 days, and complete mass production batches within 20 to 30 days. This agile planning helps minimize project delays for our clients.

Financial & Compliance Integrity

We work with standard international payment methods (e.g., 30% deposit, 70% balance against Bill of Lading copy) and provide complete export customs clearance documentation.

Streamlined Manufacturing & Delivery Workflow

From initial design evaluation to final packaging, our process ensures quality at every stage.

1

Specification Definition & Quoting

We review detailed engineering drawings, compute processing costs (tooling, materials, forging, and machining), and issue a comprehensive quotation.

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2

Sample Development & Metallurgical Inspection

We purchase specified raw materials, execute sample forging runs, complete heat treatment cycles, and prepare dimensional inspection and material test reports.

Sample Production 1 Sample Production 2
3

Client Feedback & Process Approval

We submit physical samples to the client for evaluation. Mass production begins only after receiving final engineering sign-off.

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4

Mass Production & In-Process Inspection

Our operators run the parts through manufacturing, executing quality checks at predefined inspection points to ensure structural and dimensional consistency.

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5

Assembly, Packaging, and Post-Sales Support

Completed parts are assembled in our workshop, packed using sea-freight protective materials, and delivered. All components are backed by a one-year manufacturing warranty.

Assembly Workshop

Engineering Case Studies

A closer look at how we design, manufacture, and verify components for demanding applications.

Industrial Forged Valve Block

Industrial Components

Precision components for heavy industrial machinery. Manufactured using hot forging and heat treating to meet high pressure-tolerance requirements.

Material: Stainless Steel / Aluminum Alloy
View Details
Automotive Transmission Gear

Automotive Components

Transmission and drivetrain components manufactured under close dimensional tolerances for reliable operation and wear resistance.

Material: High-Grade Alloy Steel / Aluminum
View Details
Aviation Fuel Pit Box

Aerospace & Infrastructure

Aviation Fuel Hydrant Pit Box systems, structural hinge brackets, and gas safety detection components designed for critical infrastructure.

Material: Premium Anodized Stainless Steel
View Details
Wood Chipper Cutter Disc

Agricultural Machinery

Wood chipper cutter discs and feed roller systems designed to withstand high impact and abrasive wear during operation.

Material: Q345B / Heat-Treated 42CrMo
View Details

Advanced Machinery Portfolio

We use modern tooling and manufacturing equipment to maintain consistency and quality across production runs.

Aluminum Hot Forging Machine

Aluminum Hot Forging Station

Friction presses and induction heaters configured for manufacturing high-strength aluminum alloy structural components.

CNC Machining Center

Multi-Axis CNC Centers

State-of-the-art CNC lathes and mills configured for machining complex forged features to precise dimensional specifications.

Quality Metrology Lab

Dimensional Metrology

Integrated Coordinate Measuring Machines (CMM) and video measurement systems used to verify critical dimensions.

Frequently Asked Questions

Answers to technical questions regarding our manufacturing capacity, quality standards, and terms of service.

What types of heat treating operations can you execute in-house?
We perform a range of heat treating processes, including full annealing, normalizing, oil and water quenching, tempering, solution treatment, and precipitation hardening (T4, T6, T651) for aluminum alloys. Each cycle is monitored using digital controls to ensure uniform properties throughout the batch.
What materials do you forge and heat treat?
We specialize in aluminum alloys (such as 6061, 6082, 7075), carbon steels, alloy steels (like 42CrMo), stainless steel, and select copper alloys. This range allows us to manufacture components that match the specific strength and corrosion resistance needs of our clients.
How does XinYe ensure chemical and physical trace-compliance?
We use a GNR Spectrum Analyzer to verify the chemical composition of incoming materials before production. Every shipment includes comprehensive Material Test Reports (MTR), dimensional charts, and certificates of conformance.
What are your standard and accelerated lead times?
Our standard sample development phase is 7 days. Mass production runs are typically completed within 20 to 30 days after sample approval and receipt of the deposit. Lead times may vary depending on project complexity and tool design.
Do you enforce a minimum order quantity (MOQ)?
Yes, we require minimum order quantities for international shipments to maintain production efficiency. Please contact our engineering department to discuss your project requirements and receive a customized quote.
What are your standard payment terms for export orders?
Our standard payment terms are a 30% deposit to initiate tooling and production planning, with the remaining 70% balance paid upon presentation of the Bill of Lading (B/L) copy. We accept bank transfers, Western Union, and PayPal.
What warranties do you provide on delivered parts?
We offer a one-year manufacturing warranty from the date of delivery. If any components are found to have material or workmanship defects, our engineering team works to resolve the issue to your satisfaction.