We are Experts in Custom Processing of High-Performance Alloys & Special Steels
Based on client requirements, Xurui processes high-performance alloys, special stainless steels, and other advanced metals into various forms, such as tubes. We offer full customization of chemical composition, dimensions, shapes, tolerances, and performance characteristics to meet specific industrial requirements.
In addition, we ensure consistent and reliable quality for every project through material certifications (e.g., MTCs), sample validation, technical support, and bulk supply.
Our Processing Capabilities
We specialize in a wide range of metal processing techniques, including cutting, welding, bending, CNC machining,
heat treatment and surface finishing, all tailored to your exact specifications.

Cutting
We provide high-precision cutting services for a wide range of high-performance alloys and specialty steels, ensuring clean cuts and minimal deformation. This creates a reliable foundation for subsequent bending and machining, improving overall processing accuracy and material utilization.
Cutting parameters can be customized according to project requirements, including length, angle, material thickness, cutting method, and precision, ensuring full compliance with application needs.

Bending
By precisely controlling bending angles and dimensional tolerances, we achieve high precision forming of complex structural components, ensuring consistency in batch production.
Bending parameters can be customized based on project requirements, including angle, radius, and sequence. Our processes are adaptable to complex geometries and support both small batch and large-scale production.

Welding
We deliver stable and reliable welding processes to ensure structural strength and long term durability, while controlling deformation to maintain assembly accuracy.
Welding methods can be selected and customized according to application requirements, including MIG, TIG, and laser welding. Key parameters such as weld strength, deformation control, and material compatibility are adjustable to meet specific performance needs.

CNC Machining
Using advanced CNC equipment, we provide precision machining for high performance metal materials, ensuring tight tolerance control and consistent quality.
Machining parameters can be customized based on project requirements, including toolpaths, tooling, and cutting speeds. Tolerances and surface finish can also be adjusted to ensure machining accuracy and surface quality.

Heat Treatment
We offer multiple heat treatment processes, including annealing, quenching, tempering, and normalizing, to improve material hardness, strength, and wear resistance for reliable performance in demanding applications.
Processes can be configured according to material and component requirements, with precise control of temperature, duration, and cooling conditions to achieve targeted material properties.

Surface Treatment
We provide comprehensive surface treatment solutions to improve corrosion resistance, extend service life, and enhance surface quality.
Treatments can be selected and customized according to application requirements, including phosphating, blackening, and passivation, ensuring consistent performance and surface finish.
Sample Support
Our sample services help you evaluate material quality, specifications, and performance before placing bulk orders.
Free Samples
We provide free standard samples for common alloys and specifications. Small cutting samples are available to verify material properties and dimensions before committing to production orders.
Customized Samples
For specific requirements, we offer customized sample processing including cutting, machining, and surface treatment to match your exact specifications and testing requirements.
Shipping & Sample Fees
While samples are free, shipping costs are borne by the customer. For customized samples, processing fees may apply based on complexity and material requirements.
Successful Cases Across Industries
Deliver high-performance material solutions for actual projects to help customers achieve their application goals.
Custom Metal Parts Built to Your Deign

Case Study: Manufacturing According to Drawings - Heat-Resistant Honeycomb Grates for Thermal Storage
We received technical drawings for a sectoral segmented honeycomb grate intended for the thermal storage chamber of a hot blast stove.
Requirements
- Material: GH2747 heat-resistant alloy, with composition conforming to national standard GB/T 14992, suitable for high-temperature and high-load applications.
- Manufacturing: Castings must be free from cracks, porosity, and other defects; surfaces must be thoroughly cleaned. Each piece weighs 19±0.6 kilograms.
- Accuracy: Casting radius R ≤ 2 millimeters, draft angle <1°, maximum warpage <5 millimeters, overall shape deviation ≤0.8 millimeters.
Our Solution
We manufactured the honeycomb grates strictly in accordance with the customer's drawings, ensuring defect-free castings, precise dimensions, and proper handling during delivery.
Benefits
- Components delivered undamaged, fully meeting the customer's requirements for size and quality standards.
- The customer expressed high satisfaction with product quality and execution capability.
- Reliable build-to-print service establishes trust for future collaboration
From Inquiry to Delivery
We follow a clear and structured process to ensure efficient communication, reliable production, and on-time delivery.
01
Requirement Discussion
(Drawings / Working Conditions)
02
Technical Proposal & Quotation
03
Technical Agreement Confirmation
04
Deposit Payment
05
Production & In-Process Quality Control
06
Final Inspection & Approval
07
Balance Payment & Shipment
08
After-Sales System
Request a Custom Quote from Xurui
Our team will review your requirements and respond to your inquiry within 12 hours.
FAQs
• Carbon steel: Up to 6.0 mm (heavy-duty machines can reach 8–12 mm)
• Alloy steel: Up to 4.0 mm; lower limits apply for harder materials
• Stainless steel: Up to 3.0 mm; commonly 1.0–2.5 mm
Note: Actual capacity depends on machine tonnage, tooling, material hardness, and hole complexity. Final feasibility should be evaluated based on specific drawings.

















