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Uns N05500 High Strength Nickel-Copper Alloy Bar
US$25.90
10-49 kg
US$25.80
50-99 kg
US$25.70
100+ kg
Sample price:US$10.00/kg.Request sample

Product profile

Customization

Available

Type

Bar

Standard

AISI, ASTM, DIN, JIS, GB, BS

Model NO.

MONEL -500

Composition

Nickel Alloy-Superalloy

Technique

Cold Rolled

Shape

Bar

Surface Treatment

Polished

Special Use

High-strength Steel Plate, Wear Resistant Steel, Silicon Steel, Cold Heading Steel, Free Cutting Steel, Mold Steel

Application

Petrochemical, Aerospace, Marine Engineering Manuf

MOQ

50kg

Trade Terms

EXW, Fob, CIF, CFR

Stock

Stock Available

Delivery Time

10-20day

Transport Package

Marine Packaging of Metal

Specification

10-300mm Customizable

Trademark

Titanium-nickel alloy

Origin

Shandong Province, China

HS Code

7226920000

Production Capacity

20000ton/Month

Key features

High Strength & Corrosion Resistance: Combines excellent corrosion resistance with significantly higher strength and hardness than MONEL 400.
Customizable Diameters: Available in hot rolled and cold drawn with customizable diameters to meet specific needs.
Seawater & Stress Corrosion Resistance: Offers great resistance to seawater, brackish water, alkaline environments and stress corrosion cracking.
Wide Standard Compliance: Meets AISI, ASTM, DIN, JIS, GB, and BS standards for global compatibility.
Stock Availability: Stock is available for immediate shipment upon order.
Low Defect Rate: Ensures low miscellaneous content and low deflection through optimized metallurgical processes.
Versatile Applications: Widely used in pump shafts, valve stems, fasteners, marine equipment, and oilfield tools.
OEM Service Available: OEM services are available to support custom manufacturing requirements.

Company profile

Shandong Titanium Nickel Special Steel Co., Ltd
Importers and ExportersIn-stock CapacityFast DeliveryQuality Assurance
Business Type: Manufacturer/Factory CertifiedR&D Capacity: OEM Service AvailableAverage Response Time: ≤1.41h

AI-Powered supplier vetting

SummaryThe supplier manufactures and sells special steel, non-ferrous metals, and alloy materials, including more than 60 alloy types. It reports substantial alloy-specific annual capacities and operates one production line. Customization from samples and designs is available, and OEM service for well-known brands is reported. However, the supplier is not identified as a professional technical supplier, does not provide 3D software design, ODM, or SDK services, and reported no new products in the past year. Quality checking is performed by packing staff, while supplier-service assessment, corrective-action, and complaint-handling procedures lack written records. Multiple management-system certifications are listed. Financial information is limited to reporting years rather than performance indicators, so credibility cannot be fully assessed. Overseas warehouses, showrooms, agents or branches, and offline trade-show participation are absent.
Supplier typeThe supplier’s stated scope centers on manufacturing and selling metal materials, special steel, non-ferrous metals, alloys, and related metal products. Its product description covers over 60 alloy materials and applications across equipment, energy, chemical, marine, medical, and other industries, while import and export of goods is permitted.
CertificationsThe supplier lists BSCI, ISO 9000, ISO 9001, ISO 14000, ISO 20000, ISO 29001, HSE, and ISO 14064 certifications. This is explicit evidence of multiple management-system certifications, although the provided information does not show certificate validity, scope, or issuing bodies.
After-Sales capabilityThe supplier reports five qualified service-capability suppliers, but has no written procedures or records for service assessment, corrective and preventive actions, or effective customer-complaint handling. It also lacks overseas warehouses, showrooms, agents, and branches, limiting the documented support infrastructure.
R&D capabilityThe supplier is explicitly not classified as a professional technical supplier, does not provide 3D software design, ODM, or SDK services, and reported no new products in the past year. Although it has 31–40 years of total R&D engineer experience and supports customization, the explicit innovation-related deficiencies outweigh the limited R&D staffing evidence.
Production capacityReported annual capacities are 3,000 tons of nickel alloy, 2,000 tons of Hastelloy, 2,000 tons of Monel alloy, 1,500 tons of superalloy, and 1,000 tons of precision alloy. The supplier operates one production line and lists cutting and plate-shearing machines, providing explicit evidence of alloy production capacity, though the finished-product inspection is performed by packing staff.
Customization capabilityThe supplier explicitly offers customization from samples and from customer designs. It also reports OEM service for well-known brands, but does not provide ODM, 3D software design, or SDK services; therefore, its demonstrated capability is oriented toward execution of customer-provided specifications rather than independent product development.

Product Q&A

Q:What are high-temperature alloys?
A:
High-temperature alloys are materials designed to maintain excellent mechanical properties, oxidation resistance, corrosion resistance, and structural stability under high-temperature conditions. These alloys are commonly used in industries like aerospace, energy, chemical, and automotive, especially in environments with extreme conditions.
Q:What are the main uses of high-temperature alloys?
A:
High-temperature alloys are primarily used in the following applications: Aerospace and Aviation: Turbine blades, jet engine components, and gas turbines. Energy Industry: Gas turbines, heat exchangers, steam turbines. Automotive Industry: Turbochargers, exhaust systems, engine components. Chemical Industry: Corrosion-resistant equipment such as reactors, boilers, etc.
Q:What are the main types of high-temperature alloys?
A:
Common types of high-temperature alloys include: Nickel-based alloys: For example, Inconel and Hastelloy, widely used in high-temperature environments. Cobalt-based alloys: Such as Stellite alloys, typically used in applications that require extreme heat and corrosion resistance. Iron-based alloys: Such as heat-resistant steels, used in environments with slightly lower temperature requirements.
Q:Why are high-temperature alloys expensive?
A:
High-temperature alloys are typically more expensive due to several reasons: Raw material costs: Many high-temperature alloys contain expensive metals like nickel, cobalt, and molybdenum. Manufacturing processes: The production of high-temperature alloys requires specialized smelting, heat treatment, and processing techniques, which drive up production costs. Heat resistance requirements: The alloys must possess excellent heat resistance, corrosion resistance, and oxidation resistance, which inv
Q:How do I choose the right high-temperature alloy for my needs?
A:
When selecting a high-temperature alloy, consider the following factors: Application environment: Factors like working temperature, exposure to corrosive substances, high pressure, or shock loads. Mechanical performance requirements: Different alloys have varying strengths, hardness, fatigue resistance, and more, so choose the alloy based on your specific needs. Cost considerations: Choose the most suitable alloy based on your budget, as high-temperature alloys can vary significantly in price.

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