Uns N06617 W. Nr 2.4663 Nickel Alloy Plate Sheet
Product Specifications
- Diameter: 15-106um
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Product Highlights
- High Temperature Strength: Designed for excellent high temperature strength and creep resistance in aggressive environments.
- Corrosion Resistance: Offers superior oxidation and corrosion resistance in extreme conditions.
- Stock Availability: Stock available for immediate shipment with MOQ of 50kg.
- Customization Services: Supports small-batch customization with various shapes and sizes.
- Multiple Standards: Complies with AISI, ASTM, DIN, JIS, GB, and BS standards.
- Cold Rolled Technique: Manufactured using cold rolled technique with polished surface treatment.
- Comprehensive After-Sales: Includes technical support, quality assurance, and regular inspections.
- OEM Service: OEM service is available for customized manufacturing needs.
Product Attributes
- Customization
- Available
- Type
- Sheet
- Standard
- AISI, ASTM, DIN, JIS, GB, BS
- Model NO.
- UNS N06617 W. Nr 2.4663
- Composition
- Nickel Alloy-Superalloy
- Technique
- Cold Rolled
- Shape
- Plate
- 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
- Ultra-thin 0.5~100mm range
- Trademark
- Titanium-nickel alloy
- Origin
- Shandong Province, China
- HS Code
- 7226920000
- Production Capacity
- 20000ton/Month
Product Images of Uns N06617 W. Nr 2.4663 Nickel Alloy Plate Sheet
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Product Description
| Element | Content |
|---|---|
| Ni | Balance |
| Cr | 20.0-24.0 |
| Co | 10.0-15.0 |
| Mo | 8.0-10.0 |
| Al | 0.8-1.5 |
| Ti | 0.8-1.5 |
| Fe | ≤3.0 |
| C | 0.05-0.15 |
| Mn | ≤1.0 |
| Si | ≤1.0 |
| S | ≤0.015 |




1. What are high-temperature alloys?
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.
2. What are the main uses of high-temperature alloys?
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.
3. What are the main types of high-temperature alloys?
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.
4. Why are high-temperature alloys expensive?
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 involves higher technical demands.
5. How do I choose the right high-temperature alloy for my needs?
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.
6. Can I purchase small quantities of high-temperature alloys?
Yes, we offer small-batch customization services to meet your specific needs. Many high-temperature alloy suppliers can produce small quantities and offer different shapes and sizes of products.
7. What is the typical delivery time for high-temperature alloys?
The delivery time depends on several factors, including:
- Order volume: Large orders may take longer to produce.
- Material types and specifications: Some specific high-temperature alloys may require longer production and processing times.
- Supply chain conditions: Raw material availability and processing times can also affect delivery. Generally, delivery time ranges from a few weeks to a few months.
8. How can I ensure that the high-temperature alloys I purchase meet quality standards?
We recommend that you:
- Choose reputable suppliers who comply with international standards (e.g., ASTM, ISO).
- Request detailed material certificates and quality inspection reports, such as chemical composition analysis, mechanical property tests, etc.
- Confirm the heat treatment and processing methods with the supplier to ensure the alloy meets your specific requirements.
9. Can high-temperature alloys be further processed or customized?
Yes, many high-temperature alloys can be further processed or customized, including cutting, welding, heat treatment, etc. We offer corresponding processing services, and we can produce customized sizes and shapes based on your requirements.
10. What after-sales services are provided for high-temperature alloys?
We offer comprehensive after-sales services, including:
- Technical support: We provide consulting on material selection, processing, installation, and usage.
- Quality assurance: We guarantee that the high-temperature alloys meet the specifications and offer quality assurance on the products.
- Regular inspections and feedback: For long-term customers, we offer regular quality inspections and performance feedback to ensure the reliability of the alloys in real-world applications.
11. Do high-temperature alloys have recycling value?
Yes, many high-temperature alloys, especially nickel-based and cobalt-based alloys, have high recycling value. Under certain conditions, these alloys can be recycled, especially in high-value components in industries like aerospace and energy.
12. How do I place an order for high-temperature alloys?
You can place an order through the following methods:
- Directly contact the sales team with your requirements and specifications.
- Order online (if the supplier offers an online platform).
- Submit an RFQ (Request for Quotation) to receive detailed pricing and delivery information.
About the Supplier
This supplier has been audited by CTI. Verify the report on the official CTI website with ID "QIP-ASI2452165". Items marked "" are certified.
Company Profile
Shandong Titanium Nickel Special Steel Co., Ltd., with a registered capital of RMB 158800, is a high-tech enterprise specializing in the research, production, and sales of special alloys such as nickel based and iron-based materials. Our products include corrosion-resistant alloys, high-temperature alloys, precision alloys, Hastelloy alloys, Monel alloys, INCONEL, INCOLOY, copper nickel alloys, titanium and titanium alloys, zirconium and zirconium alloys, nickel and nickel based alloys, nickel cobalt based heat-resistant alloys, hafnium alloys, and more than 60 other alloy materials.
All products of the company are supplied in accordance with American ASTM/ASME, German DIN, Japanese JIS and other standards, synchronized with Chinese steel standards, and can be supplied according to customer provided standards and technical requirements. The available product forms include plates, strips, tubes, rods, forgings, fittings, flanges, capillaries, welding materials, etc
HASTELLOY C-276, UNS N10276, 2.4819, HASTELLOY C276, NS3304, NS334, NiMo16Cr15Fe6W4
HASTELLOY C-22, Inconel 22, Alloy C-22, UNS NO6022, 2.4602,
HASTELLOY C-4, UNS NO6455, 2.4610, NS335, NiMo16Cr16Ti, HASTELLOY C-2000, UNS NO6002, 2.4675,
HASTELLOY B-2, HASTELLOY B2, UNS N10665, 2.4617, NS322, NiMo28,
HASTELLOY B-3, HASTELLOY B3, UNS N10675, 2.4600, NS323, NiMo28,
Hastelloy G-3, hastelloy G3, N06985, NW66901, UNS N06985, NS3404, Nicrofer, 4023hMo, 2.4619,
HASTELLOY G-30, UNS NO6030, NS3404, 2.4603, N06030, NICR30FEMO, Nicrofer4825hMo,
HASTELLOY G-35, UNS NO6035, 2.4643,
HastelloyX, GH3536, GH536, NC22FeD, 2.4665, NiCr22Fe1
MONEL400, 2.4360, UNS N04400, JIS NW4400, NCu28-2.5-1.5,
MONEL500, UNS N05500, 2.4375 Ni68Cu28Al, NCu30-3-0.5, NW5500,
INCONEL 600, UNS N06600, 2.4816, NCF 600,
Inconel 601, N06601, 2.4851, NiCr23Fe,
INCONEL 686, UNS N06686, 2.4606, GH4698, Alloy 686,
INCONEL 690, UNS N06690, 2.4642, NS315, GH694,
INCONEL 718, UNS N07718, NC19FeNb, W. Nr. 2.4668, NiCr19Fe19Nb5, NiCr19Nb5Mo3,
INCONEL 750, UNS N07750, 2.4669, NCl5FeTNbA, W. Nr. 2.4668, 2.4669, NCF750,
INCONEL 725, UNS N07725, GH725,
INCONEL 617, N06617, 2.4663, UNS N06617, W. Nr. 2.4663,
NiCr23Co12Mo,
INCOLOY 800, UNS N08800, N08800, N08810, N08811, X2NiCrAlTi3220, W. Nr. 1.4876, W. Nr. 1.4958, W. Nr. 1.4959, NCF800,
NS112, DIN W. Nr. 14876
INCOLOY 800H, UNS N08811, N08810, W. Nr. /EN 1.4958, 1.4959, NCF800H, NAS800H, NS112,
INCOLOY 800HT, UNS N08811, W. Nr. 1.4876, DIN X10NiCrAlTi3220, Z8NC32.21
NA15, FeNi32Cr21AlTi
INCOLOY 825, UNS N08825, incoloy 825, N08065,
NC21FeDu, W. Nr. 2.4858, NiCr21Mo, JIS ncf825,
NA16, BS nife30cr21no3, SS14, NA1641,
INCOLOY 925, UNS N09925
INCOLOY 20, UNS N08020, Alloy20, 2.4660, NiCr20CuMo, Nicrofer3620NB,
ASTM B463, ASME SB-463,
INCOLOY 28, UNS N08028, 1.4563, X1NiCrMoCu31-27-4, Alloy 28, Incoloy 28,
INCOLOY 330, UNS N08330, 1.4886, MT-330, SUH330, 1.4864, X12CrNiSi35-16
X6NiCrSi36-19, NA17, Z20NCS33-16,
About Our Factory & Business Background
- Address
- 300 Meters North of Liaoniu Road and Xindong Ring Road, Liaocheng High-Tech Zone, Liaocheng, Shandong, China
- Average Lead Time
- Peak Season Lead Time, one month, Off Season Lead Time, within 15 workdays
Our Production Capability & Technical Expertise
- Main Products
- Hstelloy, Monel Alloy, Nickle Alloy, Superalloy, Corrosion Resistant Alloy, Precision Alloy, Monel, Inconel, Haynes Alloy, Plate/Sheet
-
OEM Service Available
- Yes
Our Industry Experience & Global Business Record
- Main Markets
- North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe
FAQ
- What are high-temperature alloys?
- 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.
- What are the main uses of high-temperature alloys?
- High-temperature alloys are primarily used in Aerospace and Aviation (turbine blades, jet engine components), Energy Industry (gas turbines, heat exchangers), Automotive Industry (turbochargers, exhaust systems), and Chemical Industry (corrosion-resistant equipment such as reactors, boilers).
- What are the main types of high-temperature alloys?
- Common types include Nickel-based alloys (e.g., Inconel, Hastelloy), Cobalt-based alloys (e.g., Stellite), and Iron-based alloys (heat-resistant steels). Nickel and Cobalt types are used in extreme heat, while Iron-based are for slightly lower temperatures.
- Why are high-temperature alloys expensive?
- They are expensive due to high raw material costs (nickel, cobalt, molybdenum), specialized manufacturing processes (smelting, heat treatment), and high technical demands for heat and corrosion resistance.
- How do I choose the right high-temperature alloy for my needs?
- Consider the application environment (temperature, pressure, corrosive substances), mechanical performance requirements (strength, hardness, fatigue resistance), and cost considerations based on your budget.
- Can I purchase small quantities of high-temperature alloys?
- Yes, we offer small-batch customization services to meet your specific needs. Many suppliers can produce small quantities and offer different shapes and sizes of products.
- What is the typical delivery time for high-temperature alloys?
- Delivery time ranges from a few weeks to a few months, depending on order volume, material types, specifications, and supply chain conditions.
- How can I ensure that the high-temperature alloys I purchase meet quality standards?
- Choose reputable suppliers complying with international standards (ASTM, ISO), request detailed material certificates and quality inspection reports, and confirm heat treatment and processing methods.
- Can high-temperature alloys be further processed or customized?
- Yes, many high-temperature alloys can be further processed or customized, including cutting, welding, and heat treatment. We offer corresponding processing services and can produce customized sizes and shapes.
- What after-sales services are provided for high-temperature alloys?
- We offer comprehensive after-sales services including technical support (consulting on selection, processing, installation), quality assurance, and regular inspections and feedback for long-term customers.
- Do high-temperature alloys have recycling value?
- Yes, many high-temperature alloys, especially nickel-based and cobalt-based alloys, have high recycling value and can be recycled under certain conditions.
- How do I place an order for high-temperature alloys?
- You can place an order by directly contacting the sales team, ordering online (if available), or submitting an RFQ (Request for Quotation) to receive detailed pricing and delivery information.
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