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Laser Cutting Inconel 617 Plate (0.5mm-100mm Thickness) Precision-Cut for Power Generation Equipment

Lugar de origen PORCELANA
Nombre de la marca DELTA
Certificación ISO
Número de modelo Inconel 617
Cantidad de orden mínima 500 kgs
Precio 40-45 USD/Kg
Detalles de empaquetado Embalaje estándar para la exportación
Tiempo de entrega 5 - 12 días basado en la cantidad
Condiciones de pago L/C, T/T, Western Union
Capacidad de la fuente 3 toneladas por semana

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Datos del producto
Productos Hoja y placa de la aleación de níquel Calificación Inconel 617
Espesor 0.5 - 30.0m m Tamaño estándar 1000*2000m m 1219*2438m m
Estándar ASTM EN Servicio CORTE
Puerto de carga Puerto de Shanghai Superficie 2B NO.1 NO.4 NO.8
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Laser cut Inconel 617 plate

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Precision-cut nickel alloy plate

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Inconel 617 power generation plate

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Descripción de producto

Laser Cutting Inconel 617 Plate (0.5mm-100mm Thickness) Precision-Cut for Power Generation Equipment

 

Products Specification

 

Products Name Inconel 617 Nickel Alloy Sheet Plate
Thickness Cold rolled: 0.5 - 3.0mm   Hot rolled 4.0 - 30.0mm
Standard Size 1000*2000mm 1219*2438mm 1219*3048mm 1500*6000mm
Surface 2B NO.1
MOQ 50 kgs
Service Cutting, Surface Finishing
Packing  Waterproof paper and wooden pallets
Loading Port Shanghai Port
Price term FOB  CFR CIF EXW
Payment term 30% TT in advance , 70% TT balance against copy of B/L
Other Grade Hastelloy C22 C4 X  C276
Monel 400 K500
Incoloy 800 800H 800HT 825  925
Inconel 600 601 617 625 716 718
Stainless  Steel Grade 201 202 301 304L 309S 310S 316L 316Ti 317L 321 347 409L 410 410S 420J1 420J2 430 431 436L 439 440A/B/C 441 443 444 2205 2507 904L 254SMO 253MA

 

Laser Cutting Inconel 617 Plate (0.5mm-100mm Thickness) Precision-Cut for Power Generation Equipment

Inconel 617 is a highly durable and heat-resistant nickel-chromium alloy known for its outstanding performance in extreme environments, particularly in the power generation industry. This superalloy, available in plates ranging from 0.5mm to 100mm in thickness, is ideal for precision laser cutting, offering a reliable solution for components in high-temperature applications like gas turbines, industrial furnaces, and other power generation equipment.

This article delves into the key properties, standards, applications, and packaging/transport details of Inconel 617 plates, focusing on their use in critical power generation applications.

Inconel 617 Plate Specifications and Properties

Material: Inconel 617 (NiCrCoMo)
Thickness Range: 0.5mm - 100mm
Shape: Plate
Standard: ASTM B168, ASME SB168
Density: 8.91 g/cm³
Melting Point: Approx. 1350°C (2462°F)

Chemical Composition

Inconel 617 is primarily composed of nickel (Ni) and chromium (Cr), with added elements to enhance its performance at high temperatures. The chemical composition of Inconel 617 is as follows:

Element Composition (%)
Nickel (Ni) 50.0 - 60.0
Chromium (Cr) 20.0 - 23.0
Molybdenum (Mo) 8.0 - 10.0
Cobalt (Co) 10.0 max
Iron (Fe) Balance
Aluminum (Al) 1.0 max
Titanium (Ti) 0.5 max
Silicon (Si) 0.5 max
Carbon (C) 0.15 max
Manganese (Mn) 1.0 max

The combination of nickel and chromium makes Inconel 617 exceptionally resistant to oxidation and carburization at elevated temperatures, which is essential in power generation applications where high heat and corrosive environments are common.

Mechanical Properties

Inconel 617 exhibits remarkable mechanical properties that make it ideal for high-stress, high-temperature applications. The key mechanical properties are as follows:

Property Value
Tensile Strength 700 MPa (102 ksi)
Yield Strength (0.2% Offset) 250 MPa (36.3 ksi)
Elongation 30% min (50mm gauge length)
Hardness HRB 90 max
Modulus of Elasticity 207 GPa (30 x 10^6 psi)
Poisson's Ratio 0.31

These mechanical properties allow Inconel 617 to maintain structural integrity even in extreme operating conditions, making it suitable for high-performance applications in the power generation sector.

Thermal Properties

Inconel 617 can perform optimally at temperatures up to 2000°F (1093°C) while maintaining its strength and resistance to oxidation and corrosion. This makes it ideal for use in high-temperature environments such as gas turbines, combustor components, and heat exchangers.

Laser Cutting Inconel 617 Plate

Laser cutting is a highly precise method used to shape Inconel 617 plates for various applications. The laser cutting process allows for complex geometries with tight tolerances, making it a preferred choice for producing components used in power generation and aerospace industries.

Advantages of Laser Cutting Inconel 617 Plates:

  • Precision: Laser cutting provides high-precision edges with minimal heat distortion, which is crucial for maintaining the alloy’s integrity.

  • Clean Cuts: The process results in smooth, burr-free edges, reducing the need for post-processing and ensuring the alloy’s desired mechanical properties are retained.

  • Complex Shapes: Laser cutting allows for the creation of intricate designs and shapes that are difficult to achieve using traditional cutting methods.

  • Minimal Material Waste: The focused laser beam minimizes material waste, improving cost efficiency.

Standards and Specifications

Inconel 617 plates are manufactured according to internationally recognized standards, ensuring quality and consistency across all products. The primary standards for Inconel 617 include:

  • ASTM B168: This standard defines the requirements for nickel-chromium alloys, including Inconel 617, for use in gas turbines and other high-temperature applications. The standard specifies mechanical properties, chemical composition, and dimensions for plates and sheets.

  • ASME SB168: This is the specification for the material used in pressure vessel applications, ensuring that Inconel 617 meets the demands of industries requiring high strength and corrosion resistance at elevated temperatures.

These standards ensure that Inconel 617 is suitable for use in critical power generation applications where safety and reliability are paramount.

Similar Alloys to Inconel 617

Several other alloys share similar properties with Inconel 617 and can be considered alternatives depending on the specific requirements of an application. Some of the common alloys similar to Inconel 617 include:

  • Inconel 625: Known for its excellent fatigue and thermal-fatigue strength, Inconel 625 is highly resistant to oxidation and corrosion in aggressive environments.

  • Incoloy 800HT: A nickel-iron-chromium alloy with good oxidation and carburization resistance, often used in high-temperature applications.

  • Inconel 718: A high-strength, corrosion-resistant alloy used primarily in aerospace and gas turbine applications, especially in lower-temperature environments.

Although these alloys exhibit similar properties to Inconel 617, Inconel 617’s higher molybdenum content offers superior resistance to carburization and oxidation at very high temperatures, making it ideal for applications in gas turbines and industrial furnaces.

Applications of Inconel 617 Plate

Inconel 617 is used in a variety of applications that require high strength, excellent corrosion resistance, and stability at high temperatures. Some of the most common uses include:

  • Gas Turbine Components: Inconel 617 is widely used in the manufacturing of turbine blades, vanes, and other components exposed to extreme temperatures and stresses in power generation plants.

  • Heat Exchangers: Due to its resistance to both oxidation and carburization, Inconel 617 is ideal for high-temperature heat exchangers in petrochemical and power generation industries.

  • Combustor Linings: Inconel 617 is used to manufacture combustor linings and transition ducts, which are subjected to severe thermal stresses.

  • Furnace Components: This alloy is also used for components in furnaces, including radiant tubes and furnace baskets, which are exposed to high-temperature gases.

  • Aerospace Applications: Components such as turbine seals and exhaust components benefit from Inconel 617’s heat resistance and long-term stability.

In power generation equipment, these applications help ensure that the systems remain reliable and efficient even under the harshest operating conditions.

Packaging and Transportation

When it comes to packaging and transportation, it is essential to ensure that Inconel 617 plates are delivered in perfect condition to avoid any damage during transit. Typical packaging and transportation procedures include:

  • Packaging: Plates are usually packaged in wooden crates or pallets to prevent damage during shipping. For smaller sizes, protective plastic or metal covers may be used.

  • Labeling: Each package will be clearly labeled with the material type, thickness, and quantity, as well as the relevant ASTM or ASME standards, to ensure that all specifications are met.

  • Shipping: Inconel 617 plates are typically shipped by air, sea, or road depending on the distance and urgency of the order. International shipments require proper documentation for customs clearance, and delivery times are usually within 7-10 business days for domestic orders and up to 30 days for international shipments.

  • Handling: Given the material's value and precision, careful handling is required during transit to prevent any impact or bending.

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