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TYPE 01 European Standard EN1092-01 304 316 Stainless Steel Plate Flanges Flat Face PN 40 PLFF DN10-DN600

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TYPE 01 European Standard EN1092-01 304 316 Stainless Steel Plate Flanges Flat Face PN 40 PLFF DN10-DN600

Country/Region china
City & Province Shaanxi
Categories Machine Tool Parts
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Product Details

EN1092-01 TYPE 01 Stainless Steel Plate Flanges PN 40 PLFF for Industrial Applications

 

Introduction:

Our company, Shaanxi Peter International Trade Co., Ltd. is a renowned supplier in the market, with a solid reputation spanning over 20 years. With our extensive experience, we have become a trusted and reliable source for EN1092-1 Stainless Steel Plate Flanges.

 

Our company is committed to providing excellent service to our customers. We have cultivated long-lasting relationships by offering competitive pricing, prompt delivery, and personalized support. Our team of experts is dedicated to assisting customers throughout the entire procurement process, from product selection to after-sales service.

 

Quality control and assurance are paramount to us as a reputable supplier. We subject our EN1092-1 Stainless Steel Plate Flanges to stringent testing and inspection to ensure durability, precision, and compliance with relevant standards. We collaborate closely with trusted manufacturers who share our commitment to delivering reliable and superior products.

 

 

Description of EN1092-01 Flanges:

    

EN 1092-1 Flanges are a set of European standards that provide guidelines and specifications for flanges used in piping systems. These standards were developed by the European Committee for Standardization (CEN) to ensure the interchangeability of flanges across European countries.

 

EN 1092-1 Flanges cover a wide range of flange types, including welding neck flanges, slip-on flanges, blind flanges, threaded flanges, and lap joint flanges. The standards specify the dimensions, material requirements, pressure ratings, and marking of flanges used in a variety of industries, including oil and gas, chemical, and water treatment.

 

Here are some key features and specifications of EN 1092-1 Flanges:

 

Materials: EN 1092-1 Flanges can be made from various materials, including carbon steel, stainless steel, and alloy steel. The material selection depends on the specific application and operating conditions.

 

Pressure Ratings: The flanges are designed to withstand different pressure ratings, ranging from PN2.5 to PN100. The pressure rating indicates the maximum pressure that the flange can withstand at a specific temperature.

 

Dimensions: EN 1092-1 Flanges are available in a range of sizes, typically from DN15 to DN6000. The dimensions of the flanges conform to ISO 7005-1 and are expressed in metric units.

 

Facings: The flanges have different types of facings, such as flat face (FF), raised face (RF), and ring joint (RTJ). The facing type depends on the type of gasket used and the application requirements.

 

Marking: EN 1092-1 Flanges are marked with the manufacturer's name or trademark, the material grade, the pressure rating, the size, and other relevant information.

 

Applications: EN 1092-1 Flanges are widely used in a variety of industries, including oil and gas, chemical, water treatment, and power generation.

 

 

EN1092-01 Stainless Steel Plate Flange Dimensions:

EN1092-01 Type 01 Plate Flange PN 40 FF
DNOutside diameterDiameter of bolt circleDiameter of bolt holeBoltingBore diameterFlange thicknessApprox weight
DKLNumberSizeB1C1(Kg)
109060144M1218140.6
159565144M1222140.7
2010575144M1227.5160.9
2511585144M1234.5161.1
32140100184M1643.5181.8
40150110184M1649.5182.1
50165125184M1661.5202.7
65185145188M1677.5223.5
80200160188M1690.5244.3
100235190228M20116266.1
125270220268M24141.5288.2
150300250268M24170.53010.3
2003753203012M27221.53617.9
2504503853312M30276.54229.3
3005154503316M30327.55245.1
3505805103616M33359.55866.7
4006605853916M364116597.1
4506856103920M3646266-
5007556704220M39513.572-
6008907954820M45616.584-

1.Dimensions are in millimeters(mm).

2.Dimensions can be specified by different purchasers.

 

 

Grades of Stainless Steel Flanges:

 

              

EN1092-01 flanges can be made from a variety of materials, including carbon steel, stainless steel, alloy steel, and non-ferrous metals. Here we focus on the material grades commonly used for EN1092-01 Stainless Steel Plate Flanges. These flanges are typically manufactured using stainless steel grades that offer excellent corrosion resistance, durability, and mechanical properties. Some commonly used stainless steel grades for EN1092-01 flanges include:

 

304 (A2) Stainless Steel: This is a versatile and widely used austenitic stainless steel grade. It offers good corrosion resistance, high strength, and excellent formability. It is suitable for various industrial applications, especially in environments where mild corrosive conditions are present.

 

316 (A4) Stainless Steel: This is an austenitic stainless steel grade with increased corrosion resistance compared to 304 stainless steel. It contains molybdenum, which enhances its resistance to pitting and crevice corrosion caused by chloride-containing environments. 316 stainless steel is often used in marine, chemical processing, and offshore applications.

 

321 Stainless Steel: This is a stabilized austenitic stainless steel grade that contains titanium. It offers excellent resistance to intergranular corrosion and can withstand high temperatures. 321 stainless steel is commonly used in applications involving elevated temperatures, such as heat exchangers, furnace parts, and exhaust systems.

 

347 Stainless Steel: Similar to 321 stainless steel, 347 stainless steel also contains titanium, which provides stabilization against sensitization during welding. It offers excellent resistance to intergranular corrosion and high-temperature oxidation. 347 stainless steel is commonly used in applications involving intermittent heating and cooling cycles, such as in the petrochemical and power generation industries.

 

These stainless steel grades provide varying levels of corrosion resistance, temperature tolerance, and mechanical properties, allowing for selection based on the specific requirements of the application. It is important to consult with suppliers or refer to industry standards to determine the most suitable stainless steel grade for EN1092-01 flanges in a particular application.

 

 

Advantages of Stainless Steel Plate Flanges:

Stainless Steel Plate Flanges offer several advantages over flanges made from other materials. Here are some of the key advantages of using stainless steel plate flanges:

 

Corrosion Resistance: Stainless steel is inherently resistant to corrosion, making it an ideal material for plate flanges that are used in corrosive environments. They are suitable for use in applications that involve exposure to chemicals, saltwater, or other harsh substances.

 

Strength and Durability: Stainless steel has excellent mechanical properties, including high tensile and yield strength. This makes stainless steel plate flanges strong, durable, and able to withstand high pressure and temperature conditions.

 

Hygienic Properties: Stainless steel plate flanges are easy to clean and have excellent hygienic properties. They are resistant to bacterial growth, making them ideal for use in industries such as food and beverage or pharmaceuticals.

 

Versatility: Stainless steel plate flanges are available in a wide range of sizes, pressure ratings, and material grades. They can be used in diverse industries and applications, accommodating specific requirements and standards.

 

Cost-Effective: Although stainless steel plate flanges may initially have a higher cost than flanges made from other materials, they offer long-term cost savings due to their durability and low maintenance requirements. They require minimal upkeep and replacement, reducing downtime and overall costs.

 

 

Applications of EN1092-01 Stainless Steel Plate Flanges:

EN1092-01 Stainless Steel Plate Flanges are commonly used in various industrial applications due to their excellent properties. Here are some applications of EN1092-01 Stainless Steel Plate Flanges:

 

Oil and Gas Industry: EN1092-01 Stainless Steel Plate Flanges are widely used in the oil and gas industry. They are used to join pipes, valves, and other equipment in pipelines, refineries, and offshore platforms. The corrosion resistance and strength of stainless steel make them ideal for use in harsh environments.

 

Chemical Processing Industry: The chemical processing industry requires materials that can withstand corrosive substances and high temperatures. EN1092-01 Stainless Steel Plate Flanges are suitable for chemical processing applications due to their corrosion resistance, durability, and high-temperature tolerance.

 

Food and Beverage Industry: The food and beverage industry requires hygienic materials that are easy to clean and maintain. EN1092-01 Stainless Steel Plate Flanges are ideal for food and beverage applications due to their hygienic properties and aesthetic appeal.

  

Water Treatment Industry: EN1092-01 Stainless Steel Plate Flanges are widely used in water treatment plants and sewage systems. The corrosion resistance of stainless steel makes them ideal for use in these environments.

 

Pharmaceutical Industry: The pharmaceutical industry requires materials that meet strict hygiene standards and are easy to clean and maintain. EN1092-01 Stainless Steel Plate Flanges are ideal for pharmaceutical applications due to their hygienic properties and ease of cleaning.

 

Power Generation Industry: EN1092-01 Stainless Steel Plate Flanges are widely used in power generation plants. They are used to join pipes and other equipment in boilers, turbines, and heat exchangers. The strength and corrosion resistance of stainless steel make them suitable for these applications.

 

EN1092-01 Stainless Steel Plate Flanges are versatile and can be used in various industries and applications where their properties are required. It is crucial to select the appropriate type of EN1092-01 Stainless Steel Plate Flange based on specific application requirements, such as material compatibility, pressure ratings, and environmental conditions.

 

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