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Stainless steel flange

Stainless steel flange

Stainless steel flange is a connection element widely used in industrial piping systems, designed to connect pipes, valves and equipment to each other to ensure sealing and reliability. Due to its excellent corrosion resistance and high temperature resistance, stainless steel flanges are widely used in industries such as chemical, petroleum, natural gas, power and water treatment.

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Model Inquiry

Model Inquiry

Phone

Phone

+86 15369455556

Email

Email

info@cn-hckj.com

WhatsApp

WhatsApp

+86 15803375432

Material features:
Our stainless steel flanges are mainly made of high-quality stainless steel materials such as 304 and 316, with the following features:

Corrosion resistance: Stainless steel can resist the erosion of various chemical media, ensuring the long-term use of flanges in harsh environments.
High temperature resistance: Able to withstand high temperature environments and suitable for various industrial applications.
Mechanical strength: High-strength materials ensure the reliability of flanges under high pressure conditions.
Product specifications:
We provide stainless steel flanges of various specifications and types, including but not limited to:

Slip-on flange
Butt-weld flange
Blind flange
Loose flange
Flange connection kit
Product advantages:

Precision machining: Using advanced machining technology to ensure that the size and surface finish of the flange meet international standards.
Customized service: Provide customized services according to the specific needs of customers to meet the requirements of different pipeline systems.
Strict quality control: Each batch of products undergoes strict quality inspection to ensure compliance with international certification standards.
Application areas:
Stainless steel flanges are widely used in:
Chemical industry
Oil and gas extraction
Power industry
Pharmaceutical and food processing
Water treatment and sewage treatment
After-sales service:
We are committed to providing customers with high-quality after-sales service to ensure that the problems encountered by customers during use can be solved in a timely manner. Our professional team is always ready to provide you with technical support and consultation.

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Product Packaging

Craftsmanship

Design Phase

Requirement Analysis: Determine the size, shape, and performance standards of the protective cover based on client needs or equipment requirements.
CAD Design: Use CAD software for detailed design of the protective cover, generating 2D or 3D drawings to ensure precise matching with the machine structure and operating trajectory.

Material Selection

Material Type: Choose materials based on different environmental requirements; common materials include **steel plates, stainless steel, aluminum alloy**, or special fabrics (like heat-resistant fibers, PVC) for flexible covers.
Thickness and Hardness: Select appropriate thickness and hardness based on machine operation strength and environment to ensure sufficient protection without affecting machine operation.

Material Processing

Cutting: Use **laser cutting**, **plasma cutting**, or **CNC shearing machines** to precisely cut steel plates or other materials according to design drawings.
Bending and Shaping: Employ **CNC bending machines** or other machinery for bending to form the required shapes like flat, arc, or cylindrical.

Welding and Assembly

Welding: For hard materials like steel plates, use **TIG welding** or **MIG welding** to join structural parts.
Riveting or Bolt Connection: In some cases, bolts or rivets are used for connections, especially in structures that need to be disassembled later.
Frame Installation: Some covers require internal frames for added strength and support, which will be assembled with the cover shell.

Surface Treatment

Polishing and Grinding: The surface after welding or processing usually requires polishing and grinding to remove burrs and slag, ensuring a smooth finish.
Corrosion Treatment: Depending on the environment, perform **plating**, **painting**, or **powder coating** to enhance corrosion resistance and wear resistance, especially for covers used in humid or corrosive conditions.
Heat Treatment: Some materials undergo **heat treatment** to increase strength and durability.

Quality Inspection

Dimensional Inspection: Precisely measure the dimensions of the protective cover to ensure perfect fit with the machine equipment.
Strength and Durability Testing: Test the load capacity, impact resistance, and wear resistance of the protective cover to ensure it does not deform or damage over long-term use.
Appearance Check: Ensure even surface treatment with no scratches or bubbles.

Installation and Debugging

Pre-assembly: Sometimes trial assembly is conducted in the workshop to ensure good matching of the protective cover's parts with the machine's interfaces and guides.
Installation Debugging: Install the protective cover on the machine and conduct actual operation debugging to ensure it does not interfere with the machine's motion trajectory and effectively protects key components.

Packaging and Shipping

Protection Processing: Finished protective covers are usually packaged to prevent damage during transport; rust-proof oil or protective film may be used as necessary.
Shipping and Installation Guidance: Deliver the finished product to the client's site and provide detailed installation instructions or technical support to ensure correct installation and use.

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