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Customized OEM Titanium Slip-On Flanges | High-Quality CNC Machined by China Suppliers and Factory

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Introducing our high-quality Titanium Slip-On Flanges, manufactured in China by leading suppliers in the industry. Made from premium titanium alloy and pure titanium, our flanges are processed using advanced CNC machining and deburring techniques to ensure exceptional precision and performance. Designed to operate efficiently in a wide temperature range of -60℃ to 250℃, these flanges are perfect for various applications, We offer customized surface treatments based on your specific requests, along with dedicated OEM services to meet your unique requirements. Our commitment to quality control means that every product undergoes 100% inspection to guarantee durability and reliability, With a negotiable minimum order quantity for bulk orders, we strive to accommodate our clients' needs. Packing options are flexible and can be tailored according to your specifications, including wooden boxes, cartons, or pallets, Samples are available for evaluation, and we ensure prompt delivery within 3 to 30 days. Partner with us today and experience the excellence of our titanium flanges from a trusted factory in China.

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    Product Description

    A slip-on flange is a type of flange connected to a vessel or pipe via a fillet weld. It is classified as a non-welded flange. During design, it is verified as either a welded flange or a loose flange, depending on the degree of integration between the flange ring and the straight pipe section. Flange rings come in two types: necked and neckless. Compared to necked butt-weld flanges, slip-on flanges have a simpler structure and require less material, but their rigidity and sealing performance are inferior to those of necked butt-weld flanges. Slip-on flanges are widely used in the connection of medium- and low-pressure vessels and pipelines.
    With years of experience in titanium manufacturing, Yesheng Titanium Industry specializes in producing titanium alloy slip-on flanges (SO), tailor-made for various harsh corrosive working conditions as core components for high-performance pipe connections. We use high-quality titanium ingots, shaped by forging and refined by precision CNC machining.
    While retaining the core advantage of easy installation of slip-on flanges, the integrated short neck structure greatly enhances the rigidity and load-bearing capacity of the flange, achieving a perfect balance of economy, practicality and corrosion resistance.

    Core Advantage

    1. Excellent Corrosion Resistance for Longer Service Life
    A dense and stable oxide film (TiO2) naturally forms on the surface of titanium metal. This protective film can effectively resist erosion from harsh media such as seawater, chloride ions, wet chlorine, hypochlorite, most organic acids, and strong alkalis. Its resistance to corrosion, pitting, and stress corrosion cracking is far superior to that of 316L stainless steel. No additional anti-corrosion coating or cathodic protection is required during use. It remains rust-free and does not contaminate the transported medium for long-term use, with a service life of more than 20 years. This can significantly reduce equipment maintenance and component replacement costs, saving long-term operating expenses for enterprises.
    2. High Strength & Light Weight to Reduce Overall System Load
    Titanium has similar strength to steel but only 57% of its density. Using titanium alloy slip-on flanges can effectively reduce the load on pipelines, equipment, and supporting structures. This advantage is particularly prominent in scenarios sensitive to self-weight, such as offshore platforms, ships, and large chemical plants, which can improve the operational stability of the entire system. At the same time, the short neck design can effectively disperse the stress at the pipe connection and enhance flange rigidity. Compared with ordinary plate-type slip-on flanges, it can adapt to higher pressure and temperature working conditions, reducing potential operational safety hazards.
    3. Easy & Efficient Installation with Obvious Cost-Effectiveness
    This flange adopts a slip-on welding method. Pipes can be directly inserted into the flange bore without complex bevel processing, featuring low welding difficulty and high construction efficiency, which can effectively shorten the construction period. In medium and low-pressure corrosive pipelines, its comprehensive cost is much lower than that of high-alloy stainless steel flanges and welding neck flanges. It can not only meet the working condition requirements but also control the procurement cost, with significant cost-effectiveness advantages.
    4. Precision Manufacturing & Traceable Stable Quality
    From titanium ingot selection to finished product delivery, the whole process adopts forging + CNC precision machining technology to ensure that the dimensional accuracy meets the standard, the sealing surface is smooth and flat, and the pipe connection is tight without leakage. Each product is equipped with an original material certificate and mechanical property report, with full quality traceability, allowing customers to use it with more confidence.

    Product parameters

    Technical Parameters

    • Size Range: DN15 (1/2") ~ DN600 (24")
    • Pressure Class: PN6 / PN10 / PN16 / PN25 / PN40; Class 150 / 300 / 600
    • Face Type: Raised Face (RF), Flat Face (FF), Male/Female (M/FM), Tongue/Groove (T/G)
    • Working Temperature: -196℃ ~ 350℃ (depending on material and actual working conditions)
    • Production Process: Forging / Precision Machining
    • Surface Treatment: Pickling & Passivation / Sandblasting/Polishing

    Material Selection Guide

    Grade Key Properties Recommended Applications
    GR1 (CP Titanium) Excellent ductility and corrosion resistance, relatively low strength Highly corrosive, atmospheric, or low-pressure pipelines (e.g., high-purity media, food, and pharmaceutical fields)
    GR2 (CP Titanium) Balanced corrosion resistance and strength, the most widely used and versatile Medium and low-pressure corrosive working conditions (chemical industry, seawater, chlor-alkali systems, etc.)
    GR7 (Ti-Pd Alloy) Enhanced corrosion resistance, resistant to oxidizing acids, and crevice corrosion High-temperature, strong oxidizing acid environments and scenarios with high crevice corrosion risk
    GR12 (Ti-Mo-Ni Alloy) Resistant to reducing acids and high chloride ion erosion Transportation of reducing media such as hydrochloric acid and sulfuric acid
    GR5 (Ti-6Al-4V) High strength, moderate corrosion resistance, excellent comprehensive performance Structural and pipe connections requiring high strength and medium corrosion resistance

    Applications

    1. Petrochemical Industry: Crude oil distillation, catalytic cracking, acid and alkali transportation, wastewater treatment pipelines
    2. Marine Engineering: Seawater desalination equipment, ship piping, offshore wind power installations, equipment for salt-spray environments
    3. Chlor-Alkali Industry: Caustic soda, chlorine gas, hypochlorite production, and brine transportation systems
    4. Pharmaceutical & Food Industry: High-purity medium transportation, sterile pipelines, applications requiring biocompatibility
    5. Environmental & Power Industry: Desulfurization and denitrification equipment, wastewater treatment pipelines, and cooling circulating water systems

    Why Choose US

    Original Titanium Factory:
    We have a complete in-house titanium forging and precision machining production line, directly connecting with customers. We ensure controllable quality, stable delivery time, and obvious price advantages, eliminating intermediate link premiums.
    Customization Service:
    We can customize non-standard size, special material, and special sealing surface flange products according to the drawings and samples provided by customers, accurately matching the actual working condition requirements.
    Professional Technical Support:
    With more than 10 years of experience in titanium product R&D and production, we provide customers with one-stop services, including material selection, technical scheme design, and after-sales follow-up, solving customers' worries.
    Strict Quality Assurance:
    Certified by ISO 9001 quality management system, all products comply with relevant international and domestic standards. Each production process undergoes strict inspection to ensure quality.
    Yesheng Titanium Industry – Specialized in Titanium Manufacturing, Connecting Safety and Future
    For detailed dimension tables, material certificates or quotation plans, please feel free to contact us!

    Frequently Asked Questions

    What is a Titanium Slip-On Flange?

    A titanium slip-on flange is a lightweight, corrosion-resistant flange that slides over the end of a pipe and is secured with fillet welds. It is highly valued in medium- and low-pressure applications for its easy alignment and simplified installation.

    Why choose titanium over 316L stainless steel for flanges?

    Titanium forms a natural oxide film (TiO2) that offers far superior resistance to seawater, wet chlorine, and organic acids compared to 316L. Additionally, titanium is 43% lighter than steel while maintaining similar strength, reducing overall pipeline load.

    What titanium grades are available for these flanges?

    We manufacture flanges in multiple grades including GR1 for high ductility, GR2 for general corrosion resistance, GR7 for crevice corrosion resistance in hot acid, GR12 for reducing acids, and GR5 (Ti-6Al-4V) for high-strength applications.

    Are custom dimensions and standards supported?

    Yes, Yesheng Titanium provides fully customizable options. We can manufacture non-standard sizes, specialized sealing surfaces (like M/FM, T/G, RF, FF), and different pressure ratings based on your technical drawings and samples.

    What is the typical service life of a titanium slip-on flange?

    Under recommended medium- and low-pressure corrosive working conditions, our precision-forged titanium flanges can operate efficiently for over 20 years without requiring additional anti-corrosion coatings, significantly lowering maintenance costs.