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HVOF Tungsten Carbide Coated Plug Valve - Wear & Corrosion Resistant | China Suppliers & Factory

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Position: Essential component for opening and closing operations in plug valves, sourced from top China suppliers.

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Structure: Features a conical or cylindrical design with a central through-hole for efficient flow management.

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Principle: Employs rotation to control on/off functionality and flow direction within pipelines.

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Advantages: Enables rapid opening and closing, minimizes flow resistance, and offers reliable sealing performance.

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Applications: Ideal for quick shut-off in pipelines across petroleum, chemical, and various other industries, with products manufactured in a leading factory.

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    Product Description
    The plug (also known as the valve core or plug body) is the core functional component of a plug valve. As a key component for valve opening, closing, and sealing, it directly determines the plug valve's sealing performance, operational flexibility, and service life. Its structure is a single, precision-machined unit. The main types are conical plugs (suitable for medium and high-pressure conditions, achieving self-sealing through conical surface contact) and cylindrical plugs (suitable for large-diameter, frequent operation conditions, offering superior sealing stability). A straight-through, three-way, or four-way flow channel is located in the center, forming a tight seal with the valve seat inside the valve body. During operation, the plug rotates 90° via the torque transmitted by the valve stem (some adjustable types can achieve 360° fine-tuning). When the flow channel is fully aligned with the valve body passage, the medium flows freely; when the flow channel is completely misaligned with the valve body passage, the tight fit between the plug sealing surface and the valve seat blocks the flow of the medium, thus achieving on/off control or throttling regulation. This accessory is widely used in plug valve assemblies in industries such as petrochemicals, natural gas transportation, food and pharmaceuticals, metallurgy and mining, and mud manifolds. It is a core wear-resistant component for handling high-pressure, particulate, and corrosive media conditions.
    Core Structural Details: Flow Channel Design:
    Straight-through flow channel (low flow resistance, suitable for high flow rates), three-way flow channel (allows for media reversal), four-way flow channel (suitable for multi-loop media switching). The inner wall of the flow channel is polished (Ra≤0.8μm) to reduce media erosion and deposition. Sealing Surface Structure: The conical plug uses a 1:16~1:30 taper design to ensure uniform sealing surface fit; the cylindrical plug uses a stepped sealing surface, combined with a flexible valve seat to achieve bidirectional sealing; the sealing surface is precision ground, with a fit error ≤0.01mm. Connection Parts: The top is equipped with a valve stem connection groove/threaded hole, using key or spline connection to ensure stable torque transmission and prevent slippage; some high-pressure plugs have a guide shaft at the bottom to improve rotational coaxiality.
    HVOF Tungsten Carbide Coated Plug – Wear & Corrosion Resistant (1)
    HVOF Tungsten Carbide Coated Plug – Wear & Corrosion Resistant (2)
    Product Specifications
    Type Plug
    Compatible plug valve diameters DN10~DN300 (3/8″~12″)
    Compatible nominal pressures PN1.6MPa~PN160MPa (Class 150~Class 2500)
    Compatible temperature range Standard: -40℃~+450℃; Special materials: -196℃~+550℃
    Base Material Carbon steel: 20#, A105, Q235B; Alloy structural steel: 35CrMo, 42CrMo, 25Cr2MoVA; Stainless steel: 304, 316, 316L, 321, duplex steel 2205; Wear-resistant alloys: 2Cr13, 9Cr18, 17-4PH; Special alloys: Hastelloy C276, Monel 400, Inconel
    Material hardness range Carbon steel: HRC20~30; Alloy structural steel: HRC30~45; Stainless steel: HRC25~35; Wear-resistant alloy: HRC40~50; Special alloy: HRC35~45
    Surface strengthening processes Nitriding (gas/ion), thermal spraying of tungsten carbide (WC-Co), Stellite alloy surfacing, nickel-based alloy spraying (Ni60), chrome plating
    Surface hardness after strengthening Nitriding: HRC50~58; Tungsten carbide spraying: HRC60~65; Stellite surfacing: HRC58~63; Nickel-based spraying: HRC55~60; Chrome plating: HRC45~55
    Wear resistance improvement factor Nitriding: 3~5 times; Tungsten carbide spraying: 8~12 times; Stellite surfacing: 10~15 times; Nickel-based spraying: 5~8 times; Chrome plating: 2~3 times
    Precision machining parameters Dimensional tolerances: ≤±0.02mm (GB/T 1804-2000 Precision grade); Coaxiality: ≤0.015mm; Roundness error: ≤0.01mm; Surface roughness: Sealing surface Ra≤0.4μm, inner wall of flow channel Ra≤0.8μm, non-mating surface Ra≤3.2μm; Taper accuracy (conical plug): ≤±0.005mm/m
    Sealing type Metal hard seal, soft seal composite layer (embedded with PTFE, PFA, rubber)
    Leakage rating Metal hard seal: ANSI B16.104 Class V; Soft seal composite layer: ANSI B16.104 Class VI
    Product Features
    • 🔒
      1. Superior Sealing Performance, Adaptable to Diverse Operating Conditions The precision-ground sealing surface forms a tight fit with the valve seat, and the conical structure design achieves a self-tightening seal, ensuring more reliable sealing performance under high-pressure conditions. It supports both hard metal seals and soft seals, allowing for flexible selection based on media characteristics (corrosion, particles, temperature) to meet the sealing needs of different industries. Leakage is significantly lower than industry standards.
    • ⚙️
      2. Wear-Resistant and Erosion-Resistant, Long Service Life The main body is made of high-strength alloy material, combined with advanced surface strengthening processes such as thermal spraying of tungsten carbide and Stellite alloy overlay welding. The surface hardness reaches HRC55~65, effectively resisting the erosion, wear, and chemical corrosion of particulate media. Service life is 5~15 times longer than ordinary plug valves, significantly reducing valve maintenance frequency and replacement costs.
    • 🎯
      3. High Machining Precision and Smooth, Flexible Operation Following strict precision machining processes, key dimensional tolerances are controlled within ±0.02mm, with minimal coaxiality and roundness errors, ensuring precise fit between the plug valve, valve stem, and valve seat. Low friction during rotation eliminates jamming and vibration, allowing for easy and precise opening, closing, and adjustment whether operated manually, electrically, or pneumatically.
    • 🔧
      4. High Interchangeability and Convenient Installation and Maintenance Designed and manufactured strictly according to international and domestic standards such as GB, ANSI, API, and DIN, with dimensions and specifications fully compatible with original parts. It can directly replace older plug valves of the same model, both domestically and internationally, without any modification to the valve body. As an independent, easily damaged part, disassembly and assembly are simple, requiring only one person to complete the replacement, significantly reducing equipment downtime for maintenance.
    • 🔀
      5. Optimized Structural Design, Adaptable to Complex Needs Supports various flow path designs such as straight-through, tee, and four-way, meeting different functional requirements such as media on/off, reversing, and diversion; some models are equipped with pressure balancing holes (dedicated to high-pressure plug valves), which can counteract the lateral pressure of the media on the plug valve, reduce operating torque, and adapt to high-pressure, large-diameter plug valves; the bottom guide shaft design further improves rotational stability and prevents sealing surface misalignment after long-term use.
    • 💡
      6. Flexible Material Selection, Outstanding Cost-Effectiveness Offers a full range of material options including carbon steel, stainless steel, alloy structural steel, and special alloys, allowing for precise matching based on parameters such as media temperature, pressure, and corrosiveness, avoiding cost waste caused by over-selection; for low-to-mid-range applications, nitriding and chrome-plated products are available, while for high-end, harsh applications, tungsten carbide spraying and Stellite welding products are available, achieving the optimal balance between performance and cost.
    HVOF Tungsten Carbide Coated Plug – Wear & Corrosion Resistant (3)
    HVOF Tungsten Carbide Coated Plug – Wear & Corrosion Resistant (4)
    Product Packaging

    📦 Standard Export Packaging

    🛡️ Inner: Rust-proof protective wrapping

    🪵 Outer: Fumigation-free plywood case or export carton

    Engineered for shock resistance, moisture protection and corrosion prevention, ensuring secure delivery via ocean transportation.

    Product Transportation

    Shipping Methods

    • 🚢 Ocean Transportation
    • 🚂 Overland & Rail Services
    Frequently Asked Questions (FAQ)
    What is the difference between a conical plug and a cylindrical plug, and how do I choose?
    A conical plug uses a 1:16~1:30 taper design that achieves self-tightening sealing under pressure, making it ideal for medium and high-pressure applications where reliable sealing is the top priority. A cylindrical plug features a stepped sealing surface combined with a flexible valve seat for bidirectional sealing, making it better suited for large-diameter pipelines and applications requiring frequent operation. Choose based on your operating pressure, pipeline diameter, and frequency of valve actuation.
    Which surface strengthening process offers the best wear resistance for abrasive media?
    For highly abrasive or particle-laden media, thermal spraying of tungsten carbide (WC-Co) provides the highest wear resistance, achieving a surface hardness of HRC60~65 and extending service life by 8~12 times compared to untreated surfaces. Stellite alloy surfacing is also an excellent choice for combined wear and corrosion resistance, offering HRC58~63 hardness with a 10~15 times improvement factor. For less demanding conditions, nitriding or chrome plating may offer a more cost-effective solution.
    Can this plug directly replace existing plug valves without modifying the valve body?
    Yes. These plugs are designed and manufactured in strict accordance with international and domestic standards including GB, ANSI, API, and DIN. The dimensions and specifications are fully compatible with original parts from both domestic and international manufacturers of the same model. No modification to the valve body is required, and replacement can typically be completed by a single technician, minimizing equipment downtime.
    What leakage standards do these plugs meet?
    The plugs meet stringent international leakage standards. Metal hard seal versions comply with ANSI B16.104 Class V, while soft seal composite layer versions (with embedded PTFE, PFA, or rubber) comply with ANSI B16.104 Class VI — the highest leakage rating in the standard — making them suitable for zero-leakage applications in critical industries such as petrochemicals and pharmaceuticals.
    What temperature and pressure ranges are supported?
    Standard material plugs support a temperature range of -40℃ to +450℃ and pressure ratings from PN1.6MPa to PN160MPa (Class 150 to Class 2500). For extreme temperature environments, special material options extend the range to -196℃ (cryogenic) to +550℃. Compatible valve diameters cover DN10 to DN300 (3/8″ to 12″), accommodating a wide variety of industrial pipeline systems.
    What flow channel configurations are available, and which industries are they suited for?
    Three flow channel configurations are available: straight-through (low resistance, ideal for high flow rate pipelines in oil & gas and petrochemical applications), three-way (enables media reversing and diversion, commonly used in natural gas distribution and chemical processing), and four-way (supports multi-loop media switching, used in complex process systems in metallurgy and mining). The inner wall of all channels is polished to Ra≤0.8μm to minimize erosion and media deposition.

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