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Ceramic Globe Valve Suppliers in China - High-Quality Factory Solutions for Flow Regulation and Isolation

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Overview:
Discover our premium ceramic globe valve, specifically engineered for the isolation and flow regulation of slurries, gas-solid particulate media, and gas-solid-liquid three-phase media. Manufactured in China by leading suppliers, this valve guarantees smooth operation without the risk of jamming or clogging. Its long-lasting effective sealing enhances valve service life, ensuring stable and prolonged cycle operation within any system.

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Performance Characteristics: Our ceramic globe valve features a high-performance valve core, seat, and other flow-through components crafted from advanced structural ceramic materials. This design offers exceptional adjustment precision and superior erosion resistance. The valve supports various adjustment curves, including equal percentage control, linear control, and customized control options tailored to specific needs. As a trusted factory in China, we are committed to providing high-quality solutions for your industrial requirements.

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    Applicable Conditions
    • Precise flow regulation
    • Multi-stage pressure reduction
    • Noise reduction applications
    Ceramic Globe Valve (3)
    Main Technical Parameters
    Item Y-ZrO Y-TZP Mg-ZrO₂ M-PSZ 90 Al₂O₃ 95 Al₂O₃ 99 Al₂O₃ Si₃N₄ SiC Common ceramics Carbide alloy 45# Steel
    Density g/cm³ 6.0~6.05 5.72~5.74 3.45~3.55 3.6~3.75 3.9~3.95 3.2~3.33 3.15~3.25 3.0~3.5 14~18 7.8
    Hardness HRA/C 87 85 90 90 92 92 94 50~60 70 36
    Flexural Strength MPa 1150 900 350 370 450 1200 470 20~50 2000 804
    Fracture Toughness (KIC) MPa√m 10~12 13~15 3.4 3.6 4.5 7 4 -- 20 101
    Compressive Strength MPa 2000 1800 1700 2000 2200 2800 -- -- 4000 2000
    Thermal Shock Resistance °C 87 110 -- -- 50 200 75 -- 500 500
    Thermal Expansion Coefficient ×10⁻⁶/°C 9.6 10 7.6 7.8 8.3 3.4 4 -- 7 12
    Modulus of Elasticity GPa 200 200 310 330 350 300 400 -- 600 --
    Crushing Load KN (Φ6mm) 15 10 3.5 3.6 4 18 3.5 -- -- --
    Using Temperature °C <160 <1000 <1200 <1250 <1500 <1500 <1500 -- -- <560
    Water Absorption 0 0 0.02% 0.01% 0.00% 0 0.50% 5~10% -- --
    Corrosion Prevention Good Good Good Good Good Good Good Flooey Good Flooey
    * Data sources: test results or issued original documents.
    product-description1
    Anti-Corrosive Performance Reference Table
    Media Temperature ZrO₂ 99.9% Al₂O₃ SiC Si₃N₄ Graphite PTFE Fluororubber SS304 SS316 HC
    20% HCL 60°C A A A B A A A C C B
    20% HCL 95°C A A A C A A A -- -- C
    90% H₂SO₄ 60°C A A A A A A A C C B
    90% H₂SO₄ 95°C A A A B A A A C C C
    60% H₃PO₄ 60°C A A A C A A A C C A
    60% H₃PO₄ 95°C A A A C A A A C C A
    10% HF 60°C C B A A A A A C C B
    46% HF 95°C C C A C A A A -- -- C
    60% HNO₃ 60°C A A A C B A A A A C
    60% HNO₃ 95°C A B A C B A A B B C
    30% NaOH 60°C A B A B A A A A A A
    30% NaOH 95°C B B A C A A A A B A
    A ≤ 0.1 mmg/cm²/day: Can be ignored or has no corrosion, recommended for use.
    B = 0.1~0.3 mmg/cm²/day: Slight or very minor corrosion, use with caution.
    C ≥ 0.3 mmg/cm²/day: Significant corrosion, not recommended for use.
    -- : Intense corrosion, to the extent that measurement is not possible.
    Flow Characteristic Sheet of Ceramic Ball Valve
    Core Specifications O-type ball core V60° ball core V45° ball core V30° ball core
    DN15 10 7 4 3
    DN20 18.2 12 8 5
    DN25 29 18 12 8
    DN32 47 30 20 13
    DN40 73 46 31 21
    DN50 114 72 48 32
    DN65 181 115 76 51
    DN80 292 185 123 82
    DN100 456 289 192 128
    DN125 712 452 300 201
    DN150 1025 650 432 289
    DN200 1822 1156 769 514
    Typical Applications
    Ceramic Globe Valve (4)
    • Coal Chemical Industry: Black and grey water flow control valve
    • Silicon Chemical Industry: Chlorosilane flow control; reduction tail gas regulation
    • Salt Chemical Industry: Particle-laden hydrochloric acid and sulfuric acid solutions
    • Waste Incineration Power Plants: Limestone slurry atomization flow control valve
    Frequently Asked Questions (FAQ)
    What are the main applicable conditions for a Ceramic Globe Valve?
    Ceramic Globe Valves are primarily used for precise flow regulation, multi-stage pressure reduction, and noise reduction applications. Their advanced ceramic internals provide exceptional durability and control accuracy in demanding industrial environments.
    Which ceramic material offers the best fracture toughness for globe valve applications?
    Among the listed ceramic materials, Mg-ZrO₂ (M-PSZ) offers the highest fracture toughness at 13~15 MPa√m, followed by Y-ZrO (Y-TZP) at 10~12 MPa√m. These zirconia-based ceramics are recommended for applications requiring superior impact and crack resistance.
    How does the corrosion resistance of ZrO₂ ceramic compare to stainless steel in acidic media?
    ZrO₂ ceramic significantly outperforms stainless steel (SS304 and SS316) in most acidic environments. For example, in 20% HCL at 60°C and 90% H₂SO₄ at both 60°C and 95°C, ZrO₂ rates "A" (no corrosion), while SS304 and SS316 rate "C" (significant corrosion, not recommended). The exception is HF environments, where ZrO₂ rates "C".
    What industries commonly use Ceramic Globe Valves?
    Ceramic Globe Valves are widely used across several demanding industries, including Coal Chemical Industry (black and grey water flow control), Silicon Chemical Industry (chlorosilane flow control), Salt Chemical Industry (handling particle-laden acid solutions), and Waste Incineration Power Plants (limestone slurry atomization flow control).
    What is the maximum operating temperature for 99 Al₂O₃ ceramic used in globe valves?
    99 Al₂O₃ ceramic can withstand operating temperatures of up to 1500°C, making it one of the highest-rated materials in the comparison table. It also features zero water absorption and excellent corrosion prevention, making it highly suitable for high-temperature industrial applications.
    How do I select the right ball core type (O-type or V-type) for my ceramic ball valve application?
    The O-type ball core provides the highest flow capacity (Cv), making it suitable for on/off and full-flow applications. V-type ball cores (V60°, V45°, V30°) offer progressively reduced flow coefficients and are designed for precise flow regulation and throttling control. The smaller the V-angle, the finer the flow control, which is ideal for applications requiring accurate dosing or proportional control.

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