inquiry
Inquiry
Form loading...

FAAV Ceramic A Valve: High-Quality China Suppliers and Factory for Zero Leakage and Long Sealing Life

,

Structural Features of Our Valves Made in China

,

Our valves are fully ceramic-lined with hard sealing technology, which maintains a consistent fluid flow direction while eliminating bias flow erosion in downstream pipelines. As leading suppliers in the industry, we ensure that there is no relative frictional wear in the sealing pair, resulting in an extended sealing lifespan. The short stroke valve core design, along with a short cantilever, offers superior vibration resistance compared to traditional Globe valves when fully closed. Furthermore, the simple flow path shape is engineered without dead spaces or stagnant zones, effectively preventing scaling or blockage. Our products are capable of achieving tight shutoff, ensuring zero leakage and complying with the highest sealing standards. Trust our factory for reliable and efficient valve solutions that meet your needs.

,

    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
    Frequently Asked Questions (FAQ)
    Q
    What is the difference between Y-TZP (Y-ZrO₂) and M-PSZ (Mg-ZrO₂) ceramic materials?
    Y-TZP (Yttria-stabilized Tetragonal Zirconia Polycrystal) offers higher density (6.0–6.05 g/cm³) and excellent flexural strength (1150 MPa), making it ideal for high-load mechanical applications. M-PSZ (Magnesia Partially Stabilized Zirconia) provides slightly better fracture toughness (13–15 MPa√m) and higher thermal shock resistance (110°C), making it more suitable for applications requiring thermal cycling resistance.
    Q
    Which ceramic material is best for high-temperature applications?
    For high-temperature environments, 99 Al₂O₃, Si₃N₄, and SiC are the top choices, each supporting operating temperatures up to 1500°C. Si₃N₄ also offers outstanding thermal shock resistance (200°C), making it particularly suitable for environments with rapid temperature changes.
    Q
    How does ZrO₂ ceramic perform against strong acids and alkalis?
    ZrO₂ (Zirconia) ceramic demonstrates excellent corrosion resistance (Grade A) against most strong acids including HCL, H₂SO₄, H₃PO₄, and HNO₃, as well as alkalis such as NaOH. The only exception is HF (hydrofluoric acid), where ZrO₂ receives a Grade C rating and is not recommended for use. For HF environments, SiC is the preferred ceramic material.
    Q
    What do the corrosion resistance grades A, B, and C mean in the reference table?
    The grades indicate the corrosion rate of the material in a given medium: Grade A (≤ 0.1 mmg/cm²/day) means negligible or no corrosion — recommended for use. Grade B (0.1–0.3 mmg/cm²/day) means slight corrosion — use with caution. Grade C (≥ 0.3 mmg/cm²/day) means significant corrosion — not recommended. A "--" rating indicates intense corrosion beyond measurable limits.
    Q
    How do I select the correct ceramic ball valve core type (O-type or V-type) for my application?
    The O-type ball core provides the highest flow coefficient (Cv) and is ideal for full-bore, on/off control applications where maximum flow is required. V-type ball cores (V60°, V45°, V30°) offer progressively reduced flow coefficients, providing better throttling and proportional flow control. The V30° core gives the finest flow regulation and is suited for precision control processes.
    Q
    Why is ceramic preferred over stainless steel (SS304/SS316) in corrosive media applications?
    As shown in the anti-corrosive performance table, stainless steel grades SS304 and SS316 receive Grade C ratings (significant corrosion) in many common acid environments such as HCL, H₂SO₄, and H₃PO₄, and even show unmeasurable corrosion ("--") in concentrated HCL at 95°C. In contrast, ceramic materials such as ZrO₂, Al₂O₃, and SiC consistently achieve Grade A ratings in the same conditions, offering far superior chemical resistance, longer service life, and reduced maintenance costs.

    Leave Your Message