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China Suppliers Factory FCCV Unlined Hard Ceramic Ball Valve for Corrosive Media and Abrasive Slurries
Structural Characteristics and Advantages
- Three-piece floating ball structure for easy maintenance and reliable sealing.
- Connection options: internal thread, butt weld, and flange (standards DIN/ANSI/API/JIS available).
- Sealing design: ceramic-to-ceramic main seal with graphite auxiliary seal, ensuring leak-free operation up to 500°C.
- Full-bore passage minimizes pressure loss and prevents blockage when handling particulate or fibrous media.
- High strength ceramic ball and seat resist abrasion far beyond traditional metal valves.
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.
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 |
Application Fields
🏭 Steel industry: coal powder injection, hot metal desulfurization, silica and MgO handling.
💨 Gas and pneumatic conveying: sand, glass particles, cement, ore, and dust.
⚡ Power plants: flue gas dust handling and abrasive ash systems.
Thanks to its robust design and unlined ceramic construction, the FCCV unlined hard ceramic ball valve provides long service life, reduced downtime, and excellent cost-performance ratio in environments where conventional alloy valves fail. It is the preferred choice for industries demanding maximum reliability under abrasive and high-temperature conditions.
Frequently Asked Questions (FAQ)
What makes the FCCV unlined hard ceramic ball valve different from standard metal ball valves?
The FCCV ceramic ball valve uses a high-strength ceramic ball and seat instead of metal components, providing far superior abrasion resistance, corrosion resistance, and a longer service life in harsh industrial environments where conventional metal valves fail prematurely.
What is the maximum operating temperature for the FCCV ceramic ball valve?
The valve features a ceramic-to-ceramic main seal with a graphite auxiliary seal, ensuring leak-free and reliable operation at temperatures up to 500°C, making it suitable for high-temperature industrial applications.
What connection standards are available for the FCCV ceramic ball valve?
The FCCV valve supports multiple connection options including internal thread, butt weld, and flange connections. It is compatible with international standards such as DIN, ANSI, API, and JIS, offering flexibility for global industrial installations.
Which ceramic material is recommended for highly corrosive acid environments?
For most strong acid environments such as HCL, H₂SO₄, and HNO₃, ZrO₂ (Y-TZP) and 99.9% Al₂O₃ are rated "A" (no significant corrosion) and are recommended. SiC also performs excellently across a wide range of acid and alkali media.
Is the FCCV ceramic ball valve suitable for media containing solid particles or fibers?
Yes. The full-bore passage design minimizes pressure loss and prevents blockage when handling particulate or fibrous media. Combined with the ceramic's extreme hardness (up to HRA 94), it is specifically engineered for abrasive slurry, powder, and solid-laden fluid applications.
What industries typically use the FCCV unlined hard ceramic ball valve?
The FCCV ceramic ball valve is widely used in the steel industry (coal powder injection, desulfurization), gas and pneumatic conveying systems (cement, ore, sand), and power plants (flue gas dust handling, abrasive ash systems). It is the preferred solution wherever abrasion and high temperatures are key challenges.



