Chemical Reagents CF8m High Pressure DN15 DN65 Class 300 Designed Forged Ball Valve
Product Details
| Customization: | Available |
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| Media: | Oil |
| Material: | Stainless Steel |
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Basic Info.
- Connection Form
- Flange/Thread/Welding
- Driving Mode
- Electric,Manual
- Nominal Pressure
- PN1.0-32.0MPa
- Channel
- Straight Through Type
- Structure
- Hard Seal/Soft Seal
- Type
- Ultra-Low Temperature Ball Valve
- Function
- Gas,Oil,Water,Chemical,Steam
- Temperature
- Ultralow Temperature
- Standard
- En593 BS5155 En1092 ISO5211
- Application
- Industrial Usage, Water Industrial Usage, Household Usage
- Size
- 1/2 in-10 in
- Product Name
- Flange Floating Ball Valve
- Operating Temp Range
- 32-150f
- Warranty
- 2 Years
- Transport Package
- Wooden Case
- Specification
- customized
- Trademark
- Yoonad
- Origin
- China
- HS Code
- 8481804090
- Production Capacity
- 10000PCS/Year
Packaging & Delivery
- Package Size
- 120.00cm * 80.00cm * 80.00cm
- Package Gross Weight
- 60.000kg
Product Description


Product Description
The ultra-low temperature ball valve is a specialized flow control device engineered to regulate media flow in extreme cold conditions, ranging from -40°C to -200°C. Designed with a focus on cryogenic adaptability, its core structure includes a forged body (typically stainless steel or alloy steel), a precision-machined ball, and a low-temperature-resistant seal (commonly PTFE or perfluoroelastomer). These components are optimized to avoid brittleness and deformation under severe cold, ensuring stable performance in harsh cryogenic environments.
A key feature of this valve is its enhanced sealing design. The low-temperature seal materials maintain elasticity even at ultra-low temperatures, forming a tight, leak-proof bond between the ball and seat to prevent media leakage. Its 90° rotary ball mechanism enables quick on-off control with minimal torque, while the valve body's thickened wall structure and thermal insulation layer reduce heat exchange with the external environment, avoiding frost formation and ensuring operational safety.
Ideal for industries handling liquefied natural gas (LNG), liquid nitrogen, liquid oxygen, and other cryogenic fluids, this valve plays a critical role in gas processing, aerospace, and semiconductor manufacturing. It combines cryogenic durability, reliable sealing, and user-friendly operation, making it an essential component for low-temperature fluid management systems.




Product Advantages
A – Exceptional Cryogenic Resistance
Engineered to withstand extreme low temperatures ranging from -40°C to -269°C. Maintains structural integrity and sealing performance in harsh cryogenic environments, suitable for LNG, liquid oxygen, and liquid nitrogen applications.
Engineered to withstand extreme low temperatures ranging from -40°C to -269°C. Maintains structural integrity and sealing performance in harsh cryogenic environments, suitable for LNG, liquid oxygen, and liquid nitrogen applications.
B – Bubble-Tight Sealing Under Extreme Cold
Adopts low-temperature-resistant sealing materials (PTFE composites, metal gaskets) that retain elasticity and tightness even at ultra-low temperatures. Prevents media leakage and ensures safe, reliable isolation of cryogenic fluids.
Adopts low-temperature-resistant sealing materials (PTFE composites, metal gaskets) that retain elasticity and tightness even at ultra-low temperatures. Prevents media leakage and ensures safe, reliable isolation of cryogenic fluids.
C – Robust & Corrosion-Resistant Construction
Crafted from premium stainless steel (304/316), nickel alloys, or titanium. Resists cryogenic embrittlement, corrosion, and wear,extending service life in aggressive industrial scenarios.
Crafted from premium stainless steel (304/316), nickel alloys, or titanium. Resists cryogenic embrittlement, corrosion, and wear,extending service life in aggressive industrial scenarios.
D – Smooth & Efficient Flow Control
90° rotary ball design with a full-port bore ensures unobstructed flow path. Minimizes pressure drop and energy loss during cryogenic fluid transfer, optimizing system operational efficiency.
90° rotary ball design with a full-port bore ensures unobstructed flow path. Minimizes pressure drop and energy loss during cryogenic fluid transfer, optimizing system operational efficiency.
E – Anti-Icing & Jam-Free Operation
Equipped with reinforced valve stems and anti-icing stem extensions. Prevents external moisture from freezing and jamming the actuation mechanism, ensuring stable performance in cold conditions.
Equipped with reinforced valve stems and anti-icing stem extensions. Prevents external moisture from freezing and jamming the actuation mechanism, ensuring stable performance in cold conditions.
F – Versatile Application Compatibility
Suitable for diverse cryogenic systems including LNG terminals, cryogenic storage facilities, aerospace fuel systems, and
industrial gas processing plants. Adapts to both on-off and throttling control needs.
Suitable for diverse cryogenic systems including LNG terminals, cryogenic storage facilities, aerospace fuel systems, and
industrial gas processing plants. Adapts to both on-off and throttling control needs.
G – Low-Maintenance Design
Fewer moving parts and durable cryogenic-grade components reduce wear and failure risks. Requires minimal maintenance, lowering long-term operational and replacement costs for cryogenic systems.
Fewer moving parts and durable cryogenic-grade components reduce wear and failure risks. Requires minimal maintenance, lowering long-term operational and replacement costs for cryogenic systems.


Product Model | DN | (mm) | (kg) | |||
L | D1 | D2 | H | |||
J61H-200 J61Y-200 J961H-200 J961Y-200 | 20 | 170 | 22 | 42 | 480 | 38 |
25 | 170 | 27 | 42 | 520 | 41 | |
32 | 200 | 34 | 52 | 728 | 58 | |
50 | 350 | 53 | 76 | 728 | 89 | |
80 | 500 | 86 | 108 | 798 | 135 | |
100 | 600 | 107 | 161 | 890 | 190 | |
J61Y-250 J61Y-320 J961H-250 J961Y-320 | 20 | 150 | 25 | 40 | 576 | 47 |
25 | 170 | 27 | 42 | 585 | 49 | |
32 | 180 | 32 | 55 | 606 | 52 | |
50 | 250 | 50 | 83 | 722 | 73 | |
80 | 470 | 80 | 105 | 895 | 225 | |
100 | 600 | 100 | 142 | 1179 | 296 | |
mm | ||||||
Type | DN | (mm)Mainexternalandconnectingdimensions | (kg) | |||
L | D1 | D2 | H | |||
J61Y-P54100V J61Y-Ps4100V J961Y-Ps4100V J961Y-Ps4100V | 20 | 170 | 22 | 42 | 480 | 38 |
25 | 170 | 27 | 42 | 520 | 41 | |
32 | 200 | 34 | 52 | 728 | 58 | |
50 | 350 | 53 | 76 | 728 | 89 | |
80 | 500 | 86 | 108 | 798 | 135 | |
100 | 600 | 107 | 161 | 890 | 190 | |
J61Y-Ps4170V J61Y-Ps4195V J961Y-Ps4170V J961Y-Ps4195V | 20 | 150 | 25 | 40 | 576 | 47 |
25 | 170 | 27 | 42 | 585 | 49 | |
32 | 180 | 32 | 55 | 606 | 52 | |
50 | 250 | 50 | 83 | 722 | 73 | |
80 | 470 | 80 | 105 | 895 | 225 | |
100 | 600 | 100 | 142 | 1179 | 296 | |

How dose valve work?
An ultra-low temperature ball valve operates via a cryogenically optimized rotary mechanism, engineered to regulate cryogenic fluids (e.g., LNG, liquid nitrogen) reliably at temperatures as low as -269°C. Its core components include a high-strength ball (floating or trunnion-mounted), cryo-resistant seals (PTFE composites or metal), a reinforced stem, and an anti-icing actuation system—all housed in a stainless steel or nickel alloy body to avoid embrittlement.
During forward flow control, the valve's actuator (manual, pneumatic, or electric) drives a 90° rotation of the stem and attached ball. When the ball's precision-machined bore aligns with the pipeline axis, cryogenic fluid flows through unobstructed. The full-port bore design minimizes pressure drop, critical for maintaining efficiency in cryogenic transfer systems.
To shut off flow, the actuator rotates the ball 90°, positioning its solid spherical surface against the low-temperature seals.These seals retain elasticity even in extreme cold, forming a bubble-tight barrier that prevents leakage of volatile cryogens. A key anti-icing feature—extended stem or heating elements—blocks external moisture from freezing on the stem, avoiding jamming that could disrupt operation.
For throttling, partial rotation of the ball adjusts the bore's alignment with the pipeline, modulating flow rate. The robust material selection and simplified moving parts ensure durability under thermal cycling, making the valve essential for LNG terminals, cryogenic storage, and aerospace fuel systems.

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