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H64Y Self-Sealing Power Plant Check Valve Overview
The H64Y Self-Sealing Power Plant Check Valve is a specialized check valve that utilizes pressure self-tightening sealing technology, specifically designed for ultra-high-pressure and high-temperature power plant systems. The valve body is forged from high-strength alloy steel, with its core innovation lying in the self-tightening sealing structure of the bonnet. This design leverages system pressure to achieve sealing—the higher the pressure, the more reliable the sealing performance. Featuring a swing-type structure, the valve opens as the disc is pushed by forward-flowing medium and closes rapidly and automatically under the disc's own weight and reverse pressure. This product is exclusively used in critical sections of supercritical and ultra-supercritical power plants, such as main steam pipelines and high-pressure feedwater systems. It can withstand extreme temperatures and pressures, effectively preventing the backflow of high-temperature, high-pressure steam or feedwater. As such, it is a core component ensuring the safe operation of modern high-parameter power generation units.

H64Y Self-Sealing Power Plant Check Valve Product Image
H64Y Self-Sealing Power Plant Check Valve Features
1. Pressure Self-Tightening Bonnet Seal
The innovative self-tightening seal design converts system operating pressure into sealing force, achieving tighter sealing under higher pressure. This completely eliminates the leakage risks associated with traditional flange bolted connections under ultra-high pressure conditions.
2. Ultra-High Parameter Endurance Capability
Constructed from premium heat-resistant alloy steels (e.g., F92/F22), subjected to precision forging and heat treatment, the valve can withstand operating temperatures exceeding 600°C and extreme pressures above Class 4500.
3. High-Performance Hard Alloy Sealing Surfaces
The sealing surfaces of the disc and seat are overlay-welded with cobalt-based or nickel-based hard alloys, offering excellent resistance to high-temperature oxidation, erosion, and thermal fatigue. This ensures long-lasting sealing performance under extreme operating conditions.
4. Fully Welded Leak-Free Connection
The valve body features butt-weld ends that are permanently welded to the pipeline, completely eliminating potential leakage points at removable connections and meeting the highest safety standards for power plants.
5. Long Service Life and High Reliability
Designed for the lifecycle of power plant applications, the valve features a robust structure and reliable operation. From design and material selection to manufacturing and testing, the entire process adheres to the strictest standards such as ASME, ensuring stable performance throughout the operational life of the unit.

H64Y Self-Sealing Power Plant Check Valve Structure Diagram
Parts Name Material List
| 序 号NO. | 名称Name | 材料Material |
| 5 | 摇杠lever | 碳钢、合金钢Carbon Steel, Alloy Steel |
| 4 | 填料packing | 增强柔性石墨Enhanced Flexible Graphite |
| 3 | 阀瓣disc | 碳钢、合金钢堆STL Carbon Steel, Alloy Steel Stack (STL) |
| 2 | 阀盖bonnet | 碳钢、合金钢Carbon Steel, Alloy Steel |
| 1 | 阀体body | 碳钢、合金钢Carbon Steel, Alloy Steel |
| 性能规范表Performance Specification | ||
| 公称压力Nominal Pressure | 20-32 | Mpa |
| 强度试验压力Shell Test | 30-48 | |
| 密封试验压力Seal Test | 22-35.2 | |
| 适用温度Suitable Temp. | ≤540 | ℃ |
Dimensions Standard Requirements
1. The structural length of the valve shall conform to the standard GB/T 12221.
2. The connecting flange shall conform to the standard GB9131.

H64Y Self-Sealing Power Plant Check Valve View Drawing
H64Y Self-Sealing Power Plant Check Valve Dimensions Table
| 型 号 | 公称通径DN(mm) | 主要外形尺寸及连接尺寸(mm) | 重量wt(kg) | |
| L | H | |||
| H64Y-200 | 50 | 350 | 250 | 50 |
| 65 | 430 | 282 | 57 | |
| 80 | 470 | 325 | 65 | |
| 100 | 600 | 350 | 80 | |
| 175 | 900 | 440 | 180 | |
| H64Y-320 | 125 | 900 | 409 | 170 |
| 225 | 000 | 550 | 415 | |
| 300 | 1370 | 680 | 1200 | |
| 350 | 1370 | 745 | 1638 | |

Model:
HC44X-10Q/HC44X-16Q/HC44X-25Q/HC44X-25C/HC44X-16C/HC44X-16P/HC44X-25PSpecification:
DN50-DN600Pressure:
PN10,PN16,PN25Material:
Ductile iron,cast iron,stainless steel
Model:
H44T-10/H44T-16Specification:
DN40-400Pressure:
PN10,PN16Material:
Grey iron
Model:
HH49X-10Q/HH49X-16Q/HH49X-25Q/HH49X-10C/HH49X-16C/HH49X-25C/HH49X-25PSpecification:
DN50-DN1000Pressure:
PN10,PN16,PN25Material:
Ductile iron,cast iron,carbon steel, stainless steel
Complete Guide to Check Valve Selection and Installation: Detailed Explanation of Principles, Selection, and Key Construction Points Check valves, as crucial safety components in pipeline systems, are essential for preventing medium backflow and ensuring safe system operation. This article will provide you with a comprehensive guide to the selection and installation of check valves.
1. Operating Principle and Classification of Check Valves 1.1 What is a Check Valve?
Check valves, also known as one-way valves or non-return valves, belong to the category of automatic valves. Their working principle is to achieve opening and closing through the flow force of the medium itself. Their core function is to prevent the reverse flow of pipeline medium and ensure one-way flow.
1.2 Main application scenario: foot valve (a special type of check valve) at the water pump suction inlet
Various pipeline systems requiring unidirectional flow of medium
Industrial settings where accidents caused by medium backflow are to be prevented
II. Selection Criteria and Guidelines for Check Valves 2.1 Basic Selection Principles Medium Adaptability: Suitable for clean medium conditions, not recommended for pipelines containing solid particles or high viscosity media.
2.2 Selection of pipeline size (DN) based on pipeline size. Recommended valve types. Applicable pressure range: DN<50mm. Butterfly check valve, vertical lift check valve, diaphragm check valve. Low-pressure environment: 50mm
Advantages: Effectively eliminates the water hammer phenomenon
Limitations: Subject to temperature and pressure constraints, suitable for low-pressure and normal-temperature pipelines
Applicable scenario: Water supply pipelines prone to water hammer
Slow-closing check valve:
Slow-closing swing check valve
Slow-closing butterfly check valve
Applicable scenario: pipeline systems that require minimal or no water hammer impact when shut down
III. Installation specifications and construction requirements for check valves 3.1 Preparatory work before installation Appearance inspection:
Check the valve nameplate information to ensure compliance with the GB 12220 "General Valve Marking" standard
Check the integrity of the valve and confirm that it is undamaged
Pressure test requirements:
If the working pressure exceeds 1.0 MPa or the main pipe shut-off valve is involved, a pressure test must be conducted
Strength test: Nominal pressure × 1.5, duration ≥ 5 minutes, no leakage is considered as qualified
Tightness test: nominal pressure × 1.1, determine the duration according to GB 50243 standard
3.2 Installation location and direction: Strictly follow the design drawings to determine the location, height, and inlet and outlet directions
Flow direction indicator: Ensure that the flow direction of the medium is completely consistent with the direction indicated by the arrow on the valve body
Pipe support:
It is prohibited to let the check valve bear the weight of the pipeline
Large check valves must be equipped with independent support structures
Avoid direct impact of piping pressure on the valve
3.3 Lift check valves are required for specific types of installations:
Vertical flap type: It must be installed on a vertical pipeline
Horizontal flap type: It must be installed on a horizontal pipeline
Swing check valve:
Ensure that the valve disc's rotating shaft is in a horizontal position during installation
Special attention should be paid to the flow direction of the medium during inclined installation
IV. Common Installation Errors and Precautions 4.1 Example of Incorrect Installation: Installing a Vertical Lift Check Valve on a Horizontal Pipe
The valve flow direction is reversed
Large valves have no independent support
Pressure testing was not conducted according to specifications
4.2 The selection and installation location of check valves should be considered during the design phase of the professional advice system
Provide complete operating condition parameters to the supplier during procurement to obtain professional selection advice
For complex systems, it is recommended to consult a professional valve engineer
Conduct regular maintenance and inspection to ensure the check valve operates in normal condition
5. Maintenance points: Regularly check whether the valve can be opened and closed flexibly
Monitor for abnormal sounds, such as water hammer impact
Check the sealing performance to prevent internal leakage
Lubricate the moving parts to ensure normal operation
The correct selection and installation of check valves are crucial for ensuring the safe operation of pipeline systems. Following the selection guidelines and installation specifications provided in this article can prevent various accidents caused by medium backflow, extend the service life of valves, and reduce maintenance costs.
In practical applications, it is recommended to consider specific engineering requirements and medium characteristics, and if necessary, consult professional valve technicians to ensure the optimization of the selection and installation plan.