Valve Body Material: 7075-T6 GB/T3191-2010
Sealing Material: Polyvinylidene fluoride
Working Medium: Air, Nitrogen
Model: HY-PRV-HP-23-RE
Technical Parameters:
Valve Body Material: 7075-T6 GB/T3191-2010
Sealing Material: Polyvinylidene fluoride
Working Medium: Air, Nitrogen
Inlet Pressure: 5~23MPa
Outlet Pressure: 2.7MPa
High pressure gas pressure reducing valve (23MPa) for Rocket Engine Control System
When a rocket engine control system works with high-pressure gas, pressure control is not something we can take lightly. The gas may enter the system at a very high pressure, while downstream components may need a much more controlled and stable pressure. A reliable Pressure Reducing Valve helps create that controlled condition.
At Xi'an Huiyuan Instrument Valve Co., Ltd., we have been working in the fluid control field for decades. We develop and manufacture fluid Solenoid Valves, electrically controlled valves, pneumatically controlled valves, pressure reducing valves, and special non-standard valves for demanding industries. Aerospace, commercial spaceflight, nuclear power, shipbuilding, and research testing systems are among the fields we serve.
Our High pressure gas pressure reducing valve (23MPa) for rocket engine control system is designed for high-pressure gas control applications where pressure regulation, sealing, reliability, and system compatibility are important.
The 23MPa pressure level is a key feature of this product. However, we do not believe that selecting a valve should be based on one number alone. The actual gas medium, inlet pressure, required outlet pressure, flow rate, temperature, connection, installation space, leakage requirement, and control method all need to be considered.
That is why we work closely with customers when a valve is used in a rocket engine or aerospace testing system. Some projects can use a standard configuration, while others require a customized non-standard valve. We can discuss the technical requirements first and then develop the appropriate solution.
A pressure reducing valve has a straightforward job: it takes gas at a higher pressure and regulates it to a lower and more suitable pressure for the downstream system.
In a rocket engine control system, this function can be especially useful. Different parts of the system may not be designed to work directly with the pressure from a high-pressure gas source. A pressure reducing valve provides a controlled point between the high-pressure supply and the downstream equipment.
Our 23MPa high pressure gas pressure reducing valve is intended for high-pressure gas applications associated with rocket engine control systems and related fluid control equipment. The exact operating parameters are determined by the final engineering requirements.
In simple words, the valve helps make high-pressure gas easier for the rest of the system to handle.
Item
Product Information
Product name | High pressure gas pressure reducing valve (23MPa) for rocket engine control system |
Valve type | High pressure gas pressure reducing valve |
Pressure level | 23MPa high pressure application |
Target application | Rocket engine control system |
Other potential fields | Aerospace, commercial spaceflight, research and testing systems |
Product type | Standard or customized according to technical requirements |
Inspection | Pressure, sealing, regulation performance and appearance |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. company and product information supplied for this product page. The 23MPa value is based on the product name provided by the customer. Other technical values should be confirmed according to the final approved specification.
Gas behaves differently from many liquids. It can expand quickly when pressure changes, and small changes in valve opening can affect flow and downstream pressure. At high pressure, the design and sealing of the valve become even more important.
For this reason, we look at the valve as part of the whole fluid control system. We do not simply ask, “Can the valve handle 23MPa?” We also ask whether the valve is suitable for the gas, pressure range, flow condition, installation method, and required control performance.
The working principle is easier to understand than it may sound.
High-pressure gas enters through the inlet. Inside the valve, a regulating mechanism controls the gas passage. As the gas passes through the controlled opening, its pressure is reduced to the required downstream condition.
The valve then responds to downstream pressure changes through its regulating mechanism. If the downstream pressure changes, the valve can adjust the flow path to help maintain the desired pressure behavior.
The exact internal structure depends on the product design. Different projects may require different regulating mechanisms, sealing structures, connections, or control methods.
High-pressure gas enters the valve through the inlet.
The internal regulating mechanism controls the gas passage.
The gas pressure is reduced through the controlled flow path.
The downstream pressure is sensed by the regulating mechanism.
The valve adjusts its opening when the pressure condition changes.
Regulated gas is supplied to the downstream control system.
For a rocket engine control system, this process needs to be stable and predictable. A pressure reducing valve is therefore not just a simple pressure drop device. Its regulation behavior can affect the performance of the larger system.
Think about a water pipe in a building. If the water pressure from the main supply is too high for a smaller pipe or appliance, a pressure regulator can reduce the pressure before the water reaches that equipment.
The basic idea is similar here, but the engineering requirements are much more demanding because we are dealing with high-pressure gas and, in some applications, aerospace equipment.
When we develop a high pressure gas pressure reducing valve for aerospace use, we focus on practical details that affect real-world performance.
The valve is intended for a 23MPa high-pressure application according to the product designation. High-pressure service places greater demands on the valve body, internal components, sealing structure, connections, and manufacturing accuracy.
The purpose of the valve is not simply to reduce pressure once. It is designed to regulate downstream pressure according to the required operating conditions. This makes it useful in systems where stable gas pressure is important.
Gas medium is an important part of valve selection. Different gases can require different material and sealing considerations. We therefore confirm the actual medium before finalizing a customized valve solution.
Rocket engine control systems are often developed around specific equipment and project requirements. Dimensions, connections, pressure conditions, flow requirements, and installation arrangements can vary.
Our long experience with special non-standard products allows us to provide customized valve solutions when a standard catalog model does not fully meet the application.
Gas leakage is a key concern in high-pressure systems. We pay close attention to sealing performance during product development and conduct sealing inspections before delivery according to the applicable requirements.
Before shipment, we conduct inspections covering pressure performance, sealing performance, regulation performance, and external appearance. The detailed inspection and acceptance criteria depend on the approved technical specification.
For a rocket engine control system, a valve needs to fit into a larger engineering picture. We therefore consider several factors during technical discussions.
A downstream system often needs a controlled pressure condition rather than an uncontrolled pressure drop. Stable regulation can help downstream components work within their intended operating range.
At 23MPa, the valve must be designed with high-pressure service in mind. The pressure boundary, internal flow path, sealing structure, and connections all need to be evaluated together.
Pressure and flow are connected. The required flow rate affects the valve design and its regulation behavior. For this reason, we ask customers to provide normal and required flow conditions when requesting a customized valve.
High-pressure gas can escape through very small leakage paths. Proper sealing design and inspection are therefore essential parts of the product development and manufacturing process.
A valve is only useful if it fits the equipment around it. We consider connection type, interface dimensions, installation direction, available space, and other system requirements during technical communication.
Aerospace equipment may experience demanding environmental conditions. Temperature changes, vibration, pressure changes, and other conditions can influence valve performance. We use the customer's actual operating environment as the basis for technical evaluation.
Parameter to Confirm
Why It Is Important
Customer Information Needed
Inlet pressure | Defines the high-pressure operating condition | Normal and maximum inlet pressure |
Outlet pressure | Defines the downstream pressure requirement | Required regulated pressure |
Gas medium | Affects material and seal compatibility | Actual gas type |
Flow rate | Affects regulation and valve sizing | Normal and required flow |
Temperature | Can affect material and sealing behavior | Operating temperature range |
Connection | Ensures proper installation | Interface type and dimensions |
Leakage requirement | Important for gas service | Applicable acceptance standard |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. engineering and product development practice. This table is a practical selection guide and is not intended to represent universal specifications for all 23MPa pressure reducing valves.
Our main focus for this product is the rocket engine control system. At the same time, our broader pressure reducing valve technology can support many other fluid control applications.
Rocket engines use complex fluid systems, and gas pressure needs to be managed carefully. A high pressure gas pressure reducing valve can be used where high-pressure gas must be regulated before reaching another part of the control system.
The exact location and function of the valve depend on the rocket engine architecture and the customer's technical design.
Commercial aerospace is one of our important development directions. We develop core valves and fluid control systems for commercial rockets and satellites and work on products designed for demanding operating environments.
Testing systems often need customized fluid control components. Research and development projects may have special dimensions, pressure requirements, interfaces, or operating conditions that are not covered by standard industrial products.
We have experience providing special non-standard valves and testing system solutions for research institutes.
Pressure reducing valves are also widely used in industrial automation, petrochemical systems, natural gas equipment, ships, nuclear power, machinery, and experimental testing systems.
However, one important point should always be kept in mind: a valve designed for one application should not automatically be used in another application without technical verification.
Industry
Typical Pressure Control Requirement
Relevant Huiyuan Capability
Rocket engine systems | High-pressure gas regulation | Customized aerospace fluid control valves |
Commercial aerospace | Stable fluid control for rocket and satellite systems | Commercial aerospace valve development |
Research institutes | Special and non-standard pressure control | Customized valves and testing solutions |
Nuclear power | Controlled fluid pressure and flow | Specialized control valve experience |
Industrial automation | Pressure regulation and stabilization | Fluid control valve manufacturing |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. company information and product application information supplied for this page. The table summarizes application areas and does not mean that the same valve configuration is suitable for every industry.
We believe a high-pressure valve should be treated as an engineering product, not just a simple mechanical part. The manufacturing process, assembly quality, inspection, and technical communication all affect the final result.
For a customized 23MPa high pressure gas pressure reducing valve, we first review the customer's technical requirements. We look at the gas medium, pressure, flow, temperature, connection, installation conditions, sealing requirements, and control method.
If important information is missing, we prefer to clarify it before production. It is much easier to solve a design question at the beginning than after the valve has been manufactured.
After understanding the application, we determine the appropriate product structure and technical solution. For standard products, the process can be more straightforward. For non-standard products, the solution is developed according to the specific project requirements.
Production is arranged after the technical requirements are confirmed. The production cycle depends on the model, material, specification, and customization level.
Standard products can generally be arranged for faster delivery, while customized products require a production schedule based on the confirmed technical solution.
After component manufacturing, the valve is assembled according to the approved technical requirements. Special attention is paid to the internal regulating parts, sealing structure, and connections because these areas directly affect valve performance.
Before delivery, we conduct inspections covering pressure performance, sealing performance, regulation performance, and external appearance.
The exact inspection procedure and acceptance criteria are determined according to the applicable standards and customer requirements.
Once inspection is completed, we select suitable packaging according to the product size, weight, and transportation conditions. Moisture-resistant and shock-resistant cartons, wooden cases, or pallets may be used.
Transportation can be arranged through logistics, express delivery, or dedicated transportation services according to the order requirements.
Stage
Standard Product
Customized Product
Technical review | Basic specification confirmation | Detailed engineering review |
Production schedule | Usually faster | Based on confirmed technical solution |
Inspection | Standard inspection requirements | According to approved project requirements |
Packaging | Carton or suitable packaging | Carton, wooden case or pallet as required |
Transportation | Logistics, express or dedicated line | Selected according to product and project conditions |
Source: Xi'an Huiyuan Instrument Valve Co., Ltd. production, inspection, payment, packaging, and delivery information supplied for this product category. Actual lead time and delivery arrangements are confirmed for each order.
When customers contact us about a high-pressure aerospace valve, they are usually looking for more than a product catalog. They need a supplier that understands fluid control and can communicate about the technical details.
That is one of the areas where our long experience is useful.
Xi'an Huiyuan Instrument Valve Co., Ltd. was formerly the Solenoid Valve Branch of Xi'an Instrument Factory and was restructured into a joint-stock company in early 1994.
Today, we integrate technology development, manufacturing, and technical services. Our product range includes fluid solenoid valves, electric control valves, pneumatic control valves, pressure reducing valves, and special non-standard valves.
We have supplied specialized control valves for aerospace, commercial spaceflight, military-related applications, nuclear power, shipbuilding, and research institutes.
In commercial aerospace, we develop core valves and fluid control systems adapted to commercial rockets and satellites. We focus on the practical needs of demanding equipment rather than treating aerospace as simply another industrial market.
Some projects need a valve that does not exist as a standard catalog product. We have long been involved in special non-standard products and can discuss customized valve structures and technical solutions based on customer requirements.
Our company has been recognized as a High-Tech Enterprise and a Contract-Abiding and Creditworthy unit. We were also among the first in the regional industry to pass ISO9001:2015, CE, SIL3 mandatory safety, and 3C mandatory certifications for explosion-proof electrical equipment within the relevant product scope.
Our electric control valves have repeatedly received recognition as Advanced Quality Products and Xi'an Famous Brand Products.
For us, quality is not only a certificate. It is part of how we approach design, production, inspection, and customer service.
We can support customers from initial technical discussion through product manufacturing and final delivery. If the product is customized, we can discuss the operating conditions and technical requirements before production begins.
Our basic working principles are simple: innovation, quality, and service.
This valve is designed for high-pressure gas pressure regulation in rocket engine control systems and related aerospace fluid control applications. The exact application should be confirmed according to the customer's system design.
23MPa identifies the high-pressure level specified for this product. It does not automatically mean that the outlet pressure is 23MPa. A pressure reducing valve normally reduces high-pressure gas to a lower controlled pressure. The exact inlet and outlet pressure requirements must be confirmed in the final technical specification.
The gas medium must be confirmed before final valve selection. Different gases may require different material, sealing, cleanliness, or safety considerations. We evaluate the actual medium as part of the technical process.
Yes. We have extensive experience with special non-standard valves. Customized solutions can be discussed according to pressure, gas medium, flow, connection, installation conditions, sealing requirements, and other technical parameters.
For an accurate quotation and technical evaluation, we recommend providing the gas type, inlet pressure, required outlet pressure, flow rate, temperature range, connection dimensions, installation conditions, leakage requirements, drawings, and applicable technical standards.
The production cycle depends on the model, material, specification, and customization requirements. Standard products can usually be delivered more quickly. Customized products are scheduled after the technical solution is confirmed.
Before delivery, we conduct inspections covering pressure performance, sealing performance, regulation performance, and appearance. The detailed testing method and acceptance criteria depend on the approved product and project requirements.
We select packaging according to the product size, weight, and transportation conditions. Moisture-resistant and shock-resistant cartons, wooden cases, or pallets can be used to protect the valve during transportation.
Payment can be arranged by advance payment, payment before shipment, or other terms agreed in the contract. The final arrangement depends on the specific order or project.
Yes. We have experience providing customized non-standard valves and testing system solutions for research institutes. We can discuss special requirements and develop a suitable fluid control solution based on the project.
A High pressure gas pressure reducing valve (23MPa) for rocket engine control system may be a relatively small component, but pressure control can have a major effect on the operation of a larger fluid system.
For high-pressure gas applications, we focus on the complete picture: pressure, flow, gas medium, sealing, regulation behavior, connection, installation, environmental conditions, manufacturing, and inspection.
At Xi'an Huiyuan Instrument Valve Co., Ltd., our decades of fluid control experience and long involvement in special non-standard products allow us to support customers in aerospace, commercial spaceflight, nuclear power, research testing, and other demanding industries.
Our 23MPa high pressure gas pressure reducing valve is intended for applications where controlled gas pressure and reliable fluid management are important. If your rocket engine control system has special requirements, we can work from your technical specification, drawing, or system requirements to discuss the appropriate valve solution.
We believe the best valve is not simply the one with the right pressure rating. It is the one that fits the actual system, works as expected, passes the required inspections, and can be supported throughout the project.
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