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Airborne solenoid valve

Model: HY-SV-AB

Technical Parameters:

Nominal Diameter: DN2

Control Method: Normally Closed Type

Working Medium: 4050 Lubricating Oil

Working Pressure: 0~4.3MPa

Flow Rate: ≤3L/min (1.7MPa), ≤2.3L/min (0.8MPa)

Medium Temperature: -20~+160℃

Working Voltage: 27V DC

Power: 32W


<span style="font-size: 16px;"><a href='https://ja.hyspecialvalve.com/tag/airborne-solenoid-valve-for-aerospace' target='_blank' class='key-tag'><font><strong>Airborne solenoid valve for aerospace</strong></font></a> Fluid Control | Huiyuan</span>

Airborne Solenoid Valve for Reliable Aerospace Fluid Control

When I talk with aerospace engineers about solenoid valves, I usually hear the same concern:  the valve may be small, but its job is not small. A valve used on an aircraft, aerospace test  bench, satellite system, or rocket-related fluid system has to respond when it is told to respond,  seal when it is closed, and keep working when the surrounding conditions are not comfortable.

At Xi'an Huiyuan Instrument Valve Co., Ltd., we have spent decades working with fluid control  products. Our background goes back to the Solenoid Valve Branch of Xi'an Instrument Factory,  before the company was restructured into a joint-stock company in 1994. Today, I see our work  as more than simply manufacturing a valve. We help customers turn a fluid control requirement  into a practical, manufacturable, and testable valve solution.

Our Airborne solenoid valve products are developed for demanding fluid control  applications where space, response, sealing, electrical control, material selection, and  reliability all matter. Depending on the project, we can work with standard products or develop  special non-standard valves according to the customer's technical requirements.

We support applications in aviation, aerospace, commercial spaceflight, nuclear power,  shipbuilding, industrial automation, research institutes, and specialized testing equipment.  For projects that cannot be solved by an off-the-shelf valve, our engineering team can discuss  the working medium, pressure conditions, installation space, electrical interface, sealing  requirements, and control method before recommending a design.

1. What Is an Airborne Solenoid Valve?

An airborne solenoid valve is an electrically controlled valve designed for fluid systems used  in or around aircraft and other aerospace equipment. In simple terms, it uses an electrical  signal to control the movement of a valve element. When the control signal changes, the valve  opens, closes, or changes its fluid path according to its design.

That basic idea sounds simple. The engineering behind it is not.

In an ordinary industrial system, a valve may have plenty of room, moderate vibration, easy  access for maintenance, and relatively stable operating conditions. Aerospace equipment can be  very different. Weight and installation space may be limited. Vibration can be important.  Temperature and pressure may change. Electrical interference can also be part of the system  environment.

This is why I do not recommend choosing an aerospace solenoid valve only by looking at port  size or nominal pressure. I first want to understand what the valve actually needs to do.  What fluid is being controlled? What is the normal and maximum pressure? How often will the  valve operate? What happens if it fails to open or close? What electrical supply is available?  How much installation space is available?

These questions help us select or develop the right valve instead of simply choosing the closest  model from a catalog.

Typical Airborne Solenoid Valve Functions

  • On and off control of gases or liquids

  • Fluid isolation and shutoff

  • Pressure control system switching

  • Pneumatic or hydraulic system control

  • Test equipment fluid path switching

  • Fuel, gas, or process-fluid control in specialized systems

  • Customized fluid control for aerospace research equipment

The exact construction depends on the application. We therefore treat the phrase  airborne solenoid valve as an application requirement, not as a single fixed  product specification.

2. How Our Airborne Solenoid Valve Works

The working principle is easy to understand. An electrical signal is sent to the solenoid  coil. The coil creates a magnetic field. That magnetic force moves an internal component,  usually called a plunger or armature. The movement changes the position of the valve element,  allowing fluid to pass or stopping the flow.

Depending on the valve design, the valve may be normally closed, normally open, or built with  another switching arrangement. For example, a normally closed valve stays closed when there is  no electrical command. When the coil receives the required signal, the valve opens.

This gives engineers a simple way to control fluid without having to manually operate the valve.  The valve can also be connected to a control system, sensor system, test system, or automated  sequence.

In an aerospace application, however, the electrical and mechanical parts must work together.  A good design needs to consider the coil, moving parts, sealing elements, body materials,  internal flow path, electrical connector, mounting arrangement, and operating environment as  one system.

I pay particular attention to sealing. A valve can have excellent electrical performance and  still cause trouble if it cannot maintain the required seal. For this reason, our production  process includes inspection and testing of valve performance and sealing before delivery.

What We Check Before Delivery

The exact inspection plan depends on the product and customer specification. In general, we  check the relevant performance, sealing, appearance, and other agreed requirements before the  valve leaves our facility. For customized aerospace valves, the inspection and test plan can  be developed around the approved technical solution.

This approach is especially useful for research institutes and aerospace test equipment  manufacturers because their requirements are often different from those of standard industrial  valve users.

3. Why Aerospace Fluid Control Needs a Different Approach

When I design or recommend a valve for aerospace use, I do not assume that a normal industrial  valve can simply be placed into an aircraft or aerospace test system. The environment and the  consequences of failure need to be considered.

RTCA's DO-160 standard is specifically concerned with environmental conditions and test  procedures for airborne equipment. RTCA explains that DO-160 covers environmental and  electromagnetic conditions relevant to airborne equipment, while the FAA's AC 21-16G identifies  DO-160 versions as acceptable environmental qualification material for certain airworthiness  requirements and strongly encourages DO-160G for new articles.

This does not mean every Airborne solenoid valve automatically carries a DO-160 qualification.  The applicable test categories and acceptance requirements must be determined from the actual  aircraft or equipment program. I therefore recommend that customers provide their applicable  qualification requirements before placing an aerospace project order.

Factor

Source: RTCA DO-160 information and FAA Advisory Circular AC 21-16G.  The table summarizes engineering factors described or implied by airborne environmental  qualification requirements; it is not a substitute for the applicable qualification document.

Temperature

Can affect seals, materials, coil performance, and fluid behavior

Material and operating-range selection

Altitude

Can change surrounding pressure and affect system behavior

Pressure and sealing assessment

Vibration

Can affect mechanical components and connections

Mechanical structure and fastening design

Electrical environment

Can influence the operation of electrically controlled equipment

Coil and electrical interface evaluation

Fluid compatibility

Different fluids interact differently with metals and seals

Material and sealing selection

4. Main Features and Engineering Advantages

Our main advantage is not one attractive specification. It is our ability to work with  complicated fluid control requirements and turn them into a controlled manufacturing process.

Stable Electrical Control

The solenoid is the part that converts an electrical command into mechanical movement. We  consider the electrical interface together with the valve structure so that the selected  configuration fits the customer's control system.

Reliable Fluid Shutoff

For many aerospace and test applications, sealing is just as important as opening the valve.  Our production process includes sealing inspection so that leakage problems can be identified  before delivery.

Flexible Material Selection

We do not treat materials as a one-size-fits-all decision. The working medium, pressure,  temperature, corrosion conditions, and service requirements all affect the final choice.  Depending on the project, different metals, sealing materials, and surface treatments may be  considered.

Compact and Application-Oriented Design

Aerospace systems often have limited installation space. When a standard valve cannot fit the  available space or connection arrangement, we can discuss a non-standard design rather than  asking the customer to redesign the whole system around a standard valve.

Customized Fluid Control

Our experience includes special non-standard valves for aerospace, commercial spaceflight,  nuclear power, shipbuilding, and research testing systems. That experience is valuable when  the customer has a drawing, a preliminary specification, or simply a difficult fluid control  problem that needs engineering discussion.

Item

Source: Huiyuan manufacturing and service information supplied for this  product page. Delivery and inspection arrangements are project-dependent and should be confirmed  against the final technical agreement.

Basic dimensions

Based on existing design

Developed around project requirements

Connection

Existing configuration

Can be discussed according to system design

Materials

Specified by existing model

Selected according to medium and conditions

Testing

Routine inspection and agreed tests

Can include project-specific inspection requirements

Lead time

Usually faster

Depends on design, materials, testing, and quantity

5. Applications: Where I Would Use an Airborne Solenoid Valve

I would normally start with the fluid system rather than the industry name. Still, there are  several areas where our Airborne solenoid valve solutions are particularly relevant.

Aerospace and Aircraft Systems

Aircraft systems may need electrically controlled valves for pneumatic, hydraulic, fuel,  environmental, or other specialized fluid functions. The final valve configuration depends on  the aircraft system and its applicable requirements.

Commercial Spaceflight

Commercial rockets and satellites are creating new demand for compact and reliable fluid  control components. We develop core valves and fluid control solutions adapted to commercial  aerospace applications, with the final design determined by the project requirements.

Aerospace Test Benches

Test benches are one of our important application areas. A test system may need to switch  several fluid paths in a controlled sequence. In this situation, the valve is not just a  component; it becomes part of the test method. Good repeatability, suitable sealing, correct  response, and clear interfaces all become important.

Research Institutes

Research projects often have specifications that do not match standard catalogs. We have  provided customized non-standard valves and testing system solutions for research institutes,  where the requirements may change during the development process.

Nuclear Power and Specialized Equipment

Fluid control is also essential in nuclear power and other specialized industrial equipment.  These applications may require strict material, sealing, testing, and documentation controls.  We evaluate those requirements on a project-by-project basis.

Application

Source: Huiyuan application experience and product information supplied for  this page. The application descriptions are general guidance; the suitability of a specific  valve must be confirmed against the actual system requirements.

Aircraft systems

Environmental conditions, weight, sealing, electrical control

System specification and applicable qualification requirements

Commercial rockets

Fluid compatibility, pressure, compact design, reliability

Working medium and complete operating envelope

Aerospace test benches

Repeatable switching, sealing, control sequence

Test procedure and valve operating cycle

Research equipment

Customization, special connections, unusual conditions

Drawing or preliminary technical concept

6. How We Manufacture and Test the Valve

From my point of view, manufacturing quality starts long before the final inspection. It starts  when we understand what the valve has to do.

For a standard product, we follow the established production process and inspection procedure.  For a customized Airborne solenoid valve, the process begins with technical communication. We  review the fluid, pressure, temperature, electrical requirements, connection dimensions,  installation space, operating frequency, sealing needs, and other important conditions.

After the technical solution is confirmed, manufacturing can move forward with the required  materials and components. Machined parts need to meet the required dimensions. Sealing surfaces  need suitable control. The electrical components need to match the agreed interface. The valve  is then assembled and inspected according to the applicable production and test requirements.

Our Basic Manufacturing Flow

  1. Review customer requirements

  2. Confirm valve structure and technical parameters

  3. Select suitable materials and components

  4. Machine and prepare valve parts

  5. Control critical dimensions and assembly conditions

  6. Assemble the valve

  7. Perform performance and sealing inspections

  8. Complete appearance and final quality inspection

  9. Prepare the product for safe shipment

We also understand that aerospace customers may need more than the physical valve. They may  need technical communication, drawings, inspection information, test records, or customized  documentation. The exact documentation package is agreed according to the project.

Our company states that it passed ISO 9001:2015, CE, SIL3 mandatory safety, and 3C mandatory  certifications for explosion-proof electrical equipment. Certification scope and applicability  should always be checked against the specific product and current certificate before being used  as a project compliance claim.

ISO describes ISO 9001 as a quality management standard covering the establishment,  implementation, maintenance, and continual improvement of a quality management system.

7. Why Choose Huiyuan for an Airborne Solenoid Valve?

I believe the biggest reason to work with us is our long experience with special fluid control  products. We are not new to valves, and we are not limited to one standard product family.

Xi'an Huiyuan Instrument Valve Co., Ltd. has decades of experience in the fluid control field.  Our history began with the Solenoid Valve Branch of Xi'an Instrument Factory, and we have  developed from that foundation into a company integrating technology development, production,  and technical services.

Our product range includes fluid solenoid valves, electrically controlled valves, pneumatically  controlled valves, Pressure Reducing Valves, and special non-standard valves. We also develop  products for demanding sectors such as aerospace, commercial spaceflight, nuclear power,  shipbuilding, and experimental testing systems.

This matters because a difficult valve project rarely starts with a perfect drawing. Sometimes  the customer knows the pressure, fluid, and control signal but has not finalized the valve.  Sometimes the installation space is fixed but the internal structure needs to change. Sometimes  a research project requires a special valve that simply does not exist in a standard catalog.

In these cases, I prefer an engineering conversation first. Once we understand the real  operating conditions, we can determine whether an existing product is suitable or whether a  customized solution makes more sense.

What Customers Can Expect From Us

  • Long-term experience in fluid control valve manufacturing

  • Experience with aerospace and other high-end applications

  • Standard and customized valve solutions

  • Technical support during product selection

  • Performance, sealing, and appearance inspection before delivery

  • Flexible production for standard and non-standard products

  • Support for research institutes and specialized test equipment

  • Protective packaging for transportation

For shipping, we normally select moisture-resistant and shock-protective packaging according  to the valve's size, weight, and transportation requirements. Cartons, wooden cases, or pallets  may be used as appropriate.

8. Airborne Solenoid Valve FAQ

What is an Airborne solenoid valve used for?

It is used to electrically control the flow of a gas or liquid in aircraft, aerospace,  commercial spaceflight, test benches, and other specialized fluid systems. The exact application  depends on the valve design and system requirements.

Can Huiyuan manufacture a customized aerospace solenoid valve?

Yes. Customized non-standard valves are an important part of our business. We can discuss  special dimensions, connections, materials, electrical interfaces, fluid media, and testing  requirements according to the project.

Can I order an Airborne solenoid valve directly from a standard catalog?

If your requirements match an existing product, a standard valve can be the simplest and  fastest option. If the application has unusual pressure, fluid, installation, electrical, or  environmental requirements, I recommend a technical review before selection.

Can you provide valves for aerospace test benches?

Yes. We provide customized valves and fluid control solutions for experimental testing  equipment and systems. For a test bench project, we recommend providing the test medium,  pressure range, control sequence, valve cycle, connection requirements, and installation  dimensions.

What information should I provide when asking for a quotation?

The more complete the information, the faster we can evaluate the application. Useful  information includes:

  • Working medium

  • Normal and maximum pressure

  • Required flow or flow coefficient

  • Operating temperature

  • Electrical voltage and control method

  • Normally open or normally closed requirement

  • Port size and connection type

  • Available installation space

  • Operating frequency or expected cycle life

  • Sealing and leakage requirements

  • Applicable aerospace or customer qualification requirements

  • Quantity and expected delivery schedule

Do you provide testing before shipment?

Yes. Products are inspected before delivery, including relevant performance, sealing, and  appearance checks. Customized products can follow a project-specific inspection and test plan  agreed with the customer.

How long does production take?

There is no single lead time for every Airborne solenoid valve. Standard products can usually  be delivered more quickly, while customized products depend on the technical solution,  materials, specifications, quantity, and required testing. We confirm the production schedule  after the technical requirements are clear.

How are the valves shipped?

We can arrange logistics, express delivery, or dedicated transportation according to the  product and customer's needs. Packaging is selected according to valve dimensions and weight,  with moisture and shock protection used where appropriate.

How do I know whether your valve is suitable for my aircraft project?

I would not recommend making that decision from the product name alone. Please send us the  system requirements and applicable qualification standards. We can then review the fluid,  pressure, temperature, electrical interface, installation conditions, sealing requirements,  and testing requirements with you.

Talk to Us About Your Aerospace Valve Requirement

If you are searching for an Airborne solenoid valve, aerospace solenoid valve,  aircraft fluid control valve, or customized valve for an aerospace test bench, I recommend  starting with the actual working conditions rather than simply asking for a model number.

Send us your drawing, technical specification, preliminary design, or even a list of the  operating conditions. Our team can review the requirement and discuss whether a standard valve  or a customized solution is the better choice.

At Huiyuan, our goal is straightforward: build a valve that fits the real system, control the  manufacturing process carefully, test the finished product properly, and provide technical  support throughout the project.

Xi'an Huiyuan Instrument Valve Co., Ltd.
 Specialist in fluid solenoid valves, electric control valves, pneumatic control valves,  pressure reducing valves, and special non-standard valves for aerospace and other demanding  applications.

Keywords: Airborne solenoid valve, aerospace solenoid valve, aircraft  solenoid valve, aviation solenoid valve, aerospace fluid control valve, airborne valve,  aerospace test bench valve, commercial spaceflight valve, customized solenoid valve,  aerospace fluid control system.

References

  • RTCA, DO-160 Environmental Conditions and Test Procedures for Airborne Equipment.        RTCA identifies DO-160 as the standard covering environmental conditions and test procedures        for airborne equipment.

  • FAA, Advisory Circular AC 21-16G. The FAA identifies RTCA DO-160 versions as acceptable        environmental qualification material for certain airworthiness requirements and strongly        encourages DO-160G for new articles.

  • ISO, ISO 9001:2015 Quality Management Systems — Requirements. ISO describes the standard's        role in establishing, maintaining, and continually improving a quality management system. 



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