Aircraft And Space Vehicle Engineering Official British Standard

BS 3TA 28:2009+A1:2015

Comprehensive British Standard for aircraft and space vehicle engineering. Ensures compliance, safety, and quality in aerospace design and manufacturing.

Comprehensive Aerospace Engineering Standard

BS 3TA 28:2009+A1:2015 is the essential British Standard for aircraft and space vehicle engineering. This comprehensive standard provides detailed technical specifications and guidelines to ensure the safety, quality, and compliance of aerospace design, manufacturing, and operations.

Key Features and Benefits:

  • Covers a wide range of aerospace engineering disciplines, including structural, mechanical, electrical, and avionics systems
  • Ensures adherence to the latest industry best practices and regulatory requirements
  • Supports the development of reliable, high-performance, and airworthy aircraft and spacecraft
  • Promotes the use of standardized components, materials, and processes to enhance interoperability and maintainability
  • Helps organizations achieve and demonstrate compliance with relevant aviation and space regulations
  • Facilitates the integration of new technologies and innovations into aerospace products and systems

Comprehensive Technical Specifications

BS 3TA 28:2009+A1:2015 provides a comprehensive set of technical specifications and guidelines for the design, manufacture, and testing of aircraft and space vehicles. The standard covers a wide range of engineering disciplines, including:

  • Structural Design: Requirements for the structural integrity, load-bearing capacity, and fatigue life of airframes, wings, and other primary structures
  • Mechanical Systems: Specifications for flight control systems, landing gear, hydraulics, and other mechanical subsystems
  • Electrical and Avionics: Guidelines for electrical power generation and distribution, instrumentation, navigation, and communication systems
  • Environmental Control: Requirements for cabin pressurization, temperature control, and air circulation systems
  • Materials and Processes: Specifications for the selection, testing, and application of materials, coatings, and manufacturing processes
  • Quality Assurance: Procedures for inspection, testing, and documentation to ensure the consistent quality of aerospace products

Ensuring Compliance and Safety

Compliance with BS 3TA 28:2009+A1:2015 is essential for organizations operating in the aerospace industry. By adhering to the standard's technical requirements and best practices, manufacturers, operators, and maintenance providers can:

  • Demonstrate compliance with relevant aviation and space regulations, such as EASA, FAA, and ICAO standards
  • Enhance the safety and reliability of aircraft and spacecraft, reducing the risk of accidents and incidents
  • Improve the overall quality and performance of aerospace products and services
  • Streamline the certification and approval processes for new designs and modifications
  • Facilitate the seamless integration of aerospace systems and components from different suppliers
  • Minimize the risk of product liability and regulatory non-compliance issues

Whether you're a designer, manufacturer, or operator in the aerospace industry, BS 3TA 28:2009+A1:2015 is an essential standard that can help you achieve the highest levels of safety, quality, and compliance in your operations.

Technical Information

Aircraft And Space Vehicle Engineering
BSI Group
978 0 580 90313 7
Specification Details
  • Specification for forging stock and wire of titanium-aluminium-vanadium alloy (tensile strength 1100-1300 MPa) (limiting ruling section 20 mm)
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