Tyne Engineering has over 25 years of experience in the design and manufacture of complex tritium management systems in the fields of process engineering, mechanical engineering, and instrumentation and controls for nuclear and tritium-handling industries including advanced reactor tritium and fusion fuel cycle tritium application solutions.
Tyne is a highly respected partner and they are proud to have served customers in North America and abroad. Tyne has worked extensively with a large number of organizations and government departments.
Tyne is committed to safety and quality. This commitment combined with a passion for innovation are central in their continued success. Tyne Engineering is driven by the desire to promote a safer, cleaner environment. Tyne's dedication to these values is clearly demonstrated in their products and services.
Tyne’s world class manufacturing facility is controlled, clean, and is perfectly suited for use in the manufacture of high vacuum/low leakage stainless steel systems and electronics. Their team of welders are highly qualified to perform TIG, MIG, SPOT, and Automatic Tube Welding. They employ engineers with specialized knowledge of high pressure and temperature systems, vacuum and cryogenics. They have extensive experience with manufacturing and modifying complex circuit boards and electronic modules. They are highly knowledgeable about materials and sealing techniques for systems designed for hydrogen and oxygen service and/or radioactive substances.
Tyne has over 20 years of experience in I&C, mechanical, and electrical work.They create, assemble, and configure touch screen kiosks for a variety of applications. They have produced fully automated computer controlled systems that have operated in plant and laboratory settings for many years with little to no maintenance.
New control cable assemblies for nuclear plants have been produced by Tyne to replace outdated ones that were harmed by radiation exposure.
They have created and constructed systems that use intricate electronic circuit boards, related parts, and unique programming that is completed internally. The strict Quality Control regulations of nuclear power plants and nuclear research laboratories are usually involved in these projects.
Tyne employs certified welders. They execute TIG, stick, and stud welding in accordance with Tyne's authorized welding procedures. They can perform automatic tube welding in accordance with their approved welding procedures, which they have also developed.
Tyne is able to test for helium leaks up to 1 x 10E-9 atm. cc/s. They have the tools, staff, and training necessary to do this. Furthermore, they are able to assert complete manufacturing and NDE capability thanks to our established partnerships.
Tyne has extensive experience designing, building, and participating in high and ultra high vacuum systems. They are familiar with LN2 and He cryogenics, having designed and built equipment with cryotraps and other functions; They make getter beds, utilizing their license for transporting depleted uranium; and also manufacture some small test sources such as americium 241 and amorphous silicon-bound tritium sources.
Tyne is experienced in high pressure design, having designed and manufactured vessels that operate at pressures of up to 600 psig and temperatures of up to 1000°C.
A brief summary of Tyne's approach to Reverse Engineering and Commercial Grade Dedication (CGD)
Evaluation of current component needs
By review of existing documentation, and assessment of the requirements of components and clients, they arrive at the fundamental needs and critical characteristics of each component including the level of QA which is needed.
Assessing availability of component parts
They review and assess existing suppliers of parts, establish their ability to provide replacement parts and create or modify documentation such as specifications to control the supplies. Through this assessment a complete bill of materials can be created to meet a particular component's requirements.
Classification of components
They evaluate NDE requirements, material compositions, and code application. Authority approvals are obtained where applicable. They carry out Failure Modes and Effects Analysis (FMEA) and create Mean Time Before Failure (MTBF) records for the parts.
Tyne use their resources to give confidence that components will fully meet their intended use; that they can be acquired with high reliability and reasonable cost; and that there is high probability of future availability.
Tyne is ideally suited to the work of Reverse Engineering or Commercial Grade Dedication, and will endeavor to ensure that above requirements are tailored to a Client's needs and programs giving close attention to costs and schedules.
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