Available Engineering Services
• Mechanical Design & Analysis
• Thermal Design & Analysis
• Structural Design & Analysis
• Secondary Flow Design & Analysis
• Computational Fluid Dynamics (CFD)
• Modal Analysis
• Engine Performance Analysis
• Aerodynamic Analysis
• Combustion System Design & Analysis
• Combustion Tuning
• Engine Instrumentation
• Product Definition (Models & Drawings)
• Dimensional Evaluation & Analysis
• Program Management
• Manufacturing Support
• Metallurgical Analysis
Our technology, expertise and capacity allow us to meet the needs of our customers in a way that no other company can. By managing the entire part-supply chain — from design and development to casting and coating — we are a reliable partner in part delivery and resource management.
Machining plays an integral role in the SHYL value chain. Our advanced machining capabilities allow us to design, manufacture and produce even the most sophisticated gas turbine engine components with utmost precision. SHYL partners with OEMs to machine parts that are the highest quality, ensuring fast turnaround times and scalable production schedules to meet the most aggressive of timetables.
Our Partners are to develop commercially viable aluminide coatings, and continues to provide these coatings and their derivatives in support of heavy industry and aeroderivative gas turbine components in China. some of our partners are largest providers of both EBPVD coatings and Low Pressure Plasma Spray Overlay coatings. Newly manufactured parts from SHYL can be expertly coated to protect the components and increase their efficiency and reliability at higher operating temperatures and under severe environmental conditions where these engines frequently operate. Advanced coatings pave the way for increased firing temperatures and more efficient component and system designs.
Thermal Barrier Coating
Abradable Coating
Diffusion Coating
Overlay Coating
SHYL and our partner expertise in joining technologies allows us to save precious weight by welding structures in the most efficient way possible. Methods such as friction stir welding and laser beam welding allow us to eliminate the use of overlapping aluminum skins — as well as hundreds of thousands of rivets — resulting in lightweight solutions for newly manufactured engine components for gas turbine engines.
We and our partners' facilities have a depth of thermal processing capabilities and equipment, including coating furnaces, braze furnaces, HIP furnaces, and Vacuum and gas purge furnaces. Thermal processing methods introduce less thermal stress and distortion when compared to traditional welding methods. Newly manufactured parts treated with our advanced thermal barrier coatings often outperform their untreated counterparts.
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