4.7 Article

Structural Efficiency Analysis of a Piston for Aviation Engines

Journal

AEROSPACE
Volume 9, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/aerospace9110718

Keywords

structural efficiency; evaluation method; piston; quantitatively

Funding

  1. Science and Technology Innovation Program of Hunan Province
  2. Scientific Research Project of Hunan Provincial Education Department [2021wk2007]
  3. Talent Introduction Project of Changsha University [21B0766]
  4. [SF1804]

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This paper investigates the impact of high-performance pistons on engine performance parameters and proposes the concept of structural efficiency. By defining the restrictive factors affecting piston design and quantifying the benefits of piston design on engine performance parameters, a calculation model is established. The best two schemes are obtained through multiple design iterations and verified by experiments.
The high-performance piston has a great impact on the performance parameters of the engine. The rapid design of a high-performance piston can shorten the research and development cycle and lower the experimental cost. At present, the piston design is mostly considered from a single factor, but it has not been comprehensively designed from multiple factors. Starting from the concept of structural efficiency, this paper defines the restrictive factors affecting engine performance parameters in piston design, puts forward an evaluation method of quantifying the benefit of piston design on engine performance parameters, and deduces the calculation model. The piston is designed and iterated many times to obtain the best two schemes. The two schemes are quantitatively compared through the above calculation model and verified by experiments. The results show that the structural efficiency of the piston in scheme 2 is 4.6% higher than that in scheme 1. The calculation method is applicable to the design of key engine components, which can shorten the research and development cycle, save the test costs, and greatly improve the R&D efficiency.

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