Araştırma Makalesi

Design and Manufacturing of a Crankshaft-Free Compressor

Cilt: 9 Sayı: 5 15 Eylül 2026
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Design and Manufacturing of a Crankshaft-Free Compressor

Öz

The conventional crankshaft-driven reciprocating compressors inherently suffer from insufficient torque at the end of the compression due to their design. This study aims at designing and experimentally testing a crankshaft-free compressor in which the compression process is achieved by driving the pistons over an elliptical ring in order to convert the rotary motion directly into reciprocating motion of the pistons. The proposed mechanism allows the forces acting on the pistons to be aligned with the piston axis which results in improved mechanical efficiency and torque characteristics. Thermodynamic analysis was performed in order to determine the operating parameters and MATLAB/Simulink was used to evaluate the dynamic behavior of the mechanism. Additionally, the structural integrity and vibration characteristics of the system were investigated by means of finite element and modal analysis via ANSYS. Based on the obtained results, proper materials for each of the components were selected and the compressor was manufactured and experimentally tested under laboratory conditions. Experimental data showed that with an input power of 1 kW, the crankshaft-free orbital compressor was capable of achieving a delivery pressure of 800 kPa (absolute) with a volumetric flow rate of 200 L/min at 1000 rpm. It was concluded that the designed compressor can be considered as a potential alternative to conventional reciprocating compressors in industrial applications.

Anahtar Kelimeler

Etik Beyan

Ethics committee approval was not required for this study because of there was no study on animals or humans.

Kaynakça

  1. El Samad, T., Żabnieńska-Góra, A., Jouhara, H., & Sayma, A. I. (2024). A review of compressors for high temperature heat pumps. In Thermal Science and Engineering Progress (Vol. 51). Elsevier Ltd. https://doi.org/10.1016/j.tsep.2024.102603
  2. Hasanlu, M., Mahdian, S., & Shirvani, M. (2026). In-depth insights into industrial turbo-compressors for smarter maintenance and repair. Advanced Manufacturing Research. https://doi.org/10.21595/amr.2025.25400
  3. Liu, Y., Yue, X., Zhang, Z., & Guo, J. (2026). Simulation study of a CO2 scroll compressor with main and pre-discharge valves. International Journal of Refrigeration, 182, 273–286. https://doi.org/10.1016/j.ijrefrig.2025.11.016
  4. Lu, K., Sultan, I. A., & Phung, T. H. (2022). Mathematical modeling and parametric study of the limaçon rotary compressor. International Journal of Refrigeration, 134, 219–231. https://doi.org/10.1016/j.ijrefrig.2021.11.014
  5. Lu, K., Sultan, I. A., & Phung, T. H. (2023). A Literature Review of the Positive Displacement Compressor: Current Challenges and Future Opportunities. In Energies (Vol. 16, Number 20). Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/en16207035
  6. Prescient & Strategic Intelligence. (2020). Compressor Market Research Report (2020-2030). https://www. psmarketresearch.com/market-analysis/compressor-market
  7. Shakya, P., & Ooi, K. T. (2020). Introduction to Coupled Vane compressor: Mathematical modelling with validation. International Journal of Refrigeration, 117, 23–32. https://doi.org/10.1016/j.ijrefrig.2020.01.027
  8. Shin, M., Na, S., Lee, J., Min, B., & Choi, G. (2019). Model analysis of a novel compressor with a dual chamber for high-efficiency systems. Applied Thermal Engineering, 158. https://doi.org/10.1016/j.applthermaleng.2019.113717

Ayrıntılar

Birincil Dil

İngilizce

Konular

Akışkan Akışı, Isı ve Kütle Transferinde Hesaplamalı Yöntemler (Hesaplamalı Akışkanlar Dinamiği Dahil), Makine Tasarımı ve Makine Elemanları

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

15 Eylül 2026

Gönderilme Tarihi

19 Mayıs 2026

Kabul Tarihi

12 Ağustos 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 9 Sayı: 5

Kaynak Göster

APA
Barzegar, R. (2026). Design and Manufacturing of a Crankshaft-Free Compressor. Black Sea Journal of Engineering and Science, 9(5), 2447-2453. https://doi.org/10.34248/bsengineering.1954898
AMA
1.Barzegar R. Design and Manufacturing of a Crankshaft-Free Compressor. BSJ Eng. Sci. 2026;9(5):2447-2453. doi:10.34248/bsengineering.1954898
Chicago
Barzegar, Ramin. 2026. “Design and Manufacturing of a Crankshaft-Free Compressor”. Black Sea Journal of Engineering and Science 9 (5): 2447-53. https://doi.org/10.34248/bsengineering.1954898.
EndNote
Barzegar R (01 Eylül 2026) Design and Manufacturing of a Crankshaft-Free Compressor. Black Sea Journal of Engineering and Science 9 5 2447–2453.
IEEE
[1]R. Barzegar, “Design and Manufacturing of a Crankshaft-Free Compressor”, BSJ Eng. Sci., c. 9, sy 5, ss. 2447–2453, Eyl. 2026, doi: 10.34248/bsengineering.1954898.
ISNAD
Barzegar, Ramin. “Design and Manufacturing of a Crankshaft-Free Compressor”. Black Sea Journal of Engineering and Science 9/5 (01 Eylül 2026): 2447-2453. https://doi.org/10.34248/bsengineering.1954898.
JAMA
1.Barzegar R. Design and Manufacturing of a Crankshaft-Free Compressor. BSJ Eng. Sci. 2026;9:2447–2453.
MLA
Barzegar, Ramin. “Design and Manufacturing of a Crankshaft-Free Compressor”. Black Sea Journal of Engineering and Science, c. 9, sy 5, Eylül 2026, ss. 2447-53, doi:10.34248/bsengineering.1954898.
Vancouver
1.Ramin Barzegar. Design and Manufacturing of a Crankshaft-Free Compressor. BSJ Eng. Sci. 01 Eylül 2026;9(5):2447-53. doi:10.34248/bsengineering.1954898