Sun Kun, Deng Haishun, Zhang Shiwei, Hu Xin, Wang Cheng, Wang Senhui, Li Kun, Wang Long
School of Mechatronics Engineering, Anhui University of Science and Technology, 232001, Huainan, Anhui Province, China.
School of Mechanical Engineering & Automation, Northeastern University, 110819, Shenyang, Liaoning Province, China.
Heliyon. 2024 Feb 27;10(5):e26994. doi: 10.1016/j.heliyon.2024.e26994. eCollection 2024 Mar 15.
To meet the urgent need for a new design concept and solve the inaccuracy of existing performance prediction algorithms for high-speed turbomolecular pumps (TMPs), a new algorithm based on a novel twisted rotor blade is proposed. In this algorithm, the blade angle of the turbine rotor row progressively decreases from the root to the tip of the blade tooth. The feasibility and accuracy of the simulation algorithm were verified through experiments. The dependence of the simulation results on the number of simulated molecules was discussed. Both theoretical analysis and simulations confirmed the necessity of setting a twisted rotor blade in the turbine combined blade row. A comparative analysis on the performance of conventional straight-blade and twisted-blade structures based on the first-four stages of turbine combined blade rows of the F-63/55 TMP was conducted. The results indicated that the maximum pumping speed coefficient and maximum compression ratio of the optimised twisted-blade structure increased by 4.59% and 22.26%, respectively. This novel blade structure overcomes the limitations of the conventional straight-blade structure. Progressively decreasing the rotor blade angle from the root to the tip of the blade tooth is beneficial for improving the performance of TMPs. This study provides a new design concept and performance prediction algorithm for the structural optimisation of high-speed TMPs.
为满足对新设计概念的迫切需求并解决现有高速涡轮分子泵(TMP)性能预测算法的不准确性问题,提出了一种基于新型扭曲转子叶片的新算法。在该算法中,涡轮转子排的叶片角度从叶片齿的根部到尖端逐渐减小。通过实验验证了模拟算法的可行性和准确性。讨论了模拟结果对模拟分子数量的依赖性。理论分析和模拟均证实了在涡轮组合叶片排中设置扭曲转子叶片的必要性。基于F - 63/55 TMP涡轮组合叶片排的前四级,对传统直叶片和扭曲叶片结构的性能进行了对比分析。结果表明,优化后的扭曲叶片结构的最大抽气速率系数和最大压缩比分别提高了4.59%和22.26%。这种新型叶片结构克服了传统直叶片结构的局限性。使转子叶片角度从叶片齿的根部到尖端逐渐减小有利于提高涡轮分子泵的性能。本研究为高速涡轮分子泵的结构优化提供了一种新的设计概念和性能预测算法。