Petro-chemical Equipment Technology ›› 2026, Vol. 47 ›› Issue (1): 35-40,51.doi: 10.3969/j.issn.1006-8805.2026.01.005

• STATIC EQUIPMENT • Previous Articles    

Structural Optimization and Application Research of Bolted Flat Head

Hao Mingtao1,2, Zhang Jie1,2,3, Dai Ziyi1,2, Yan Fei1,2, Wang Jian1,2,3   

  1. 1. Southwest Institute of Chemical Co., Ltd., Chengdu, Sichuan, 610225;
    2. National Engineering Research Center for C1 Chemistry, Chengdu, Sichuan, 610225;
    3. National Research and Promotion Center for Gas Separation Technology by Pressure Swing Adsorption, Chengdu, Sichuan, 610225
  • Received:2025-02-25 Revised:2025-12-30 Accepted:2025-12-31 Online:2026-01-15 Published:2026-01-21
  • Contact: Wang Jian E-mail:hawkhmtscu@163.com

Abstract: To tackle the problems of heavy weight and high cost associated with large-diameter bolted flat head, this paper proposed the spherically dished cover with a bolting flange as an alternative structure. Taking the flat head of a DN1900 stirred reactor in a certain project as the research object, the finite element numerical calculation method was employed to investigate the influence patterns of design variables on the peak equivalent stress (Seq), central displacement (Δy1) and sealing surface displacement (Δy2) in both the simplified bolted flat head and the simplified spherically dished cover with a bolting flange. The results indicated that the comprehensive mechanical properties of the spherically dished cover with a bolting flange were superior to those of the bolted flat head. Applying the findings of this research to the design of multi-opening flat head for stirred reactors, the mass of the optimized head is reduced by 55%. This demonstrates that the spherically dished cover with a bolting flange offers greater economic advantages over the bolted flat head while ensuring structural strength and stiffness and holds significant potential for widespread adoption.

Key words: flat headlspherically dished cover with a bolting flangellightweightlsensitivitylresponse surface