Preventive spare parts supply strategy for large-scale equipment based on performance degradation

Y Yongjia Gao J Jieyu Liu (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) C Can Li (State Key Laboratory of Catalysis) Q Qiang Shen R Ruiyan Zhang Z Zhichao Feng

Abstract

Timely replacement of spare parts can improve the reliability of large-scale equipment operation and is the critical link of preventive maintenance. This paper studies how to reasonably formulate spare parts supply strategy in large-scale equipment maintenance. Given the shortcomings of the conventional fixed cycle replacement method of equipment spare parts, a spare parts replacement method based on large-scale equipment performance degradation is proposed. The proposed method can shorten downtime and avoid waste. Firstly, by analyzing the large-scale equipment’s performance state characteristics, the performance evaluation model of the equipment is established using the interval evidential reasoning approach, and the envelope of performance degradation can be obtained. Weibull distribution is used to fit the performance degradation envelope, and the bisection method and maximum likelihood estimation method are combined to identify the model parameters. The health degree envelope of large-scale equipment performance is obtained. Then, the number of spare parts required is calculated based on health degree expectation. Considering the time required for ordering and transporting spare parts, the spare parts ordering strategy is formulated under the condition of large-scale equipment working simultaneously. Finally, the proposed method is applied to a type of large-scale equipment to verify the effectiveness of the proposed method.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 6
Published June 17, 2026
Pages e0348476
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (6)

Y

Yongjia Gao

J

Jieyu Liu

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

C

Can Li

State Key Laboratory of Catalysis

Q

Qiang Shen

R

Ruiyan Zhang

Z

Zhichao Feng