A Full-State Reliability Analysis Method for Remanufactured Machine Tools Based on Meta Action and a Markov Chain Using an Exercise Machine (EM) as an Example

Author:

Luo Yueping1,Xiao Yongmao234

Affiliation:

1. College of Physical Education, Shaoyang University, Shaoyang 422000, China

2. School of Computer and Information, Qiannan Normal University for Nationalities, Duyun 558000, China

3. Key Laboratory of Complex Systems and Intelligent Optimization of Guizhou Province, Duyun 558000, China

4. Key Laboratory of Complex Systems and Intelligent Optimization of Qiannan, Duyun 558000, China

Abstract

The reliability of an RMT can be regarded as an important indicator customers can use to recognize its quality; however, it is difficult to implement a full-state reliability analysis of an RMT due to its complicated structural functions. Therefore, a full-state reliability analysis model is proposed herein based on meta action (MA) and a Markov chain for remanufactured exercise machine tools (REMTs). First, an analysis was carried out on individual levels by integrating the MAU decomposition method, and an MAU fault tree model was established layer by layer for the REMT. Second, full-state modeling was performed in view of the MAU characteristics of the REMT, whose operation processes are divided into MAU normal and failure states. A Markov decision-making process was introduced to integrate MAU states and establish our model, which was solved by means of an analytical method for the evaluation of reliability. Finally, an example of a remanufactured machine tool spindle is given to verify the effectiveness of the method.

Funder

Hunan Provincial Offline Program of First-Class Undergraduate Course in 2021

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference20 articles.

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