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首页> 外文期刊>Journal of Sustainable Mining >Fuzzy-FMEA risk evaluation approach for LHD machine – A case study
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Fuzzy-FMEA risk evaluation approach for LHD machine – A case study

机译:LHD机器模糊 - FMEA风险评估方法 - 以案例研究

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Improvement of productivity has become an important goal for mining industries in order to meet the expected targets of production and increased price competitiveness. Productivity can be improved in different ways. The effective utilization of men and machinery is one such way. Equipment is prone to numerous unexpected potential failures during its operation. Failure Mode and Effect Analysis (FMEA) is one of the suitable techniques of reliability modeling used to investigate the failure behavior of a complex system. In conventional FMEA, the risk level of failures, a ranking of failures and prioritization of necessary actions is made on the basis of estimated Risk Priority Number (RPN). While this approach is easy and uncomplicated, there are a few flaws in acquiring the best approximation of the failure. The estimation of RPN is made by multiplying the Severity (S), Occurrence (O) and Detection (D) alone and irrespective of the degree of importance of each input. Hence, a new risk management approach known as the Fuzzy rule base interface system was proposed in this research in order to mitigate the failures. Fuzzy FMEA is designed in order to acquire the highest Fuzzy RPN value which will be used as the focus of enhancements to reduce the probability of occurrence of some kind of failure for a second time. This study focused on the Root Cause Analysis (RCA) of underground mining machinery such as Load-Haul-Dumper (LHD). 16 potential risks of various sub-system breakdowns were identified in Fuzzy FMEA. The highest value of RPN 168 (for potential failure mode-F9) was obtained for the electrical subsystem (SSE), as was the highest FRPN 117 (F9). There is a difference between the RPN and FRPN values. The FRPN value is obtained from Fuzzy field generation with consideration of the degree of importance of the given input data. In addition, the recommendations were made based on the analysis to reduce the uneven occurrence of failures.
机译:提高生产率已成为采矿业的重要目标,以满足预期的生产目标和提高价格竞争力。生产率可以以不同的方式提高。男性和机器的有效利用是一种这种方式。设备在运行过程中容易出现众多意外的潜在故障。故障模式和效果分析(FMEA)是用于研究复杂系统的故障行为的可靠性建模的合适技术之一。在传统的FMEA中,在估计风险优先级(RPN)的基础上,制定失败的风险程度,失败排名和必要行动的优先排序。虽然这种方法很容易且不复杂,但在获取失败的最佳近似时有一些缺陷。通过将严重程度,发生(O)和检测(D)乘以单独的估计来估计RPN,而不管每个输入的重要程度如何。因此,在本研究中提出了一种被称为模糊规则基础接口系统的新风险管理方法,以减轻故障。模糊FMEA设计为获取最高模糊的RPN值,这将被用作增强功能的焦点,以减少第二次某种故障发生的可能性。本研究专注于地下采矿机械的根本原因分析(RCA),如载荷 - 拖车(LHD)。在模糊的FMEA中确定了各种子系统崩溃的潜在风险。 RPN 168(对于电位失效模式-F9)的最高值是针对电器子系统(SSE)的最高值,如最高FRPN 117(F9)。 RPN和FRPN值之间存在差异。通过考虑给定输入数据的重要性,从模糊场生成获得FRPN值。此外,该建议是基于分析来减少失败的不均匀发生。

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