|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/risk-management-mastering-fmeafmeca-criticality-matrix/
课程评论:没有评论
本课程是关于风险管理,特别是失效模式与影响及潜在危害性分析(FMEA/FMECA)和关键性分析的培训。课程将教授如何进行详细且复杂的失效模式与影响分析、关键性分析和关键性矩阵,并掌握风险指数、风险优先数、失效模式失效率等指标。 **课程涵盖的主要内容:** * **FMEA/FMECA基础:** 学习失效模式与影响及潜在危害性分析的方法,理解其“由下至上”的分析思路,即从单个组件的失效推导其最终影响和后果。 * **风险评估应用:** 了解风险管理在产品设计(如医疗器械、机械设计)、金融风险、工作场所安全、汽车和航空航天领域、食品生产等潜在危险过程、项目管理以及过程控制(如六西格玛)中的广泛应用。 * **定性与定量分析:** 从基本的定性分析过渡到更复杂的定量关键性分析,包括使用失效模式失效率和影响条件概率。 * **国际标准和军事标准:** 以国际标准IEC 60812作为FMEA/FMECA分析的参考,同时借鉴美国军用标准MIL-STD-1629的定量关键性计算方法。 * **过程FMEA (PFMEA) 和设计FMEA (DFMEA):** 学习不同类型的FMEA,并通过烹饪过程和玩具设计等实例进行讲解。 * **关键指标掌握:** 熟练掌握如风险指数、风险优先数(RPN)、失效模式失效率等关键风险评估指标。 **课程优势:** * **专业全面:** 提供高质量、覆盖全面的FMEA/FMECA培训。 * **实操性强:** 包含丰富的实例,帮助学习者掌握分析技能。 * **标准依据:** 引用国际及军用标准,确保方法的科学性和权威性。 * **跨领域适用:** FMEA/FMECA方法具有普遍适用性,学成后可迁移至不同行业。 **适合人群:** * 在产品设计、电子设计等领域工作的人员将获益最多。 * 对风险管理、可靠性工程感兴趣的学生和专业人士。 * 希望提升风险评估能力,满足行业法规或法律要求的专业人士。 通过本课程,学习者将能够独立、深入地执行失效模式与影响分析和关键性分析。
"Professional FMEA training with examples. Delivers a quality training for the full scope", Fred"It was a good course, well laid out and detailed. The instructor provided very good examples and resources", MichelleCourse DescriptionWith this course, you will be able to perform, at any level of detail and complexity, a complete Failure Mode and Effect Analysis, Criticality Analysis and Matrix, mastering indexes like Risk, Risk Priority Number, Failure Mode Failure Rate, etc.Risk Management is an extremely fascinating field, since it helps in foresee and manage hazards and probabilities thereof.Nowadays, this disciplines is widely used in many fields, and sometimes also required by the legislation. The most common use of risk management are:- risk evaluation in product design, e.g. during medical devices and machinery design- financial risk evaluation- safety on workplace risk assessment - design and processes in automotive and aerospace - risk evaluation during potentially hazardous processes, like food production, and so on- risk evaluation in project management- process control techniques, e.g. six sigma We may resort to many different techniques for risk evaluation, however, the most widely used and accepted, is FMEA/FMECA, i.e. Failure Modes, Effects and Criticality Analysis.This methodology follows a bottom-up approach, and starting from the failure of a component (or a phase if we are talking about a process), estimates the final effect and evaluates it consequences. Even if it seems easy to understand at a first sight because of its intuitive concept, actually, performing it thoroughly is not an easy matter, especially if you consider that, the FMEA/FMECA documentation often has a legal value, since you may be asked by the court in case of accidents to show it, in order to prove your design or process was performed with the user safety in mind.+++++ Have a look at the course curriculum and at the intro lesson +++++In this course we will study both FMEA and the Criticality Analysis, starting from the basic qualitative analysis to the more complex quantitative criticality analysis (and its representation with the criticality matrix) using modal failure rates, and effect conditional probability.There are many version of FMEA/FMECA, and in order to provide the most useful and valuable learning experience to you, we will use as a reference the International Standards IEC 60812, "Analysis techniques for reliability - Procedure for failure mode and effects analysis (FMEA)".However, this standard cover very effectively only FMEA and the qualitative and semi-quantitative FMECA, not providing much details on quantitative criticality analysis. Therefore, for the latter methodology, I will refer to the methodology borrowed from the US military Standard MIL-STD-1629, which provide a very accurate numerical methodology for the criticality calculation.Which are also the approaches I use in my professional activity.In the course, we will also talk about of Process FMEA, PFMEA, with a simplified example on a cooking process, and of Design FMEA, DFMEA. We will provide various example, on electric toys, cooking process and various components. However you will get the most from the course if you work in the design field, in particular product design or electronic design, and you will find many examples in it.HAVE A LOOK AT THE LESSONS AVAILABLE FOR FREE IN THE COURSE CURRICULUM!!!As we said, FMEA/FMECA are very versatile tools, therefore, once learned its concepts, it will be easy to transfer it to other fields, therefore even if you are not exactly in the product development or electronics field, you will earn valuable information and concepts from this course.At the end of the course, you will be able to perform, at any level of detail and complexity, a complete Failure Mode and Effect Analysis, and a Criticality Analysis.HAPPY LEARNING!!!