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所在平台: Udemy |
课程主页: https://www.udemy.com/course/api-571-exam-prep-course-level-1-210-questions-and-answers/
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课程名称:API 571 考试准备课程一级 - 210 道问题及答案 课程概述: 本课程为基础数据库(一级课程),包含210道针对API 571规范书的多项选择题,基于真实考试经验设计。所有问题基于Instructor以往考试的经验而制订。我们是RBIClue,提供三层次的API 571考试准备课程,目前的课程为最基础且价格最低的版本。欲了解二级和三级课程的更多信息,请访问我们的网站RBIClue.com。如果选择二级或三级,完成测试后,每个问题都会有详细解答。 目标受众: 该API 571证书适合所有腐蚀工程师、完整性工程师、RBI工程师、维护工程师、压力容器/管道/储罐/锅炉检查人员及其他检测专业人士。 资格要求: 如果您持有有效的API 510、570或653证书,您自动有资格参加API 571腐蚀与材料认证考试。若没有上述证书,则资格取决于您在过去10年内的教育背景和行业经验。 考试内容: API 571腐蚀与材料认证考试测试个体在腐蚀及材料选择领域的知识与专业技能。考试题目源自API RP 571,关注石油炼制行业中影响固定设备的损伤机制。 考试结构: API 571考试时长为3.25小时,共80道题目,其中70道题目计分,其余10道为预考题,不计分。所有问题均为多项选择题,且为闭卷考试,考生不得携带纸质和参考资料进入考场。考试设定了及格分数。 API 571规范简介: API RP 571讨论了适用于石油炼厂及石油化工等工业应用的损伤机制。该规范旨在促进压力设备完整性的整体管理,成为多个机械完整性程序活动的重要资源,包括现有损伤和退化的识别、未来损伤机理的易感性识别、检查和监测策略的开发及维护等。 本课程为希望通过API 571考试的专业人士提供了宝贵的学习资源和指导。
This is the most basic database (Level 1 Course) with 210 multiple choice questions from API 571 code book, based on the real exam experience. All the questions have been made based on the Instructor's experience in the previous exams. We are RBIClue and we have 3 levels of API 571 exam prep courses and the current course is the most basic and the cheapest version of our API 571 courses. For more information or to know more about level 2 and level 3 courses, you can visit our website, RBIClue dot com. If you choose level 2 or 3, then after finishing the test, you will see an answer to each question like below: Question: Corrosion in boiler feedwater and condensate return systems is usually the result of dissolved gases, oxygen and...A. Carbon monoxideB. H²OC. ChloridesD. Carbon dioxideAnswer: D. Carbon dioxide, Dissolved gases present in water are the driving force of corrosion. Oxygen in water causes pitting corrosion and scale formation in piping and boiler tubes while carbon dioxide corrosion is prevalent in condensate systems. Carbon dioxide exists in a dissolved or bicarbonate form and condenses to produce carbonic acid. This acid combines with steel and forms grooves at the bottom of the piping. Page 43, Section 3.9.3A is incorrect as carbon monoxide in boiler feed water does not result in corrosion. B is incorrect as water does not directly trigger corrosion but rather the dissolved gases present on it. C is incorrect as chlorides in boiler feed water can cause priming, uneven delivery of steam, deposition of salts, but not corrosion directly.Who is this API 571 Certificate for?All Corrosion Engineers, Integrity Engineers, RBI Engineers, Maintenance Engineers, Pressure Vessels/Piping/Tanks/Boilers Inspectors and every other inspection professionals.Are You Qualified To Take The API 580 Exam?If you hold a current API 510, 570 or 653 certification, you automatically qualify to take the API 571 Corrosion and Materials certification exam. If you do not hold a current API 510, 570 or 653 certification, then qualification is based on a combination of your level of education and industry experience acquired within the last 10 years.You want to study For The Exam?The API 571 Corrosion and Materials certification exam tests the individual's knowledge and expertise in the field of corrosion and materials selection. Exam questions for the API 571 Corrosion and Materials certification are derived from API RP 571 Damage Mechanisms Affecting Fixed Equipment in the Refining Industry.What is the exam structure?The API 571 exam is 3.25 hours long. There are 80 questions, of which only 70 are scored. The remaining 10 are pretest, which are not scored. All questions are multiple-choice and closed-book. Paper and reference materials are not allowed into the examinations. This exam has a set passing scaled score.What is API 571 code?API RP 571 discusses damage mechanisms applicable to oil refineries as well as petrochemical and other industrial applications. This code is intended to contribute to the overall management of pressure equipment integrity and is a useful resource for many mechanical integrity program activities including:a) identification of existing damage or deterioration and anticipated rates of degradation,b) identification of future damage mechanism susceptibilities,c) development and maintenance of inspection and monitoring strategies, programs, and plans (e.g. per API 510, API 570, and API 653),d) implementation and monitoring of integrity operating windows (IOWs) (see API 584),e) development of corrosion control documents (CCDs) (see API 970),f) implementation of Risk-Based Inspection (RBI) programs (see API 580 and API 581),g) conducting Fitness-For-Service (FFS) assessments (see API 579-1/ASME FFS-1),h) application of proper examination techniques, andi) conducting pressure equipment integrity incident investigations (see API 585).