标题: | 氯气气瓶柜泄漏危害分析与改善研究 Leakage Hazard Analysis and Improvement of the Chlorine Gas Cabinet |
作者: | 陈清庭 Ching-Ting Chen 张翼 Edward Yi Chang 工学院产业安全与防灾学程 |
关键字: | 气瓶柜;失误模式与影响分析;失误树分析;Gas Cabinet;Failure Modes and Effects Analysis;Fault Tree Analysis |
公开日期: | 2005 |
摘要: | 氯气气体的使用在半导体制程中一直扮演着重要的角色,特别是半导体制程目前已被广泛的应用于各项产业,凡举传统的ULSI、TFT-LCD到现在开始萌芽的微机电(MEMS)产业,皆以所谓的半导体制程为产品的制造流程,其中的蚀刻制程即使用到相当多的氯气气体。而氯气供应系统是半导体厂中危险性最高的一环,由于氯气具有强烈的剧毒/腐蚀性,任何些微的泄漏都可能造成人员生命的危害,也就是因为这些显而易见的危险,所以对于氯气供应系统设计安全性及相关作业操作的要求就特别高。 本研究的目的是以氯气供应系统运作的角度,去建立系统设置及作业时应注意或遵守的设计属性与规范,并建立氯气供应系统危害分析参考指标,藉此降低氯气泄漏风险的适当控制。本研究以半导体厂为例,从氯气供应系统以往所发生泄漏的问题点,包括钢瓶储存、搬运、更换及气瓶柜设置维修等全部包含其中,利用失误模式与影响分析(Failure Modes and Effects Analysis, FMEA)、失误树分析(Fault Tree Analysis, FTA)等分析问题点,以追踪因人为操作或设备故障所导致泄漏的问题点,并藉此建立人员作业标准程序及系统设置时的检核表作为避免问题点重复发生的预防机制,进而增加氯气供应系统的稳定性、提升人员作业的安全性、提高供应气体的品质、减少意外泄漏发生机率。 The usage of chlorine gas plays a major role in semiconductor production industry. Today, as semiconductor-enabled technology is applied to many industries extensively, semiconductor production technology is commonly used not only in ULSI (Ultra Large Scale Integration) and TFT-LCD display industries, but also in modern MEMS (Micro-Electro-Mechanical Systems) industry. A tremendous amount of chlorine gas is used in semiconductor manufacturing, especially during the etching procedure. Providing chlorine gas during the semiconductor production process is one of the most dangerous steps, because chlorine gas is a strong poison and very corrosive. A small amount of chlorine gas leakage can be seriously harmful to human body, and for this reason it is very critical to design a highly secure chlorine supply system that can be operated safely. The purpose of this research is to build a reliable chlorine supply system by analyzing the current system in the semiconductor industry. In order to build a chlorine supply system that will meet all the expectations of safety, the system set-up and system operation are the essential elements of the design. Analyzing the current system from a wider perspective can provide useful guidance for determining safety regulations and personnel training. In addition, analyzing system specifications can increase the reliability and decrease the possibility of accidents. Studying the previous system issues and leakage problems can also help to identify human errors and hardware failures in order to avoid repeating the same mistakes in the system. Discovering the root problem associated with different procedures, such as gas storage, moving, renewal, and equipment maintenance is more accurate and effective by using FMEA (Failure Modes and Effects Analysis) and FTA (Fault Tree Analysis, FTA) techniques. This research provides beneficial information in order to set up a chlorine supply system, to follow the operational steps, to prevent repeated errors, improve dependability, to increase the production quality, and to prevent disastrous leakage. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009266516 http://hdl.handle.net/11536/77688 |
显示于类别: | Thesis |