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Degradation/Damage Modes and their Control Measures for Stainless Steel Components in Chemical Plants

机译:化学植物中不锈钢组分的降解/损伤模式及其控制措施

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摘要

Safe and continuous operation of chemical plants is the most important issue for sustainability of chemical enterprises. The control and prevention of degradation/damage on components used in chemical plants are indispensable for this purpose. Although varied types of material, such as stainless steels, Ni-based alloys and reactive metals, are in use to control these phenomena in plants, various cases of degradation/damage have actually been experienced and the accidents caused by such degradation have occasionally been reported. In order to prevent such uncontrolled degradation, it is thought necessary to predict the likelihood of degradation of materials under actual operating conditions, to use compatible materials, to detect the degradation by inspection in advance and to apply proper countermeasures based on realistic life estimation of the plant concerned. In order to follow these processes properly, extensive accumulation and orderly organization of knowledge about the mechanisms on degradation/damages, characteristics of materials, inspection technics and methods of plant life estimation are thought of vital importance. As stainless steel is the commonly used material in chemical plants, sufficient accumulation of information and knowledge about the stainless steel components to be used is considered the most important subject to prevent the degradation/damage in chemical plants. This paper enumerates the characteristics of commonly encountered modes of degradation with stainless steel components in chemical plants and presents some cases of the degradation/damage on stainless steel equipment in plants, together with control measures required to prevent such degradation. The present-day problems of materials engineering relating to the reliability of chemical plants and the countermeasure against degradation/damage are also presented.
机译:化工厂的安全和持续运行是化工企业可持续性最重要的问题。用于化学植物中使用的组分的降解/损伤的控制和预防对于此目的是必不可少的。虽然不同类型的材料如不锈钢,Ni基合金和反应金属,但用于控制植物中的这些现象,实际上已经经历过各种降解/损坏,并且偶尔已经报道了这种降解引起的事故。为了防止这种不受控制的降级,认为有必要预测实际操作条件下材料降解的可能性,以使用兼容材料,预先通过检查检测劣化,并根据现实寿命估算来应用适当的对策有关的植物。为了妥善遵循这些过程,广泛的积累和有序地组织关于降解/损坏机制的知识,材料的特征,植物寿命估算的特点是至关重要的。由于不锈钢是化学植物中常用的材料,充分积累的信息和关于所使用的不锈钢组分的知识被认为是防止化学植物中的降解/损伤的最重要的主题。本文枚举了化学厂中不锈钢组分的常见变化模式的特点,并呈现了植物不锈钢设备的降解/损伤,以及防止这种降解所需的控制措施。还提出了与化工厂可靠性有关的材料工程的现状问题及对抗降解/损伤的对策。

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