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A new lightweight online database for corrosion rate analysis of fluorochemical engineering processes

机译:一种新的轻质在线数据库,用于碳化工程过程的腐蚀速率分析

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Corrosion is one of the major reasons destroying the reliability of equipment or systems in the fluorochemical engineering processes. A new lightweight database was developed for the specific requirements of the corrosion mechanism analysis for fluorochemical engineering processes. This paper takes Vue.js as the front-end framework, ElementUI as the component library, the back-end based on Python language, selects Flask as the back-end framework, MySQL as the database foundation, supplemented by various derivatives of Vue.js and Flask, to create a single-page, multi-functional front and back-end separate web application, which is specially used for the storage and utilization of hydrofluoric acid corrosion material performance data. The use of Vue.js and Flask makes the database lightweight and easy to use. The unified development, separate operation and logical decoupling design of the front and back-end makes the data storage more secure, the software runs more reliable, and the modular functional design makes the software more scalable. According to the characteristics of hydrofluoric acid corrosion materials and the specific process of hydrofluoric acid corrosion research, four functions were designed as: database management, material comparison, material selection and background management. It has powerful performance and safety design, which provides convenience for researchers to study hydrofluoric acid corrosion materials. Therefore, it fills in the gaps between priceless corrosion data and the delivery of integrated knowledge to end-users, thus helping unleash the value of the current data resources.
机译:腐蚀是破坏氟化物工程过程中设备或系统可靠性的主要原因之一。开发了一种新的轻量级数据库,用于氟化化学工程过程腐蚀机制分析的具体要求。本文将Vue.js作为前端框架,ElementUI作为组件库,基于Python语言的后端,选择瓶装作为后端框架,MySQL作为数据库基础,补充了各种衍生物的Vue。 JS和Flask,创建单页,多功能前端和后端单独的网页应用,专门用于储氢和利用氢氟酸腐蚀材料性能数据。使用Vue.js和烧瓶使数据库轻巧且易于使用。前端和后端的统一开发,单独的操作和逻辑去耦设计使数据存储更安全,软件运行更可靠,模块化功能设计使软件更可扩展。根据氢氟酸腐蚀材料的特点和氢氟酸腐蚀研究的具体过程,设计了四种功能:数据库管理,材料比较,材料选择和背景管理。它具有强大的性能和安全设计,为研究人员提供了研究氢氟酸腐蚀材料的便利性。因此,它填补了无价的腐蚀数据和综合知识之间的差距以及终端用户,从而帮助释放当前数据资源的值。

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