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基于ANSYS的玄武岩复合材料低水平放射性固体废物箱力学分析

Mechanical Analysis of Basaltic Low-level Radioactive Solid Waste Box Based on ANSYS
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摘要 目的以玄武岩复合材料低水平放射性固体废物箱新产品为研究对象,对其力学性能进行研究。方法基于玄武岩复合材料性能,参照《低、中水平放射性固体废物容器钢箱》(EJ1076—2014)的相关标准要求,利用ANSYS有限元软件完成了玄武岩复合材料低水平放射性固体废物箱的结构设计,并根据EJ 1076—2014等标准规则,对其进行了力学计算校核。结果以FB-Ⅲ型固体废物箱为例,其由Q235B的钢结构框架和厚度4.5 mm的玄武岩复合材料箱面组成,利用ANSYS有限元软件中的静力学和显示动力学模块,对此结构的玄武岩复合材料废物箱进行了堆码、顶部起吊、叉举、跌落等力学仿真分析,所得到的力学结果均小于EJ 1076—2014要求的限值。结论玄武岩复合材料低水平放射性固体废物箱新产品的结构设计满足设计要求,其力学评定符合EJ 1076—2014。 The work aims to take the new product of basaltic low-level radioactive solid waste box as the research object to study its mechanical properties.Based on the performance of basaltic composite material,referring to the relevant standards of low and medium level radioactive solid waste container-steel box,the structural design of basaltic low-level radioactive solid waste box was completed by ANSYS finite element software,and its mechanical calculation was calibrated according to the rules of standards such as EJ1076-2014.With FB-Ⅲ type solid waste box as an example,it was composed of Q235B steel frame and 4.5 mm thick basaltic composite material box surface.By using the static and display dynamics modules in ANSYS finite element software,the structure of basaltic waste box was analyzed by mechanical simulation such as stacking yardage,top lifting,fork lifting,falling,etc.,and the mechanical results obtained were less than the mechanical results required by the EJ1076-2014.The structural design of the basaltic low-level radioactive solid waste box meets the design requirements and its mechanical property assessment results comply with the requirements of the EJ1076-2014.
作者 丁健 龚伟 李连顺 王健 汪萍 马兴均 DING Jian;GONG Wei;LI Lianshun;WANG Jian;WANG Ping;MA Xingjun(Chengdu Nuclear Technology Engineering Design&Research Institute Co.,Ltd.,CNNC 404,Chengdu 524057,China;The 404 Company Limited,CNNC,Lanzhou 730050,China;Nuclear and Radiation Safety Center,Beijing 100082,China;Sichuan Gulitie Environmental Protection Engineering Co.,Ltd.,Chengdu 610500,China)
出处 《包装工程》 北大核心 2025年第3期272-279,共8页 Packaging Engineering
基金 甘肃省自然科学基金(23JRRA1356)。
关键词 放射性固体废物 玄武岩复合材料 力学分析 radioactive solid waste basaltic composite material mechanical analysis
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