|
|
|
| The design of 40 m2 block-hole graphite heat exchanger manufactured by impregnated graphite |
| Zhang Jinbo |
| The Fourth Research and Design Engineering Corporation of CNNC, Shijiazhuang 050021, China |
|
|
|
|
Abstract To solve design problems of the block-hole graphite heat exchanger, this paper demonstrates the features of a 40 m2 hydrochloric acid preheater used in project, such as material properties, internal components, operating principles and structure points. The heat exchanger block, the head block, the steel container, and the holding-down device are introduced in detail. The adaptable material is recommended. This paper also gives out the structures of hole, seal and clamp. And the stress analysis model of holding-down device is proposed. It is found that the maximum bearing capacity and the minimum sealing capacity must meet allowable requires during calculating the spring preload. This solution provides a practical case for the design optimization of such equipment. It is theoretical guiding significance to the further research of block-hole graphite heat exchanger.
|
|
|
|
|
|
| [ 1 ] 喻倩萍. 石墨换热器中国专利技术分析[ J ]. 广东化工, 2021,48( 16 ):133 - 134.
[ 2 ] GB/T 21432-2021,石墨制压力容器[ S ].
[ 3 ] 徐慎忠,陈汉明. 工业锅炉余热高效回收装置用石墨材料综合性能研究[ J ]. 研究与开发,2012,4:27 - 31.
[ 4 ] 许志远. 石墨制化工设备[ M ]. 北京:化学工业出版社, 2003:7 - 8.
[ 5 ] 天华化工机械及自动化研究设计院. 腐蚀与防护手册,第3卷[ M ]. 第2版.北京:化学工业出版社,2008:167 - 169.
[ 6 ] HG/T 3113-2019,圆块孔式不透性石墨换热器[ S ].
[ 7 ] GB/T 150-2011,压力容器[ S ].
[ 8 ] 闻邦椿. 机械设计手册,第3卷[ M ]. 第五版. 北京:机械工业出版社,2010:(16 - 9)-(16 - 17). |
|
|
|