摘要
为了满足油厂大型化和对油料蛋白综合加工利用的需求,对低温脱溶机的相关技术进行了研究。分析了低温脱溶技术的工艺特点以及低温脱溶机的组成和工作机理;根据工作环境的要求,选择了驱动系统;建立了低温脱溶机链传动的优化设计数学模型,运用"惩罚函数法"进行优化求解;对低温脱溶机的轴体、筒体和密封系统等关键部件进行了设计。性能试验表明,研制的低温脱溶机各项性能达到了设计要求,满足了低温脱溶技术的需要。
In order to meet the demands of large-scale oil plants and comprehensive processing and utilization of protein,the related technologies of designing low temperature desolventizer were described.The characteristics of low temperature desolventizing technology,the composition and working mechanism of the low temperature desolventizer were analyzed.According to the requirement of the work environment,the drive system was selected;the optimal mathematical model of the chain transmission of the machine was established,and the "punishment function" was used to optimize the solution;the key components of the machine,such as axis,cylinder,sealed system and so on were designed.The experiment showed that each performance of the machine could meet the design requirements and the needs of low temperature desolventizing technology.
出处
《中国油脂》
CAS
CSCD
北大核心
2010年第10期57-60,共4页
China Oils and Fats
基金
中国博士后科学基金一等奖项目(20070410258)
河南省教育厅基金项目(2010hnjj003)
河南工业大学基金项目(2009BS003)
关键词
低温脱溶机
豆粕
优化设计
low temperature desolventizer
soybean meal
optimal design