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吉林化工学院学报, 2021, 38(9): 73-77     https://doi.org/10.16039/j.cnki.cn22-1249.2021.09.014
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基于响应面分析法的辊子式榛子破壳机结构参数的优化
王喜印1,许诺1,李齐2,于东林1*
1、吉林化工学院 机电工程学院,吉林 吉林 132022;2、吉林石化公司  合成树脂厂,吉林 吉林 132000
Optimization of Structural Parameters of Hazelnut Shell Breaker with Roller
WANG Xiyin1,XU Nuo1,LI Qi2,YU Donglin1*
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摘要 

为了提高榛子破壳的品质和效率,对榛子破壳机的性能指标进行优化,本装置的主要破壳装置为刀辊。对刀辊进行结构参数优化,发现影响榛子破壳机的脱壳率,破仁率为刀辊直径,刀辊转速,刀辊间距,对上述三个因素进行单因素试验和正交试验,运用中心组合理论,通过Design Expert软件进行模拟数据,最终确定刀辊的最佳结构参数。实验结果表明:当刀辊转速为180r/min,刀辊直径为181mm,刀辊间隙为11.2mm时,榛子脱壳率为93.35%,破仁率为7.69%。达到优化效果。

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王喜印
许诺
李齐
于东林
关键词:  响应面分析法  优化设计  榛子  破壳机     
Abstract: 

In order to improve the quality and efficiency of hazelnut shell breaking and optimize the performance index of hazelnut shell breaking machine, the main shell breaking device of this device is knife roller. Through the optimization of the structure parameters of the knife roller, it is found that the shelling rate of the hazelnut sheller is affected by the diameter of the knife roller, the rotation speed of the knife roller and the distance between the knife rollers. The single factor test and orthogonal test are carried out for the above three factors, and the optimal structure parameters of the knife roller are finally determined by using the central combination theory and the simulation data by the design expert software. The results showed that when the rotation speed of the cutter roller was 180 R / min, the diameter of the cutter roller was 181 mm, and the gap between the cutter rollers was 11.2 mm, the shelling rate and kernel breaking rate of hazelnut were 93.35% and 7.69%, respectively.

Key words:  response surface methodology    optimization design    hazelnut    shell breaker
               出版日期:  2021-09-25      发布日期:  2021-09-25      整期出版日期:  2021-09-25
ZTFLH:  S226.4  
引用本文:    
王喜印, 许诺, 李齐, 于东林. 基于响应面分析法的辊子式榛子破壳机结构参数的优化 [J]. 吉林化工学院学报, 2021, 38(9): 73-77.
WANG Xiyin, XU Nuo, LI Qi, YU Donglin. Optimization of Structural Parameters of Hazelnut Shell Breaker with Roller . Journal of Jilin Institute of Chemical Technology, 2021, 38(9): 73-77.
链接本文:  
http://xuebao.jlict.edu.cn/CN/10.16039/j.cnki.cn22-1249.2021.09.014  或          http://xuebao.jlict.edu.cn/CN/Y2021/V38/I9/73
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[2] 谭丽辉, 刘庆, 李春阳. 基于Optistruct的电池包箱体上盖优化设计 [J]. 吉林化工学院学报, 2020, 37(7): 22-26.
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