磨介球对小麦麸皮振动冲击破碎性能的影响

程敏1,2,刘保国2,刘彦旭2

振动与冲击 ›› 2019, Vol. 38 ›› Issue (24) : 249-256.

PDF(2866 KB)
PDF(2866 KB)
振动与冲击 ›› 2019, Vol. 38 ›› Issue (24) : 249-256.
论文

磨介球对小麦麸皮振动冲击破碎性能的影响

  • 程敏1,2,刘保国2,刘彦旭2
作者信息 +

The influence of grinding ball on the vibration-impact crushing properties of wheat bran

  • CHENG Min1,2, LIU Baoguo2, LIU Yanxu2
Author information +
文章历史 +

摘要

充分考虑振动磨机磨介球在磨筒内的运动形态,根据相似原理提出了“磨介-小麦麸皮-磨介”双边冲击计算模型,克服了单边冲击计算模型无法模拟冲击剪切的不足,同时给出了该模型的材料参数以及利用该模型进行有限元数值模拟计算的求解设置。在此基础上,针对影响小麦麸皮破碎性能的运动特性、质量特性以及破碎形式等因素,利用LS-DYNA进行了有限元数值模拟计算。计算结果表明:磨介球对小麦麸皮破碎性能的影响是显著的。在运动特性方面,磨介球冲击速度越大,麸皮破碎性能越好;磨介球冲击角越大,麸皮破碎性能越差。在质量特性方面,磨介球密度越大,麸皮破碎性能越好;磨介球直径越大,接触力越大,麸皮接触区域也越大,但接触次数会降低。在破碎形式方面,冲击剪切与冲击挤压产生的接触力、接触时间、接触面积的差异较小,但冲击挤压引起的麸皮中心单元有效塑形应变大于冲击剪切;对于大尺寸麸皮应以冲击挤压为主要破碎形式,对于小尺寸麸皮应以冲击剪切为主要破碎形式。以上研究初步探明了磨介球对麸皮破碎性能的影响规律,为全面探索振动磨机物料破碎性能的影响规律提供了一条新途径。

Abstract

On the basis of fully considering the movement modes of the grinding ball in a vibration mill grinding tube, a bilateral impact calculation model named "grinding medium-wheat bran-grinding medium" was proposed based on the similarity principle.This model overcomes the shortage of the single side impact calculation model which can not simulate impact shear.At the same time, the material parameters of the model and the solution setting of the finite element simulation calculation were given.On this basis, the finite element numerical simulation was carried out on the movement characteristics, quality characteristics and crushing forms of wheat bran breaking properties by using the LS-DYNA.The results show that the effect of milling medium on the crushing properties of wheat bran is significant.In terms of the motion characteristics, the higher the impact speed of the grinding ball, the better the crushing performance of wheat bran.However, the greater the impact angles of the grinding ball, the worse the crushing performance of wheat bran.In terms of quality characteristics, the greater the density parameters of the grinding ball, the better the crushing performance of wheat bran; the greater the diameter of the ball, the greater the contact force; the greater the contact area of the wheat bran, but the contact number will be reduced.In the aspect of crushing form, the difference between impact shear and impact extrusion in contact force, contact time and contact area is small,but the effective plastic strain of bran center unit caused by impact extrusion is greater than that of impact shear.For large size bran, impact extrusion should be applied as the main form of crushing; and for small size bran, impact shear should be used.The above research preliminarily found out the effect of grinding ball on the crushing performance of wheat bran, and provided a new way to explore the influence law of material crushing performance of vibration mill comprehensively.

关键词

振动磨机 / 小麦麸皮 / 磨介球 / 破碎性能 / LS-DYNA

Key words

vibration mills / wheat bran / grinding ball / crushing property / LS-DYNA

引用本文

导出引用
程敏1,2,刘保国2,刘彦旭2. 磨介球对小麦麸皮振动冲击破碎性能的影响[J]. 振动与冲击, 2019, 38(24): 249-256
CHENG Min1,2, LIU Baoguo2, LIU Yanxu2. The influence of grinding ball on the vibration-impact crushing properties of wheat bran[J]. Journal of Vibration and Shock, 2019, 38(24): 249-256

参考文献

[1] ONIPE O O, JIDEANI A I O, BESWA D. Composition and functionality of wheat bran and its application in some cereal food products [J]. International Journal of Food Science & Technology, 2016, 50(12): 2509-2518.
[2] 程敏, 刘保国, 王攀, 等. 小麦麸皮超微粉碎技术研究进展[J]. 河南工业大学学报(自然科学版), 2017(6): 123-130.
CHENG Min, LIU Baoguo, WANG Pan, et al. Research progress on superfine grinding technology of wheat bran [J]. Journal of Henan University of Technology (Natural Science Edition), 2017(6): 123-130.
[3] 袁惠新, 俞建峰. 超微粉碎的理论、实践及其对食品工业发展的作用[J]. 包装与食品机械, 2001, 19(1):5-10.
YUAN Huixin, YU Jianfeng. Theory and practice of ultra-fine pulverization and its impact on food industries [J]. Packaging and food machinery, 2001, 19(1): 5-10.
[4] 李状,朱德明,李积华,等.振动超微粉碎对毛竹笋干物化特性的影响[J].农业工程学报,2014,30(3):259-263.
LI Zhuang, ZHU Deming, LI Jihua, et al. Influence of micronization on physicochemical properties of dried moso-bamboo shoots [J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2014, 30(3): 259-263.
[5] 黄晟,朱科学,钱海峰,等.超微及冷冻粉碎对麦麸膳食纤维理化性质的影响[J].食品科学, 2009, 30(15):40-44.
HUANG Sheng, ZHU Kexue, QIAN Haifeng, et al. Effects of Ultrafine Comminution and Freeze-grinding on Physico-chemical Properties of Dietary Fiber Prepared from Wheat Bran [J]. FOOD SCIENCE, 2009, 30(15): 40-44.
[6] LUO F, ZHANG X, HOU H, et al. Effects of debranning and ultra-fine grinding on the quality of flour and cookies from blue wheat [J]. African Journal of Biotechnology, 2012, 11(44): 10232-10241.
[7] GOCK E, KURRER K E. Eccentric vibratory mills — theory and practice [J]. Powder Technology, 1999, 105(1–3): 302-310.
[8] 彭猛, 唐果宁. 振动磨机粉磨动力学研究进展[J]. 矿业工程研究, 2008, 30(2): 107-108.
PENG Meng, TANG Guoning. Research progress on grinding dynamics of vibratory mill [J]. Mineral Engineering Research, 2008, 30(2): 107-108.
[9] KURRER K E, GOCK E. Effect of the operating conditions on motion and impact processes in Vibratory tube mills[J]. Aufbereitungs Technik, 1986, 10(1): 53-59.
[10] 王树林. 高速摄影对散体振动的研究[J]. 中国海洋大学学报(自然科学版), 1995(S1):15-22.
WANG Shulin. Study on bulk vibration through high speed photography[J]. Periodical of Ocean university of China (Natural Science Edition), 1995(S1):15-22.
[11] 苏乾益, 刘政. 振动磨机磨介运动规律及参数设计[J]. 南方冶金学院学报, 2002, 23(1): 13-18.
SU Qianyi, LIU Zheng. The regularity of medium motion in a vibration and design of parameters[J]. Journal of Southern institute of Metallurgy, 2002, 23(1): 13-18.
[12] 尹忠俊, 张少军, 李忠富. 振动磨筒体内部的能量传递规律[J]. 北京科技大学学报, 2006, 28(5): 471-474.
YIN Zhongjun, ZHANG Shaojun, LI Zhongfu. Energy transfer laws in a vibrating mill tube[J]. Journal of University of Science and Technology Beijing, 2006, 28(5): 471-474.
[13] 唐果宁, 彭猛. 振动磨机离散磨介动力学模型研究[J]. 中国机械工程, 2008, 19(11): 1347-1350.
TANG Guoning, PENG Meng. Research on dynamics model of desoerse mill medium group for vibration mill[J]. China Mechanical Engineering, 2008, 19(11): 1347-1350.
[14] 徐立章, 李耀明. 水稻谷粒冲击损伤临界速度分析[J]. 农业机械学报, 2009, 40(8): 54-57.
XU Lizhang, LI Yaoming. Speed of impact damage on a rice kernel [J]. Transactions of the Chinese Society for Agricultural Machinery, 2009, 40(8): 54-57.
[15] 李艳焕, 邵良杉, 徐振亮. 煤粒冲击粉碎临界速度的数值实验分析[J]. 振动与冲击, 2017, 36(5): 227-230.
LI Yanhuan, SHAO Liangshan, XU Zhenliang. Numerical analysis for critical speed of coal impacting and combinations [J]. Journal of Vibration and Shock, 2017, 36(5): 227-230.
[16] 廉晓庆, 蒋明学. 基于有限元模拟研究不同形状磨料对高铝砖的冲蚀磨损[J]. 硅酸盐学报, 2014, 42(6): 761-767.
LIAN Xiaoqing, JIANG Mingxue. Erosion wear of high Alumina brick impacted by erodent particles with different shapes based on finite element method[J]. Journal of the Chinese Ceramic Society, 2014, 42(6): 761-767.
[17] 陈中伟. 麦麸糊粉层细胞簇的机械剥离及电场富集研究[D]. 无锡:江南大学, 2015.
CHEN Zhongwei. Mechanical dissociation and electric separation of aleurone cell-cluster from wheat bran [D]. Wuxi: Jiangnan University, 2015.
[18] ANTOINE C, PEYRON S, MABILLE F, et al. Individual contribution of grain outer layers and their cell wall structure to the mechanical properties of wheat bran [J]. Journal of Agricultural & Food Chemistry, 2003, 51(7): 2026-2033.
[19] HEMERY Y M, MABILLE F, MARTELLI M R, et al. Influence of water content and negative temperatures on the mechanical properties of wheat bran and its constitutive layers.[J]. Journal of Food Engineering, 2010, 98(3): 360-369.
[20] GREFFEUILLE V, MABILLE F, ROUSSET M, et al. Mechanical properties of outer layers from near-isogenic lines of common wheat differing in hardness[J]. Journal of Cereal Science, 2007, 45(2): 227-235.
[21] 程绪铎, 陆琳琳, 石翠霞. 小麦摩擦特性的试验研究[J]. 中国粮油学报, 2012, 27(4):15-19.
CHENG Xuduo, LU Linlin, SHI Cuixia. The experimental research on friction properties of wheat [J]. Journal of the Chinese Cereals and Oils Association, 2012, 27(4):15-19.
[22] 杨小兰, 刘极峰, 周亚军,等. 离散元法之振动磨介流数值模拟与试验[J]. 振动工程学报, 2016, 29(3): 479-487.
YANG Xiaolan, LIU Jifeng, ZHOU Yajun, et al. Discrete element on the numerical simulation and experiment of vibration grinding medium flow[J]. Journal of Vibration Engineering, 2016, 29(3): 479-487.
[23] 瓦伦丁 L. 波波夫. 接触力学与摩擦学的原理及其应用[M]. 清华大学出版社, 2011.
VALENTIN L. Popov. Contact mechanics and friction physical principles and applications[M]. Tsinghua University Press, 2011.
[24] 唐果宁, 彭猛. 离散磨介群动力学特性数值分析[J]. 振动与冲击, 2009, 28(8): 184-187.
TANG Guoning, PENG Meng. Numerical analysis on dynamic characteristics of disperse milling medium group [J]. Journal of Vibration and Shock, 2009, 28(8): 184-187.

PDF(2866 KB)

Accesses

Citation

Detail

段落导航
相关文章

/