水稻秸秆纤维制取机工作参数优化与性能试验
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国家重点研发计划项目(2018YFD0201004)、国家自然科学基金青年科学基金项目(31701311)和辽宁省教育厅青年科技人才育苗项目(J2020111)


Working Parameter Optimization and Performance Test of Straw Fiber Machine
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    摘要:

    为实现高得率、低能耗的水稻秸秆纤维制取,降低生产成本,更好地为可降解植物纤维地膜提供原料,以D200型秸秆纤维制取机为载体,选取制取机主轴转速、加工温度和爆破口腔体间隙为试验因素,以纤维得率和制取机能耗为试验指标,建立回归模型,分析试验因素对性能指标的影响规律。结果表明:制取机主轴转速、加工温度、腔体间隙对制取机能耗、水稻秸秆纤维得率的影响极显著(P<0.01),各因素对制取机能耗影响由大到小依次为:腔体间隙、加工温度、主轴转速,对纤维得率影响由大到小依次为:腔体间隙、主轴转速、加工温度;获得最优参数组合为:主轴转速97r/min、加工温度107℃、腔体间隙5.7mm。在该条件下进行验证试验,得制取机能耗均值为39.67kW/h,纤维得率均值为87.58%,与理论优化值相对误差不大于1.6%,满足高得率、低能耗水稻秸秆纤维制取要求。本研究可为水稻秸秆纤维清洁制取工艺提供参考依据。

    Abstract:

    Using crop straw as material to produce degradable plant fiber film is an ideal utilization of crop straw, which could effectively solve the white pollution caused by plastic film. Efficient, clean and energysaving fiber preparation is an important prerequisite for the production of plant fiber film. At present, there are still some shortcomings in the process of straw fiber manufacturing. Firstly, the yield of straw fiber is too low and the obtained straw fiber could only be used after screening, which increased the procedure of fiber production. Secondly, large energy consumption consumed during producing lead to the increase of production cost. To improve the yield of straw fibers and reduce energy consumption, D200 straw fiber making machine was used as carrier, and the main factors influencing fiber yield and energy consumption of the machine were determined, based on the principle of nonpollution, low energy consumption, and high quality production of straw fibers. Three factors and five levels quadratic orthogonal rotation center combination test method was carried out by using rice straw as material, and spindle speed, processing temperature and cavity gap of D200 machine were chosen as test factors. Fiber yield and energy consumption were used as test indexes. Considering the structure and working parameters of D200 type straw fiber manufacturer, also combining with the previous theoretical research and pretest, the range of spindle speed was selected as 85~135r/min, processing temperature was 88~120℃ and cavity gap was 3.5~8.5mm. The regression analysis of the test data was carried out, and the regression model between performance index and test factors was established under the condition of reliability α=005. At the same time, the influence of factors on the energy consumption and fiber yield performance index was also analyzed. The results of quadratic equation coefficients of fiber yield and fiber lengthwidth ratio were used to judge the influence degree of the test factors on the performance index. Results indicated that the influence of spindle speed, processing temperature and cavity clearance on the energy consumption was very significant (P<0.01). The effect of interaction between spindle speed and cavity clearance on the energy consumption of the machine was extremely significant (P<0.01), and the effect of interaction between processing temperature and cavity clearance was significant (P<0.05). The order of influence of each factor on the energy consumption was as follows: cavity clearance, processing temperature and spindle speed. All factors had a significant effect (P<0.01) on the yield of rice straw fiber. The effect of interaction between processing temperature and spindle speed was significant (P<0.05), and the effect of interaction between processing temperature and cavity clearance was extremely significant (P<0.01). The order of influence of each factor on fiber yield was cavity clearance, spindle speed and processing temperature. Based on the principle of clean and highquality rice straw fiber production, and taking high yield and low energy consumption as requirements, it was concluded that when processing temperature was 106.6℃, spindle speed was 97.1r/min and the cavity clearance was 5.65mm, the fiber yield was 86.60%, and power consumption of the machine was 39.04kW/h. Straw fiber with high yield and low energy consumption was prepared, which could provide better raw materials for degradable plant fiber film. According to the optimum technological results, processing temperature, spindle speed and cavity clearance were chosen as 107℃, 97r/min and 5.7mm respectively to measure the power and fiber yield of the machine. Ten parallel validations were carried out. Results showed that the final power consumption of the machine was 39.67kW/h and the fiber yield was 87.58%, which confirmed that the optimized results were correct and credible. The research results can provide reference for the clean production of rice straw fiber. 

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刘环宇,江连洲,陈海涛,夏吉庆,李龙海.水稻秸秆纤维制取机工作参数优化与性能试验[J].农业机械学报,2020,51(10):161-169. LIU Huanyu, JIANG Lianzhou, CHEN Haitao, XIA Jiqing, LI Longhai. Working Parameter Optimization and Performance Test of Straw Fiber Machine[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(10):161-169.

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  • 收稿日期:2020-01-01
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  • 在线发布日期: 2020-10-10
  • 出版日期: 2020-10-10