Instrumentation and evaluation process of some engineering characteristics of grain crops and utilization for mechanized production and processing in Nigeria: A review

O. Oduma, Okeke Glory, N. Onyekachukwu, C. Agu
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Abstract

A review of Instrumentation and Evaluation Process of some Engineering Characteristics of Grain Crops and Utilization for Mechanized Production and Processing in Nigeria was conducted. Various related works which were relevant to the study were explored and used for the review. Proper evaluation and utilization of engineering characteristics of grain crops would enhance the design and/or development of equipment which would effortlessly boost up the production and post-harvest handling/processing process of grain crops and minimize unnecessary damage/loss of the seeds. The review revealed that moisture content had great influence on the engineering properties of grain kernels. Results of researchers showed an increase in mass of coriander seed from 8.89 to 9.826 g when the moisture content was increased from 8.5 % to15.89 % (w.b.); angle of repose increased from 25.5 to 31o with increase of moisture content from 8.5 % to 15.89 % (w.b.). The coefficient of friction for various surfaces increased with the increase in the moisture content while the bulk density decreases with the increase in moisture content. Furthermore, the compression force required to initiate grain kernel rupture decrease with the increase in moisture content. Thus, the deformation at the grain rupture increases as the moisture content increases. Results from the review indicated a decrease in fracture forces range from 63 t0 38 N for IT86D-I0I0, 64 to 40 N and 70 to 46 N, respectively for IAR-339-1 and Ife Brown cowpea varieties at moisture content varying from 15 to 30 % (w.b). The review further showed that most studies were focused on a few grain crops and that data on engineering properties obtained for various grains seeds vary from one crop to another and from one variety to another. This variation requires studies of engineering properties of different types and varieties of grain crops at different moisture content levels that would guide farmers, processors and designers/manufacturers of machine tools in developing and selecting appropriate machines for their operations at any level in order to increase their production at reduced loss or damage of the seeds.
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尼日利亚粮食作物某些工程特性及其在机械化生产加工中的利用的测量和评价过程综述
综述了尼日利亚粮食作物某些工程特性的检测和评价过程及其在机械化生产加工中的应用。对与本研究相关的各种相关著作进行了探索和利用。正确评价和利用粮食作物的工程特性,可以提高设备的设计和/或开发,从而轻松提高粮食作物的生产和收获后的处理/加工过程,最大限度地减少不必要的种子损坏/损失。研究表明,水分含量对籽粒的工程性能有很大影响。研究结果表明,当香菜种子含水量由8.5%增加到15.89%时,种子质量由8.89 g增加到9.826 g(重量);休止角从25.5°增加到310°,含水率从8.5%增加到15.89% (w.b.s)。各表面的摩擦系数随含水率的增加而增大,而容重随含水率的增加而减小。籽粒破裂所需的压缩力随含水率的增加而减小。因此,晶粒破裂处的变形随着含水率的增加而增加。结果表明,当水分含量在15% - 30% (w.b)之间变化时,IT86D-I0I0、IAR-339-1和Ife Brown豇豆品种的断裂力分别在63 - 38 N、64 - 40 N和70 - 46 N之间减小。该综述进一步表明,大多数研究集中在少数几种粮食作物上,不同作物和不同品种获得的各种谷物种子的工程特性数据各不相同。这种变化需要对不同类型和品种的粮食作物在不同水分含量水平下的工程特性进行研究,这将指导农民、加工商和机床设计师/制造商开发和选择适合他们在任何水平上操作的机器,以便在减少种子损失或损害的情况下增加产量。
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