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Properties influencing cracking and separation of palm nuts in a mechanical cracker cum separator

机译:影响机械饼干暨分离器中棕榈螺母裂纹和分离的性质

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摘要

Experimental studies of some properties influencing cracking and separation of palm kernel from the shell was conducted in a palm kernel dual processing machine. A mechanical cracking cum separating machine was developed for the study. The cracking unit consists of feed hopper, impeller shaft, cracking drum and impeller blade. The nut falls by gravity through the hopper channel into the cracking drum where the cracking process takes place through the help of impeller blades that flip the palm nut against the walls of cylindrical cracking drum. The mass of cracked nut flows through the separating unit that separates the kernel from the shell. The separation is induced by high current of air mass generated by an axial fan. A dura palm variety was selected and a total sample of eighteen thousand (18000) palm nuts were obtained and divided into two groups (feed rates), A and B, of eight thousand and ten thousand palm nuts respectively. Sample groups A and B were further divided into five sub – groups of four hundred (400) and five hundred (500) palm kernel nuts. Each sub group (feed rate) was replicated four times at different shaft speeds (600, 900, 1200, 1500 and 1800 rpm). Results showed that cracking efficiencies increased with respect to speed. Un-cracked nuts percentage ranged from 1.3 to 5.3% at 7.1% moisture content, and 1.6 to 4.5% for 400 and 500 feed rates, respectively. Cracking time for both feed rates decreased with shaft speed. Throughput capacity of 11.49 kg/h was observed to be the lowest at 600 rpm and moisture content of 7.1% for both 400 feed rates and the highest throughput capacity of 37.16 kg/h was recorded at 1800 rpm at moisture contents of 9.3% and 16.1%. The results of this study shows that moisture content, engine speed and feed rate are significant parameters that influence cracking of nuts and separation of palm kernel from the shell.
机译:影响裂缝分离的一些性能的实验研究来自壳牌的棕榈核在棕榈核双重加工中进行机器。开发了一种机械开裂暨分离机研究。裂缝单元由饲料料斗,叶轮轴,开裂组成鼓和叶轮刀片。螺母通过料斗通道落下重力进入裂缝鼓,其中裂缝过程通过帮助进行将棕榈螺母靠在圆柱形墙壁上的叶轮刀片的叶片开裂鼓。裂纹螺母的质量流过分离单元将内核与壳体分开。分离由高电流诱导由轴向风扇产生的空气质量。选择了Dura Palm品种,一个获得了18000(18000)棕榈坚果的总样品分为两组(饲料速率),a和b,八千和十千棕榈坚果。样本组A和B进一步分开进入五百(400)和五百(500)掌的五组仁坚果。每个子组(进料速率)在不同的四次复制四次轴速度(600,900,1200,1500和1800rpm)。结果表明脆弱效率相对于速度增加。未破解坚果百分比范围为7.1%的水分含量为1.3%至5.3%,1.6%至4.5%对于400和500个饲料速率。饲料率的开裂时间轴速下降。观察到11.49千克/小时的吞吐量对于400份饲料,以600rpm和7.1%的含水量为600rpm,含量为7.1%1800年录制了37.16千克/小时的速率和最高吞吐量。水分含量为9.3%和16.1%的RPM。本研究结果表明含水量,发动机速度和进料速率是显着的参数从壳体中影响螺母的开裂和棕榈核的分离。

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