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Effects of Peeling with Flexible Alloy Blade on Naked Oats 被引量:1
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作者 ZHANG Zheng WANG Xiaoxi MA Sen 《Grain & Oil Science and Technology》 2018年第3期131-137,共7页
This research reported the effect of peeling naked oats with a peeling machine equipped with the flexible alloy blade.Results showed that the flexible alloy blade could achieve the same effect as traditional abrasive ... This research reported the effect of peeling naked oats with a peeling machine equipped with the flexible alloy blade.Results showed that the flexible alloy blade could achieve the same effect as traditional abrasive rolls. Furthermore, the new peeling method had hardly damage to the oat kernels. The result of scanning electron microscopy indicated the surface of peeled naked oats by the flexible alloy blade is homogeneous. The gap between the flexible alloy blade and the slotted screen could change the particle sizes of the flours obtained, which differed from traditional peeling machines. In addition, peeling for 15 seconds significantly reduced the microbial contaminants. The removal of outer layer decreased the lipase activity. The technological parameters were optimized by orthogonal L_9(3~4) test, the results showed a 30 s peeling time and 2% second-addition of water contributed to the peeling rate. The texture analysis demonstrate that the hardness of cooked groats decreases obviously after peeling treatments. 展开更多
关键词 Naked oats PEELING Flexible alloy blade Microbial contaminants Lipase activity
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Polishing of Titanium Alloy Blade Root with Elastic Magnetic Toolic Tool
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作者 Xu Chengyu Ji Dongfeng +1 位作者 Zhang Yun Zhu Yongwei 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2024年第9期2413-2419,共7页
Removal of milling marks at the root fillet of titanium alloy blade is a tough work because of the interference between the polishing tool and the workpiece.A polishing method based on elastic magnetic tool was propos... Removal of milling marks at the root fillet of titanium alloy blade is a tough work because of the interference between the polishing tool and the workpiece.A polishing method based on elastic magnetic tool was proposed.The software ANSYS Maxwell was used to simulate the effect of different pole orientation arrangements on the magnetic field distribution.A comparison of polishing effect was made between elastic and inelastic magnetic pole carriers.The processing parameters of the elastic magnetic tool polishing for the blade root were optimized by orthogonal experiment(Taguchi)method.Results show that compared with the inelastic magnetic polishing tool,the elastic magnetic polishing tool with polyurethane as the pole carrier can effectively improve the surface quality of the polished workpiece.Under the optimal processing parameters(rotational speed=900 r/min,feeding rate=6 mm/min,machining gap=1.5 mm and abrasive size=10‒14μm),the original milling marks at the blade root are effectively removed and the average surface roughness Ra is dropped from 0.95μm to 0.12μm,which verifies the feasibility of the elastic magnetic polishing tool in the surface finishing of the titanium alloy blade root. 展开更多
关键词 titanium alloy blade root fillet elastic magnetic polishing tool processing parameters surface roughness
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STUDY OF THE MECHANISM TO IMPROVE PERFORMANCE OF CARBIDE BLADE BY LASER
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作者 Xu Zhengming Zhang Shichang ( Tianjin University) Zhang Baozheng(Nankai University ) 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1996年第3期216-220,233,共1页
The expermental research on the change of chemical composition and structure of car- bide blade surface treated by laser is carried out, and the relation between their structure and per- formance is studied. The resu... The expermental research on the change of chemical composition and structure of car- bide blade surface treated by laser is carried out, and the relation between their structure and per- formance is studied. The result shows that the element Co exists as a simple substance phase in prim- itive sintering structure. while in new melt-sintering structure it forms a fine alloy phase with origi- nal carbide, and this is the main factor which improves the performance of carbide blade treated by laser. 展开更多
关键词 Laser Carbide blade Simple substance phase alloy phase
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