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机器人化的水力喷射切削技术
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作者 林绳宗 《高科技与产业化》 1995年第6期7-9,共3页
利用象人的头发那样细(0.1~0.45mm)的高压(约4000巴)水流可切削橡胶、塑料、夹层板、纸张、纺织品等非金属材料,如在水流中添加磨削剂(如金刚砂)则可切削加工包括非常硬的钛合金在内的各种金属材料。将这种称为“水力喷射切削”
关键词 机器人 水力喷射切削 切削
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神经网络在水力喷射切削中的应用
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作者 盛伯浩 《世界制造技术与装备市场》 1994年第3期74-74,共1页
本文介绍应用神经网络来再现操作者的声感,用以控制水力喷射切削操作。
关键词 切削 水力喷射切削 神经网络 神经网络计算机
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Regeneration of grinding wheel active surface using high-pressure hydro-jet
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作者 Krzysztof NADOLNY Jaroslaw PLICHTA Pawel SUTOWSKI 《Journal of Central South University》 SCIE EI CAS 2014年第8期3107-3118,共12页
The possibility of applying a high-pressure hydro-jet for renewal of the grinding wheel cutting ability was presented.This work was conducted in the internal cylindrical grinding process of the Titanium Grade 2 alloy,... The possibility of applying a high-pressure hydro-jet for renewal of the grinding wheel cutting ability was presented.This work was conducted in the internal cylindrical grinding process of the Titanium Grade 2 alloy,which belongs to the group of hard-to-cut materials.The analysis shows that the impact on the erosion effectiveness of the grinding wheel active surface(GWAS)depends upon the hydro-jet inclination angle and working pressure.Experimental results reveal that application of hydro-jet working pressure of 25 MPa allows for effective cleansing of the grinding wheel surface.Depending on the initial GWAS condition and the level of its smearing with chips of machined material,it is possible to increase the number of grinding wheel unevenness apexes by as much as 4.5 times. 展开更多
关键词 GRINDING grinding wheels hydro-jet hard-to-cut materials
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