首页|叶脉仿生分形纹理化金刚石砂轮磨削氧化锆陶瓷试验评价

叶脉仿生分形纹理化金刚石砂轮磨削氧化锆陶瓷试验评价

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针对氧化锆陶瓷在传统砂轮磨削过程中存在的磨削力大、加工质量较差等问题,根据叶脉分形结构在减阻导流与散热传质方面的优异性能,建立叶脉分形角模型,设计 30.0°、45.0°和 60.0° 3种不同分形角度的叶脉仿生分形纹理化金刚石砂轮,对比分析原始砂轮与 3种仿生分形砂轮对氧化锆陶瓷磨削表面粗糙度Ra、磨削力和磨削力比的影响.结果表明:仿生分形砂轮比原始砂轮具有更好的磨削性能;与原始砂轮相比,仿生分形砂轮的法向磨削力降低了 12.7%~55.8%,切向磨削力降低了 8.1%~40.3%,且其对表面粗糙度Ra影响不明显;当分形角为30.0°时,获得的磨削力比最小值为1.4~3.0,表面粗糙度Ra最小值为1.824 μm.
Experimental evaluation of grinding zirconia ceramics with leaf vein bionic fractal textured diamond grinding wheel
To address the challenges of high grinding force and poor processing quality in grinding zirconia ceramics with traditional grinding wheels,this study explores the use of leaf vein bionic fractal textured diamond grinding wheels.These wheels,designed with fractal angles of 30.0°,45.0°,and 60.0°,leverage the leaf vein bionic fractal texture's cap-abilities in reducing drag,guiding flow,heat dissipation,and mass transfer.The effects of the original grinding wheel and the three types of bionic fractal grinding wheels on the surface roughness(Ra),grinding force,and grinding force ra-tio of zirconia ceramics were compared and analyzed.The results show that the bionic fractal grinding wheels outper-form the original grinding wheel.Specifically,compared to the original grinding wheel,the normal grinding force of the bionic fractal grinding wheel is reduced by 12.7%to 55.8%,and the tangential grinding force is reduced by 8.1%to 40.3%.The bionic fractal grinding wheels have not obvious effects on the surface roughness Ra.When the fractal angle is 30.0°,the minimum grinding force ratio is 1.4 to 3.0,and the minimum surface roughness Ra is 1.824 μm.

leaf vein fractal texturefractal anglelaser texturingzirconia ceramicsgrinding performance

张晓红、何田仲森、温东东、李超、王卓然、龙翼翔

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湖南理工学院 机械工程学院,湖南 岳阳 414006

机械工业激光磨削复合智能制造与服役性能优化重点实验室,湖南 岳阳 414006

湖南科技大学 机电工程学院,湖南 湘潭 411201

叶脉仿生分形结构 分形角 激光纹理化 氧化锆陶瓷 磨削性能

湖南省自然科学基金杰出青年基金国家自然科学基金国家自然科学基金

2021JJ100315187520051905170

2024

金刚石与磨料磨具工程
郑州磨料磨具磨削研究所

金刚石与磨料磨具工程

CSTPCD北大核心
影响因子:0.354
ISSN:1006-852X
年,卷(期):2024.44(3)