期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
激光切割不锈钢薄板温度场特性的仿真及试验 被引量:3
1
作者 耿康 张争艳 +1 位作者 乔国朝 张建华 《机械设计》 CSCD 北大核心 2020年第8期27-33,共7页
为了揭示激光切割不锈钢薄板的温度场分布及工艺规律,综合考虑不锈钢薄板的热力学性能,基于传热学理论将激光热源简化为二维高斯热源模型,通过有限元方法对激光切割1 mm厚不锈钢薄板的温度场进行数值模拟,并用多点热电偶监测切割温度,... 为了揭示激光切割不锈钢薄板的温度场分布及工艺规律,综合考虑不锈钢薄板的热力学性能,基于传热学理论将激光热源简化为二维高斯热源模型,通过有限元方法对激光切割1 mm厚不锈钢薄板的温度场进行数值模拟,并用多点热电偶监测切割温度,比较仿真结果和试验结果,发现二者具有很好的一致性,最大误差仅有9%,同时发现激光切割后期存在温度跃升的现象,纠其原因是温度累积和散热条件改变共同作用的结果。试验证明温度跃升会恶化加工质量,增强散热条件能有效改善温度跃升的影响。 展开更多
关键词 激光切割 不锈钢薄板 温度场 数值模拟 温度跃升
下载PDF
Surface roughness prediction model in ultrasonic vibration assisted grinding of BK7 optical glass 被引量:9
2
作者 ZHAO Pei-yi ZHOU Ming +1 位作者 ZHANG Yuan-jing qiao guo-chao 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第2期277-286,共10页
Pre-knowledge of machined surface roughness is the key to improve whole machining efficiency and meanwhile reduce the expenditure in machining optical glass components.In order to predict the surface roughness in ultr... Pre-knowledge of machined surface roughness is the key to improve whole machining efficiency and meanwhile reduce the expenditure in machining optical glass components.In order to predict the surface roughness in ultrasonic vibration assisted grinding of brittle materials,the surface morphologies of grinding wheel were obtained firstly in the present work,the grinding wheel model was developed and the abrasive trajectories in ultrasonic vibration assisted grinding were also investigated,the theoretical model for surface roughness was developed based on the above analysis.The prediction model was developed by using Gaussian processing regression(GPR)due to the influence of brittle fracture on machined surface roughness.In order to validate both the proposed theoretical and GPR models,32sets of experiments of ultrasonic vibration assisted grinding of BK7optical glass were carried out.Experimental results show that the average relative errors of the theoretical model and GPR prediction model are13.11%and8.12%,respectively.The GPR prediction results can match well with the experimental results. 展开更多
关键词 surface roughness prediction model ultrasonic vibration optical glass GPR regression
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部