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用磨光函数进行起重机仿真训练器集装箱运动路径的优化 被引量:1
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作者 李向荣 王重华 俞宏生 《上海海运学院学报》 北大核心 2002年第3期62-65,共4页
在不考虑集装箱摆动的前提下 ,对起重机仿真训练器的集装箱运动路径的优化问题进行初步研究。先找出具有可操作性的连接装卸起点和终点并包络各障碍点的折线族 ;然后应用磨光函数方法解决相邻折线段之间的速度改变 ;以用时最少为目标对... 在不考虑集装箱摆动的前提下 ,对起重机仿真训练器的集装箱运动路径的优化问题进行初步研究。先找出具有可操作性的连接装卸起点和终点并包络各障碍点的折线族 ;然后应用磨光函数方法解决相邻折线段之间的速度改变 ;以用时最少为目标对路径进行优化。 展开更多
关键词 仿真训练器 集装箱 运动路径 起重机 优化 磨光函数
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Effects of roller burnishing process parameters on surface roughness of A356/5%SiC composite using response surface methodology
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作者 Shashi Prakash Dwivedi Satpal Sharma Raghvendra Kumar Mishra 《Advances in Manufacturing》 SCIE CAS 2014年第4期303-317,共15页
In this study, a simple roller burnishing tool was made to operate burnishing processes on A356/5%SIC metal matrix composite fabricated by electromagnetic stir casting under different parameters. The effects of burnis... In this study, a simple roller burnishing tool was made to operate burnishing processes on A356/5%SIC metal matrix composite fabricated by electromagnetic stir casting under different parameters. The effects of burnishing speed, burnishing force and number of burnishing passes on the surface roughness and tribological properties were measured. Scanning electron microscopy (SEM) graphs of the machined surface with PCD (insert-10) tool and roller burnished surface with tungsten carbide (WC) roller were taken into consider- ation to observe the surface finish of metal matrix composites. The mechanical properties (tensile strength, hardness, duc- tility) of A356/5%SIC metal matrix composites were studied for both unburnished samples and burnished samples. The results revealed that the roller burnished samples of A356/ 5%SIC led to the improvement in tensile strength, hardness and ductility. In order to find out the effects of roller bur- nishing process parameters on the surface roughness of A356/ 5%SIC metal matrix composite, response surface methodol- ogy (RSM) (Box-Behnken design) was used and a prediction model was developed relevant to average surface roughness using experimental data. In the range of process parameters, the result shows that roller burnishing speed increases, and surface roughness decreases, but on the other hand roller burnishing force and number of passes increase, and surface roughness increases. Optimum values of burnishing speed (1.5 m/s), burnishing force (50 N) and number of passes (2) during roller burnishing of A356/5%SIC metal matrix com- posite to minimize the surface roughness (predicted 1.232 μm) have been found out. There was only 5.03% error in the experimental and modeled results of surface roughness. 展开更多
关键词 burnishing speed burnishing force Response surface methodology (RSM) Box-Behnkendesign Desirability function
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