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三坐标测量机非刚性效应测量误差分布特征 被引量:7
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作者 林述温 吴昭同 李刚 《仪器仪表学报》 EI CAS CSCD 北大核心 2001年第2期172-175,共4页
本文采用坐标运动链系统分析法 ,研究三坐标测量机组成构件和运动副的各项基本误差与整机综合坐标测量误差间的关系 ,导出考虑构件和运动副非刚性效应的综合坐标测量误差数学表达式 ,并以移动桥式和固定桥式两种典型结构的三坐标测量机... 本文采用坐标运动链系统分析法 ,研究三坐标测量机组成构件和运动副的各项基本误差与整机综合坐标测量误差间的关系 ,导出考虑构件和运动副非刚性效应的综合坐标测量误差数学表达式 ,并以移动桥式和固定桥式两种典型结构的三坐标测量机为例 ,进一步分析了非刚性效应坐标测量误差的空间分布特征 ,得出对三坐标测量机的综合非刚性效应坐标测量误差建模补偿有指导意义的新结论。 展开更多
关键词 三坐标测量机 非刚性效应 误差分布 坐标误差模型 误差补偿
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移动桥式三坐标测量机非刚性误差分析与建模
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作者 刘鹏 朱超平 《重庆工商大学学报(自然科学版)》 2007年第1期60-64,共5页
根据移动桥式三坐标测量机非刚性效应测量误差的分布特征,对坐标测量机构件进行受力变形分析,进而对坐标测量机的非刚性效应测量误差进行分析,建立了三坐标测量机非刚性误差模型,为高精度坐标测量机的误差补偿技术提供了新的思路。
关键词 三坐标测量机 非刚性效应 误差分析
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三坐标测量机非刚性误差的分析与补偿 被引量:2
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作者 刘鹏 林述温 《工具技术》 北大核心 2001年第10期32-35,共4页
根据移动桥式三坐标测量机非刚性效应测量误差的分布特征 ,通过对坐标测量机构件进行受力变形分析与建模 ,对坐标测量机的非刚性效应测量误差进行了分析 。
关键词 三维坐标测量机 非刚性效应 误差分析 误差补偿
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Astronaut mass measurement using linear acceleration method and the effect of body non-rigidity 被引量:6
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作者 YAN Hui LI LuMing HU ChunHua CHEN Hao HAO HongWei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第4期777-782,共6页
Astronaut's body mass is an essential factor of health monitoring in space.The latest mass measurement device for the International Space Station (ISS) has employed a linear acceleration method.The principle of th... Astronaut's body mass is an essential factor of health monitoring in space.The latest mass measurement device for the International Space Station (ISS) has employed a linear acceleration method.The principle of this method is that the device generates a constant pulling force,and the astronaut is accelerated on a parallelogram motion guide which rotates at a large radius to achieve a nearly linear trajectory.The acceleration is calculated by regression analysis of the displacement versus time trajectory and the body mass is calculated by using the formula m=F/a.However,in actual flight,the device is instable that the deviation between runs could be 6-7 kg.This paper considers the body non-rigidity as the major cause of error and instability and analyzes the effects of body non-rigidity from different aspects.Body non-rigidity makes the acceleration of the center of mass (C.M.) oscillate and fall behind the point where force is applied.Actual acceleration curves showed that the overall effect of body non-rigidity is an oscillation at about 7 Hz and a deviation of about 25%.To enhance body rigidity,better body restraints were introduced and a prototype based on linear acceleration method was built.Measurement experiment was carried out on ground on an air table.Three human subjects weighing 60-70 kg were measured.The average variance was 0.04 kg and the average measurement error was 0.4%.This study will provide reference for future development of China's own mass measurement device. 展开更多
关键词 非刚性效应 线性加速度 宇航员 测量方法 身体 质量 加速方法 测量装置
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