Chinese [zh], .pdf, 🚀/duxiu, 20.1MB, 📗 Book (unknown), duxiu/时栅位移传感器与新型机床动态检测系统_12444703.zip
时栅位移传感器与新型机床动态检测系统 🔍
北京:科学出版社, Di 1 ban, Beijing, China, 2010
彭东林著 🔍
description
1 (p1): 概述
6 (p2): 第1章 精密位移测量中的时空观
6 (p2-1): 1.1时空转换与机电转换
11 (p2-2): 1.2时间脉冲与空间脉冲
12 (p2-2-1): 1.2.1现有主要细分方法分析
15 (p2-2-2): 1.2.2时间脉冲对空间脉冲的细分新方法
18 (p2-2-3): 1.2.3细分方法误差分析
33 (-1): 1.4差频测量系统——空间位移放大测量转换为时间周期放大测量
40 (-2): 1.5相对运动双坐标系——空间位置差测量转换为时间差测量
48 (-3): 1.6时间行波与空间行波
52 (-4): 1.7时域FFT与空域FFT
56 (p3): 第2章 时栅位移传感器
56 (p3-1): 2.1时栅位移传感器及其系统
57 (p3-2): 2.2差频式时栅
58 (p3-3): 2.3单齿式时栅
65 (p3-4): 2.4场式时栅
70 (p3-5): 2.5混激型时栅
72 (p3-6): 2.6变耦变压器式时栅
75 (p3-7): 2.7桥式时栅
77 (p3-8): 2.8增量式时栅
83 (p3-9): 2.9光栅、电栅、时栅的统一——增量光栅转化为绝对时栅
86 (p3-10): 2.10时栅的技术原理总结及与传统方法的比较
92 (p4): 第3章 差线栅与激光栅
92 (p4-1): 3.1差线栅位移传感器
98 (p4-2): 3.2激光栅位移传感器
105 (p5): 第4章 传统机床传动误差检测技术与仪器
106 (p5-1): 4.1机床传动误差的基本概念
106 (p5-1-1): 4.1.1传动误差的定义
109 (p5-1-2): 4.1.2机床传动误差的数学模型
113 (p5-1-3): 4.1.3传动误差的分类
115 (p5-1-4): 4.1.4用切齿法考核齿轮机床精度的弊端
116 (-1): 4.2.1传动误差测量及量仪原理
120 (-1-1): 4.2.2实用传动误差测量仪器
122 (p6): 第5章 新型传动误差检测分析系统
122 (p6-1): 5.1 FMT系统工作原理与特色
131 (p6-1-1): 5.1.1两种测量传动误差方法的比较
133 (p6-1-2): 5.1.2用数值拟合法实现误差信息分离的研究
138 (p6-1-3): 5.1.3用微型计算机实现运动方向的判别
143 (p6-1-4): 5.1.4对非整数传动比的处理
145 (p6-1-5): 5.1.5实时性问题研究
147 (p6-1-6): 5.1.6极低速大传动比测量
149 (-1): 5.2.1系统环节误差分析
151 (-1-1): 5.2.2一种智能信号发生器及应用
158 (-1-2): 5.2.3传动误差测量仪器的检定
163 (-1-3): 5.2.4鉴定结果及分析
164 (-1): 5.3.1滚齿机传动链检测分析系统
168 (-1-1): 5.3.2滚齿机差动链检测分析系统
171 (-1-2): 5.3.3插齿机传动链检测分析系统
176 (-1-3): 5.3.4磨齿机传动链检测分析系统
178 (-1-4): 5.3.5铣齿机传动链检测分析系统
187 (p7): 参考文献
6 (p2): 第1章 精密位移测量中的时空观
6 (p2-1): 1.1时空转换与机电转换
11 (p2-2): 1.2时间脉冲与空间脉冲
12 (p2-2-1): 1.2.1现有主要细分方法分析
15 (p2-2-2): 1.2.2时间脉冲对空间脉冲的细分新方法
18 (p2-2-3): 1.2.3细分方法误差分析
33 (-1): 1.4差频测量系统——空间位移放大测量转换为时间周期放大测量
40 (-2): 1.5相对运动双坐标系——空间位置差测量转换为时间差测量
48 (-3): 1.6时间行波与空间行波
52 (-4): 1.7时域FFT与空域FFT
56 (p3): 第2章 时栅位移传感器
56 (p3-1): 2.1时栅位移传感器及其系统
57 (p3-2): 2.2差频式时栅
58 (p3-3): 2.3单齿式时栅
65 (p3-4): 2.4场式时栅
70 (p3-5): 2.5混激型时栅
72 (p3-6): 2.6变耦变压器式时栅
75 (p3-7): 2.7桥式时栅
77 (p3-8): 2.8增量式时栅
83 (p3-9): 2.9光栅、电栅、时栅的统一——增量光栅转化为绝对时栅
86 (p3-10): 2.10时栅的技术原理总结及与传统方法的比较
92 (p4): 第3章 差线栅与激光栅
92 (p4-1): 3.1差线栅位移传感器
98 (p4-2): 3.2激光栅位移传感器
105 (p5): 第4章 传统机床传动误差检测技术与仪器
106 (p5-1): 4.1机床传动误差的基本概念
106 (p5-1-1): 4.1.1传动误差的定义
109 (p5-1-2): 4.1.2机床传动误差的数学模型
113 (p5-1-3): 4.1.3传动误差的分类
115 (p5-1-4): 4.1.4用切齿法考核齿轮机床精度的弊端
116 (-1): 4.2.1传动误差测量及量仪原理
120 (-1-1): 4.2.2实用传动误差测量仪器
122 (p6): 第5章 新型传动误差检测分析系统
122 (p6-1): 5.1 FMT系统工作原理与特色
131 (p6-1-1): 5.1.1两种测量传动误差方法的比较
133 (p6-1-2): 5.1.2用数值拟合法实现误差信息分离的研究
138 (p6-1-3): 5.1.3用微型计算机实现运动方向的判别
143 (p6-1-4): 5.1.4对非整数传动比的处理
145 (p6-1-5): 5.1.5实时性问题研究
147 (p6-1-6): 5.1.6极低速大传动比测量
149 (-1): 5.2.1系统环节误差分析
151 (-1-1): 5.2.2一种智能信号发生器及应用
158 (-1-2): 5.2.3传动误差测量仪器的检定
163 (-1-3): 5.2.4鉴定结果及分析
164 (-1): 5.3.1滚齿机传动链检测分析系统
168 (-1-1): 5.3.2滚齿机差动链检测分析系统
171 (-1-2): 5.3.3插齿机传动链检测分析系统
176 (-1-3): 5.3.4磨齿机传动链检测分析系统
178 (-1-4): 5.3.5铣齿机传动链检测分析系统
187 (p7): 参考文献
Alternative title
Time grating displacement sensors and novel dynamic testing system for machine tool
Alternative title
Shi zha wei yi chuan gan qi yu xin xing ji chuang dong tai jian ce xi tong
Alternative author
Peng Donglin zhu
Alternative author
Donglin Peng
Alternative author
彭东林, 1952-
Alternative publisher
Ke xue chu ban she
Alternative publisher
Science Press
Alternative edition
China, People's Republic, China
Alternative edition
Bei jing, 2010
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metadata comments
Includes bibliographical references (p. [187]-189).
Alternative description
本书内容包括:精密位移测量中的时空观,时栅位移传感器,差线栅与激光栅,新型传动误差检测分析系统等
date open sourced
2024-06-13
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