第一章:几何尺寸和公差设计概述(GD&T Design Introduction)
几何尺寸和公差 Geometric Dimensioning & Tolerancing
GD&T优点和功能(GD&T Superiorities & Functions)
GD&T决定设计质量 Improving Engineering Drawing Quality
GD&T设计PDCA过程 GD&T Design PDCA Process
GD&T提高效率设计 Improving Productivity Design
GD&T稳健防呆设计 is Robust Engineering Design
GD&T改进制造装配性设计 Improving Design for Manufacturability/Assembly
日本式制造和装配性设计 Japanese DFM/A–Smart Design Philosophy
苏式制造和装配性设计 Russian DFM/A - Best Design Philosophy
GD&T设计原理 GD&T Design Philosophy
GD&T1-2-3规则 The GD&T 1-2-3 Rule
GD&T控制方式的关系 The Relationship of GD&T Control
GD&T公差设计 GD&T Tolerancing Design
尺寸链公差叠加分析 Tolerance Stack-Ups Analysis
公差分析和公差分配 Tolerance Analysis and Allocation
问题和习题 Questions & Problems
第二章 IB/OB动态图GD&T设计(IB/OB Dynamic Diagram GD&T Design)
内部/外部边界-IB/OB Inner/Outer Boundary
实效状况-VC(Virtual Condition VC
内部/外部边界设计应用 IB/OB Design Application
动态图公差设计-几何公差 Dynamic Tolerancing Diagrams Design - GT
动态图公差设计-统计公差 Dynamic Tolerancing Diagrams Design - ST
气体流量控制阀设计 Air Flow Control Valve Design
控制阀轴检具设计 Control Valve Shaft Gage Design
控制阀轴孔检具设计 Control Valve Shaft Hole Gage Design
控制阀动态设计 Control Valve Dynamic Design
控制阀公差分析 Control Valve Tolerancing Analysis
几何尺寸和公差MBD设计(GD&T MBD Design
同时性要求设计 Simultaneous Requirements Design
问题和习题 Questions & Problems
第三章: GD&T基准设计(GD&T Datum Design)
GD&T1-2-3规则-选择基准形体(GD&T1-2-3 Rule-Identify Datum Feature)
选择基准形体-一面两孔(Identify Datum Features)
选择基准形体-三面对中(Identify Datum Features)
选择基准形体-定位销(Identify Datum Features)
选择基准形体-卡扣件(Identify Datum Features)
形体组基准系(Datums from a Pattern of Feature)
曲面基准系(Datums from Contoured Surface)
基准系移动(Datum may be Moved)
基准系转动(Datum may be Rotated)
实体状况/实体边界(RFS/MMC/LMC-RMB/MMB/LMB)
实体边界应用-FOS(Boundary Controlled FOS)
实体边界表面应用-RMB(Boundary Controlled Feature RMB)
实体边界表面应用-MMB(Boundary Controlled Feature MMB)
基准移动应用(Boundary Controlled Datum Translation)
基准目标(Datum Targets)
基准目标刚性件应用 Datum Targets Rigid Part Application)
旋转支架基准设计(Rotation Bracket Set Design)
电磁流量控制阀基准设计(Solenoid Flow Control Valve Design)
第四章: 控制形体位置(Locating Surfaces)
GD&T1-2-3规则控制形体位置 The GD&T 1-2-3 Rule Locating Surfaces
面轮廓 Profile of a Surface
面轮廓控制表面设计 Profile Control Design of a Surface
组合控制 Multiple Single Segment Control
组合控制支架设计 MSS Control Bracket Design
复合轮廓度 Composite Profile
复合轮廓度控制形体组 Composite Profile Controlling Pattern
联合控制 Combined Controls
复合轮廓度对比组合控制 Composite vs Multiple Single Segment Control
问题和习题 Questions & Problems
第五章: 控制尺寸形体位置(Locating Feature of Size)
复合位置度 Composite Position
复合位置度设计 Composite Position Design
复合位置度对比方向度 Composite Position vs Orientation
复合位置度对比组合位置度 Composite vs Multiple Single Segment Position
GD&T1-2-3规则零件设计 The GD&T Hierarchy Part Design
GD&T1-2-3规则装配件设计 The GD&T Hierarchy Assembly Design
问题和习题 Questions & Problems
第六章: GD&T完整装配件设计(Complete GD&T Assembly Design)
GD&T1-2-3规则 The GD&T 1-2-3 Rule
GD&T1-2-3规则-选择基准形体 GD&T1-2-3 Rule-Identify Datum Feature
电磁流量控制阀设计 Solenoid Flow Control Valve Design
阀头设计要求 Fuel Block Design
阀体设计要求 Body Design
线圈骨架设计要求 Coil Robbin Design
柱塞设计要求 Plunger Design
电磁流量控制阀基准形体设计 Solenoid FC Valve Datum Feature Design
阀头基准形体设计 Block Datum Feature Design
阀体基准形体设计 Body Datum Feature Design
线圈骨架基准形体设计 Coil Robbin Datum Feature Design
柱塞基准形体设计 Plunger Datum Feature Design
电磁流量控制阀特殊公差要求 SFC Valve Special Tolerancing Requirements
阀头特殊公差要求 Block Special Tolerancing Requirements
阀体特殊公差要求 Body Special Tolerancing Requirements
线圈骨架特殊公差要求 Coil Robbin Special Tolerancing Requirements
柱塞特殊公差要求 Plunger Special Tolerancing Requirements
电磁流量控制阀设计图纸 Solenoid Flow Control Valve Design Drawing
阀头设计图纸 Block Design Drawing
阀体设计图纸 Body Design Drawing
线圈骨架设计图纸 Coil Robbin Design Drawing
柱塞设计图纸 Plunger Design Drawing