1.
Workpiece Precision Oriented Analysis on Coupling Stiffness of Dies and Press;
面向制件精度的成形模具与装备耦合刚度分析
2.
Study on the Part Precision of Rapid Prototyping of Selected Laser Sintering;
选择性激光烧结快速成型制件精度的研究
3.
Influence of Processing Parameters on Precision of Parts Made by Selected Laser Sintering
工艺参数对选择性激光烧结制件精度的影响
4.
High Precision Two-stage Robust Temperature Control for Accelerometer Unit
加速度计组合件高精度两级鲁棒温度控制
5.
INVESTIGATION OF THE ACCURATE CONTROL ABOUTSURFACE CARBON CONCENTRATION OF CARBURISING PART
渗碳零件表面碳浓度精确控制的探讨
6.
The Powder Injection Molding of ZrO_2 Samll Parts and the Dimension Precision Control;
ZrO_2小型零件粉末注射成形与精度控制
7.
One kind of high-precision GPS baseline network adjustment and development of the software
一种高精度GPS基线网平差及软件研制
8.
The Study on Split-second Selection of Cutting Tool and Precision Control in the High-direction Based on Master CAM
基于MasterCAM软件的选刀及高度方向精度控制研究
9.
Study on Reconstruction of Three-dimension Solid Model & Precision of Rapid Prototyping Manufacturing;
三维实体重构技术与快速原型制件的精度分析
10.
Research on Stiffness Measuring Platform GCT-III for Precise Spring Element;
GCT-III型精密弹性元件刚度测量台的研制
11.
Study on Superplastic Forming and Precision Control of TC4 Alloy Deep Cups;
TC4钛合金深筒形件的超塑成形及其精度控制
12.
Some Schemes to Improving Laser Marking System Precision by Controlling System Software;
几种提高激光打标机控制精度的软件措施
13.
The Study of Dimensional Accuracy of Parts in Fuse Deposition Rapid Prototyping
熔丝沉积快速成型制件尺寸精度的研究
14.
Effect of Casting Method and Process Control on the Precision of Castings
铸造方法及过程控制对铸件精度的影响
15.
Development of a High Precision Automated Assembly Test-bed of T/R Modules
高精度T/R组件自动组装试验台的研制
16.
On the Production of High-precision DEM for Particular Topography under the Condition of Low-quality Data Sources
低质数据源条件下特殊地形的高精度DEM制作
17.
Study and Implement of High-Pricise Temperature Control System for Temperature Sensor Calibrating;
基于温度器件检定的高精度温度控制系统的研究与实现
18.
Highly specific temperature gradients can be setup across the sample by the two independantly controlled thermoelectric elements accurate to0.1° C.
通过两个独立控制的精度到0.1°的电热元件,可以沿样品建立一个非常精确的温度梯度。