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1.
The Experiment and Theoretics Study of Viscosity of Cu-Sn Alloys;
Cu-Sn合金熔体粘度的实验与理论研究
2.
Study on Viscosity in Silicate Melts;
硅酸盐熔体粘度理论计算模式的研究
3.
Study on the Viscosity Control of Foam Aluminum Melt and the Bubble's Stability
泡沫铝熔体粘度的控制与气泡稳定性研究
4.
Research on Melt Viscosity and Wall-slip in Micro-injection Molding Filling Flow;
微注塑成型充模流动中熔体粘度和壁面滑移的研究
5.
Apparent Viscosity of TiB_2 Particle Reinforced Aluminum Matrix Composites Melt
TiB_2/Al复合材料熔体的表观粘度
6.
Among the properties which do not show a leveling-off are the viscosities of solutions and melts.
溶液和熔体的粘度等性能曲线并不呈现平坦。
7.
Determination of the zero shear viscosity of polymer melts by steady rotating shear method
用旋转剪切法测量聚合物熔体零切粘度时应注意的几个问题
8.
The melting sticking occurred when the melting point of materials is lower than the drying temperature.
物料熔点低于干燥温度时容易产生热熔性粘壁。
9.
Preparation of Nylon 6 with High Viscosity by Chain-extension during Melting Extrusion
熔融挤出扩链反应制备高粘度尼龙6
10.
Study on Melt Viscosity of PP and FEP/PP Blends at Low Shear Rates
PP及FEP/PP低剪切速率下熔体粘性研究
11.
Many useful results can be obtained in the investigation on viscosity of Si, Ge melt by rotary oscillating.
利用回转振动法对硅、锗等半导体熔体的粘度进行测试分析,获得许多有意义的结果。
12.
Study on Strength Properties of Phosphate Bonded Core Used in Investment Cast and Formed by Pouring
熔模铸造用浇注成形磷酸盐粘结型芯强度研究
13.
Effect of Effective Concentration of High Melting Point Phases in RH Refining on Slag Sticking
RH精炼渣高熔点相作用浓度对粘渣的影响
14.
The measures that can control the generation of brokea filament wore put forward.
提出了控制熔体温度、缩短熔体输送停留时问。
15.
Numerical Simulation of the Temperature Field during Aluminum Melting Process
铝熔炼过程合金熔体温度场的数值模拟
16.
The influence of vibration field to apparent viscosity inceased when the die temperature was above the melt point of HDPE.
口模温度超过熔点时,振动场对表观粘度的影响有所增大;
17.
Experimental study on viscosity properties of molten Zr_(50)Cu_(50) alloy by rotating cylinder method
旋转柱体法测定Zr__(50)Cu_(50)合金熔体粘滞特性的实验研究
18.
To illustrate the effect of variable feed rate, the pressure and power draw changes with fluctuations in feed rate are calculated on the table below.
瞬间的压力变化及峰值出现是由熔融粘度瞬间变化导致的。