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1)  Single-Screw Extruder
单螺杆挤条机
1.
Design of the Single-Screw Extruders for Catalyst;
催化剂单螺杆挤条机的设计
2)  single screw extruder
单螺杆挤出机
1.
Experimental Study on Melting Process in Vibration Induced Single Screw Extruder;
振动诱导单螺杆挤出机熔融过程实验研究
2.
Numerical simulation of three-dimensional flow in single screw extruder by finite volume method;
单螺杆挤出机中三维流动有限体积数值模拟
3.
Based on finite difference method of numerical simulation, the semi-analytical method is proposed in the paper, which is adapted to compute the residence time distribution(RTD) of polymer melt in a single screw extruder, then the RTD under different operation parameters are obtained to characterized the mixing of polymer melt in the course of processing.
基于有限差分数值模拟技术,提出了计算非牛顿流体在单螺杆挤出机内停留时间分布的半解析方法,得到了不同操作参数下的停留时间分布,该分布可用来表征聚合物熔体在加工过程中的混合情况。
3)  single-screw extruder
单螺杆挤出机
1.
Devolatilization of hydroxyl-terminated polydimethylsiloxane in single-screw extruder;
羟基聚硅氧烷在单螺杆挤出机中的脱挥
2.
With the foundation of the extrusion theories of a single-screw extruder,use for reference to research results of design theories of twin screw extruders in plastic industry and twin screw bulking extruders in food industry,to study design theories thoroughly of the TSPE is still need to know the particularity of .
在分析国内外双螺杆磨浆机设计和使用中存在问题的基础上,提出双螺杆磨浆机设计理论进一步研究的思路:以单螺杆挤出机挤出理论为基础,并借鉴塑料工业双螺杆挤出机和食品工业双螺杆挤压膨化机设计理论的研究成果;对双螺杆磨浆机设计理论的深入研究还需要明确双螺杆磨浆机的特殊性,研究制浆造纸材料的物理和机械性能。
3.
Based on the study on auger delivery theory of retarded adhesive mortar and the statistics of flow field in the single-screw extruder,the flow in extruder is simulated by using ANSYS software and taking a spiral length as the object.
应用ANSYS软件,在宾汉姆体缓凝砂浆螺旋输送理论和单螺杆挤出机中流场的数值研究基础上,以一个螺旋长度为对象,对挤出机中的流体进行了模拟。
4)  single-screw extruder
单螺杆挤压机
1.
This paper introduced application of intelligent computer control system in single-screw extruder.
应用结果表明,该系统满足设备要求,为单螺杆挤压机的研制提供了参考依据。
5)  single-screw extruder
单螺杆挤塑机
6)  single-screw,single-stage extruders
单螺杆单段挤压机
补充资料:挤条
分子式:
CAS号:

性质:湿法成型的一种。用挤压机挤压成条状。成型原料为糊状时最理想,当原料为粉状时,需加入适量水作黏合剂。成型方法是将成型原料送入挤压机中进一步混合均匀,通过具有一定直径的孔板喷头将物料挤出后,再切成一定长度的颗粒。该法优点是成型能力强,费用低,对可塑性强的或黏结性强的物质来说,是一种方便的成型方法。成型后强度决定于原料原有的可塑性乙与加压成型晶相比,强度一般较差,易粉化。

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