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1)  weld line
熔接线
1.
Study on Influence of Processing Parameters on Weld Line Tensile Performance of Injection Molded Nylon 6/Montmorillonite Nanocomposites;
注塑工艺参数对尼龙6/蒙脱土纳米复合材料熔接线拉伸性能影响的研究
2.
In this study,molding condition including melt temperature,mold temperature,packing pressure and injection speed on the mechanical properties particularly the weld line strength of injection molded nylon 6 nanocomposites were investigated.
针对纳米尼龙6,研究了熔体温度、模具温度、保压压力和注射速度等工艺因素对具有熔接线和无熔接线注塑件拉伸强度的影响。
3.
The tensile strength of injection-molded glass fiber-reinforced PA66 (Zytel 70G33L) with weld lines, with different obstacle size in cavity and at the same processing conditions, are studied by both numerical simulation and physical test.
通过对相同工艺条件下PA66(Zytel 70G3 3L)熔体绕过不同障碍物数值和实验研究 ,发现决定熔接线强度的主要因素是两股熔体相遇时的熔接角 ,熔接线强度会随着熔接角的增大而加强。
2)  weldline
熔接线
1.
Flow induced birefringence of weldline region in polystyrene injection molding;
注射成型熔接线区域流动诱导双折射行为
2.
The Level Set/Ghost method was introduced to dynamically simulate the weldlines in the symmetric thin mold with rectangle cylinder precisely.
为了准确模拟具有对称结构的带有矩形嵌件的薄壁型腔内熔接线的动态形成过程,采用Level Set/Ghost方法追踪充填阶段聚合物熔体前沿界面。
3.
Combined with the design of injection molds and actual production,technical gists ofinjection molding design are introduced on the number of gates,flow pattern,gate position,weldline position and runner design.
结合注塑模设计和生产的实际,重点介绍了注塑模模流设计在浇口数目、流动形态、浇口定位、熔接线位置、浇道设计等方面的技术要领。
3)  weld lines
熔接线
1.
The other is the strength of weld lines takes from for fiber orientation distribution parallel to weld lines.
这种取向的产生一方面会导致制件不同方向的收缩,另一方面在熔接线区的纤维取向方向因平行于熔接方向而大大降低其熔接线强度,制件整体强度下降。
2.
Based on results of moldflow simulatio n, default diagnosis of weld lines is developed and solution is given.
基于moldflow的模拟分析结果,对熔接线缺陷进行了诊断,并给出了解决方案。
4)  weld-line location
熔接线位置
1.
Applying sequential injection moulding to control weld-line locations;
顺序浇注成型控制熔接线位置研究
5)  WWF(Weld Wire Fence)
熔接钢线网
6)  weld bond
熔合线,焊接接头
补充资料:接线
用导线连接线路。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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