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首页> 外文期刊>Journal of Cellular Plastics >Formation mechanism and structural characteristics of unfoamed skin layer in microcellular injection-molded parts
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Formation mechanism and structural characteristics of unfoamed skin layer in microcellular injection-molded parts

机译:微孔注塑件中无泡沫皮层的形成机理和结构特征

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摘要

The microcellular injection-molded part usually consists of a foamed core region and two unfoamed skin layers on the cross section. This paper investigated the formation process, formation mechanism and structural characteristics of the unfoamed skin layers in microcellular injection-molded part. It is found that the unfoamed skin layers are formed in two processes namely during filling process and after filling process. The shear flow and the fountain flow behaviors of the melt in the filling stage are the main controlling factors on the formation of the unfoamed skin layer in during filling process, and the cooling solidification of the melt in cooling stage is the fundamental reason for the formation of the unfoamed skin layer in after filling process. Further studies found that the unfoamed skin layer in microcellular injection-molded part has two distinct regions, the outer region is a thin frozen layer which contains deformed and broken cells, and the inner region is a relatively thick solid-like layer which has no visible cells in. The unfoamed skin layer has a minimum thickness in the gate location. The whole thickness of the unfoamed skin layer is decreased with the increase of injection speed and mold temperature, but is slightly affected by melt temperature.
机译:微孔注塑件通常由一个泡沫核心区域和两个未发泡的表皮层组成。本文研究了微孔注塑件中未发泡表皮层的形成过程,形成机理和结构特征。发现未发泡的表皮层在两个过程中形成,即在填充过程中和在填充过程之后。填充过程中熔体的剪切流和喷泉流行为是填充过程中未发泡表皮层形成的主要控制因素,而冷却阶段中熔体的冷却凝固是形成的根本原因。填充过程后未起泡的皮肤层的数量。进一步的研究发现,微细胞注射成型部件中的未起泡皮肤层具有两个不同的区域,外部区域是包含变形和破裂细胞的薄冷冻层,内部区域是相对较厚的固体层,没有可见的未发泡的表皮层在浇口位置的厚度最小。未发泡表皮层的整体厚度随注射速度和模具温度的增加而减小,但略受熔融温度的影响。

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