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首页> 外文期刊>Journal of Applied Polymer Science >Rheological and mechanical behavior of long-polymer-fiber reinforced thermoplastic pellets
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Rheological and mechanical behavior of long-polymer-fiber reinforced thermoplastic pellets

机译:长聚合物纤维增强热塑性粒料的流变和力学行为

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摘要

Polymer-polymer materials consist of a thermoplastic matrix and a thermoplastic reinforcement. Recent research activities concentrate on the manufacturing of semi-finished polymer-polymer materials in other shapes than the commercially available tapes and sheets. In particular, a pellet-like form provides the possibility of processing the polymer-polymer material by injection and compression molding. Nevertheless, the thermoplastic reinforcement is vulnerable to excessive heat and the processing usually needs special attention. The current study investigates the processing of long-polymer-fiber reinforced thermoplastic pellets, namely polypropylene-polyethylene terephthalate and a single-polymer polyethylene terephthalate, by extrusion for subsequent compression molding applications. The flow characteristics of the material as well as the preservation of the polymer reinforcement can be handled by accurate temperature control. The tensile and impact properties decrease with increasing process temperature though. Moreover, the results prove that the use of a common long-fiber reinforced thermoplastic process chain is applicable to the newly developed polymer-polymer material.
机译:聚合物聚合物材料由热塑性基质和热塑性增强材料组成。最近的研究活动集中在制造不同于市售胶带和片材的其他形状的半成品聚合物聚合物材料。特别地,粒状形式提供了通过注射和压塑来加工聚合物-聚合物材料的可能性。然而,热塑性增强材料易受过热影响,通常需要特别注意加工过程。当前的研究调查了通过挤压加工长聚合物纤维增强的热塑性颗粒,即聚丙烯-聚对苯二甲酸乙二酯和单聚合物聚对苯二甲酸乙二酯,以用于随后的压缩成型应用。材料的流动特性以及聚合物增强材料的保存可以通过精确的温度控制来处理。拉伸和冲击性能随加工温度的升高而降低。此外,结果证明,使用常见的长纤维增强热塑性工艺链可用于新开发的聚合物-聚合物材料。

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