首页> 外文期刊>Journal of Materials Science >TENSILE DILATOMETRY OF INJECTION-MOULDED HDPE/PA6 BLENDS
【24h】

TENSILE DILATOMETRY OF INJECTION-MOULDED HDPE/PA6 BLENDS

机译:注射成型HDPE / PA6混合物的拉伸测斜法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

In order to understand the mechanism of deformation of injection-moulded HDPE/PA6 (25 vol%/75 vol%) blends both with and without compatibilizer, the volume change has been monitored using tensile dilatometry. Dog-bone specimens were either directly moulded or cut from rectangular plaques. Both neat materials and their blends were tested. For the directly moulded dog-bone specimen, a pure shear yielding mechanism was observed for all materials tested, i.e. PA6, HDPE, and their blends in the same proportion as above. In the case of a deformable minor phase (HDPE), the dispersed phase appeared to bear its share of stress and the flow-induced orientation mimics the effect of interfacial modification. This was not the case of a rigid minor phase (glass beads) at the same concentration; the effect of surface treatment changed the mechanism of deformation from mixed mode cavitation shear yielding (45%) to almost pure shear yielding (85%). Machined specimens made of neat PA6 and HDPE deformed through pure shear yielding. The addition of 25 vol% HDPE to PA6 resulted in a mixed mode cavitation (55%)/shear yielding mechanism of deformation in the transverse direction, while in the longitudinal case, the mechanism which prevailed was almost pure shear yielding (80%). This can be attributed to the flow-induced orientation as above. When adding 10% (based on the weight of the dispersed phase) of an ionomer as a compatibilizer, the blend deformed via shear yielding (85%) and in the longitudinal direction both compatibilized and non-compatibilized blends display similar behaviour. Varying the specimen thickness by changing the mould cavity, led to a significant variation in the dilatational behaviour. Dilatometric behaviour is shown to be closely related to the morphology generated as a result of flow-induced orientation. The skin/core ratio, which is an indication of the proportion of the oriented dispersed phase to the non-oriented one, plays a key role in influencing the mechanism of deformation involved. [References: 31]
机译:为了了解有或没有增容剂的注模HDPE / PA6(25%(体积)/ 75%(体积))共混物的变形机理,已使用拉伸膨胀计监测了体积变化。狗骨标本可以直接模制或从矩形板切下。均对纯净材料及其混合物进行了测试。对于直接模制的狗骨头样品,对于所有测试的材料,即PA6,HDPE及其混合物,均以与上述相同的比例观察到了纯剪切屈服机理。在可变形次生相(HDPE)的情况下,分散相似乎承受其应力份额,并且流动诱导的取向模拟了界面改性的作用。相同浓度的刚性次要相(玻璃珠)不是这种情况。表面处理的影响将变形机理从混合模式空化剪切屈服(45%)改变为几乎纯的剪切屈服(85%)。纯PA6和HDPE制成的机加工试样通过纯剪切屈服变形。向PA6中添加25%(体积)HDPE会导致混合模式的空化(55%)/横向产生剪切变形的机理,而在纵向情况下,占主导的机理几乎是纯剪切屈服(80%)。如上所述,这可以归因于流动引起的取向。当添加10%(基于分散相的重量)的离聚物作为增容剂时,共混物通过剪切屈服变形(85%)变形,并且在纵向方向上,增容和未增容的混合物均表现出相似的行为。通过改变模具型腔来改变样品厚度,会导致膨胀性能的显着变化。测得的膨胀特性与由于流动引起的取向而产生的形态密切相关。表皮/芯比是定向分散相与非定向分散相的比例的指示,在影响所涉及的变形机理中起关键作用。 [参考:31]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号