您当前所在位置: 首页 > 学者
在线提示

恭喜!关注成功

在线提示

确认取消关注该学者?

邀请同行关闭

只需输入对方姓名和电子邮箱,就可以邀请你的同行加入中国科技论文在线。

真实姓名:

电子邮件:

尊敬的

我诚挚的邀请你加入中国科技论文在线,点击

链接,进入网站进行注册。

添加个性化留言

已为您找到该学者20条结果 成果回收站

上传时间

2006年04月27日

【期刊论文】Ultrasonic Improvement of Weld Line Strength of Injection-Molded Polystyrene and Polystyrene/ Polyethylene Blend Parts

郭少云, Chang Lu, Xiaofeng Yu, Shaoyun Guo

POLYMER ENGINEERING AND SCIENCE-2005,-0001,():

-1年11月30日

摘要

The effect of melt temperature, ultrasonic oscillations, and induced ultrasonic oscillations modes on weld line strength of polystyrene (PS) and polystyrene/polyethylene (PS/HDPE)(90/10) blend was investigated. The results show that the increase of melt temperature is beneficial to the increase of weld line strength of PS and PS/HDPE blend. Compared with PS, the increase of melt temperature can greatly enhance the strength of PS/HDPE blends. For PS, the presence of ultrasonic oscillations can enhance the weld line strength of PS at different melt temperatures. But for PS/HDPE blends, the presence of ultrasonic oscillations can improve the weld line strength when the melt temperature is 230℃, but when the melt temperature is 195℃, the induced ultrasonic oscillations hardly enhance the weld line strength. Compared with Mode I (ultrasonic oscillations were induced into the mold at the whole process of injection molding), the induced ultrasonic oscillations as Mode II (ultrasonic oscillations were induced into the mold after injection mold filling) is more effective at increasing the weld line strength of PS and PS/HDPE blends. The mechanism for ultrasonic improvement of weld line strength was also studied. POLYM. ENG. SCI., 45: 1666-1672, 2005.

上传时间

2006年04月27日

【期刊论文】A modified model predictions and experimental results of weld-line strength in injection molded PS/PMMA blends

郭少云, Shaoyun Guoa, *, A. Ait-Kadib, M. Bousminab

Polymer 45(2004)2911-2920,-0001,():

-1年11月30日

摘要

In this paper, the model based on melt diffusion and Flory-Huggins free energy theory for predicting the weld-line strength of injection molded amorphous polymers and polymer blends parts were modified by considering the diffusion thickness in the interface as a function of contact time. The modified model for weld-line strength prediction of homopolymers and polymer blends were, respectively, used to evaluate the weld-line strength of Polystyrene (PS) and Poly (methylmethacrylate)(PMMA), and that of PS/PMMA blends. The model predictions show that the theoretic predictions as a function of temperature and contact time for PS, PMMA and PS/PMMA (80/20, 70/30) are in good agreements with corresponding experimental results. However, the model predictions for PS/PMMA (20/80, 30/70) blends are much higher than experimental results. The morphology in weld-line regions for PS/PMMA (20/80, 30/70) shows lack of dispersed PS phase. Near the weld-line regions, dispersed PS phase is highly oriented along the weld-line. In theoretic prediction for polymer blends, three kinds of diffusion: Polymer A-Polymer A and Polymer B-Polymer B self-diffusions and Polymer A-Polymer B mutual diffusion were considered. This is why model predictions for PS/PMMA (20/80, 30/70) blends are higher than experimental results.

PS, PMMA, Blends

上传时间

2006年04月27日

【期刊论文】Ultrasonic oscillations induced morphology and property development of polypropylene/montmorillonite nanocomposites

郭少云, Lijuan Zhao, Jiang Li, Shaoyun Guo*, Qin Du

Polymer 47(2006)2460-2469,-0001,():

-1年11月30日

摘要

Polypropylene/montmorillonite nanocomposites (PPCNs) with 3% organophilic montmorillonite (OMMT) content were prepared via ultrasonic extrusion. The objective of present study was to investigate the effects of ultrasonic oscillations in processing on the morphology and property development of PPCNs. XRD and TEM results confirmed the intercalated structure of OMMT in conventional nanocomposite (without ultrasonic treatment) and ultrasonicated nanocomposite, but ultrasonic oscillations could make silicate layers finely dispersed and a little exfoliated. According to SEM, the OMMT particles were evenly and finely dispersed in the ultrasonicated nanocomposite via ultrasonic oscillations, and the aggregation size of clay particles was about 100nm, which is less than that in conventional nanocomposite. The crystalline dimension, crystalline morphology and the growth rate of crystallization in PPCNs were investigated by DSC and PLM, it was found that the OMMT particles and ultrasonic oscillations played an important role in the nucleation rate, crystallization temperature and spherulite size of PP matrix in nanocomposites. Compared with conventional nanocomposite, the mechanical properties of the ultrasonicated nanocomposite increased due to the improved dispersion of OMMT and diminished spherulite size. The thermal stability and the rheological behavior of PP and its nanocomposites were both studied by thermogravimetry and high pressure rheometer, respectively.

Polypropylene, Montmorillonite, Nanocomposites

上传时间

2006年04月27日

【期刊论文】Weld line morphology and strength of polystyrene/polyamide-6/poly (styrene-co-maleic anhydride) blends

郭少云, Chang Lu, Shaoyun Guo*, Li Wen, Junyou Wang

European Polymer Journal 40(2004)2565-2572,-0001,():

-1年11月30日

摘要

The effeect of weld line on the morphology and mechanical properties of 70/30 polystyrene and polyamide-6 blends with various amounts of poly (styrene-co-maleic anhydride)(SMA) as compatibilizer was investigated. For blends without or with low content of SMA, the dispersed domains near the weld line were elongated parallel to the weld line; and the dispersed domains in weld line were spherical. But for blend with high content of SMA, the isotropic morphology was observed. And the dierence of morphology at weld line caused the distinction of fracture mechanism. The tensile strength of the blend is greatly influenced by the morphology of dispersed domains at weld line. While the morphology has only slight effect on impact strength of the blends.

Weld line, Polystyrene/, Polyamide-6 blends, Morphology, Mechanical strength

上传时间

2006年04月27日

【期刊论文】Linear Viscoelastic Properties of High-Density Polyethylene/Polyamide-6 Blends Extruded in the Presence of Ultrasonic Oscillations

郭少云, JIANG LI, , MEI LIANG, SHAOYUN GUO, VANDA KUTHANOVA, BERENIKA HAUSNEROVA

Journal of Polymer Science: Part B: Polymer Physics, Vol. 43, 1260-1269 (2005),-0001,():

-1年11月30日

摘要

Blends of high-density polyethylene (HDPE) and polyamide-6 (PA6) were produced by ultrasonic extrusion. Ultrasonic irradiation leads to degradation of polymers and in situ compatibilization of blends as confirmed by variations in linear viscoelastic properties. The results showed that the effect of ultrasonic irradiation on dynamic rheological properties depends on the composition and experimental temperature. At the same time, the relationship between storage modulus and loss modulus indicated the effect of ultrasonic irradiation on compatibility of HDPE/PA6 blends. Based on an emulsion model, the interfacial tension between the matrix and the dispersed phase was predicted. The data obtained showed that ultrasonic irradiation can decrease the interfacial tension and then enhance the compatibility of HDPE/PA6 blends. This finding was consistent with our previous work. VVC 2005 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 43: 1260-1269, 2005

compatibilization, degradation, polyamides, polyethylene, rheology, ultrasound

合作学者

  • 郭少云 邀请

    四川大学,四川

    尚未开通主页