LDPE/PHB Blends Filled with Castor Oil Cake

被引:1
作者
Burlein, Gustavo A. [1 ]
Rocha, Marisa C. G. [1 ]
机构
[1] Univ Estado Rio de Janeiro, Inst Politecn, BR-28601970 Nova Friburgo, RJ, Brazil
来源
PROCEEDINGS OF PPS-30: THE 30TH INTERNATIONAL CONFERENCE OF THE POLYMER PROCESSING SOCIETY | 2015年 / 1664卷
关键词
LDPE; PHB; castor oil cake; response surface methodology; mechanical properties; biodegradation; POLYETHYLENE; COMPOSITES;
D O I
10.1063/1.4918398
中图分类号
O59 [应用物理学];
学科分类号
摘要
The response surface methodology (RSM) is a collection of mathematical techniques useful for developing, improving and optimizing process. In this study, RSM technique was applied to evaluate the effect of the components proportion on the mechanical properties of low density polyethylene (LDPE)/poly (3-hydroxy-butyrate) (PHB) blends filled with castor oil cake (CC). The blends were prepared by melt mixing in a twin screw extruder. Low density polyethylene, poly (3-hydroxy-butyrate) and castor oil pressed cake were represented by the input variables designated as LDPE, PHB and CC, respectively. As it was desirable to consider the largest LDPE content in the ternary system, the components of the mixture were subjected to the following constraints: 0.7 <= LDPE <= 1.0, 0 <= PHB <= 0.3 e 0 <= CC <= 0.3. The mechanical properties of the different mixtures were determined by conventional ASTM tests and were evaluated through analysis of variance performed by the Minitab software. Some polynomial equations were tested in order to describe the mechanical behavior of the samples. The quadratic model in pseudo components was selected for describing the tensile behavior because it was the most efficient from a statistical point of view (p-value <= 0.05; coefficient of determination (r(2)) close to 1 and variation inflation factor (VIF) values < 5). The results showed that the LDPE Young's modulus increases but the other tensile properties and impact resistance deteriorate with the addition of PHB or CC. The tensile strength values of binary mixtures of LDPE lie in the range from 8.9 to 10 MPa. As some commercial grades of LDPE have mechanical strength in this range, it may be inferred that the addition of a certain amount of PHB or CC to LDPE may be considered as a possibility for obtaining LDPE based materials with increased susceptibility to biodegradation. The cubic model in pseudo components was selected for describe the flexural strength of the samples because it was the most adequate from a statistical point of view. However, the linear model in pseudo components was the most efficient to describe the flexural modulus of the samples. The results obtained show that superior LDPE flexural properties may be obtained by the addition of PHB or castor oil cake to LDPE. The morphological study of the materials obtained showed that LDPE/PHB blends are immiscible and form morphological structures with well distinguished phase boundaries between dispersed phase and matrix. Biodegradation was evaluated burying the samples in simulated soil for different periods of time. The LDPE/PHB/CC mixtures with higher content of PHB showed more pronounced degradation. Under the experimental conditions studied the LDPE/CC compositions presented no degradation. However, the loss of mass of the LDPE/PHB/CC mixtures was higher than the loss of mass of the corresponding LDPE/PHB binary blend. This result suggests that the castor oil cake accelerates the degradation of the LDPE/PHB blends.
引用
收藏
页数:5
相关论文
共 50 条
[31]   Rheological and Thermal Properties of Blends of Recycled LDPE and Virgin LDPE [J].
Zhao, Xueyan ;
Luo, Xuegang ;
Lin, Xiaoyan ;
Qi, Xiao .
RESOURCES AND SUSTAINABLE DEVELOPMENT, PTS 1-4, 2013, 734-737 :2501-2504
[32]   Evaluation of the types of starch for preparation of LDPE/starch blends [J].
Vinhas, Gloria Maria ;
de Lima, Suzana Moreira ;
Santos, Livia Almeida ;
Gomes de Andrade Lima, Maria Alice ;
Bastos de Almeida, Yeda Medeiros .
BRAZILIAN ARCHIVES OF BIOLOGY AND TECHNOLOGY, 2007, 50 (03) :361-370
[33]   Effect of castor oil enrichment layer produced by reaction on the properties of PLA/HDI-g-starch blends [J].
Xiong, Zhu ;
Zhang, Lisheng ;
Ma, Songqi ;
Yang, Yong ;
Zhang, Chuanzhi ;
Tang, Zhaobin ;
Zhu, Jin .
CARBOHYDRATE POLYMERS, 2013, 94 (01) :235-243
[34]   Melt rheology of LDPE and glass bead filled LDPE composite [J].
Liang, JZ ;
Li, RKY .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 1999, 18 (12) :1077-1086
[35]   Biodegradability and Photodegradability of Starch Filled LDPE Thin Films [J].
Sangawar, V. S. ;
Meshram, S. D. ;
Chikhalikar, P. S. ;
Dhokne, R. J. ;
Thool, V. S. ;
Ublale, A. U. .
JOURNAL OF POLYMER MATERIALS, 2009, 26 (04) :361-380
[36]   Thermal Properties of PHB/PEG Blends [J].
Qiqing ZHANG ;
Yan ZHANG ;
Fujun WANG and Lingrong LIU Institute of Biomaterial Engineering Chinese Academy of Medical Science and Peking Union Medical CollegePOBox Tianjin ChinaChun WANG Biomedical Polymers Research BuildingCCCD R .
Journal of Materials Science & Technology, 1998, (01) :95-96
[37]   Improved Compatibility of EVOH/LDPE Blends by γ-Ray Irradiation [J].
Li, Haihong ;
Yin, Yuan ;
Liu, Meihua ;
Deng, Pengyang ;
Zhang, Wanxi ;
Sun, Jiazhen .
ADVANCES IN POLYMER TECHNOLOGY, 2009, 28 (03) :192-198
[38]   Calorimetric and SEM studies of PHB-PET polymeric blends [J].
Dias, D. S. ;
Crespi, Marisa S. ;
Kobelnik, M. ;
Ribeiro, C. A. .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2009, 97 (02) :581-584
[39]   Recycled LDPE/PETG blends and HDPE/PETG blends: mechanical, thermal, and rheological properties [J].
Techawinyutham, Laongdaw ;
Tengsuthiwat, Jiratti ;
Srisuk, Rapeeporn ;
Techawinyutham, Wiroj ;
Rangappa, Sanjay Mavinkere ;
Siengchin, Suchart .
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 15 :2445-2458
[40]   The Influence of Poly(Vinyl Alcohol) on Oil Release Behavior of Polylactide-Based Composites Filled with Linseed Cake [J].
Mysiukiewicz, Olga ;
Barczewski, Mateusz ;
Szulc, Joanna .
JOURNAL OF RENEWABLE MATERIALS, 2020, 8 (04) :347-363