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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Preparation and Characterization of Bioblends from Gelatin and Linear Low Density Polyethylene (LLDPE) by Extrusion Method
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Preparation and Characterization of Bioblends from Gelatin and Linear Low Density Polyethylene (LLDPE) by Extrusion Method

机译:明胶和线性低密度聚乙烯(LLDPE)挤出法制备生物共混物及其表征

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摘要

Bioblends are composites of at least one biodegradable polymer with a non-biodegradable polymer. Successful development of bioblends requires that the biodegradable polymers be compatible with other component biodegradable/synthetic (non-biodegradable) polymers. Bioblends from LLDPE and gelatin were prepared by extrusion and hydraulic heat press technique. The gelatin content in the bioblends was varied from 5 to 20 wt%. Various physico-mechanical properties such as tensile, bending, impact strength (IS), thermal ageing and soil degradation properties of the LLDPE/gelatin bioblends with different gelatin contents were evaluated. The effect of thermal ageing on mechanical properties was studied. The mechanical properties such as tensile modulus (TM), bending strength (BS), bending modulus (BM) were found to increase with increasing gelatin content up to 20 wt%, however tensile strength (TS) and elongation at break (%E_b) were decreased with increasing gelatin content. Impact strength value increased with increasing gelatin content up to 10 wt% and then decreased slightly with increasing gelatin content. The blend containing 20 wt% gelatin showed relatively better mechanical properties than other blends. The values of TS, TM, %E_b, BS, BM and IS for the bioblend with 20 wt% gelatin content are 5.9 MPa, 206.3 MPa, 242.6%, 12.1 MPa, 8 MPa and 13.7 J/cm~2, respectively. Water uptake increases with increasing soaking time in water and weight loss due to soil burial also increases with increasing gelatin content in the blends but both are significantly lower than that of pure gelatin sheet. Weight loss values after thermal ageing increase with time, temperature and increasing gelatin content in the blend but are much lower than pure gelatin. Mechanical properties such as TS, TM are increased and %E_b is decreased after thermal ageing at 60℃ for 30 min. Consequently, among all of the bioblends prepared in this work the blend having 20% gelatin content yields properties such that it can be used as a semi-biodegradable material.
机译:生物共混物是至少一种可生物降解的聚合物与不可生物降解的聚合物的复合物。生物共混物的成功开发要求生物可降解聚合物与其他组分可生物降解/合成(不可生物降解)的聚合物相容。通过挤出和液压热压技术制备了来自LLDPE和明胶的生物共混物。生物共混物中的明胶含量为5至20重量%。评估了具有不同明胶含量的LLDPE /明胶生物共混物的各种物理机械性能,例如拉伸,弯曲,冲击强度(IS),热老化和土壤降解性能。研究了热老化对机械性能的影响。发现机械性能如拉伸模量(TM),弯曲强度(BS),弯曲模量(BM)随着明胶含量的增加而增加,直至20 wt%,但是拉伸强度(TS)和断裂伸长率(%E_b)随着明胶含量的增加而减少。冲击强度值随明胶含量增加至10 wt%而增加,然后随明胶含量增加而略有下降。包含20 wt%明胶的共混物显示出比其他共混物更好的机械性能。明胶含量为20 wt%的生物掺合物的TS,TM,%E_b,BS,BM和IS值分别为5.9 MPa,206.3 MPa,242.6%,12.1 MPa,8 MPa和13.7 J / cm〜2。吸水率随在水中浸泡时间的增加而增加,由于土葬造成的重量损失也随掺合物中明胶含量的增加而增加,但两者均明显低于纯明胶片材。热老化后的重量损失值随时间,温度和掺混物中明胶含量的增加而增加,但远低于纯明胶。 60℃热老化30min后,力学性能如TS,TM提高,%E_b降低。因此,在这项工作中制备的所有生物共混物中,明胶含量为20%的共混物产生的特性使其可以用作半生物降解材料。

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