M. Aruna, V Vijaya Rajan, S. Prabagaran, N. Karthikeyan, A. Anderson, R. Venkatesh, Vinayagam Mohanavel, Sami Al Obaid, Saleh Hussein Salmen
{"title":"纳米氧化铝和氢氧化钠处理亚麻纤维对聚丙烯复合材料功能性能的影响","authors":"M. Aruna, V Vijaya Rajan, S. Prabagaran, N. Karthikeyan, A. Anderson, R. Venkatesh, Vinayagam Mohanavel, Sami Al Obaid, Saleh Hussein Salmen","doi":"10.1007/s10965-025-04262-x","DOIUrl":null,"url":null,"abstract":"<div><p>The scenario of modern technology adopting polymer-based hybrid composites is caused by specific properties like high strength, lower specific weight, and improved toughness. Besides, the natural fiber-made polymer composite faced inconsistent behaviour, moisture absorption, and processing challenges that limit their utilization for high-performance usages. The current investigation on polypropylene (PP) composite composition of 2-4 mm sodium hydroxide surface-treated flax fiber (TFF) and nano-sized (50 nm) alumina particles (Al<sub>2</sub>O<sub>3</sub>) by using injection moulding, which is 10 wt% flax fiber along with 0, 2.5, 5, and 7.5 wt% nano-sized Al<sub>2</sub>O<sub>3</sub> to enhancing the behaviour of mechanical strength and evaluation of such as yield/tensile, impact, and flexural strength of the composite. During the fabrication process, an injection pressure of 100 MPa is applied at a processing temperature of 200 °C for 10 min. The contributions of Al<sub>2</sub>O<sub>3</sub> and TFF to the polypropylene (PP) matrix are examined using transmission electron microscopy (TEM) analysis. The TEM results reveal a homogeneous structure with a uniform distribution of TFF and Al<sub>2</sub>O<sub>3</sub>. The optimal mechanical properties are observed in the composite of PP with 10 wt% TFF and 7.5 wt% Al<sub>2</sub>O<sub>3</sub>, which shows superior performance compared to other compositions. The yield strength/tensile strength, impact strength, and flexural strength of the PP/10 wt% TFF/7.5 wt% Al<sub>2</sub>O<sub>3</sub> composite are measured to be 42.8 ± 0.6 MPa/49.5 ± 0.7 MPa, 18 ± 0.8 J/mm<sup>2</sup>, and 56 ± 0.6 MPa, respectively. This particular composition of composite specimens is recommended for applications in automobile cabins.</p></div>","PeriodicalId":658,"journal":{"name":"Journal of Polymer Research","volume":"32 2","pages":""},"PeriodicalIF":2.6000,"publicationDate":"2025-01-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Featuring of alumina nanoparticle and NaOH treated flax fiber on function properties of polypropylene composites\",\"authors\":\"M. Aruna, V Vijaya Rajan, S. Prabagaran, N. Karthikeyan, A. Anderson, R. Venkatesh, Vinayagam Mohanavel, Sami Al Obaid, Saleh Hussein Salmen\",\"doi\":\"10.1007/s10965-025-04262-x\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>The scenario of modern technology adopting polymer-based hybrid composites is caused by specific properties like high strength, lower specific weight, and improved toughness. Besides, the natural fiber-made polymer composite faced inconsistent behaviour, moisture absorption, and processing challenges that limit their utilization for high-performance usages. The current investigation on polypropylene (PP) composite composition of 2-4 mm sodium hydroxide surface-treated flax fiber (TFF) and nano-sized (50 nm) alumina particles (Al<sub>2</sub>O<sub>3</sub>) by using injection moulding, which is 10 wt% flax fiber along with 0, 2.5, 5, and 7.5 wt% nano-sized Al<sub>2</sub>O<sub>3</sub> to enhancing the behaviour of mechanical strength and evaluation of such as yield/tensile, impact, and flexural strength of the composite. During the fabrication process, an injection pressure of 100 MPa is applied at a processing temperature of 200 °C for 10 min. The contributions of Al<sub>2</sub>O<sub>3</sub> and TFF to the polypropylene (PP) matrix are examined using transmission electron microscopy (TEM) analysis. The TEM results reveal a homogeneous structure with a uniform distribution of TFF and Al<sub>2</sub>O<sub>3</sub>. The optimal mechanical properties are observed in the composite of PP with 10 wt% TFF and 7.5 wt% Al<sub>2</sub>O<sub>3</sub>, which shows superior performance compared to other compositions. The yield strength/tensile strength, impact strength, and flexural strength of the PP/10 wt% TFF/7.5 wt% Al<sub>2</sub>O<sub>3</sub> composite are measured to be 42.8 ± 0.6 MPa/49.5 ± 0.7 MPa, 18 ± 0.8 J/mm<sup>2</sup>, and 56 ± 0.6 MPa, respectively. 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Featuring of alumina nanoparticle and NaOH treated flax fiber on function properties of polypropylene composites
The scenario of modern technology adopting polymer-based hybrid composites is caused by specific properties like high strength, lower specific weight, and improved toughness. Besides, the natural fiber-made polymer composite faced inconsistent behaviour, moisture absorption, and processing challenges that limit their utilization for high-performance usages. The current investigation on polypropylene (PP) composite composition of 2-4 mm sodium hydroxide surface-treated flax fiber (TFF) and nano-sized (50 nm) alumina particles (Al2O3) by using injection moulding, which is 10 wt% flax fiber along with 0, 2.5, 5, and 7.5 wt% nano-sized Al2O3 to enhancing the behaviour of mechanical strength and evaluation of such as yield/tensile, impact, and flexural strength of the composite. During the fabrication process, an injection pressure of 100 MPa is applied at a processing temperature of 200 °C for 10 min. The contributions of Al2O3 and TFF to the polypropylene (PP) matrix are examined using transmission electron microscopy (TEM) analysis. The TEM results reveal a homogeneous structure with a uniform distribution of TFF and Al2O3. The optimal mechanical properties are observed in the composite of PP with 10 wt% TFF and 7.5 wt% Al2O3, which shows superior performance compared to other compositions. The yield strength/tensile strength, impact strength, and flexural strength of the PP/10 wt% TFF/7.5 wt% Al2O3 composite are measured to be 42.8 ± 0.6 MPa/49.5 ± 0.7 MPa, 18 ± 0.8 J/mm2, and 56 ± 0.6 MPa, respectively. This particular composition of composite specimens is recommended for applications in automobile cabins.
期刊介绍:
Journal of Polymer Research provides a forum for the prompt publication of articles concerning the fundamental and applied research of polymers. Its great feature lies in the diversity of content which it encompasses, drawing together results from all aspects of polymer science and technology.
As polymer research is rapidly growing around the globe, the aim of this journal is to establish itself as a significant information tool not only for the international polymer researchers in academia but also for those working in industry. The scope of the journal covers a wide range of the highly interdisciplinary field of polymer science and technology, including:
polymer synthesis;
polymer reactions;
polymerization kinetics;
polymer physics;
morphology;
structure-property relationships;
polymer analysis and characterization;
physical and mechanical properties;
electrical and optical properties;
polymer processing and rheology;
application of polymers;
supramolecular science of polymers;
polymer composites.