Ex-situ Synthesis of B4C and MgAl2O4 incorporated Waste Polystyrene (wPS) Composites with Improved Thermal and Mechanical Properties

被引:0
作者
Ahmad, Waqas [1 ]
Fida, Sadia [1 ]
Ahmad, Imtiaz [1 ]
Tariq, Razia [1 ]
Jan, Badrul Mohamed [2 ]
Hussain, Fida [3 ]
Kenanakis, George [4 ]
Ikram, Rabia [5 ,6 ]
机构
[1] Univ Peshawar, Inst Chem Sci, Peshawar 25120, Khyber Pakhtunk, Pakistan
[2] Univ Malaya, Dept Chem Engn, Kuala Lumpur 50603, Malaysia
[3] Inst Appl Sci & Technol, Dept Chem & Energy Engn, Pak Austria Fachhsch, Haripur 22621, Pakistan
[4] Fdn Res & Technol Hellas, Inst Elect Struct & Laser, N Plastira 100, Iraklion 70013, Crete, Greece
[5] Univ Putra Malaysia UPM, Fac Sci, Dept Chem, Serdang 43400, Selangor, Malaysia
[6] Univ Malaya, Dept Mech Engn, Ctr Adv Mat, Kuala Lumpur 50603, Malaysia
关键词
Plastic composites; Mechanical strength; Waste polystyrene; Boron carbide; Magnesium aluminate; Thermal stability; TRANSFER RADICAL POLYMERIZATION; MAGNESIUM-ALUMINATE SPINEL; BORON; TEMPERATURE; PARTICLES; BEHAVIOR; NANOCOMPOSITES; NANOPARTICLES; DENSIFICATION; FABRICATION;
D O I
10.1007/s42247-024-00827-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Boron carbide (B4C) and magnesium aluminate (MgAl2O4) incorporated waste polystyrene (wPS) based composites were prepared at various ratios i.e., 5-20% of the filler. Based on the fabricated composites, samples with 20% B4C, 5% MgAl2O4 and 15:10% B4C:MgAl2O4 exhibited improved mechanical and thermal properties. The tensile strength and young modulus of the composites was increased to 2622.5 and 27.931 MPa for 20%B4C, 2266.8 and 19.39 MPa for 5% MgAl2O4, 2719.4 and 21 MPa for 15:10% B4C:MgAl2O4 from that of 2232 and 10 MPa of wPS, respectively. TGA results showed that the temperature for 50% weight loss of wPS (337 degrees C) increased to 404 degrees C, 390 oC and 394 oC for wPS-B4C:20%, wPS-MgAl2O4:5% and wPS-B4C-MgAl2O4:15:10% composite, respectively. Their corresponding glass transition temperature increased from 79.65 degrees C to 265.6 degrees C, 291.19 oC and 302.5 oC for wPS-B4C:20%, wPS-MgAl2O4:5%, and wPS-B4C-MgAl2O4:15:10%, respectively. FTIR and SEM analysis concluded marginal changes in the surface topography and distribution of wPS particles upon the incorporation of B4C and MgAl2O4 fillers. XRD analysis indicated that the composite retained the crystalline configurations of original B4C and MgAl2O4, confirming the mere physical interaction of the filler with wPS. This study is focused on the cost-effective fabrication of various composites i.e., wPS-B4C, wPS-MgAl2O4 and wPS-B4C-MgAl2O4 with improved thermal stability and value-added mechanical performance which can be further envisioned of great prospects for industrial applications and devices. [GRAPHICS] .
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页数:15
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