Afolabi Olusegun Adigun, Kanny Krishnan, Mohan Turup Pandurangan
Mechanical Engineering Department, Durban University of Technology, Durban 4000, South Africa.
Polymers (Basel). 2022 Nov 10;14(22):4848. doi: 10.3390/polym14224848.
Syntactic foam made from hollow glass microspheres (HGM) in an epoxy matrix has proven to be a good material with a strong structural strength. Understanding filler particle size variation is important in composite material formation, especially in syntactic foam, because of its numerous applications such as aerospace, marine, and structural purposes. In this present work, the effects of particle variation in different sizes (20-24 µm, 25-44 µm, 45-49 µm, and 50-60 µm) on the mechanical properties of the syntactic foam composites with a focus on flexural strength, modulus, and fracture surfaces are investigated. The particle sizes are varied into five volume fractions (5, 10, 15, 20, and 25 vol%). The results show that the highest flexural strength is 89 MPa at a 5 vol% fraction of 50-60 µm particle size variation with a 69% increase over the neat epoxy. This implies that the incorporation of HGM filler volume fraction and size variation has a strong effect on the flexural strength and bending modulus of syntactic foam. The highest particle size distribution is 31.02 at 25-44 µm. The storage modulus E' increased at 30 °C, 50 °C, and 60 °C by 3.2%, 47%, and 96%, respectively. The effects of wall thickness and aspect ratio on the size of the microstructure, the fracture surfaces, and the viscoelastic properties are determined and reported accordingly.
由空心玻璃微珠(HGM)在环氧基体中制成的复合泡沫材料已被证明是一种具有强大结构强度的优质材料。了解填料粒径变化在复合材料形成过程中十分重要,尤其是在复合泡沫材料中,因为其有众多应用,如航空航天、船舶和结构用途等。在本研究中,研究了不同尺寸(20 - 24 µm、25 - 44 µm、45 - 49 µm和50 - 60 µm)的颗粒变化对复合泡沫材料力学性能的影响,重点关注弯曲强度、模量和断裂表面。颗粒尺寸分为五个体积分数(5%、10%、15%、20%和25%)。结果表明,在50 - 60 µm粒径变化的5%体积分数下,最高弯曲强度为89 MPa,比纯环氧树脂提高了69%。这意味着HGM填料体积分数和粒径变化对复合泡沫材料的弯曲强度和弯曲模量有很大影响。在25 - 44 µm时,最高粒径分布为31.02。储能模量E'在30℃、50℃和60℃时分别提高了3.2%、47%和96%。相应地确定并报告了壁厚和长径比对微观结构尺寸、断裂表面和粘弹性性能的影响。