首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Flexural and flammability evaluation of a new bio-based polyurethane foam with alumina trihydrate
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Flexural and flammability evaluation of a new bio-based polyurethane foam with alumina trihydrate

机译:用氧化铝三水合物对新生物基聚氨酯泡沫进行弯曲和易燃性评价

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Flexural and flammability evaluation of a new bio-based polyurethane foam (PUF) with alumina trihydrate (ATH) added as flame retardant were carried out. The PUF was obtained from a blend of vegetable oils. Flexural behavior of the polyurethane with different mass fractions of flame retardant (ATH) was investigated according to ASTM D790-17. Flammability tests were performed according to ASTM D3801-20 and ASTM D635-14 for the vertical and horizontal positions, respectively. The ATH addition influenced the flexural strength of the tested specimens, showing mean values for pure PUF and PUF with 50% of ATH were very close, but the highest value was obtained for PUF with 20% of ATH. Besides, the maximum strain value under flexural load was substantially reduced as the ATH mass increased, which was 11.4% for pure PUF and 3.38% for PUF with 50% of ATH. The flexural modulus increased with ATH incorporation up to 40% mass fraction. The obtained values for pure PUF, PUF with 40% of ATH and PUF with 50% of ATH specimens were 30.63 +/- 1.95 MPa, 73.01 +/- 2.82 MPa, and 62.16 +/- 2.30 MPa, respectively. In addition, flammability test results presented better responses as the amount of ATH increased. PUF with 40% of ATH received V-2 classification, and PUF with 50% of ATH obtained HB classification. Therefore, the results for PUF with the addition of ATH show that the new bio-based material can be designed by using different mass fractions. Thus, this material becomes very useful for many types of applications, such as furniture and automobile industries, as well as sandwich structures and building constructions.
机译:进行了作为阻燃剂添加的氧化铝三水合物(Ath)的新生物基聚氨酯泡沫(PUF)的弯曲和易燃性评价。 Puf是从植物油的混合物中获得的。根据ASTM D790-17研究了具有不同质量分数的聚氨酯的弯曲行为。根据ASTM D3801-20和ASTM D635-14分别进行可燃性测试,分别用于垂直和水平位置。 Ath Breation影响了测试标本的抗弯强度,显示出纯PUF和PUF的平均值,50%的ATH非常接近,但PUF的最高值为20%的ATH。此外,随着ATH质量增加,弯曲载荷下的最大应变值显着减少,纯PUF为11.4%,PUF为3.38%,50%的ATH。弯曲模量随着最高可达40%的质量分数而增加。获得的纯PUF值,PUF,40%的ATH和PUF,50%的ATPIMENS分别为30.63 +/- 1.95 MPa,73.01 +/- 2.82 MPa和62.16 +/- 2.30 MPa。此外,随着ATH的增加,易燃性测试结果呈现出更好的反应。 Puf含有40%的Ath接受V-2分类,PUF有50%的ATH获得的HB分类。因此,通过添加ATH的添加结果表明新的生物基材料可以通过使用不同的质量分数来设计。因此,这种材料对于许多类型的应用,例如家具和汽车行业以及三明治结构和建筑结构非常有用。

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