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Lightweight composites from long wheat straw and polypropylene web

机译:长麦草和聚丙烯纤维网的轻质复合材料

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摘要

Whole and split wheat straws (WS) with length up to 10 cm have been used with polypropylene (PP) webs to make lightweight composites with properties superior to jute–PP composites with the same density. The effect of WS concentration, WS length, and split configuration (half, quarter, and mechanically split) on flexural and tensile properties of the composites has been investigated. The sound absorption properties of composites from whole straw and split straw have been studied. Compared with whole WS–PP composites, mechanically split WS–PP composites have 69% higher flexural strength, 39% higher modulus of elasticity, 18% higher impact resistance properties, 69% higher tensile strength and 26% higher Young’s modulus. Compared with jute–PP composites, mechanically split WS–PP composites have 114% higher flexural strength, 38% higher modulus of elasticity, 10% higher tensile strength, 140% higher Young’s modulus, better sound absorption properties and 50% lower impact resistance.
机译:全长(最长)为10 cm的全麦秸秆和分裂麦秸秆已与聚丙烯(PP)纤维网一起使用,以制造轻质复合材料,其性能优于相同密度的黄麻-PP复合材料。研究了WS浓度,WS长度和分裂形态(半,四分之一和机械分裂)对复合材料弯曲和拉伸性能的影响。研究了全秸秆和劈秸秆复合材料的吸声性能。与整个WS-PP复合材料相比,机械分裂WS-PP复合材料的抗弯强度高69%,弹性模量高39%,耐冲击性能高18%,拉伸强度高69%,杨氏模量高26%。与黄麻-PP复合材料相比,机械分裂的WS-PP复合材料的抗弯强度提高114%,弹性模量提高38%,拉伸强度提高10%,杨氏模量提高140%,吸音性能更好,抗冲击性降低50%。

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