Relation between water absorption and mechanical properties of flax 3D braided yarn woven fabric PLA bio-degradable composites

S. Kanakannavar, J. Pitchaimani
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Abstract

Natural fibre (flax) plain type of woven fabric is developed by using solid braided yarn and is utilised as filler material and PLA (polylactic acid) as a matrix. Solution casting is then used to create sheets of pure PLA and flax fabric–PLA. Composites are manufactured by sheets sequencing technique using the hot compression moulding method. Water absorption, thickness swelling and flexural tests are performed in loading directions of warp and weft of the composites. Results revealed that the absorption of water and swelling of thickness are enriched with an addition of flax fabric. The weft direction loaded composite displayed greater values of water uptake and thickness swelling. The warp direction loaded composites demonstrated the highest flexural strength (92.3 MPa) and modulus (4.5 GPa) compared to weft direction loaded composites. These values are decreased after water absorption.
亚麻三维编织纱编织物聚乳酸生物可降解复合材料的吸水性与机械性能之间的关系
天然纤维(亚麻)平纹编织物是通过使用实心编织纱线和聚乳酸(PLA)作为填充材料而开发的。然后采用溶液浇注法制造纯聚乳酸和亚麻织物-聚乳酸片材。复合材料的制造采用热压模塑法的片材排序技术。在复合材料的经纬加载方向上进行了吸水、厚度膨胀和弯曲试验。结果表明,加入亚麻织物后,吸水率和厚度膨胀率都有所提高。纬向加载的复合材料显示出更高的吸水率和厚度膨胀值。与纬向负载的复合材料相比,经向负载的复合材料显示出最高的抗弯强度(92.3 兆帕)和模量(4.5 千兆帕)。吸水后,这些值均有所下降。
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