The Mechanical Properties of a Water Hyacinth/Rice Husk Powders Composite for Tissue Engineering Applications

Nasmi Herlina Sari, Suteja Suteja, Yusuf Akhyar Sutaryono
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Abstract

In this study, composites made from water hyacinth powder (WPH) and rice husk powder (RH) were created using the hot press method, and the composites were characterized to determine their suitability for biomedical applications such as tissue engineering. The mixing ratio of WPH/RH was investigated. Fourier transmission infrared spectroscopy (FTIR) revealed the presence of chemical bonds in the composites under investigation. Tensile tests were used to investigate the mechanical properties of the composite, which revealed that adding water WPH to the rice husk composite reduced the composite's strength. A composite with a 5% WPH content had the highest tensile strength of 32.72 MPa. Meanwhile, the mechanical strength of the other composites studied ranged from 25,537 MPa to 29.43 MPa. However, the elastic modulus of the composite increased with the addition of WPH. The SEM image shows that the powder distribution is less even, the interface between WPH-RH and polyester is quite tight, and the composite contains a number of voids. Characterization of the developed composite demonstrates that the WPH/RH addition ratio can be adjusted to achieve the desired composite properties for tissue engineering and cartilage regeneration applications.
组织工程用水葫芦/稻壳复合粉体的力学性能研究
本研究采用热压法制备了水葫芦粉(WPH)和稻壳粉(RH)复合材料,并对复合材料进行了表征,以确定其在组织工程等生物医学应用中的适用性。研究了WPH/RH的混合比例。傅里叶透射红外光谱(FTIR)揭示了所研究的复合材料中存在化学键。拉伸试验研究了复合材料的力学性能,结果表明,稻壳复合材料中加入水WPH降低了复合材料的强度。当WPH含量为5%时,复合材料的抗拉强度最高,为32.72 MPa。其他复合材料的力学强度在25,537 ~ 29.43 MPa之间。然而,复合材料的弹性模量随着WPH的加入而增加。SEM图像显示,粉末分布不均匀,WPH-RH与聚酯之间的界面相当紧密,复合材料含有许多空隙。所开发的复合材料的表征表明,WPH/RH的添加比例可以调节,以达到组织工程和软骨再生应用所需的复合材料性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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