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光交联聚碳酸三亚甲酯与纳米羟基磷灰石复合材料的制备及其力学性能

Preparation and mechanical properties of photo-crosslinked poly(trimethylene carbonate) and nano-hydroxyapatite composites.

作者信息

Geven Mike A, Barbieri Davide, Yuan Huipin, de Bruijn Joost D, Grijpma Dirk W

机构信息

MIRA Institute for Biomedical Technology and Technical Medicine, and Department of Biomaterials Science and Technology, University of Twente, Enschede, The Netherlands.

XPand Biotechnology BV, Bilthoven, The Netherlands.

出版信息

Clin Hemorheol Microcirc. 2015;60(1):3-11. doi: 10.3233/CH-151936.

Abstract

Composite materials of photo-crosslinked poly(trimethylene carbonate) and nanoscale hydroxyapatite were prepared and their mechanical characteristics for application as orbital floor implants were assessed. The composites were prepared by solvent casting poly(trimethylene carbonate) macromers with varying amounts of nano-hydroxyapatite and subsequent photo-crosslinking. The incorporation of the nano-hydroxyapatite into the composites was examined by thermogravimetric analysis, scanning electron microscopy and gel content measurements. The mechanical properties were investigated by tensile testing and trouser tearing experiments. Our results show that nano-hydroxyapatite particles can readily be incorporated into photo-crosslinked poly(trimethylene carbonate) networks. Compared to the networks without nano-hydroxyapatite, incorporation of 36.3 wt.% of the apatite resulted in an increase of the E modulus, yield strength and tensile strength from 2.2 MPa to 51 MPa, 0.5 to 1.4 N/mm2 and from 1.3 to 3.9 N/mm2, respectively. We found that composites containing 12.4 wt.% nano-hydroxyapatite had the highest values of strain at break, toughness and average tear propagation strength (376% , 777 N/mm2 and 3.1 N/mm2, respectively).

摘要

制备了光交联聚碳酸三亚甲酯与纳米级羟基磷灰石的复合材料,并评估了其作为眶底植入物应用时的力学特性。通过将不同含量的纳米羟基磷灰石与聚碳酸三亚甲酯大分子单体进行溶液浇铸,随后进行光交联来制备复合材料。通过热重分析、扫描电子显微镜和凝胶含量测量来检测纳米羟基磷灰石在复合材料中的掺入情况。通过拉伸试验和裤形撕裂试验研究力学性能。我们的结果表明,纳米羟基磷灰石颗粒能够很容易地掺入光交联聚碳酸三亚甲酯网络中。与不含纳米羟基磷灰石的网络相比,掺入36.3 wt.%的磷灰石导致弹性模量、屈服强度和拉伸强度分别从2.2 MPa增加到51 MPa、从0.5增加到1.4 N/mm2以及从1.3增加到3.9 N/mm2。我们发现,含有12.4 wt.%纳米羟基磷灰石的复合材料具有最高的断裂应变、韧性和平均撕裂扩展强度值(分别为376%、777 N/mm2和3.1 N/mm2)。

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