Paz E, Abenojar J, Ballesteros Y, Forriol F, Dunne N, Del Real J C
Mechanical Engineering Department, Institute for Research in Technology (IIT), Universidad Pontificia Comillas, Madrid, Spain.
Materials Performance Group, Materials Science and Engineering Department, Universidad Carlos III de Madrid, Madrid, Spain.
J Mater Sci Mater Med. 2016 Apr;27(4):72. doi: 10.1007/s10856-016-5679-4. Epub 2016 Feb 17.
The basic formulation of an acrylic bone cement has been modified by the addition of a block copolymer, Nanostrength(®) (NS), in order to augment the mechanical properties and particularly the fracture toughness of the bone cement. Two grades of NS at different levels of loading, between 1 and 10 wt.%, have been used. Mechanical tests were conducted to study the behaviour of the modified cements; specific tests measured the bend, compression and fracture toughness properties. The failure mode of the fracture test specimens was analysed using scanning electron microscopy (SEM). The effect of NS addition on the thermal properties was also determined, and the polymerisation reaction using differential scanning calorimetry. It was observed that the addition of NS produced an improvement in the fracture toughness and ductility of the cement, which could have a positive contribution by reducing the premature fracture of the cement mantle. The residual monomer content was reduced when the NS was added. However this also produced an increase in the maximum temperature and the heat delivered during the polymerisation of the cement.
通过添加一种嵌段共聚物Nanostrength(®)(NS)对丙烯酸骨水泥的基本配方进行了改良,以增强其机械性能,尤其是骨水泥的断裂韧性。使用了两种不同负载水平(1至10重量%)的NS等级。进行了力学测试以研究改良水泥的性能;特定测试测量了弯曲、压缩和断裂韧性性能。使用扫描电子显微镜(SEM)分析了断裂测试样品的失效模式。还确定了添加NS对热性能的影响,并使用差示扫描量热法研究了聚合反应。观察到添加NS可提高水泥的断裂韧性和延展性,这可能通过减少水泥套过早断裂而产生积极作用。添加NS时残留单体含量降低。然而,这也导致水泥聚合过程中的最高温度和释放的热量增加。