首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The Development of Theoretical Relationships between Dome Handling Parameters (Setting Time and Setting Temperature), Composition (Relative Amounts of Initiator and Activator) and Ambient Temperature for Acrylic Bone Cement
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The Development of Theoretical Relationships between Dome Handling Parameters (Setting Time and Setting Temperature), Composition (Relative Amounts of Initiator and Activator) and Ambient Temperature for Acrylic Bone Cement

机译:圆顶骨处理参数(凝结时间和凝结温度),组成(引发剂和活化剂的相对含量)和丙烯酸骨水泥的环境温度之间的理论关系的发展

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摘要

Commercially available acrylic bone cements are two-component systems based on the polymerization of methyl methacrylate around poly(methyl methacrylate) particles. When benzoyl peroxide (BPO), which is the initiator, in the powder component meets accelerator (N,N-dimethyl-p-toluidine (DMpT)) in the liquid component, radicals are produced, initiating the polymerization. This solidifies the cement. In this work, kinetic expressions have been developed that describe the relationship between bone cement setting time on the one hand, and BPO and DMpT concentrations on the other. Changes in setting time with ambient temperature follow a complex relationship, because both the polymerization process (initiation, propagation, and termination) and the swelling and dissolution of the polymer particles contribute to setting. The contribution of polymer swelling and dissolution to the setting process was determined by developing a relationship between the doughing time, which is substantially independent of DMpT or BPO concentrations, and ambient temperature. A value of 64 kJ mol~(-1) was found for the activation energy for this process. An activation energy for the overall setting process of 68 kJ mol~(-1) was determined from setting-time measurements over several ambient temperatures. This indicates that the sensitivity of setting time to temperature depends more on swelling and dissolution than on the polymerization process.
机译:市售的丙烯酸骨水泥是基于甲基丙烯酸甲酯在聚(甲基丙烯酸甲酯)颗粒周围聚合的两组分体系。当粉末组分中的引发剂过氧化苯甲酰(BPO)与液体组分中的促进剂(N,N-二甲基对甲苯胺(DMpT))相遇时,会产生自由基,从而引发聚合反应。这使水泥固化。在这项工作中,已经开发了动力学表达式,该动力学表达式一方面描述了骨水泥凝固时间与另一方面描述了BPO和DMpT浓度之间的关系。凝结时间随环境温度的变化遵循复杂的关系,因为聚合过程(引发,传播和终止)以及聚合物颗粒的溶胀和溶解都有助于凝结。聚合物溶胀和溶解对凝固过程的贡献是通过建立面团化时间(与DMpT或BPO浓度基本无关)与环境温度之间的关系来确定的。发现该过程的活化能值为64 kJ mol〜(-1)。根据在几个环境温度下的凝固时间测量,确定整个凝固过程的活化能为68 kJ mol〜(-1)。这表明凝固时间对温度的敏感性更多地取决于溶胀和溶解而不是聚合过程。

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