各种外加剂对中粘度骨水泥选定机械性能的影响:第 3 部分--玻璃碳

IF 6.3 2区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES
Robert Karpiński , Jakub Szabelski , Przemysław Krakowski , Józef Jonak , Katarzyna Falkowicz , Mariusz Jojczuk , Adam Nogalski , Agata Przekora
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引用次数: 0

摘要

基于聚甲基丙烯酸甲酯(PMMA)的骨水泥是骨科手术中使用最广泛的聚合物复合材料之一。它们在固定骨内假体方面起着关键作用,因此是全关节置换(TJR)手术中最薄弱的环节。在人体等侵蚀性环境中,PMMA 的机械性能过快、过早地下降会导致全关节置换术松动,从而导致翻修手术的必要性。近年来,研究人员对通过添加不同浓度的各种外加剂来增强 PMMA 机械性能的可能性进行了研究。在本研究中,我们展示了在骨科手术中广泛使用的市售PMMA骨水泥(Palamed® Heraeus)样品的机械性能结果,这些样品中掺入了不同浓度的玻璃碳(GC)。所有样品都进行了压缩测试。压缩反映了植入 TJR 后 PMMA 在人体中的负载机制。研究包括比较按照制造商说明制备的样品和添加了晶粒尺寸为 0.4-12 μm 和 20-50 μm 的 GC 后制备的样品的选定机械参数。虽然这种材料有可能提高 PMMA 的机械强度,但由于 GC 的热特性,GC 的严重污染会导致 PMMA 聚合受阻,进而影响 PMMA 的机械特性。添加 GC 的重量百分比浓度如下:1%、2%、3%、5%、8% 和 10%。结果表明,添加 20-50 μm GC 后,PMMA 的压缩强度明显降低,这是标准聚合工艺条件(时间和温度)受到干扰所致。有趣的是,在测试的浓度范围内,添加 0.4-12 μm GC 对材料的压缩强度并无明显影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of various admixtures on selected mechanical properties of medium viscosity bone cements: Part 3 – Glassy carbon

Bone cements based on poly methyl-methacrylate (PMMA) are among the most widely used polymer composites in orthopaedic surgery. They play a key role in fixing the endoprosthesis with the bone, and, as such, are the weakest link in total joint replacement (TJR) surgeries. A fast, premature decrease in the mechanical properties of PMMA in an aggressive environment, such as the human body, can lead to TJR loosening, which results in the necessity for revision surgery. In recent years researchers have undertaken studies on the possibility of enhancing the mechanical properties of PMMA by adding various admixtures in different concentrations. In this study we present the results of the mechanical properties of samples made of the commercially available and widely used in orthopaedic surgery PMMA bone cement (Palamed® Heraeus) that was admixed with glassy carbon (GC) using different concentrations. All samples were subjected to compression testing. Compression reflects the load mechanism acting on PMMA in the human body after TJR implantation. The study involved comparing selected mechanical parameters of both samples prepared according to the manufacturer’s instructions and samples prepared with the addition of GC with grain sizes of 0.4–12 μm and 20–50 μm. Although this material can potentially increase the mechanical strength of PMMA, serious contamination with GC can lead to PMMA polymerization impairment due to the thermal properties of GC and, consequently, affect the mechanical properties of PMMA. GC was added in the following w/w concentrations: 1, 2, 3, 5, 8 and 10 %. Results revealed a significant decrease in the compression strength of PMMA following the addition of 20–50 μm GC, which resulted from the disturbances in standard polymerization process conditions (time and temperature). Interestingly, the addition of 0.4–12 μm GC did not affect significantly the compressive strength of the material in the tested range of concentration.

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来源期刊
Composite Structures
Composite Structures 工程技术-材料科学:复合
CiteScore
12.00
自引率
12.70%
发文量
1246
审稿时长
78 days
期刊介绍: The past few decades have seen outstanding advances in the use of composite materials in structural applications. There can be little doubt that, within engineering circles, composites have revolutionised traditional design concepts and made possible an unparalleled range of new and exciting possibilities as viable materials for construction. Composite Structures, an International Journal, disseminates knowledge between users, manufacturers, designers and researchers involved in structures or structural components manufactured using composite materials. The journal publishes papers which contribute to knowledge in the use of composite materials in engineering structures. Papers deal with design, research and development studies, experimental investigations, theoretical analysis and fabrication techniques relevant to the application of composites in load-bearing components for assemblies, ranging from individual components such as plates and shells to complete composite structures.
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