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酸性磷酸钙骨水泥的压缩疲劳性能——相组成的影响

Compressive fatigue properties of an acidic calcium phosphate cement-effect of phase composition.

作者信息

Ajaxon Ingrid, Öhman Mägi Caroline, Persson Cecilia

机构信息

Materials in Medicine, Division of Applied Materials Science, Department of Engineering Sciences, Uppsala University, The Ångström Laboratory, Box 534, SE-751 21, Uppsala, Sweden.

出版信息

J Mater Sci Mater Med. 2017 Mar;28(3):41. doi: 10.1007/s10856-017-5851-5. Epub 2017 Jan 31.

Abstract

Calcium phosphate cements (CPCs) are synthetic bone grafting materials that can be used in fracture stabilization and to fill bone voids after, e.g., bone tumour excision. Currently there are several calcium phosphate-based formulations available, but their use is partly limited by a lack of knowledge of their mechanical properties, in particular their resistance to mechanical loading over longer periods of time. Furthermore, depending on, e.g., setting conditions, the end product of acidic CPCs may be mainly brushite or monetite, which have been found to behave differently under quasi-static loading. The objectives of this study were to evaluate the compressive fatigue properties of acidic CPCs, as well as the effect of phase composition on these properties. Hence, brushite cements stored for different lengths of time and with different amounts of monetite were investigated under quasi-static and dynamic compression. Both storage and brushite-to-monetite phase transformation was found to have a pronounced effect both on quasi-static compressive strength and fatigue performance of the cements, whereby a substantial phase transformation gave rise to a lower mechanical resistance. The brushite cements investigated in this study had the potential to survive 5 million cycles at a maximum compressive stress of 13 MPa. Given the limited amount of published data on fatigue properties of CPCs, this study provides an important insight into the compressive fatigue behaviour of such materials.

摘要

磷酸钙骨水泥(CPCs)是一种合成骨移植材料,可用于骨折固定以及填充骨缺损,例如骨肿瘤切除术后的骨缺损。目前有几种基于磷酸钙的配方可供使用,但它们的应用在一定程度上受到对其力学性能了解不足的限制,特别是它们在较长时间内抵抗机械载荷的能力。此外,根据例如凝固条件,酸性CPCs的最终产物可能主要是透钙磷石或一水磷酸氢钙,已发现它们在准静态载荷下表现不同。本研究的目的是评估酸性CPCs的压缩疲劳性能以及相组成对这些性能的影响。因此,研究了在不同时间长度下储存且含有不同量一水磷酸氢钙的透钙磷石骨水泥在准静态和动态压缩下的情况。发现储存和透钙磷石向一水磷酸氢钙的相变均对骨水泥的准静态抗压强度和疲劳性能有显著影响,由此大量的相变导致较低的机械抗性。本研究中所研究的透钙磷石骨水泥在最大压缩应力为13 MPa时有可能承受500万次循环。鉴于关于CPCs疲劳性能的已发表数据有限,本研究为这类材料的压缩疲劳行为提供了重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93ad/5285421/4a3c7ded24b0/10856_2017_5851_Fig1_HTML.jpg

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