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钛基体上的等离子喷涂羟基磷灰石涂层。第1部分:力学性能和残余应力水平。

Plasma sprayed hydroxyapatite coatings on titanium substrates. Part 1: Mechanical properties and residual stress levels.

作者信息

Tsui Y C, Doyle C, Clyne T W

机构信息

Department of Materials Science and Metallurgy University of Cambridge, UK.

出版信息

Biomaterials. 1998 Nov;19(22):2015-29. doi: 10.1016/s0142-9612(98)00103-3.

DOI:10.1016/s0142-9612(98)00103-3
PMID:9870753
Abstract

Hydroxyapatite (HA) coatings have been sprayed on to substrates of Ti-6Al-4V, using a range of input power levels and plasma gas mixtures. Coatings have also been produced on substrates of mild steel and tungsten, in order to explore certain aspects of the mechanical behaviour of HA without the complication of yielding or creep in the substrate. Studies have been made of the phase constitution, porosity, degree of crystallinity, OH ion content, microstructure and surface roughness of the HA coatings. The Young's moduli in tension and in compression were evaluated by the cantilever beam bend test using a tungsten/HA composite beam. The flexural Young's modulus was determined using a free-standing deposit under the same test. Adhesion was characterised using the single-edge notch-bend test; this is considered superior to the tensile bond strength test in common use. Measured interfacial fracture energies were of the order 1-10 J m(-2). Stress levels were investigated using specimen curvature measurements in conjunction with a numerical process model. The quenching stress for HA was measured to be about 10-25 MPa and the residual stress level in HA coatings at room temperature are predicted to lie in the approximate range of 20-40 MPa (tensile). These residual stresses could be reduced in magnitude by maintaining the substrate at a low temperature (possibly below room temperature) during spraying and it may be worthwhile to explore this. Ideally, the HA coating should have low porosity, high cohesive strength, good adhesion to the substrate, a high degree of crystallinity and high chemical purity and phase stability. In practice, such combinations are rather difficult to achieve by just varying the spraying parameters.

摘要

已使用一系列输入功率水平和等离子体气体混合物,将羟基磷灰石(HA)涂层喷涂到Ti-6Al-4V基体上。还在低碳钢和钨基体上制备了涂层,以便在不考虑基体屈服或蠕变复杂性的情况下,探索HA力学行为的某些方面。对HA涂层的相组成、孔隙率、结晶度、OH离子含量、微观结构和表面粗糙度进行了研究。使用钨/HA复合梁通过悬臂梁弯曲试验评估拉伸和压缩时的杨氏模量。在相同试验下,使用独立沉积物测定弯曲杨氏模量。使用单边切口弯曲试验表征附着力;这被认为优于常用的拉伸粘结强度试验。测得的界面断裂能约为1-10 J m(-2)。结合数值过程模型,使用试样曲率测量研究应力水平。测得HA的淬火应力约为10-25 MPa,预计室温下HA涂层中的残余应力水平在大约20-40 MPa(拉伸)范围内。在喷涂过程中将基体保持在低温(可能低于室温)可以降低这些残余应力的大小,探索这一点可能是值得的。理想情况下,HA涂层应具有低孔隙率、高内聚强度、与基体的良好附着力、高结晶度以及高化学纯度和相稳定性。实际上,仅通过改变喷涂参数很难实现这些组合。

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