首页> 外文会议>Symposium on Mechanical Properties of Nanostructured Materials and Nanocomposites; 20031201-20031205; Boston,MA; US >On the Wear Assessment of Multilayer Nanocrystalline Diamond Coated Implants of the Temporomandibular Joint
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On the Wear Assessment of Multilayer Nanocrystalline Diamond Coated Implants of the Temporomandibular Joint

机译:颞下颌关节多层纳米晶金刚石涂层植入物的磨损评估

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We deposited multilayer Nanocrystalline Diamond (NCD) thin films on Ti-6Al-4V substrates that were machined to imitate the shapes of the condyle and fossa of the temporomandibular joint (TMJ). We performed low stress wear assessment experiments on condyle/fossa pairs mounted in a custom-built mandibular movement simulator (MMS) for 5 x 10~5 loaded cycles at 1.2 Hz, which is equivalent to 4.4 years of clinical use. Analysis of wear surfaces on the control and the NCD-coated pairs indicated that no film delamination occurred on the NCD-coated condyle/fossa couple and that wear damage was extensive on the uncoated condyle/fossa pair. The high stress wear tests performed using the Ortho-POD machine at loads of 80 and 165 N showed that loss of film on the condyle specimens occurred after 3300 and 341 cycles, respectively. A subsequent evaluation of the influence of condyle curvature on wear by articulating a multilayer condyle/disk pair at a load of 50 N and 250 000 cycles at 1.2 Hz, showed that film delamination on the condyle occurred after 12500 cycles and no loss of film was observed on the disk after 250 000 cycles of articulation. Our results show that the observed lower film lifetimes on the condyles at high stresses are not related to intrinsic stresses in the film but probably due to lower film adhesion on the curved surfaces of the condyle.
机译:我们在Ti-6Al-4V基底上沉积了多层纳米晶金刚石(NCD)薄膜,该薄膜经过机械加工以模仿颞下颌关节(TMJ)的con和窝的形状。我们对安装在定制下颌骨运动模拟器(MMS)中的con /窝对进行了低应力磨损评估实验,以1.2 Hz的频率进行了5 x 10〜5个加载周期,相当于临床使用4.4年。对照和NCD涂层对的磨损表面分析表明,在NCD涂层的con /凹窝对上没有发生膜分层,并且未涂覆的con /凹窝对的磨损严重。使用Ortho-POD机器在80和165 N的载荷下进行的高应力磨损测试表明,分别在3300和341个循环之后,the突样品上的薄膜损失就发生了。随后通过在50 N和250000次循环以1.2 Hz的载荷下铰接多层disk /盘对来评估con曲率对磨损的影响,结果表明12骨膜在12500次循环后发生分层,并且没有损失膜在进行了25万次关节运动后,观察到椎间盘。我们的结果表明,在高应力下,observed突上观察到的较低的膜寿命与膜中的固有应力无关,但可能是由于lower突曲面上的较低的膜粘附性所致。

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